WO2020045170A1 - Vitre multicouche et garniture équipée de celle-ci - Google Patents

Vitre multicouche et garniture équipée de celle-ci Download PDF

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Publication number
WO2020045170A1
WO2020045170A1 PCT/JP2019/032472 JP2019032472W WO2020045170A1 WO 2020045170 A1 WO2020045170 A1 WO 2020045170A1 JP 2019032472 W JP2019032472 W JP 2019032472W WO 2020045170 A1 WO2020045170 A1 WO 2020045170A1
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WO
WIPO (PCT)
Prior art keywords
glass
frame
outdoor
slide panel
indoor
Prior art date
Application number
PCT/JP2019/032472
Other languages
English (en)
Japanese (ja)
Inventor
幸嗣 山田
光太郎 安部
満 小浦場
聖 師岡
裕樹 有馬
Original Assignee
株式会社Lixil
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from JP2018163829A external-priority patent/JP7073231B2/ja
Priority claimed from JP2018163832A external-priority patent/JP7126409B2/ja
Priority claimed from JP2018163831A external-priority patent/JP7039425B2/ja
Priority claimed from JP2018163830A external-priority patent/JP7195820B2/ja
Application filed by 株式会社Lixil filed Critical 株式会社Lixil
Priority to EP19855302.6A priority Critical patent/EP3845735A4/fr
Publication of WO2020045170A1 publication Critical patent/WO2020045170A1/fr

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Classifications

    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together
    • E06B3/6617Units comprising two or more parallel glass or like panes permanently secured together one of the panes being larger than another
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/02Wings made completely of glass
    • E06B3/025Wings made completely of glass consisting of multiple glazing units
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/32Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing
    • E06B3/34Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing with only one kind of movement
    • E06B3/42Sliding wings; Details of frames with respect to guiding
    • E06B3/46Horizontally-sliding wings
    • E06B3/4609Horizontally-sliding wings for windows
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/32Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing
    • E06B3/34Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing with only one kind of movement
    • E06B3/42Sliding wings; Details of frames with respect to guiding
    • E06B3/46Horizontally-sliding wings
    • E06B3/4681Horizontally-sliding wings made of glass panes without frames
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/32Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing
    • E06B3/50Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing with more than one kind of movement
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/32Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing
    • E06B3/50Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing with more than one kind of movement
    • E06B3/5054Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing with more than one kind of movement where the sliding and rotating movements are independent of each other
    • E06B3/5081Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing with more than one kind of movement where the sliding and rotating movements are independent of each other at least two wings have a different kind of movement
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/06Suspension arrangements for wings for wings sliding horizontally more or less in their own plane
    • E05D15/10Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane
    • E05D15/1042Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane with transversely moving carriage
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/56Suspension arrangements for wings with successive different movements
    • E05D15/565Suspension arrangements for wings with successive different movements for raising wings before sliding
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Type of wing
    • E05Y2900/132Doors
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/16Sealing arrangements on wings or parts co-operating with the wings
    • E06B7/22Sealing arrangements on wings or parts co-operating with the wings by means of elastic edgings, e.g. elastic rubber tubes; by means of resilient edgings, e.g. felt or plush strips, resilient metal strips
    • E06B7/23Plastic, sponge rubber, or like strips or tubes
    • E06B7/2301Plastic, sponge rubber, or like strips or tubes without an integrally formed part for fixing the edging

Definitions

  • the present invention relates to a double glazing and a fitting provided with the same.
  • Patent Document 3 a fitting including a sash frame, a door portion that can be opened and closed in the sash frame, and an elevating device that is arranged in a lower frame is conventionally known (for example, see Patent Document 4).
  • the lifting device described in Patent Literature 4 is configured to open and close the gap between the door unit and the ground by moving the block unit up and down.
  • the double-glazed glass when a plurality of double-glazed glasses are arranged side by side, the double-glazed glass may be tilted depending on the construction, and a gap is formed between adjacent double-glazed glasses to communicate indoors and outdoors, resulting in light leakage. could occur. In addition, there is a possibility that watertightness and airtightness cannot be ensured between adjacent double-glazed glass due to a gap communicating between the inside and outside of the room.
  • the continuous window described in Patent Document 2 has a structure in which the glass panel is formed of a FIX panel and is arranged in a straight line in the direction in which it is found, so that it cannot be opened and closed. However, even when the glass panel is a FIX panel, there are cases where it is desired to open and close the glass panel.
  • a fixture including a plurality of FIX panels can be opened and closed while ensuring the viewability.
  • the shoji is moved in the indoor and outdoor directions in the frame. Even when the shoji is moved in the indoor / outdoor direction inside the frame, it is required that the groove portion of the frame after the shoji move is covered with a cover member.
  • the elevating device described in Patent Document 4 since the drive shaft is driven in a vertical direction perpendicular to the longitudinal direction of the lower frame, the vertical dimension of the lower frame tends to be large. For this reason, a compact sash frame is required for a sash frame including a lifting device.
  • an object of the present invention is to provide a double glazing and a fitting that are configured so that there is no gap communicating between the indoor and the outside. Secondly, an object of the present invention is to provide a fitting having a shoji that can be opened and closed while maintaining a view. Thirdly, an object of the present invention is to provide a fitting capable of closing a groove portion of a frame after the shoji is moved with a cover member when the shoji is moved in the indoor and outdoor directions. Fourth, an object of the present invention is to provide a compact sash frame including a lifting device.
  • the present invention provides a first glass (for example, an outdoor glass panel 311 and an indoor glass panel 323 to be described later) and a second glass (for example, an indoor glass panel 313 and an outdoor glass panel 321 to be described later). And a reinforcing glass (for example, reinforcing materials 316 and 325 to be described later) disposed between the first glass and the second glass (for example, a multilayer glass 310 and 320 to be described later). ), At least at one end of the multilayer glass, one end of the second glass is closer to the glass surface of the second glass than to the end surfaces of the first glass (for example, end surfaces 311a and 323a described later).
  • the multilayer glass has a convex portion protruding outward in the surface direction (for example, extending portions 313b and 321b described later), and the multilayer glass has at least a glass surface on the indoor side or a glass surface on the outdoor side of the convex portion. Shielding portion in a portion (e.g., below the stepped protruding shielding portion 316a, 325a) about the multi-layer glass is provided.
  • a sealing material for example, an airtight material 318 or 328 described later
  • a sealing material for example, an airtight material 318 or 328 described later
  • the reinforcing member includes a reinforcing portion (reinforcing portions 316c and 325c) disposed between the first glass and the second glass, and the convex portion of the second glass more than an end surface of the first glass. And the shielding portion protruding along the convex portion outside of the protruding direction.
  • the shielding portion of the reinforcing member is disposed over the entire length of the projection in the direction in which the projection of the second glass projects.
  • the reinforcing material is a flat surface (for example, step flat portions 316b and 325b described later) disposed between the shielding portion of the reinforcing material and the first glass and on the same plane as an end surface of the first glass. It is preferable to have
  • the present invention provides a frame (for example, frames 10 and 10A described later) provided at an opening of a building and a shoji (for example, a first finding direction slide described later) arranged in the frame inside.
  • Is a double-layer glass comprising a first glass, a second glass, and a reinforcing member disposed between the first glass and the second glass. At least one end of the layered glass, the one end of the second glass is formed of a double-layered glass having a convex portion projecting outward in the surface direction of the glass surface of the second glass from the end surface of the first glass.
  • the adjacent double glazing At least one is provided with a shielding portion at least at a portion corresponding to the indoor glass surface or the outdoor glass surface of the projection, and the adjacent one of the adjacent shoji and the other shoji are provided.
  • the abutting portion (for example, abutting portion 42 described later)
  • the convex portion of the second glass of the double-glazed glass of the one-sided shoji is arranged on one of the indoor side and the outdoor side
  • the convex portion of the second glass of the double-glazed glass of the other side of the shoji is disposed on the other of the indoor side and the outdoor side
  • the indoor facing surface of the adjacent double-glazed glass is on the same plane.
  • a fitting in which the adjacent exterior surface of the double glazing is arranged on the same plane.
  • a sealant disposed on an outer side surface of the multilayer glass at one end of the multilayer glass on the side where the convex portion is provided.
  • the reinforcing member may include a reinforcing portion disposed between the first glass and the second glass, and the reinforcing member may be disposed outside an end surface of the first glass in a projecting direction of the convex portion of the second glass. And the shielding part protruding along the convex part.
  • the shielding portion of the reinforcing member is disposed over the entire length of the projection in the direction in which the projection of the second glass projects.
  • the reinforcing member has a flat surface disposed on the same plane as an end surface of the first glass between the shielding portion of the reinforcing member and the first glass.
  • the shielding portion is provided on both of the adjacent double-glazed glass, in the abutting portion between the adjacent one of the plurality of shoji and the other side of the shoji, the one side of the abutment It is preferable that the shielding portion of the reinforcing member and the shielding portion of the reinforcing member on the other side are arranged so as to overlap with each other.
  • the present invention provides a frame (for example, a frame 10 described later) provided in an opening of a building and a first shoji (for example, a prospective direction slide panel body 20 described later) disposed in the frame. And a second sash (for example, a finding direction slide panel body 30 to be described later), and wherein the first sash and the second sash are the first sash. And the closed position where the second sash is arranged in a straight line in the finding direction, and the open position where the first sash and the second sash are overlapped when viewed in the indoor and outdoor directions.
  • the first shoji is configured to be movable, and relates to a fitting configured to be movable only inside and outside the room in the frame.
  • the second sash is configured to be movable only in the finding direction in the frame.
  • an indoor / outdoor direction moving mechanism (for example, a prospective direction moving mechanism 5 to be described later) that moves the first shoji in the indoor / outdoor direction is connected to an outer peripheral side edge of the first shoji. .
  • the first and second sashes are configured to be movable from a closed position to an open position.
  • a first airtight material for example, airtight materials 116b, 125b, and 133b described below
  • a second hermetic material for example, hermetic materials 116b, 125b, and 133b described later
  • the present invention relates to a frame (for example, a frame 10 to be described later) provided in an opening of a building, and a shoji (for example, a sliding panel 20 for a prospective direction described later) disposed in the frame.
  • a first door body 200 having a directional moving door wheel 203) (for example, a sliding window 1 described later), wherein the frame body is an outdoor piece (for example, an outdoor piece facing an outdoor surface of the sash).
  • An upper frame room outside extension portion 112, a lower frame room outside extension portion 122, and a room side piece for example, an upper frame room inside extension portion 114, a lower frame described below facing the indoor side surface of the shoji.
  • An indoor side extending portion 124) and a bottom piece (for example, a lower piece 111t and an upper piece 121t described below) that are continuous from the end of the outdoor piece to the end of the indoor piece, and ,
  • the shoji and the outdoor piece (For example, an upper frame gap S1 and a lower frame gap S2 to be described later) or a cover member that covers a gap formed between the sash (shoji) and the indoor side piece (for example, an upper frame chamber outer opening and closing described later).
  • the present invention relates to a fitting provided with a cover 118 and a lower frame room outside opening / closing cover 128).
  • a rotating member for example, a lower opening / closing rotating member 711 and an upper opening / closing rotating member 721 described later
  • a rotating member that rotatably supports the cover member inside the frame body
  • a lock portion that can be changed between a locked state that restricts the movement of the cover member and an unlocked state that releases the locked state of the cover member (for example, a regulating rod portion 713b, a regulating rod portion 723b, Preferably, a motor 52) is further provided.
  • the sash is moved in the indoor and outdoor directions in the frame by driving a driving unit (for example, a motor 52 described later).
  • a driving unit for example, a motor 52 described later.
  • the present invention relates to a sash frame including a frame (for example, a frame 10 described later) provided at an opening of a building, wherein the frame is a sash for closing the opening (described later). It has a groove (a groove M and a concave portion K described later) capable of accommodating the projection direction slide panel body 20 and the finding direction slide panel body 30, is disposed in the frame, and has a lid member (for example, a lift lid member described later).
  • a sash frame including a frame (for example, a frame 10 described later) provided at an opening of a building, wherein the frame is a sash for closing the opening (described later). It has a groove (a groove M and a concave portion K described later) capable of accommodating the projection direction slide panel body 20 and the finding direction slide panel body 30, is disposed in the frame, and has a lid member (for example, a lift lid member described later).
  • an elevating device e.g., a later-described central portion side lid elevating mechanism 8 capable of ascending and descending within the groove portion of the frame body, wherein the lid member is raised to the same plane as the upper end portion of the groove portion,
  • the lifting device can cover the groove, and the lifting device includes a lifting drive unit (for example, a motor 82 described later) having a drive shaft (for example, a rotation shaft 83 described later), and the rotation driving force of the drive shaft is reduced. It is possible to raise and lower the lid member through Drive shaft extends along the longitudinal direction of the frame, to the sash frame.
  • the lifting device includes a cross arm (for example, a cross arm 86 described later) configured by a pair of arms (for example, an arm 861 described later) intersecting and capable of extending and retracting in the lifting direction of the lid member. Is preferred.
  • a cross arm for example, a cross arm 86 described later
  • a pair of arms for example, an arm 861 described later
  • the drive shaft is configured by a screw mechanism connected to a longitudinal end of the frame in the cross arm and driven to rotate the lid member up and down.
  • the frame body is provided with a rib (for example, a frame-side rising and bending piece 121a to be described later) formed to protrude from the frame body to the inside of the frame body and to attach the elevating device to the frame body. Is preferred.
  • a rib for example, a frame-side rising and bending piece 121a to be described later
  • the present invention it is possible to provide a double glazing and a fitting configured such that there is no gap communicating between the inside and outside of the room. Secondly, according to the present invention, it is possible to provide a fitting having an openable / closable shoji while maintaining the view. Thirdly, according to the present invention, it is possible to provide a fitting capable of closing a groove portion of a frame after the shoji is moved with a cover member when the shoji is moved in the indoor and outdoor directions. Fourth, according to the present invention, it is possible to provide a compact sash frame including a lifting device.
  • FIG. 2 is a cross-sectional view taken along the line AA of FIG. 1 and is a cross-sectional view showing a state where the sliding window of the first embodiment is located at a closed position.
  • FIG. 3 is a cross-sectional view illustrating a state in which a sliding panel body in a viewing direction has moved from the closed position illustrated in FIG. 2 to an outdoor side and a sliding window is located at an intermediate position.
  • FIG. 4 is a longitudinal sectional view showing a state in which a sliding panel body in a finding direction has moved outward in a left-right direction from a middle position shown in FIG.
  • FIG. 3 is a partially enlarged view of a left portion of the sliding window in FIG. 2.
  • FIG. 3 is a partially enlarged view of a right side portion of a sliding window in FIG. 2.
  • FIG. 2 is a sectional view taken along line BB of FIG. 1.
  • FIG. 2 is a sectional view taken along line CC of FIG. 1.
  • FIG. 2 is a sectional view taken along line DD of FIG. 1.
  • FIG. 10 is a diagram showing a state in which the lifting lid member has risen from the state shown in FIG. 9.
  • FIG. 9 is a perspective view showing a prospective direction moving mechanism and a finding direction moving mechanism arranged on an upper frame.
  • FIG. 7 is a perspective view showing a center-side lid elevating mechanism, showing a state where it is located at a lowered position.
  • FIG. 9 is a perspective view showing a center-side lid elevating mechanism, showing a state where it is positioned at an ascending position.
  • FIG. 21 is an exploded perspective view of FIG. 20.
  • FIG. 21 is an exploded perspective view of FIG. 20.
  • FIG. 14 is a perspective view showing a state in which an end-side lid elevating mechanism and an estimation direction moving mechanism are arranged on a lower frame in a third embodiment.
  • FIG. 21 is a diagram illustrating a state in which the elevating lid member is lowered from the state illustrated in FIG. 20.
  • FIG. 24B is a diagram illustrating a state in which the prospective direction slide unit has moved to the outdoor side from the state illustrated in FIG. 23A. It is a cross-sectional view showing a continuous window using a FIX panel according to a fourth embodiment of the present invention. It is a cross-sectional view showing a continuous window using a FIX panel according to a fifth embodiment of the present invention.
  • FIG. 19 is a cross-sectional view corresponding to the cross-sectional view taken along the line AA of FIG. 1 and showing a state where the sliding window of the eighth embodiment is located at a closed position.
  • FIG. 29 is a transverse cross-sectional view showing a state in which the sliding panel body in the viewing direction has moved from the closed position shown in FIG. 28 to the outdoor side and the sliding window has been positioned at an intermediate position.
  • FIG. 30 is a longitudinal sectional view showing a state in which the sliding panel body in the finding direction has moved outward in the left-right direction from the intermediate position shown in FIG. 29 and the sliding window has been located at the closed position.
  • FIG. 2 is a diagram corresponding to a cross-sectional view taken along line BB of FIG. 1.
  • FIG. 2 is a diagram corresponding to a cross-sectional view taken along line CC of FIG. 1.
  • FIG. 2 is a diagram corresponding to a cross-sectional view taken along line DD of FIG. 1.
  • FIG. 1 is a front view showing a state where the sliding window 1 according to the first embodiment of the present invention is located at a closed position.
  • FIG. 2 is a cross-sectional view taken along line AA of FIG. 1, and is a cross-sectional view showing a state where the sliding window 1 of the first embodiment is located at a closed position.
  • FIG. 3 is a cross-sectional view showing a state in which the sliding panel body 20 moves outward from the closed position shown in FIG. 2 and the sliding window 1 is located at an intermediate position.
  • FIG. 1 is a front view showing a state where the sliding window 1 according to the first embodiment of the present invention is located at a closed position.
  • FIG. 2 is a cross-sectional view taken along line AA of FIG. 1, and is a cross-sectional view showing a state where the sliding window 1 of the first embodiment is located at a closed position.
  • FIG. 3 is a cross-sectional view showing a state in which the sliding panel body 20 moves outward from the closed position shown
  • FIG. 4 is a longitudinal sectional view showing a state in which the sliding panel 1 moves to the outside in the left-right direction X from the middle position shown in FIG. 3 and the sliding window 1 is at the closed position.
  • FIG. 5 is a partially enlarged view of the left portion of the sliding window 1 in FIG.
  • FIG. 6 is a partially enlarged view of the right portion of the sliding window 1 in FIG.
  • the “found direction” means an in-plane direction of a shoji that is housed in a frame of a fitting placed in an opening formed in a building
  • the “look-in direction” refers to an indoor direction. It means the outward direction (that is, the depth direction).
  • the left and right direction in FIG. The left side (one side) of FIG. 1 in the left-right direction X is referred to as X1 side, and the right side (the other side) of FIG.
  • the projection direction in FIG. 2 is referred to as a projection direction Y
  • the back side in the projection direction Y is referred to as an outdoor side
  • the near side is referred to as an indoor side.
  • the sliding window 1 of the first embodiment includes a frame 10 provided in an opening of a building, a pair of first doors 200, and a pair of second doors 300. It is provided with a prospective direction moving mechanism 5 (indoor / outdoor direction moving mechanism), a finding direction moving mechanism 6, an end side lid opening / closing mechanism 7, and a central side lid elevating mechanism 8 (elevating device).
  • a configuration including the frame body 10 in the sliding window 1 without including the pair of projection direction slide panel bodies 20 and the pair of discovery direction slide panel bodies 30 is referred to as a sash frame.
  • the first door body 200 is movable in the estimation direction Y, and includes a projection direction slide panel body 20 (first shoji), an estimation direction moving door wheel 203 (described later), an upper frame room outside opening / closing lid 118 (a cover member). ) (See FIGS. 7 and 8), and a lower frame outdoor opening / closing lid 128 (cover member) (see FIGS. 7 and 8).
  • the second door body 300 is movable in the left-right direction X in the finding direction, and includes a finding direction slide panel body 30 (second shoji) and a finding direction moving door wheel 303 (described later). You.
  • the prospective direction slide panel body 20 and the find direction slide panel body 30 are arranged to close the opening.
  • the frame body 10 has an upper frame 11, a lower frame 12, and a pair of vertical frames 13, 13, which are framed in a square shape.
  • the upper frame 11, the lower frame 12, and the pair of vertical frames 13, 13 are formed by, for example, extruding aluminum.
  • a pair of prospective direction slide panel bodies 20 and a pair of prospective direction slide panel bodies 30 are arranged.
  • the sliding window 1 of the first embodiment is capable of moving a pair of prospective direction slide panel bodies 20 and a pair of find direction slide panel bodies 30 within the frame body 10. It can be moved to a closed position (FIGS. 1 and 2), an intermediate position (FIG. 3), and an open position (FIG. 4).
  • the pair of projection direction slide panel bodies 20 are disposed at both ends in the left-right direction X in the frame body 10 and can be moved in the projection direction Y by the projection direction moving mechanism 5 (see FIG. 1). It is composed of In the closed position, the pair of finding direction slide panel bodies 30 are disposed on the center side in the left-right direction in the frame body 10, and are respectively moved by the finding direction moving mechanism 6 (see FIG. 1) in the left-right direction in the finding direction. It is configured to be movable to X.
  • the prediction direction slide panel body 20 can be moved only in the prediction direction Y within the frame 10. Thereby, after moving the prospective direction slide panel body 20 only in the prospective direction Y in the frame 10, the find direction slide panel body 30 can be opened. Thereby, the sliding window 1 that can be opened and closed can be realized while maintaining the viewability. Further, the finding direction slide panel body 30 is movable in the frame body 10 only in the lateral direction X in the finding direction. Therefore, the sliding window 1 is moved by moving the finding direction slide panel body 20 only in the finding direction Y in the frame body 10 and then moving the finding direction slide panel body 30 only in the lateral direction X of the finding direction. It can be easily opened and closed.
  • the pair of prospective direction slide panel bodies 20 and the pair of prospective direction slide panel bodies 30 are placed inside the frame body 10. , Are arranged in a straight line in the left-right direction X of the finding direction. Further, by moving the pair of viewing direction slide panel bodies 20 to the outside of the frame 10 from the closed position shown in FIG. 2 in the viewing direction Y, as shown in FIG. At both ends in the direction X, a pair of prospective direction slide panel bodies 20 are arranged at intermediate positions where they have moved to the outdoor side. In addition, by moving the pair of finding direction slide panel bodies 30 to the outside in the left-right direction X from the middle position shown in FIG. 3 in the frame body 10, as shown in FIG.
  • the panel body 30 is disposed at an open position where the panel body 30 has moved outward in the left-right direction X.
  • the pair of viewing direction slide panel bodies 20 and the pair of finding direction slide panel bodies 30 are arranged in the frame 10 in an overlapping manner when viewed in the viewing direction Y. Is done.
  • the length of the frame body 10 in the left-right direction X is such a length that the pair of projection direction slide panel bodies 20 and the pair of finding direction slide panel bodies 30 can be arranged in the left-right direction X in a straight line. Is formed.
  • the length of the frame body 10 in the projection direction Y is formed in the frame body 10 such that the projection direction slide panel body 20 and the find direction slide panel body 30 can be arranged in two rows in the projection direction Y. Is done.
  • FIG. 7 is a sectional view taken along the line BB of FIG.
  • FIG. 8 is a sectional view taken along line CC of FIG.
  • FIG. 9 is a sectional view taken along line DD of FIG.
  • FIG. 10 is a view showing a state in which the elevating lid member 89 has risen from the state shown in FIG.
  • the upper frame 11 has an upper frame main body 111 having a hollow cross section, an upper frame outdoor extension 112 extending downward from the outdoor lower portion of the upper frame main body 111, An upper frame chamber outer lower projection 113 protruding from the lower end of the frame chamber outer extension section 112 to the inside in the viewing direction Y of the upper frame 11, and an upper frame chamber inner extension extending downward from a lower portion of the upper frame body 111 on the indoor side. It is detachable from the protrusion 114, the upper frame interior side lower projection 115 projecting from the lower end of the upper frame chamber outer lower projection 113 to the inside in the viewing direction Y of the upper frame 11, and the upper frame interior lower projection 115.
  • the upper frame main body 111 is formed to be long in the viewing direction Y.
  • an upper frame lower opening 117 that opens downward is formed in a lower portion of the upper frame 11.
  • the upper frame lower opening 117 is formed to have a width in the viewing direction Y, and extends over the entire area of the upper frame 11 in the left-right direction X.
  • the upper frame lower opening 117 is opened downward at a portion between the indoor end of the upper frame chamber outer lower projection 113 and the outdoor end of the upper frame chamber inner lower projection 115. I do.
  • the upper frame 11 has an upper frame outdoor extension 112 (outdoor piece) facing the outdoor surface of the projection direction slide panel body 20 and an indoor side surface of the projection direction slide panel body 20.
  • Upper frame indoor side extending portion 114 (indoor side piece), and a lower piece 111t of the upper frame main body 111 continuous from the end of the upper frame indoor side extending portion 112 to the end of the upper frame indoor side extending portion 114. (Bottom piece).
  • An upper frame gap S1 (gap) formed between the prospective-direction slide panel body 20 and the upper frame chamber outside extending portion 112 is formed on the outside of the room above the upper frame lower opening 117.
  • the upper end of the prospective direction slide panel body 20 is disposed at both ends in the left-right direction X of the sliding window 1 located at the closed position, and the center side of the sliding window 1 in the left-right direction X.
  • the upper end of the finding direction slide panel body 30 is disposed.
  • the projection direction slide panel body 20 is disposed at both ends in the left-right direction X of the sliding window 1 so as to be movable in the projection direction Y.
  • the finding direction slide panel body 30 is disposed so as to be movable in the left-right direction X of the sliding window 1.
  • the outdoor portion of the upper frame lower opening 117 is moved to the first position by moving the projection direction slide panel body 20 to the outdoor side.
  • the door 200 can be opened and closed by an upper frame outdoor opening / closing lid 118.
  • the upper frame room outside opening / closing lid portion 118 uses the movement of the projection direction slide panel body 20 in the projection direction Y when the projection direction slide panel body 20 moves in the projection direction Y in the upper frame 11, and Move to a closed position for closing the upper frame gap S1 of the groove portion of the upper frame lower opening 117 of the frame 11, and an open position for opening the upper frame gap S1 of the groove portion of the upper frame lower opening 117 of the upper frame 11. It is possible.
  • the outdoor portion of the upper frame lower opening 117 is closed by an upper frame outdoor fixing cover 119.
  • the upper frame room outside fixed lid portion 119 is configured not to open and close, and is fixed to the upper frame 11.
  • An upper frame indoor side cover portion 116 is disposed over the entire area of the sliding window 1 in the left-right direction X in the indoor side portion of the upper frame lower opening portion 117.
  • the upper frame indoor side cover portion 116 is formed to extend over the entire area of the sliding window 1 in the left-right direction X, and is detachably engaged with the upper frame indoor side lower projecting portion 115 so that the upper frame 11 has an upper surface.
  • the indoor portion of the frame lower opening 117 is covered from below.
  • the upper frame indoor side cover portion 116 is removed when attaching the prospective direction slide panel body 20 or the findable direction slide panel body 30, and after attaching the prospective direction slide panel body 20 or the find direction slide panel body 30. ,It is attached.
  • the upper frame indoor side cover portion 116 is configured to be detachable, and also functions as an inspection port cover which is detachably attached when inspecting the inside of the upper frame 11.
  • a fitting portion 116a is provided at the outside end of the upper frame indoor side cover portion 116.
  • An airtight material 116b (first airtight material, second airtight material) is attached to the fitting portion 116a.
  • the airtight material 116b attached to the fitting portion 116a is arranged between the upper frame 11 and the sliding panel body 20 in the viewing direction and between the upper frame 11 and the sliding panel body 30 in the finding direction.
  • the slide panel body 20 and the pair of finding direction slide panel bodies 30 are pressed against the upper surface of the indoor panel.
  • the airtight member 116b is a member having a hollow structure having a hollow portion and ensuring airtightness and watertightness between the upper frame 11 and the slide panel bodies 20 and 30. Since the hermetic member 116b has a hollow structure having a hollow portion, even when the prospective direction slide panel body 20 or the find direction slide panel body 30 moves, it is possible to reduce the curling of the hermetic member 116b.
  • the lower frame 12 includes a lower frame main body 121 having a hollow cross section, a lower frame outdoor extension portion 122 extending upward from an outdoor upper portion of the lower frame main body 121, A lower frame chamber outer upper projection 123 protruding from the upper end of the frame chamber outer extension section 122 to the inside in the viewing direction Y of the lower frame 12, and a lower frame chamber inner extension extending upward from the room upper portion of the lower frame body 121.
  • a lower frame chamber outside upper protruding section 125 protruding from the upper end of the lower frame chamber inside extension section 124 to the inside of the lower frame 12 in the viewing direction Y, and a lower frame chamber outer fixed lid 129 (FIG. 9). See).
  • the lower frame main body 121 is formed to be long in the projection direction Y.
  • a lower frame upper opening 127 that opens upward is formed in the upper part of the lower frame 12, as shown in FIGS.
  • the lower frame upper opening 127 is formed to have a width in the viewing direction Y, and extends over the entire area of the lower frame 12 in the left-right direction X.
  • the lower frame upper opening 127 is opened upward at a portion between the indoor end of the lower frame outer upper protrusion 123 and the outdoor end of the lower frame outer upper protrusion 125. I do.
  • the lower frame 12 has a lower frame outdoor extension portion 122 (outdoor piece) facing the outdoor surface of the projection direction slide panel body 20 and an indoor side surface of the prediction direction slide panel body 20.
  • Lower frame indoor side extending portion 124 (indoor side piece), and an upper piece 121t of the lower frame main body 121 which is continuous from an end of the lower frame indoor side extending portion 122 to an end of the lower frame indoor side extending portion 124. (Bottom piece).
  • a lower frame gap S2 (gap) formed between the prospective slide panel body 20 and the lower frame outdoor extension portion 122 is formed below the lower frame upper opening 127 on the outdoor side.
  • the lower ends of the prospective direction slide panel body 20 are arranged at both ends in the left-right direction X of the sliding window 1 located at the closed position, and the center side of the sliding window 1 in the left-right direction X.
  • the lower end portion of the finding direction slide panel body 30 is disposed.
  • the projection direction slide panel body 20 is disposed at both ends in the left-right direction X of the sliding window 1 so as to be movable in the projection direction Y.
  • the finding direction slide panel body 30 is disposed so as to be movable in the left-right direction X of the sliding window 1.
  • the outside portion of the lower frame upper opening 127 is moved to the outside by moving the finding direction slide panel body 30 to the outside.
  • the single door 200 can be opened and closed by a lower frame outside opening / closing lid 128.
  • the lower frame chamber outside opening / closing lid 128 is configured to use the movement of the projection direction slide panel body 20 in the projection direction Y when the projection direction slide panel body 20 moves in the projection direction Y
  • the closed position closes the lower frame gap S2 of the groove portion of the lower frame upper opening 127 of the frame 12, and the open position moves the lower frame gap S2 of the groove portion of the lower frame upper opening 127 of the lower frame 12 open. It is possible.
  • the door-mounted frame 120 is disposed on the upper surface of the lower frame body 121 inside the lower frame 12.
  • the first lower movable supporter 201 supporting the lower end portions of the prospective slide panels 21 and 22, as shown in FIG. 203 (to be described later) is movably mounted in the viewing direction Y and, when positioned at the open position, the second lower moving support 301 that supports the lower ends of the pair of finding direction slide panel bodies 31 and 32.
  • An attached direction movable door wheel 303 (described later) is mounted so as to be movable in the left-right direction X.
  • the outdoor portion of the lower frame upper opening 127 is closed by a lower frame outdoor fixing cover 129.
  • the lower frame chamber outside fixed lid portion 129 is configured not to open and close, and is fixed to the lower frame 12.
  • the lower frame outside fixing lid 129 includes a lid main body plate 129 a extending in the horizontal direction, and a downward projecting piece protruding downward from the indoor end of the lid main body plate 129 a. 129b, and a lower extension plate 129c that extends below the lower protruding piece 129b on the outdoor side of the lower protruding piece 129b.
  • a position regulating piece 129d (described later) is attached to a surface on the indoor side of the lower extension plate 129c.
  • a fitting part 125a is provided at an end on the outdoor side of the lower frame outdoor upper part 125.
  • An airtight material 125b (first airtight material, second airtight material) is attached to the fitting portion 125a.
  • the airtight material 125b attached to the fitting portion 125a is disposed between the lower frame 12 and the sliding panel body 20 in the viewing direction and between the lower frame 12 and the sliding panel body 30 in the finding direction.
  • the panel body 20 and the pair of finding direction slide panel bodies 30 are pressed against the upper surface on the indoor side.
  • the hermetic member 125b is a member having a hollow structure having a hollow portion and ensuring airtightness and watertightness between the lower frame 12 and the slide panel bodies 20, 30.
  • the airtight material 125b is arranged above the first lower moving support 201 so as to press against a pair of prospective direction slide panel bodies 20 and a pair of findable direction slide panel bodies 30 on the indoor upper surface. With this configuration, the airtightness and the watertightness are ensured. Since the hermetic member 125b is formed in a hollow structure having a hollow portion, it is possible to reduce the curling of the hermetic member 125b when the center-side lid elevating mechanism 8 moves up and down.
  • each of the pair of vertical frames 13, 13 has a hollow frame-shaped vertical frame main body 131, and a vertical frame chamber extending inward in the left-right direction X from the indoor end of the vertical frame main body 131. It has an inner extending portion 132 and a vertical frame projection direction extending portion 133 that extends from the inner end of the vertical frame indoor side extension portion 132 in the left-right direction X to the outside in the projection direction Y.
  • the vertical frame body 131 is formed long in the projection direction Y.
  • a fitting portion 133a is provided at an end of the vertical frame extending portion 133 on the outdoor side.
  • An airtight material 133b (first airtight material, second airtight material) is attached to the fitting portion 133a.
  • the airtight material 132b attached to the fitting portion 133a is arranged between the vertical frame 13 and the sight-slide panel body 20 and between the vertical frame 13 and the siding-direction slide panel body 30. . Accordingly, when the pair of projection direction slide panel bodies 20 and the pair of projection direction slide panel bodies 30 are located outside the frame body 10 in the left-right direction X, the airtight material 132b becomes the pair of projection direction slide panel bodies.
  • the hermetic member 133b is a member having a hollow structure having a hollow portion and ensuring airtightness and watertightness between the vertical frame 13 and the slide panel bodies 20 and 30. Since the hermetic member 133b has a hollow structure having a hollow portion, even when the prospective-direction slide panel body 20 or the pair of find-out direction slide panel bodies 30 moves, it is possible to reduce the curling of the hermetic member 133b.
  • the pair of viewing direction slide panel bodies 20 and the pair of finding direction slide panel bodies 30 are arranged in the frame body 10 and, when located in the closed position, as shown in FIG. Are arranged in a straight line in the left-right direction X. Specifically, when located in the closed position, the pair of projection direction slide panel bodies 20 are disposed at both ends in the left-right direction X within the frame body 10, and the pair of projection direction slide panel bodies 30 are The pair of projection direction slide panel bodies 20 are arranged in a straight line in the left-right direction X.
  • the body 22 is arranged in a straight line.
  • the projection direction slide panel body 21 and the discovery direction slide panel body 31 are abutted by the abutting portion 41.
  • the locating direction slide panel body 31 and the locating direction slide panel body 32 are abutted on the abutting portion 42.
  • the find direction slide panel body 32 and the look direction slide panel body 22 are abutted by the abutting portion 43.
  • the outdoor glass panels 211, 221, 311 of the outdoor side are located on the adjacent slide panel bodies 20, 30. , 321 (described later) are arranged on the same plane, and the indoor-facing surfaces of the indoor-side glass panels 213, 223, 313, 323 (described later) are arranged on the same plane. Is done.
  • each of the pair of projection direction slide panel bodies 20 is moved to the middle position shown in FIG. 3 by moving the pair of projection direction slide panel bodies 20 to the outside of the room in the projection direction Y by the projection direction moving mechanism 5, and from the middle position shown in FIG.
  • the finding direction slide panel bodies 30 By moving each of the finding direction slide panel bodies 30 to the outside in the left-right direction X of the finding direction by the finding direction moving mechanism 16, they can be moved to the open position shown in FIG. 4.
  • each of the pair of sliding panels 30 in the finding direction is moved from the open position shown in FIG.
  • the finding direction moving mechanism 6 By moving it inward in the left-right direction X of the finding direction by the finding direction moving mechanism 6, it is moved to the middle position shown in FIG. 3, and from the middle position shown in FIG.
  • the indoor side in the estimation direction Y by the estimation direction moving mechanism 15 By moving to the indoor side in the estimation direction Y by the estimation direction moving mechanism 15, it can be moved to the open position shown in FIG.
  • each of the pair of projection direction slide panel bodies 21 and 22 and the pair of discovery direction slide panel bodies 31 and 32 has three glass panels (outdoor glass panels 211 and 221, respectively). 311, 321, intermediate glass panels 212, 222, 312, 322, and indoor glass panels 213, 223, 313, 323).
  • the outdoor glass panels 211, 221, 311, 321, the intermediate glass panels 212, 222, 312, 322, and the indoor glass panels 213, 223, 313, 323 are arranged side by side in the prospective direction, and each has an air layer. In the state of being stacked with the layers interposed therebetween, they are arranged in this order from the outdoor side to the indoor side.
  • the outdoor glass panels 211, 221, 311, and 321 are the glass panels that are arranged most outdoor in the multilayer glass 210, 220, 310, and 320.
  • the indoor glass panels 213, 223, 313, and 323 are glass panels that are arranged closest to the indoor side in the multilayer glass 210, 220, 310, and 320.
  • the double-glazing units 210, 220, 310, and 320 have a pair of inter-glass-panel spacers 214, 224, and 314 on the outer sides on both sides in the left-right direction X of the finding direction. , 324 and reinforcing members 215, 216, 225, 226, 315, 316, 325, 326.
  • the pair of projection direction slide panel bodies 21 and 22 and the pair of projection direction slide panel bodies 31 and 32 are made of an airtight material 217, 227, 317, 318, 327, 328 (sealing material) and a cushioning material 219, 229. , 319a, 319b, 329a, and 329b.
  • the reinforcing members 215, 216, 225, 226, 315, 316, 325, and 326 are the outdoor glass panels 211, 221, 311, 321 and the indoor glass panels 213, 223, respectively. , 313, 323 at the ends in the left-right direction X.
  • the reinforcing members 215, 216, 225, 226, 315, 316, 325, and 326 are disposed between the outdoor glass panels 211, 221, 311, 321 and the indoor glass panels 213, 223, 313, 323 in the viewing direction. Is done.
  • the reinforcing members 215, 216, 225, 226, 315, 316, 325, 326 are fixed to, for example, the outdoor glass panels 211, 221, 311, 321 and the indoor glass panels 213, 223, 313, 323 with an adhesive. May be.
  • the reinforcing members 215 and 225 disposed in portions other than the abutting portions 41, 42, and 43 are formed in a flat plate shape extending in the expected direction. Is done.
  • the reinforcing members 216, 226, 315, 316, 325, and 326 are arranged in the left-right direction X. Is formed in a stepped shape on the outside prospective surface. The details of the reinforcing members 216, 226, 315, 316, 325, and 326 disposed on the abutting portions 41, 42, and 43 will be described later.
  • the spacers 214, 224, 314, and 324 between the glass panels are provided on the reinforcing members 215 on the end portions in the left-right direction X of the pair of projection-direction slide panel bodies 21 and 22 and the pair of discovery-direction slide panel bodies 31 and 32, respectively.
  • 216, 225, 226, 315, 316, 325, and 326 are disposed inside the left-right direction X.
  • the inter-glass panel spacers 214, 224, 314, and 324 are, in the viewing direction, glass panels (outdoor glass panels 211, 221, 311, 321, intermediate glass panels 212, 222, 312, 322, and indoor glass panels 213, respectively). , 223, 313, 323).
  • the pair of projection direction slide panel bodies 21 and 22 and the pair of discovery direction slide panel bodies 31 and 32 are provided at the upper end and the lower end, respectively, between the pair of glass panels. It has spacers 231 and 331 and reinforcing members 232, 233, 332 and 333.
  • the pair of projection direction slide panel bodies 21 and 22 are supported by the first lower moving support 201 at the lower end, and are supported by the first upper support 206 at the upper end.
  • the pair of finding direction slide panel bodies 31 and 32 are supported at the lower end by the second lower moving support 301, and at the upper end by the second upper support 306.
  • the reinforcing members 232 and 233 are provided at the upper end or lower end of the pair of projection direction slide panel bodies 21 and 22 and the pair of detection direction slide panel bodies 31 and 32, respectively, at the outdoor glass panels 211, 221, 311 and 321. It is arrange
  • the reinforcing members 232, 233, 332, and 333 are not formed in a step shape, but are formed in a flat plate shape extending in the expected direction.
  • the spacers 231 and 331 between the pair of glass panels are located on the upper and lower ends of the pair of projection direction slide panel bodies 21 and 22 and the pair of discovery direction slide panel bodies 31 and 32, respectively, than the reinforcing members 232 and 233. On the inside, it is located between the glass panels.
  • the end surfaces of the upper end of the outdoor glass panels 211, 221, 311, 321 and the indoor side are located on the same plane, and the positions of the planes are not shifted.
  • the end surfaces of the lower end portions of the outdoor glass panels 211, 221, 311 and 321 and the end surfaces of the lower end portions of the indoor glass panels 213, 223, 313 and 323 are located on the same plane, and the positions of the surfaces are shifted. Not.
  • the reinforcing members 232, 233, 332, and 333 disposed at the upper end and the lower end of the double-glazed glass 210, 220, 310, and 320 are not formed in a stepped shape, but are formed in a flat plate shape extending in the viewing direction. Is done.
  • the outdoor portion of the reinforcement member 216 of the projection direction slide panel body 21 is disposed so as to protrude toward the X2 side, and the indoor portion of the reinforcement member 315 of the discovery direction slide panel body 31 is disposed.
  • the outdoor portion of the reinforcing member 216 and the indoor portion of the reinforcing member 315 are arranged so as to overlap when viewed in the viewing direction Y.
  • a reinforcing member disposed at an end of the projection-direction slide panel body 22.
  • the indoor portion of the reinforcement member 226 is disposed so as to protrude toward the X1 side, and the indoor portion of the reinforcing member 326 disposed at the end of the slide panel body 32 in the finding direction is protruded toward the X2 side.
  • the outdoor portion of the reinforcement member 226 of the projection direction slide panel body 22 is disposed so as to protrude toward the X1 side, and the indoor portion of the reinforcement member 326 of the discovery direction slide panel body 32 is disposed.
  • the outdoor portion of the reinforcing member 226 and the indoor portion of the reinforcing member 326 are disposed so as to overlap when viewed in the viewing direction Y.
  • the exterior-side portion of the reinforcement member 226 of the prospective-direction slide panel body 22 is replaced by the reinforcing member 326 of the find-direction slide panel body 31. It is pressed against the indoor part.
  • the indoor side portion of the reinforcing member 316 of one finding direction slide panel body 31 is on the X2 side.
  • the outdoor portion of the reinforcing member 325 of the other sliding panel body 32 in the finding direction is arranged so as to protrude toward the X1 side.
  • the indoor portion of the reinforcing member 316 and the outdoor portion of the reinforcing member 325 are arranged so as to overlap when viewed in the projection direction Y.
  • the reinforcing material 316 of the finding direction slide panel body 31 and the reinforcing material of the finding direction slide panel body 32 are provided. 325 are combined.
  • the finding direction slide panel bodies 31 and 32 move inward in the left-right direction X of the finding direction
  • the finding direction slide panel bodies 31 and 32 can move only in the left-right direction X. It cannot be pressed in the prospective direction Y. Therefore, in the present embodiment, as described above, as shown in FIGS. 1, 9 and 10, the position regulating piece 129d is attached to the indoor side surface of the lower extension plate 129c of the lower frame 12. I have.
  • the position regulating piece 129 d is disposed on the lower frame 12 near the end of the sliding panel bodies 31 and 32 on the side of the abutting portion 42 in the finding direction.
  • the position regulating piece 129d moves the pair of finding direction slide panel bodies 30 from the outside in the left-right direction X of the finding direction to the inside.
  • the abutting portion 42 abuts on the outdoor surface of the finding direction moving door wheel 303 (described later), thereby restricting the movement of the finding direction moving door wheel 303 (described later) in the estimation direction Y on the outdoor surface.
  • the pair of slide panels 30 in the finding direction can be moved toward the indoor side.
  • the abutting portions 42 (the first finding direction slide panel body 31 and the second The structure of the abutting portion (abutting portion with which the attaching direction sliding panel body 32 abuts) will be described.
  • the description of the structure of the butting portion 42 can be referred to for the description of the butting portions 41 and 43.
  • the structure of the butting portion 41 is different from that of the butting portion 42 only in that the structure of the butting portion 42 is reversed left and right. The description of the structure can be referred to.
  • the abutting portion 42 includes an end on the X2 side in the left-right direction X of the first finding direction slide panel body 31 and an X1 side in the left-right direction X of the second finding direction slide panel body 32. And the end of the butt.
  • the configuration of the end on the X2 side in the left-right direction X of the first finding direction slide panel body 31 will be described.
  • the position Xa1 of the X2 side end surface 311 a of the outdoor glass panel 311 (first glass) is The position Xa2 of the end surface 313a on the X2 side of the indoor glass panel 313 (second glass) is located on the X1 side in the left-right direction X.
  • one end on the side of the abutting portion 42 of the indoor glass panel 313 has the extension 313b (convex portion).
  • the extending portion 313b is a part of the indoor glass panel 313 formed in a planar shape, and protrudes outward from the end surface 311a of the outdoor glass panel 311 in the surface direction of the glass surface of the indoor glass panel 313. .
  • the end surface 311a of the outdoor glass panel 311 and the end surface 313a of the indoor glass panel 313 are arranged such that the position of the double glazing 310 in the left-right direction X is shifted.
  • the position Xa1 of the end surface 311a on the X2 side of the outdoor glass panel 311 and the position Xa2 of the end surface 313a on the X2 side of the indoor glass panel 313 are in the X direction more than the position Xa3 of the end surface 312a on the X2 side of the intermediate glass panel 312. Is located on the X2 side.
  • the reinforcing member 316 disposed on the side of the abutting portion 42 of the first panel panel 31 in the direction of the first finding is disposed between the outdoor glass panel 311 and the indoor glass panel 313 in the viewing direction.
  • the reinforcing member 316 is formed in a stepped shape in which a portion on the indoor side protrudes toward the X2 side on a prospective surface on the X2 side in the left-right direction X, and is provided between the outdoor glass panel 311 and the indoor glass panel 313.
  • the step-projecting shielding portion 316a is disposed in contact with the extending portion 313b of the indoor glass panel 313.
  • the step-projecting shielding portion 316a is arranged on the indoor glass panel 313 side along the extending portion 313b of the indoor glass panel 313.
  • a step flat portion 316b (flat portion) is formed on the reinforcement member 316 outside the step projecting shield portion 316a.
  • the projection surface of the step-projection shielding portion 316a and the projection surface of the flat portion 316b each extend in the projection direction in a planar manner, and the length of the projection surface of the step-flat shielding portion 316b in the projection direction is equal to that of the step projection shielding portion 316a. It is formed longer than the length of the projection surface in the projection direction.
  • the step-projecting shielding portion 316a is formed over the entire length of the extending portion 313b in the X direction in the projecting direction of the extending portion 313b of the indoor glass panel 313.
  • the expected surface of the step-projecting shielding portion 316a is disposed on the X2 side of the expected surface of the step-flat portion 316b.
  • the projection surface of the step-projecting shielding portion 316a is disposed at the same position Xa2 as the end surface 313a of the indoor glass panel 313, and the projection surface of the step flat portion 316b is formed of the outdoor glass panel 311. It is arranged at the same position Xa1 as the end face 311a.
  • the step-projecting shielding portion 316a projects outside the end surface 311a of the outdoor glass panel 311 in the direction in which the extending portion 313b of the indoor glass panel 313 projects, along the extending portion 313b of the indoor glass panel 313. .
  • the step flat part 316b is arranged between the step protrusion shielding part 316a and the outdoor glass panel 311 in the viewing direction.
  • the step flat part 316b is arranged on the same plane as the end face 311a of the outdoor glass panel 311.
  • the expected surface of the step-projecting shielding portion 316a and the expected surface of the step flat portion 316b are the same as that of the double-glazed glass 310.
  • a hermetic material 318 (seal material) is arranged on a portion of the projection surface of the step flat portion 316b on the side of the step projection shielding portion 316a in the projection direction.
  • the airtight material 318 is disposed on the outer side surface of the multilayer glass 310 at one end of the multilayer glass 310 on the side where the step-projecting shielding portion 316a is provided.
  • the hermetic material 318 is arranged on the prospective surface of the reinforcing member 316 closer to the outdoor glass panel 311 than the step-projecting shielding portion 316a.
  • the airtight material 318 is disposed between the first locating direction slide panel body 31 and the second locating direction slide panel body 32 at the butting portion 42.
  • the hermetic material 318 has an inclined protruding portion 318a that protrudes toward the X2 side in the left-right direction X from a portion of the projection surface of the step flat portion 316b on the side of the step projection shielding portion 316a in the projection direction.
  • the inclined protruding portion 318a is inclined and protrudes from the outdoor side toward the indoor side as going from the X1 side to the X2 side in the left-right direction X.
  • the inclined projection 318a of the airtight material 318 is used for a second finding described later when the first finding direction slide panel body 31 and the second finding direction slide panel body 32 abut on the abutting portion 42. It is pressed by the inclined protruding portion 328a of the airtight material 328 of the directional slide panel body 32.
  • a cushioning member 319b is arranged on the indoor side at the end on the X2 side in the left-right direction X of the first finding direction slide panel body 31.
  • the cushioning material 319 b extends in the viewing direction between the projected surface of the step-projecting shielding portion 316 a of the reinforcing member 316 and the end surface 313 a of the indoor glass panel 313, and extends between the projected surface of the step-projecting shielding portion 316 a of the reinforcing member 316. It is stuck over the end surface 313a of the indoor glass panel 313.
  • the cushioning material 319b becomes the first finding direction slide panel body 31 and the second one. 2 It is arranged between the slide panel body 32 in the direction of appearance.
  • the configuration of the end on the X1 side in the left-right direction X of the second finding direction slide panel body 32 will be described.
  • the position Xb1 of the end surface 323 a on the X1 side of the indoor glass panel 323 (first glass) is The position Xb2 of the end surface 321a on the X1 side of the outdoor glass panel 321 (second glass) is located on the X2 side in the left-right direction X.
  • the extending portion 321 b is a part of the outdoor glass panel 321 formed in a planar shape, and protrudes outward from the end surface 323 a of the indoor glass panel 323 in the surface direction of the glass surface of the outdoor glass panel 321. .
  • the end surface 321a of the outdoor glass panel 321 and the end surface 323a of the indoor glass panel 323 are arranged so that the position in the left-right direction X of the double-glazing 320 is shifted.
  • the position Xb2 of the end surface 321a on the X1 side of the outdoor glass panel 321 and the position Xb1 of the end surface 323a on the X1 side of the indoor glass panel 323 are more in the X direction than the position Xb3 of the end surface 322a on the X1 side of the intermediate glass panel 322. Is located on the X1 side.
  • the position Xb2 of the X1 side end face 321a of the outdoor glass panel 321 of the second finding direction slide panel body 32 is the X2 side end face 313a of the indoor glass panel 313 of the first finding direction slide panel body 31. Is located on the X1 side of the position Xa2. Therefore, the end on the X2 side of the indoor side glass panel 313 of the first finding direction slide panel body 31 and the end on the X1 side of the outdoor side glass panel 321 of the second finding direction slide panel body 32 are in the estimation direction. Are arranged so as to overlap when viewed from above.
  • the reinforcing member 325 disposed on the side of the abutting portion 42 of the slide panel body 32 in the second finding direction is disposed between the outdoor glass panel 321 and the indoor glass panel 323 in the viewing direction.
  • the reinforcing member 325 disposed on the side of the butting portion 42 of the second finding direction slide panel body 32 is formed in a stepped shape, and the abutting portion 42 of the first finding direction slide panel body 31 is formed. It is formed in a point-symmetrical shape with the reinforcing member 316 disposed on the side. That is, the reinforcing member 325 arranged on the side of the abutting portion 42 of the second finding direction slide panel body 32 is rotated by 180 degrees around an axis extending in the viewing direction, and the first finding direction slide panel body 31 is rotated. Is the same as the shape of the reinforcing member 316 arranged on the side of the abutting portion 42.
  • the reinforcing material 325 of the second finding direction slide panel body 32 and the reinforcing material 316 of the first finding direction slide panel body 31 are arranged in the butting portion 42 such that the projections and depressions are opposed to each other.
  • the reinforcing member 325 is formed in a stepped shape in which the outdoor portion protrudes toward the X1 side on the projected surface on the X1 side in the left-right direction X, and is a reinforcing member disposed between the outdoor glass panel 321 and the indoor glass panel 323.
  • the step-projecting shielding portion 325a is arranged in contact with the extending portion 321b of the outdoor glass panel 321.
  • the step protruding shielding portion 325a is disposed on the outdoor glass panel 321 side along the extension 321b of the outdoor glass panel 321.
  • a step flat portion 325b (flat portion) is formed on the indoor side of the reinforcing member 325 with respect to the step protrusion shielding portion 325a.
  • the projection surface of the step-projection shielding portion 325a and the projection surface of the step-flat portion 325b extend in the projection direction in a plane, respectively, and the length of the projection surface of the projection surface of the step-flat portion 325b in the projection direction is 325a. Is formed longer than the length of the projection surface in the projection direction.
  • the step projection shielding portion 325a is formed over the entire length of the extension portion 321b in the X direction in the direction in which the extension portion 321b of the outdoor glass panel 321 projects.
  • the expected surface of the step-projecting shielding portion 325a is arranged on the X1 side from the expected surface of the step flat portion 325b.
  • the expected surface of the step-projecting shielding portion 325a is arranged at the same position Xb2 as the end surface 321a of the outdoor glass panel 321.
  • the expected surface of the step flat portion 325b is the same as the indoor glass panel 323. It is arranged at the same position Xb1 as the end face 323a.
  • the step protruding shielding portion 325a protrudes beyond the end surface 323a of the indoor glass panel 323 outside the extending direction of the extending portion 321b of the outdoor glass panel 321 along the extending portion 321b of the outdoor glass panel 321. .
  • the step flat portion 325b is disposed between the step protrusion shielding portion 325a and the indoor glass panel 323 in the viewing direction.
  • the step flat portion 325b is disposed on the same plane as the end surface 323a of the indoor glass panel 323.
  • the projected surface of the step-projecting shielding portion 325a and the projected surface of the step-flat portion 325b are the same as those of the double-glazed glass 320.
  • the position Xb2 of the projected surface of the step-projecting shielding part 325a of the reinforcing member 325 of the second finding direction slide panel body 32 is determined by the position of the step-projecting shielding part 316a of the reinforcing member 316 of the first finding direction slide panel body 31. It is located on the X1 side of the position Xa2 of the prospective surface. Therefore, the step-projecting shielding portion 316a of the reinforcing member 316 of the first finding direction slide panel body 31 and the step-projecting shielding portion 325a of the reinforcing member 325 of the second finding direction slide panel body 32 are viewed in the viewing direction. Are placed on top of each other.
  • a hermetic material 328 (sealant) is disposed in a portion of the projection surface of the step flat portion 325b on the side of the step projection shielding portion 325a in the projection direction.
  • the airtight material 328 is disposed on the outer side surface of the multilayer glass 320 at one end of the multilayer glass 320 on the side where the step projection shielding portion 325a is provided.
  • the hermetic material 328 is arranged on a prospective surface on the indoor glass panel 323 side with respect to the step-projecting shielding portion 325 a of the reinforcing material 325.
  • the airtight material 328 is disposed between the first finding direction slide panel body 31 and the second finding direction slide panel body 32 at the butting portion 42.
  • the airtight material 328 has an inclined protruding portion 328a that protrudes from the portion of the projection surface of the stepped flat portion 325b on the side of the step projection shielding portion 325a in the projection direction to the X1 side in the left-right direction X.
  • the inclined protruding portion 328a is inclined and protrudes from the indoor side toward the outdoor side as going from the X2 side to the X1 side in the left-right direction X.
  • a cushioning member 329b is disposed on the outdoor side at the end on the X1 side in the left-right direction X of the second finding direction slide panel body 32.
  • the cushioning material 329b extends in the viewing direction between the projected surface of the step-projecting shielding portion 325a of the reinforcing member 325 and the end surface 321a of the outdoor glass panel 321. It is stuck over the end surface 321a of the outdoor glass panel 321.
  • the cushioning material 329b becomes the first finding direction slide panel body 31 and the second one. 2 It is arranged between the slide panel body 32 in the direction of appearance.
  • the first finding direction slide panel body 31 and the second finding direction slide panel body 32 configured as described above are arranged to abut on the abutting portion 42.
  • the extension 313b of the indoor glass panel 313 of the multilayer glass 310 is disposed on the indoor side, and the extension 321b of the outdoor glass panel 321 of the multilayer glass 320 of the second finding direction slide panel body 32 is , Placed outside the room.
  • the extension parts 313b and 321b are staggered and assembled to the indoor side and the outdoor side alternately.
  • the step-projecting shielding portion 316a of the reinforcing member 316 of the double-glazing 310 of the first sliding panel body 31 in the first direction is disposed on the indoor side to reinforce the double-glazing 320 of the second sliding panel body 32 in the second direction.
  • the step-projecting shielding portion 325a of the member 325 is disposed outside the room.
  • a continuous window in which a glass panel is placed in a frame via a cubic is known.
  • the view of the window when viewing the room from outside through the window, the view of the window should be improved in order to improve the viewability when the window is viewed from the front.
  • the width in the attaching direction may be reduced.
  • the size of the projection in the projection direction tends to be large in order to improve the strength of the continuous window.
  • the portion of the prospective direction of the cubic can be seen, and the viewability from the oblique direction may not be sufficiently secured.
  • the first finding direction slide panel body 31 and the second finding direction slide panel body 32 are arranged to abut on the abutting portion 42.
  • the X2 side end face 311a of the outdoor glass panel 311 of the body 31, the X2 side end face 313a of the indoor glass panel 313, and the reinforcing material 316 are on the X1 side of the outdoor glass panel 321 of the second finding direction slide panel body 32.
  • the end surface 323a on the X1 side of the indoor glass panel 323, and the reinforcing member 325 are disposed so as to face each other in the finding direction.
  • a frame such as a porcelain or a frame is not provided between the double-glazed glass 310 and the double-glazed glass 320 arranged adjacent to each other in the left-right direction X, as shown in FIG.
  • the X2 side end face 311a of the outdoor glass panel 311 of the first finding direction slide panel body 31 is opposed to the X1 side end face 321a of the outdoor glass panel 321 of the second finding direction slide panel body 32,
  • the end surface 313a on the X2 side of the indoor glass panel 313 is opposed to the end surface 323a on the X1 side of the indoor glass panel 323.
  • the flat portion 316b is made uneven with the step flat portion 325b and the step protrusion shielding portion 325a of the reinforcing member 325 of the second finding direction slide panel body 32.
  • the end of the first finding direction slide panel body 31 in the finding direction and the end of the second finding direction slide panel body 32 in the finding direction are abutted in the abutting portion 42. Can be arranged.
  • the double-glazing glass 310 arranged adjacent to the left-right direction X is arranged.
  • the outdoor outdoor glass panels 311 and 321 are located on the same plane,
  • the indoor-facing surfaces of the indoor-side glass panels 313 and 323 on the indoor side are arranged on the same plane.
  • no frame such as a post or a frame is provided between the double-glazed glass 310 and the double-glazed glass 320, when the sliding window 1 is viewed obliquely while ensuring the viewability when viewed from the front. View can be secured.
  • the design property can be improved.
  • the end on the X2 side of the indoor glass panel 313 of the first finding direction slide panel body 31 and the X1 side end of the outdoor glass panel 321 of the second finding direction slide panel body 32 are in the estimation direction. Are arranged so as to overlap when viewed from above. Also, the step-projecting shielding portion 316a of the reinforcing member 316 of the first finding direction slide panel body 31 and the step-projecting shielding portion 325a of the reinforcing member 325 of the second finding direction slide panel body 32 are viewed in the prospective direction. Are placed on top of each other. Therefore, no gap is formed in the abutting portion 42 between the first finding direction slide panel body 31 and the second finding direction slide panel body 32 in the looking direction. Thereby, light leakage can be suppressed in the butting portion 42. In addition, since no gap is formed in the abutting portion 42, designability can be improved.
  • the end on the X2 side of the indoor glass panel 313 of the first finding direction slide panel body 31 and the X1 side end of the outdoor glass panel 321 of the second finding direction slide panel body 32 are in the estimation direction.
  • the indoor glass panel 313 of the first sliding panel body 31 in the direction of sight and the outdoor glass panel 321 of the sliding panel body 32 in the second directional direction have dimensional variations. Even if there is, it is possible to reduce the formation of a gap penetrating in the anticipation direction. Further, even if the reinforcing member 325 and the reinforcing member 316 have dimensional variations, they are overlapped when viewed in the viewing direction, so that formation of a gap penetrating in the viewing direction can be reduced.
  • the cushioning material 319b is attached to the indoor side at the end on the X2 side in the left-right direction X of the first finding direction slide panel body 31.
  • a cushioning material 329b is attached to the outside of the end on the X1 side in the left-right direction X of the second finding direction slide panel body 32. Therefore, when the first finding direction slide panel body 31 and the second finding direction slide panel body 32 are abutted by the abutting portion 42, the first finding direction slide panel body is provided inside and outside the room.
  • the cushioning material 319b and the cushioning material 329b are disposed between the sliding panel body 31 and the second finding direction slide panel body 32, so that the shock acting on the glass panel when the sliding window 1 is closed is cushioned, and the glass panel is crushed. Breakage can be reduced.
  • the inclined projection 318a of the airtight material 318 of the first finding direction slide panel body 31 and the inclined projection 328a of the airtight material 328 of the second finding direction slide panel body 32 form the first look at the butting portion 42.
  • the first lower moving support 201 is disposed below each of the pair of prospective direction slide panel bodies 21 and 22, and moves in the predictive direction Y each of the pair of prospective direction slide panel bodies 21 and 22. Support as much as possible.
  • the first lower moving support 201 is disposed below the airtight material 125b. Thereby, since the first lower moving support 201 is not visually recognized from the outside, the design property can be improved.
  • a prospective direction moving mechanism 5 is provided below the first lower moving support 201.
  • Each of the pair of prediction direction slide panel bodies 21 and 22 can be moved in the prediction direction Y by a prediction direction moving mechanism 5 (described later).
  • the first lower moving support 201 has a first supporting flat plate 202 and a door-to-behind moving door 203.
  • the first supporting flat plate 202 is formed in a plate shape having a width in the projection direction Y and extending in the left-right direction X, and is arranged below the projection direction slide panel bodies 21 and 22.
  • the projection direction slide panel bodies 21 and 22 are mounted on the upper surface of the first support flat plate 202.
  • the projection direction slide panel members 21 and 22 are not fixed to the first support flat plate 202, but are configured not to move with respect to the first support flat plate 202 due to their own weight. As a result, the projection direction slide panel bodies 21 and 22 are moved integrally with the first lower moving support 201, and move as the first lower moving support 201 moves.
  • the prospective direction movable door wheel 203 is attached to the lower surface of the first support flat plate 202 so as to be movable in the prospective direction Y.
  • the sliding door 1 is disposed on the upper surface of the lower frame main body 121 inside the lower frame 12 so as to be movable in the predicting direction Y at the end of the sliding window 1 in the left-right direction X. It is placed on the door moving upper surface 120a of the door-mounted frame 120.
  • the prospective direction movable door roller 203 has a mounting frame 203a and a pair of two disk-shaped wheel bodies 203b (roller members) rotatable around a rotation axis extending in the left-right direction X.
  • a plurality of door-to-door moving doors 203 are arranged in the left-right direction X of the sliding window 1.
  • a pair of two wheel bodies 203b of the prospective direction moving door wheel 203 are arranged so that the radial direction is along the prospective direction Y, and a pair of these is arranged in parallel in the left-right direction X to make a set of predictive direction movements.
  • It is configured as a door roller 203, and is configured by arranging a plurality of sets of moving door rollers 203 in the expected direction in the left-right direction X.
  • the prospective direction moving door roller 203 is movable in the prospective direction Y within a range that is mounted on the door wheel moving upper surface 120 a of the door-mounted frame 120. Specifically, when moving into the indoor side in the anticipation direction Y, the anticipation direction moving door roller 203 can move to a position where the anticipation direction slide panel body 20 contacts the airtight material 125b, and moves to the outdoor side. In this case, it is possible to move to a position just before the outdoor end on the door-moving upper surface 120a of the door-mounted frame 120.
  • the first upper support portion 206 supports the respective upper end portions of the prospective direction slide panel bodies 21 and 22, as shown in FIG.
  • the first upper support portion 206 includes a U-shaped bracket 207, an L-shaped support bracket 208, an airtight material 209a, a pressing member 209b, and a fixing screw 209c.
  • the U-shaped metal fitting 207 is formed in a U-shape whose cross section is open downward.
  • the width of the open portion of the U-shaped bracket 207 in the viewing direction Y is formed larger than the width of the viewing direction slide panel bodies 21 and 22 in the viewing direction Y.
  • the U-shaped metal fitting 207 is disposed so as to sandwich the upper end portions of the projection direction slide panel bodies 21 and 22 in the projection direction Y.
  • the horizontal plate 208a of the L-shaped support bracket 208 is connected to the upper surface of the U-shaped bracket 207 by welding or the like.
  • the lower end of the vertical plate 208b of the L-shaped support member 208 is connected to the outdoor end of the horizontal plate 208a, and the upper end thereof is an upright plate 582 (described later) of the projection direction moving member 58 of the projection direction moving mechanism 5. It is connected to the.
  • Either the vertical plate 208b of the L-shaped support member 208 or the upright plate 582 of the projection direction moving mechanism 5 has a screw fixing long hole (not shown) extending vertically, and the L-shaped support member The vertical plate 208b side of the screw 208 is screw-fixed to the standing plate 582 of the projection direction moving member 58 of the projection direction moving mechanism 5 via a screw fixing long hole.
  • one of the screw holes of the vertical plate 208b of the L-shaped support member 208 or the upright plate 582 of the projection direction moving mechanism 5 is constituted by a screw fixing long hole, the vertical plate 208b of the L-shaped support member 208 is formed. And the vertical position of the screw fixing long hole can be easily adjusted.
  • the airtight material 209a is arranged between the vertical piece 207b on the indoor side of the U-shaped metal fitting 207 and the indoor side surface at the upper end of the projection direction slide panel bodies 21 and 22.
  • the pressing member 209b is disposed on the outdoor surface at the upper end of the projection direction slide panel bodies 21 and 22 on the outdoor side of the U-shaped metal fitting 207.
  • the fixing screw 209c is disposed so as to penetrate while being screwed into the screw hole of the vertical piece 207a on the outdoor side of the U-shaped metal fitting 207, and can be fixed by adjusting the screwing position in the projection direction Y.
  • the fixing screw 209c presses the pressing member 209d against the outdoor-side surface of the upper end portion of the viewing direction slide panel bodies 21 and 22 while adjusting the screwing position in the viewing direction.
  • the upper end portions of 21, 21 can be fixed.
  • the second lower moving support body 301 is disposed below each of the pair of finding direction slide panel bodies 31 and 32, and finds the pair of finding direction slide panel bodies 31 and 32 respectively.
  • the second lower moving support 301 is disposed below the airtight material 125b. Thereby, since the second lower moving support 301 is not visually recognized from the outside, the design property can be improved.
  • a finding direction moving mechanism 6 is provided below the second lower moving support 301.
  • Each of the pair of finding direction slide panel bodies 31 and 32 is movable in the left-right direction X by a finding direction moving mechanism 6 (described later).
  • the second lower moving support body 301 has a second supporting flat plate 302 and a find direction moving door wheel 303.
  • the second supporting flat plate 302 is formed in a plate shape having a width in the viewing direction Y and extending in the left-right direction X, and is arranged below the finding direction slide panel bodies 31 and 32.
  • the finding direction slide panel bodies 31 and 32 are mounted on the upper surface of the second support flat plate 302.
  • the find direction slide panel bodies 31 and 32 are not fixed to the second support plane plate 302, but are configured not to move with respect to the second support plane plate 302 by their own weight. As a result, the finding direction slide panel bodies 31 and 32 are moved integrally with the second lower moving support 301, and move as the second lower moving support 301 moves.
  • the finding direction movable door wheel 303 is attached to the lower surface of the second support flat plate 302 so as to be movable in the lateral direction X in the finding direction. Specifically, when the finding direction movable door wheel 303 is located on the center side of the sliding window 1 so as to be movable in the lateral direction X in the finding direction, it is placed on the upper surface 891 a of the elevating lid member 89 and slides. When it is located on the end side of the window 1, it is placed on the door moving upper surface 120 a (see FIGS. 7 and 8) of the door-mounted frame 120 disposed above the lower frame main body 121 inside the lower frame 12. Is done.
  • the find direction moving door wheel 303 has a mounting frame body 303a and a pair of disk-shaped wheel bodies 303b (roller members) rotatable around a rotation axis extending in the look direction Y.
  • a plurality of finding direction movable door wheels 303 are arranged side by side in the left-right direction X of the sliding window 1.
  • a pair of wheel bodies 303b of the finding direction moving door wheel 303 are arranged so that the radial direction is along the left-right direction X, and a pair of these is arranged in parallel with the finding direction Y to find a pair of finding members. It is configured as a direction moving door roller 303, and is configured by arranging a plurality of pairs of finding direction moving door rollers 303 in the left-right direction X.
  • the arrangement of the finding direction moving door wheel 303 can be set as appropriate.
  • 11A and 11B are diagrams illustrating an arrangement of the finding direction moving door wheel 303.
  • FIG. 11A is a diagram illustrating a first arrangement example
  • FIG. 11B is a diagram illustrating a second arrangement example.
  • the second support flat plate 302 may be disposed on a straight line in the left-right direction X, or as shown in FIG. 11B, at one end and the other end in the projection direction Y. Alternatively, they may be staggered in the left-right direction X of the second support flat plate 302.
  • the number of sets of the finding direction moving door wheel 303 is not limited to three, and may be, for example, two or four or more.
  • the second upper support 306 supports the upper ends of the sliding panel bodies 31 and 32 in the direction of appearance.
  • the second upper support portion 306 has a crank-shaped connection fitting 307.
  • the crank-shaped connection fitting 307 has a lower vertically extending piece 307a, a connecting horizontal piece 307b, and an upper vertically extending piece 307c.
  • the lower vertically extending piece 307a is arranged to extend vertically along the outdoor surface of the upper end of the finding direction slide panel bodies 31, 32.
  • the connecting horizontal piece 307b is connected to the upper end of the lower vertically extending piece 307a, and from the upper end of the lower vertically extending piece 307a to the indoor side in the viewing direction Y along the upper surface of the finding direction slide panel bodies 31, 32. It is arranged to extend.
  • the upper vertically extending piece 307c is connected to the indoor end of the connecting horizontal piece 307b, and extends upward from the indoor end of the connecting horizontal piece 307b.
  • the lower vertically extending piece 307a and the connecting horizontal piece 307b are connected to the upper ends of the slide panels 31 and 32 in the finder direction.
  • the upper part of the upper vertically extending piece 307c of the crank-shaped connection fitting 307 is connected to a connecting member 64 (described later) of the finding direction moving mechanism 6.
  • Either the upper vertically extending piece 307c of the crank-shaped connection fitting 307 or the connecting member 64 of the finding direction moving mechanism 6 has an elongated screw fixing hole (not shown) that extends vertically, and has an L crank shape.
  • the upper vertically extending piece 307c of the connection fitting 307 is screw-fixed to the connecting member 64 of the finding direction moving mechanism 6 via a screw fixing slot. Since one of the screw holes of the upper and lower extending pieces 307c of the crank-shaped connection fitting 307 or the connecting member 64 of the finding direction moving mechanism 6 is formed by a screw fixing long hole, the upper and lower parts of the crank-shaped connection fitting 307 are formed. With regard to the screw fixing between the extending piece 307c and the connecting member 64 of the finding direction moving mechanism 6, the vertical position in the screw fixing long hole can be easily adjusted.
  • FIG. 12A is a perspective view showing the estimation direction moving mechanism 5, and is a perspective view showing a state in which the estimation direction slide panel members 21 and 22 are located at the indoor side positions.
  • FIG. 12B is a perspective view showing the estimation direction moving mechanism 5, and is a perspective view showing a state in which the estimation direction slide panel bodies 21 and 22 are located at the outdoor position.
  • the prediction direction moving mechanism 5 moves the prediction direction slide panel members 21 and 22 from the indoor position shown in FIG. 7 (see FIGS. 2 and 12A) or the outdoor position (FIG. 3, see FIG. 12B). As shown in FIG. 1, the prospective direction moving mechanism 5 is connected to the four outer peripheral edges of the prospective direction slide panel bodies 21 and 22. It is possible to move in the finding direction. Accordingly, the projection direction moving mechanism 5 moves the four outer peripheral side edges of the projection direction slide panel bodies 21 and 22 in the projection direction Y, so that the projection direction slide panel bodies 21 and 22 are moved only in the projection direction Y. Can be moved.
  • the outer peripheral edges of the projection direction slide panel bodies 21 and 22 are the outer ends of the projection direction slide panel bodies 21 and 22 in the surface direction and the surfaces of the projection direction slide panel bodies 21 and 22. And the peripheral portion of the portion including the fore-edge surface at the end in the direction.
  • the outer ends of the projection direction slide panel bodies 21 and 22 in the plane direction are upper end portions or lower end portions of the projection direction slide panel bodies 21 and 22 in the vertical direction.
  • the fore-edge surface at the end in the surface direction of the projection direction slide panel bodies 21 and 22 is an end surface facing upward or an end surface facing downward at the vertical end of the prediction direction slide panel bodies 21 and 22. , At the upper end, and at the lower end.
  • the outer peripheral edge on the upper side of the projection direction slide panel bodies 21 and 22 is connected to the projection direction moving mechanism 5 via the first upper support portion 206.
  • the outer peripheral edge on the upper side of the projection direction slide panel bodies 21 and 22 is formed at the outer end of the projection direction slide panel bodies 21 and 22 in the surface direction (vertical direction in the present embodiment).
  • the outer peripheral edge of the lower side of the prospective direction slide panel bodies 21 and 22 is connected to the prospective direction moving mechanism 5 via the first lower moving support 201.
  • the outer peripheral edge of the lower side of the projection direction slide panel bodies 21 and 22 is provided on the lower surface of the lower end of the projection direction slide panel bodies 21 and 22 by the first support flat plate of the first lower moving support body 201. It is fixed to 202.
  • the first support flat plate 202 of the first lower moving support 201 is connected to the projection direction moving mechanism 5 via an L-shaped bracket 204.
  • the projection direction moving mechanism 5 is connected to the four outer peripheral edges of the projection direction slide panel bodies 21 and 22 and has the same configuration except that the upper and lower sides have different vertical directions. Therefore, the anticipation direction moving mechanism 5 arranged on the lower side will be described.
  • the sighting direction moving mechanism 5 includes a base plate 51, a motor 52 (driving unit), a mounting member 53, a rotating shaft 54, a locating direction moving member 55, It includes a finding direction guide rail 56, a rotating member 57, a finding direction moving member 58, and a finding direction guide rail 59.
  • the base plate 51 is formed in a rectangular plate shape.
  • the motor 52 is attached to an end erected plate 511 that is arranged on the base plate 51 on one side in the left-right direction X of the sliding window 1.
  • the rotation shaft 54 is connected to the rotation shaft of the motor 52 and extends in the left-right direction X.
  • the rotation shaft portion 54 is configured by, for example, a ball screw mechanism.
  • the finding direction moving member 55 is attached in the middle of the rotating shaft portion 54, and moves in the left-right direction X of the base plate 51 along the rotating shaft portion 54 as the rotating shaft portion 54 rotates.
  • the finding direction moving member 55 has a moving member main body 551 and a guide member 552 connected to one side of the moving member main body in the left-right direction X.
  • the moving member main body 551 has a long hole opening 551a in the viewing direction, which is formed to extend vertically from the upper surface and extends in the viewing direction Y.
  • a lower projection 573 (described later) of the rotating member 57 is inserted into the long hole opening 551a in the projection direction.
  • the finding direction guide rail 56 is arranged in parallel to the rotating shaft 54 and extends in the left-right direction X in the finding direction.
  • the lower part of the guide member 552 of the finding direction moving member 55 is connected to the finding direction guide rail 56 so as to be movable in the left-right direction X.
  • the finding direction guide rail 56 guides the movement of the finding direction moving member 55 in the left-right direction X.
  • the turning member 57 has a turning member main body 571, a turning shaft 572, a lower protrusion 573, and an upper protrusion 574.
  • the rotating member main body 571 is disposed in parallel with the base plate 51, and is formed of a plate material having a substantially triangular shape in plan view.
  • the upper surface of the rotating member main body 571 is formed in a planar shape.
  • the rotation shaft 572, the lower protrusion 573, and the upper protrusion 574 are arranged near the inside of each substantially triangular vertex of the rotation member main body 571.
  • the rotation shaft 572 extends in the up-down direction while supporting the vicinity of the vertex of the substantially triangular shape of the rotation member main body 571 closer to the indoor side than the finding direction guide rail 56.
  • the lower end of the rotating shaft 572 is connected to the upper surface of the base plate 51.
  • the rotation shaft 572 is disposed on the indoor side with respect to the finding direction guide rail 56.
  • the turning member 57 turns around a turning shaft 572.
  • the lower protrusion 573 protrudes downward from the lower surface of the rotating member main body 571 near the vertex on the side of the finding direction moving member 55 among the substantially triangular vertices of the rotating member main body 571.
  • the lower protrusion 573 is inserted into a viewing direction elongated hole opening 551 a extending in the viewing direction of the moving member main body 551 of the finding direction moving member 55. Therefore, the lower protrusion 573 can move along the long hole opening 551 a in the viewing direction of the moving member main body 551.
  • the upper protrusion 574 protrudes upward from the upper surface of the rotating member main body 571 in the vicinity of the vertex on the estimation direction moving member 58 side among the substantially triangular vertices of the rotating member main body 571.
  • the upper protrusion 574 is inserted into a long hole 581 a (described later) extending in the left-right direction X in the direction in which the sliding flat plate 581 of the projection direction moving member 58 is found. Therefore, the upper protrusion 574 is movable along the elongated hole 581a in the finding direction of the slide flat plate 581.
  • the prediction direction moving member 58 moves in the prediction direction Y with the rotation of the rotating member 57 as shown in FIGS. 12A and 12B.
  • the estimation direction moving member 58 can move in the estimation direction Y by moving the guide member 583 fixed to the lower surface along the estimation direction guide rail 59. Be composed.
  • the prospective direction moving member 58 has an L-shaped cross section.
  • the projection direction moving member 58 includes a slide flat plate 581 formed of a rectangular plate member, and an upright plate 582 that is erected from the outdoor end of the slide flat plate 581 in the prediction direction Y.
  • the slide flat plate 581 is formed in a flat plate shape extending in the horizontal direction, and the lower surface is formed in a flat shape.
  • the slide flat plate 581 is placed on the upper surface of the rotating member main body 571, and moves in the viewing direction Y in a state of surface contact when the rotating member 57 rotates around the rotating shaft 572.
  • the sliding flat plate 581 has no sharp edge formed on the rotating member 57 and can move smoothly without being caught on the side of the rotating member 57 on the upper surface of the rotating member 57.
  • the slide flat plate 581 has a finding-direction long hole opening 581a extending vertically from the upper surface and extending in the viewing direction Y.
  • the upper projection 574 of the rotating member 57 is inserted into the elongated hole 581a in the finding direction.
  • the upright plate 582 is an L-shaped first upper support portion 206 that supports the upper end portions of the estimation direction slide panel bodies 21 and 22. It is connected to the support bracket 208. Further, in the projection direction moving member 58 disposed on the lower side, the upright plate 582 is a first support flat plate 202 of the first lower moving support 201 on which the lower end portions of the projection direction slide panel bodies 21 and 22 are disposed. Are connected via an L-shaped bracket 204.
  • the sliding of the projection direction moving member 58 is performed in a range where the rotating belt 63 (described later) of the discovery direction moving mechanism 6 in the plurality of estimation direction moving mechanisms 5 arranged on the upper side is arranged.
  • the front end 58a of the flat plate 581 on the indoor side is moved in the estimation direction Y so as to enter and exit the inside of the annular portion of the rotating belt 63 of the identification direction moving mechanism 6. Therefore, the tip 58a on the indoor side of the sliding flat plate 581 of the projection direction moving member 58 is disposed so as to be able to move while avoiding the movement of the rotating belt 63.
  • the space inside the annular portion of the rotating belt 63 can be effectively used, which contributes to space saving of the sliding window 1.
  • the prospective direction moving mechanism 5 configured as described above drives the motor 52 in FIG.
  • the part 54 is rotated.
  • the finding direction moving member 55 is moved in the left-right direction X while being guided by the finding direction guide rail 56.
  • the lower projection 573 of the rotating member 57 inserted into the finding direction elongated hole opening 551 a of the finding direction moving member 55 moves the finding direction of the finding direction moving member 55.
  • the rotation member 57 is rotated around the rotation shaft 54.
  • the estimation direction slide panel bodies 21 and 22 can be moved in the estimation direction Y.
  • the prospective direction moving mechanism 5 moves the prospective direction slide panel members 21 and 22 connected to the prospective direction moving mechanism 5 in the frame body 10 (upper frame 11 and lower frame 12) by driving the motor 52. It can be moved in the direction Y, and can be moved from the position shown in FIG. 7 to the indoor side (see FIG. 2) or the position shown in FIG. 5 to the outdoor side moved to the outdoor side (see FIG. 3).
  • the prospective direction moving mechanism 5 is connected to the four outer peripheral edges of the prospective direction slide panel bodies 21 and 22, the four outer peripheral side edges of the prospective direction slide panel bodies 21 and 22 are provided. ,
  • the projection direction slide panel members 21 and 22 can be stably and reliably moved in the projection direction Y.
  • the finding direction moving mechanism 6 can move the finding direction slide panel bodies 31 and 32 in the finding direction.
  • the finding direction moving mechanism 6 is arranged above each of the finding direction slide panel bodies 31 and 32, and is arranged on the upper frame 11 as shown in FIGS. Further, the lower frame 12 is provided with a finding direction guide mechanism 66 that guides the movement of the finding direction slide panel bodies 31 and 32 that are moved in the right and left direction X of the finding direction by the finding direction moving mechanism 6.
  • the finding direction moving mechanism 6 includes a pair of motors 61, a pair of pulleys 62, a rotating belt 63 wrapped around the pair of pulleys 62, a connecting member 64, And a mechanism 65 (see FIG. 9).
  • the motor 61 drives the pulley 62 to rotate.
  • the pulley 62 is spaced apart in the left-right direction X above the finding direction slide panel bodies 31, 32, and has a rotation shaft extending in the looking direction Y driven by the motor 61.
  • the rotating belt 63 is formed in an annular shape by an endless belt, and is stretched over a pair of pulleys 62 that are spaced apart in the left-right direction X. The rotating belt 63 rotates as the pulley 62 rotates.
  • the connecting member 64 is connected to a lower portion of the rotating belt 63, and as shown in FIG. 9, the crank-shaped connecting fitting 307 and the rotating belt 63 connected to the upper ends of the finding direction slide panel bodies 31 and 32. Concatenate. By rotating the rotating belt 63 and moving the connecting member 64 in the left-right direction X, the finding direction slide panel bodies 31 and 32 are moved in the left-right direction X.
  • the anti-sway mechanism 65 reduces the deflection of the slide panels 31 and 32 in the projection direction Y.
  • the steady rest mechanism 65 includes a steady rest rail frame 651, a roller member 653, and a roller support member 652.
  • the anti-sway rail frame 651 is formed in a U-shape having a cross-sectional shape opened upward, and extends in the left-right direction X of the finding direction in the range of the left-right direction X where the rotating belt 63 is disposed.
  • the roller member 653 is formed of a disk-shaped roller member arranged so that the radial direction is substantially horizontal.
  • the roller member 653 is disposed inside the steady rest rail frame 651, and the diameter of the roller member 653 is formed to be substantially the same as the width of the steady rest rail frame 651.
  • the roller member 653 is attached to the lower surface of the roller support member 652 so as to be rotatable about a rotation shaft extending in the vertical direction.
  • the roller supporting member 652 has an L-shaped cross section, supports the roller member 653, and is connected to the connecting member 64.
  • the roller supporting member 652 is configured to simultaneously move the connecting member 64 in the right and left direction X. It moves in the left-right direction X of the attachment direction.
  • the finding direction guide mechanism 66 is provided on the lower frame 12 as shown in FIG.
  • the finding direction guide mechanism 66 is arranged so that when the finding direction slide panel bodies 31 and 32 are moved in the left-right direction X, the movement of the finding direction slide panel bodies 31 and 32 to the outdoor side in the finding direction Y is regulated. It guides the movement in the left-right direction X of 31, 32.
  • the finding direction guide mechanism 66 includes a guide protrusion 661 configured by the protrusion 126 c of the lower frame 12, a guide roller member 662, and a guide roller support member 663.
  • the guide protrusion 661 extends upward from the inner frame body 126 a of the lower frame body 121.
  • the guide projecting piece 661 is formed in the entire area in the left-right direction X of the lower frame 12 in which the finding direction slide panel bodies 31 and 32 are moved.
  • the guide roller member 662 is formed by a disk-shaped roller member arranged so that its radial direction is substantially horizontal.
  • the guide roller member 662 is disposed in contact with the indoor side surface of the guide protrusion 661.
  • the guide roller member 662 is attached to the lower surface of the guide roller support member 663 so as to be rotatable around a rotation shaft 662a extending in the vertical direction.
  • the guide roller support member 663 is formed in an L-shaped cross section, supports the guide roller member 662 on one side, and is located on the other side on the indoor side of the second direction movable supporter 301 in the finding direction movable door wheel 303. Connected to the side.
  • the guide roller supporting member 663 moves the second lower moving support 301 in the left-right direction X when the finding direction slide panel bodies 31 and 32 and the second lower moving support 301 are moved in the left-right direction X of the finding direction. And at the same time, it moves in the lateral direction X of the finding direction.
  • the rotating belt 63 is rotated by the pulley 62 being rotated by the motor 61.
  • the finding direction moving mechanism 6 can move the finding direction slide panel bodies 31 and 32 in the left-right direction X via the connecting member 64.
  • the roller member 653 is guided and moved by the steady-rail rail frame 651
  • the steady-rest mechanism 65 moves the sliding window 1 when the finding direction slide panel bodies 31, 32 are moved in the left-right direction X.
  • On the center side in the left-right direction X it is possible to reduce the shake in the estimation direction Y. Further, as shown in FIG.
  • the finding direction guide mechanism 66 restricts the movement of the finding direction slide panel bodies 31 and 32 to the outside in the viewing direction Y on the center side of the lower frame 12 in the left-right direction X. It is possible to guide the movement in the left-right direction X while seeing, and as shown in FIG. The movement in the left-right direction X can be guided while restricting the movement in the direction Y to the outside of the room.
  • FIG. 14 is a diagram showing the opening / closing operation of the lower frame room outside opening / closing lid 128.
  • FIG. 15 is a diagram showing the opening / closing operation of the upper frame room outside opening / closing lid 118.
  • the end-side lid opening / closing mechanism 7 has a lower lid opening / closing mechanism 71 arranged on the lower frame 12 and an upper lid opening / closing mechanism 72 arranged on the upper frame 11. .
  • the lower lid opening / closing mechanism 71 is configured to cover the lower frame gap S2 when the projection direction slide panel members 21 and 22 are moved in the projection direction Y by the projection direction moving mechanism 5.
  • 128 opens and closes the outdoor portion of the lower frame upper opening 127 of the lower frame 12.
  • the upper lid opening / closing mechanism 72 is opened by the upper frame chamber outer opening / closing lid 118 when the projection direction slide panel members 21 and 22 are moved in the projection direction Y by the projection direction moving mechanism 5.
  • the outdoor part of the part 117 is opened and closed.
  • the end-side lid opening / closing mechanism 7 (the lower lid opening / closing mechanism 71, the upper lid opening / closing mechanism 72) is driven by the motor 52 of the projection-direction moving mechanism 5, and the projection-direction slide panel body 21,
  • the 22 is moved in the viewing direction Y
  • the lower frame chamber outer opening / closing lid 128 and the upper frame chamber outer opening / closing lid 118 are opened and closed.
  • the present invention is not limited to this. Even without a driving unit such as a motor, for example, by manually moving the projection direction slide panel bodies 21 and 22, the lower frame chamber outer opening / closing lid 128 and the upper frame chamber
  • the outer opening / closing lid 118 can be opened and closed.
  • the lower lid opening / closing mechanism 71 will be described.
  • the lower lid opening / closing mechanism 71 is disposed on the lower frame 12 as shown in FIG. 8, and includes a lower frame outdoor opening / closing lid 128, a lower opening / closing rotating member 711 (rotating member), and a lower connecting member.
  • a stop member 712 and a lower rotation restricting portion 713 are provided.
  • the lower frame room outside opening / closing lid 128 is provided in the first door body 200.
  • the lower connecting and locking member 712 is connected to the first lower moving support 201 (the moving door 203 in the sighting direction) and engages the lower opening and closing rotation member 711 in the closed position of the lower frame room outside opening and closing cover 128. Stop.
  • the lower frame room outside opening / closing lid portion 128 is attached to the prospective direction movable door wheel 203 of the first door body 200 via the first lower movable support 201 of the first door body 200.
  • the lower connection locking member 712 includes a crank-shaped lower connection member 712a, an L-shaped lower locking member 712b, and a protruding piece 712c connected to the lower connection member 712a.
  • the lower connecting member 712a is connected to the first lower moving support 201 (the moving door 203 in the anticipated direction), and the other end is connected to the lower locking member 712b and the protruding piece 712c.
  • the lower locking member 712b is formed in an L shape, and locks a locking roller 711z (described later) of the lower opening and closing rotation member 711 at the closed position of the lower frame chamber outside opening and closing cover 128.
  • the lower opening / closing rotation member 711 rotatably supports the lower frame outside opening / closing lid 128 inside the lower frame 12.
  • the lower opening / closing rotation member 711 is formed in a crank shape, and has an intermediate piece 711a disposed inside the frame body 10 at a closed position of the lower frame outdoor opening / closing lid 128, and a lower part at the outdoor side of the intermediate piece 711a.
  • a first extending piece 711b extending toward the lower frame upper opening 127 side of the frame body 10 on the side of the frame chamber outside opening / closing lid 128, and a lower frame body 121 side of the frame body 10 on the indoor side of the intermediate piece 711a.
  • a second extension piece 711c extending to
  • the lower opening / closing rotating member 711 has a rotating shaft 711x provided at an end of the second extending piece 711c opposite to the intermediate piece 711a in the vertical direction.
  • the rotation shaft 711x is rotatably connected to a fixing member 121p fixed to the lower frame 12.
  • a support roller 711y is arranged at an end of the first extension piece 711b on the side of the lower frame chamber outside opening / closing lid 128 side.
  • a locking roller 711z is disposed on the indoor side of the intermediate piece 711a.
  • the support roller 711y rotates while supporting the back surface (lower surface) inside the lower frame 12 in the lower frame chamber outside opening / closing lid 128.
  • the locking roller 711z is disposed on the indoor side of the L-shaped lower locking member 712b at the closed position of the lower frame chamber outside opening / closing lid 128, and is locked by the L-shaped lower locking member 712b. You.
  • the lower opening / closing rotation member 711 is rotatable around a rotation shaft 711x on the end side of the second extension piece 711c.
  • the lower opening / closing rotation member 711 is configured by a weight balance that rotates to the side that falls to the outside of the room around the rotation shaft 711x by its own weight.
  • the lower opening / closing rotation member 711 is released from the restriction by the lower rotation restriction portion 713 (described later), and the locking force of the lower locking member 712b to the locking roller 711z is not applied. By its own weight, it turns around the turning shaft 711x to the side that falls to the outside of the room.
  • the lower frame chamber outside opening / closing lid 128 is rotatably attached to the protruding piece 712c of the lower connection locking member 712.
  • a back surface (lower surface) of the lower frame 12 on the inner side of the lower frame 12 is supported by a support roller 711y of the lower opening / closing rotating member 711.
  • the lower rotation restricting portion 713 has a driving portion 713a and a regulating rod portion 713b (lock portion).
  • the regulating rod-shaped portion 713b is configured to be able to advance and retreat by, for example, the operation of a solenoid built in the driving portion 733a, and regulates the rotation of the lower opening / closing rotating member 711 toward the inside of the lower frame 12 to lower the lower frame chamber.
  • a locked state (see (a) of FIG. 14) for restricting the movement of the outer opening / closing lid 128, and by retracting the regulating rod-shaped portion 713b, the rotation of the lower opening / closing rotating member 711 is not restricted and the lower frame chamber outer side.
  • the opening / closing lid 128 is moved so as to be changeable between an unlocked state and an unlocked state where the locked state is released.
  • the lower lid opening / closing mechanism 71 configured as described above, the opening / closing operation of the lower frame chamber outer opening / closing lid 128 will be described.
  • the lower opening / closing rotation member 711 is in a locked state where the lower rotation control member 713 is regulated by the regulating rod 713b. Has been maintained. From this state, the regulation by the regulation bar 713b is released. Then, in the unlocked state in which the regulation by the regulating rod-shaped portion 713b is released, the projection direction slide panel bodies 21 and 22 are moved from the indoor side in the projection direction Y to the outdoor side.
  • the opening / closing rotation member 711 is rotated by its own weight to the side that falls to the outside around the rotation shaft 711x, and tilts so that the outside portion of the lower frame outside opening / closing lid 128 is downward.
  • the rotation of the lower opening / closing rotation member 711 is increased as shown in FIG. Stop.
  • the lower frame outdoor opening / closing lid 128 is attached to the protruding piece 712c.
  • the lower frame outdoor opening / closing lid 128 is accommodated at the outdoor end inside the lower frame 12 by rotating about the bent portion. In this manner, the lower frame chamber outside opening / closing lid 128 can be moved from the closed position to the open position.
  • the finding direction slide panel bodies 31 and 32 are further moved to the end portions in the left-right direction X in the finding direction. Thereby, the sliding window 1 can be moved to the open position (FIG. 4).
  • the lower frame outdoor opening / closing lid 128 when the lower frame outdoor opening / closing lid 128 is moved from the open position to the closed position, the prospective direction slide panel bodies 21 and 22 are moved from the exterior side in the prospective direction Y to the indoor side, thereby moving from the closed position.
  • the lower frame chamber outside open / close lid 128 By the reverse operation of moving to the open position, the lower frame chamber outside open / close lid 128 can be moved from the open position to the closed position.
  • the upper lid opening / closing mechanism 72 will be described. In the description of the upper lid opening / closing mechanism 72, points different from the lower lid opening / closing mechanism 71 will be mainly described.
  • the upper lid opening / closing mechanism 72 is different from the lower lid opening / closing mechanism 71 in that the upper lid opening / closing lid 118 is opened / closed and the spring member 724 is disposed. Mainly different from 71.
  • the lower lid opening / closing mechanism 71 is disposed on the lower frame 12 and rotatably connected to the fixing member 121p
  • the upper lid opening / closing mechanism 72 is disposed on the upper frame 11 and It is rotatably connected to 111p.
  • the upper lid opening / closing mechanism 72 is disposed on the upper frame 11, and includes an upper frame chamber outer opening / closing lid 118, an upper opening / closing rotating member 721 (a rotating member), and an upper connection locking member. 722, an upper rotation restricting portion 723 (a restricting member), and a spring member 724.
  • the upper frame room opening / closing lid 118 is provided in the first door body 200.
  • the spring member 724 is formed by the upper opening / closing rotating member 721 and the fixing member 111 p fixed to the upper frame 11. It is located between them.
  • the upper opening / closing rotation member 721 is urged by the spring member 724 to the side on which the upper frame chamber outer opening / closing lid 118 is opened.
  • the upper frame chamber outside opening / closing lid 118 is connected to the upper end portions of the prospective-direction slide panel bodies 21 and 22 via the upper connection locking member 722.
  • the opening / closing operation of the upper frame chamber outer opening / closing lid 118 will be described.
  • the upper opening / closing rotation member 721 is maintained in a locked state regulated by the regulating rod-shaped portion 723b of the upper rotation regulation portion 723. ing. From this state, the regulation by the regulation bar 723b is released. Then, in the unlocked state in which the regulation by the regulating bar-shaped portion 723b is released, the projection direction slide panel bodies 21 and 22 are moved from the indoor side in the projection direction Y to the outdoor side.
  • the rotation of the upper opening / closing rotation member 721 is stopped as shown in FIG. I do.
  • the upper frame outdoor opening / closing lid 118 is attached to the protruding piece 722c as shown in FIG.
  • the upper frame outdoor-side opening / closing lid 118 is accommodated at the outdoor end inside the upper frame 11 by rotating around the bent portion. In this manner, the upper frame chamber outside opening / closing lid 118 can be moved from the closed position to the open position.
  • the prospective direction slide panel members 21 and 22 are moved from the outside in the prospective direction Y to the room side, thereby moving from the closed position.
  • the upper frame room outside opening / closing lid 118 can be moved from the open position to the closed position.
  • the end-side lid opening / closing mechanism 7 configured as described above (the lower lid opening / closing mechanism 71 and the upper lid opening / closing mechanism 72) moves the projection-direction slide panel body 20 in the projection direction Y, thereby After the upper frame chamber outside opening / closing lid 118 or the lower frame chamber outside opening / closing lid 128 is opened and closed so as to close the frame gap S1 or the lower frame gap S2, the projection direction slide panel body 20 is moved in the projection direction Y.
  • the upper frame gap S1 or the lower frame gap S2 in the groove portion of the frame body 10 can be easily closed by the upper frame chamber outside opening / closing lid 118 or the lower frame chamber outside opening / closing lid 128.
  • the upper frame chamber outer opening / closing lid 118 or the lower frame chamber outer opening / closing lid 128 can be easily opened / closed.
  • the upper frame outdoor opening / closing lid 118 or the lower frame outdoor opening / closing lid 128 can be easily opened and closed.
  • the projection direction slide panel bodies 21 and 22 are moved in the projection direction Y. Since they cannot move, they can have a security function.
  • the opening / closing operation of the upper frame chamber outside opening / closing lid section 118 and the lower frame chamber outside opening / closing lid section 128 is controlled by the lower rotation regulating section 713 and the upper rotation regulating section 723 to form the regulating rod 713b or the regulating rod.
  • the lower frame outdoor opening / closing lid 128 and the upper frame chamber outer opening / closing lid 118 cannot be moved from the closed position to the open position, so that the projection direction slide panel members 21 and 22 are found.
  • the sliding window 1 cannot be moved from the closed position to the open position.
  • the motor 52 (locking unit) of the anticipation direction moving mechanism 5 is a motor that is braked and locked during a power failure.
  • the motor 52 is in a locked state that restricts the movement of the lower frame chamber outside opening / closing lid 128 or the upper frame chamber outside opening / closing lid 118, and a locked state in which the lower frame room outside opening / closing lid 128 or the upper frame chamber outside opening / closing lid 118 is locked. Can be changed to the unlocked state to release.
  • the brake of the motor 52 is actuated to be in a locked state, and the prospective-direction slide panel members 21 and 22 cannot move in the prospective direction Y.
  • the outer opening / closing lid 118 cannot be moved to the open position, and the sliding window 1 cannot be moved from the closed position to the open position.
  • a motor that does not apply a brake during a power failure may be used as the motor.
  • the sliding window 1 according to the present embodiment when the sliding window 1 according to the present embodiment is in the closed position, the regulating rod 713b of the lower rotation regulating unit 713 or the regulating rod 723b of the upper rotation regulating unit 723 is restricted, and the motor 52 is braked. Due to the regulation, the upper frame room outside opening / closing cover portion 118 or the lower frame room outside opening / closing cover portion 128 is locked and is prevented from moving from the closed position to the open position, so that the sliding window 1 cannot be opened. Therefore, it is possible to suppress intrusion into the room from outside. Therefore, the sliding window 1 of the present embodiment has a security function.
  • the opening and closing of the upper frame chamber outside opening / closing lid 118 and the lower frame chamber outside opening / closing lid 128 is locked by the regulating rod-shaped section 713b of the lower rotation regulating section 713 or the regulating rod-shaped section 723b of the upper rotation regulating section 723. Therefore, the anti-wind pressure of the projection direction slide panel bodies 21 and 22 can be improved.
  • the rotation of the lower opening / closing rotation member 711 or the upper opening / closing rotation member 721 is locked, so that the upper frame chamber outer opening / closing cover 118 or the lower frame chamber outer opening / closing is opened.
  • the closed position of the lid 128 can be held. Thereby, a security function is provided. In addition, wind resistance can be improved.
  • FIG. 16A is a perspective view showing the center-part-side lid elevating mechanism 8, and is a diagram showing a state where the mechanism is located at a lowered position.
  • FIG. 16B is a perspective view showing the center-part-side lid elevating mechanism 8, and is a diagram showing a state where the mechanism is located at the ascending position.
  • the center-side lid lifting mechanism 8 is disposed below the sliding panel bodies 31 and 32 in the horizontal direction X of the sliding window 1 at the closed position of the sliding window 1. Provided on the lower frame 12.
  • the center-side lid lifting mechanism 8 moves from the lowered position (see FIG. 16A) shown in FIG. 9 to the raised position shown in FIG. 10 (see FIG. 16B) after the finding direction slide panel bodies 31, 32 have moved to the ends. ),
  • the lower frame 12 can be moved up and down so as to be closed by the elevating lid member 89 in the groove M on the indoor side of the lower frame upper opening 127 on the center side in the left-right direction X of the lower frame 12.
  • the groove portion M can accommodate the lower end portions of the finding direction slide panel bodies 31 and 32.
  • the elevating lid member 89 can move up to the same plane as the upper end of the groove M to cover the groove M.
  • the groove M of the lower frame upper opening 127 of the lower frame 12 is closed by the upper surface 891a of the elevating lid member 89, thereby realizing barrier-free.
  • the center-side lid raising / lowering mechanism 8 moves in the left-right direction X with a motor-side base member 81, a motor 82 having a rotating shaft 83 (drive shaft), and a vertical driving unit.
  • the center-side lid lifting mechanism 8 of the present embodiment is configured as a motor straight type in which a motor 82 and a cross arm 86 are arranged on a straight line.
  • the motor-side base member 81 includes a motor-side base plate 811 mounted on an inwardly facing surface of the lower frame 12, a motor-side bent piece 812, Having.
  • the motor-side base plate 811 extends in the left-right direction X.
  • the motor 82 is connected to the other end of the motor-side base member 81.
  • the rotation shaft 83 is arranged above the motor-side base member 81 and extends along the longitudinal direction of the lower frame 12.
  • the rotation shaft 83 extends from the shaft of the motor 82 to one side in the left-right direction X.
  • a moving member 84 is attached in the middle of the rotation shaft 83 in the left-right direction X.
  • the rotating shaft 83 is driven by the motor 82 to move the moving member 84 in the left-right direction X.
  • the rotating shaft 83 is connected to a longitudinal end of the cross arm 86 along the lower frame 12 via a moving member 84 (described later), and is a ball screw mechanism that is rotationally driven to move the elevating lid member 89 up and down. (Screw mechanism).
  • the motor-side bent piece 812a is formed in an L-shaped cross section at both ends in the left-right direction X of the motor-side base plate 811 and rises from both ends in the expected direction Y and bends outward in the expected direction Y to be bent in the expected direction Y. Projecting substantially horizontally.
  • the upper surface of the motor-side bent piece 812a disposed on the indoor side is screwed and fixed by a screw 812b that is moved from the upper side in a state of being superposed on the upper surface of the frame-side raised bent piece 121a (rib).
  • the frame-side rising bent piece 121a is formed to have an L-shaped cross section, and protrudes from the surface of the lower frame 12 facing the inside of the frame body 10 to the inside of the lower frame 12 (upper in the present embodiment) and to protrude. These ribs are formed so as to protrude outward from the tip of the portion in the viewing direction Y, and are used to attach the center-side lid lifting mechanism 8 to the lower frame 12.
  • the motor-side bent piece 812a may be screw-fixed to the frame-side rising bent piece 121a of the lower frame 12, and workability can be improved.
  • the upper surface of the motor-side bent piece 812a is screwed and fixed by the screw 812b moved from the upper side in a state of being overlapped with the upper surface (rib) of the frame-side rising bent piece 121a, so that access to the fixed portion is easy. Yes, good workability.
  • the cross arm housing base frame 87 is formed to extend in the left-right direction X, is disposed at a position shifted to the indoor side in the projection direction Y with respect to the motor-side base member 81, and is shifted to one side in the left-right direction X. Placed at the right position.
  • the cross arm housing base frame 87 includes an arm frame main body 871 arranged on one side in the left-right direction X, a guide rail arrangement plate 872 arranged on the other side in the left-right direction X, and an arm accommodation side bent piece 873. Have.
  • the arm frame body 871 and the guide rail arrangement plate 872 are arranged side by side in a straight line in the left-right direction X.
  • a guide rail 85 is arranged on the guide rail arrangement plate 872.
  • the guide rail 85 extends in the left-right direction X.
  • a moving member 84 that can move in the left-right direction X is connected to the guide rail 85.
  • the moving member 84 is formed to extend in the viewing direction Y, and is connected across the rotation shaft 83 arranged on the motor-side base plate 811 and the guide rail 85 arranged on the guide rail arrangement plate 872.
  • the moving member 84 is guided by the guide rail 85 so as to be movable in the left-right direction X.
  • the moving member 84 includes a moving member main body 841 formed in an L-shaped cross section and extending in the viewing direction Y, and a protruding plate 842 protruding from the indoor side portion toward the cross arm 86.
  • the cross arm 86 is connected to the tip of the protruding plate 842.
  • the cross arm 86 connected to the distal end of the protruding plate 842 of the moving member 84 moves up and down.
  • the cross arm 86 is disposed between the arm frame main body 871 and the cross arm moving frame 88 in the vertical direction.
  • the arm frame main body 871 is formed in a U-shape whose cross-sectional shape is open upward.
  • a cross arm 86 is arranged on the inner side above the arm frame body 871.
  • the cross arm moving frame 88 is formed in a U-shape having a cross-sectional shape that opens downward.
  • a cross arm 86 is arranged below and inside the cross arm moving frame 88.
  • the cross arm 86 includes a pair of two arm portions 861, a connection rotation shaft 862 that rotatably connects the pair of two arm portions 861 in a crossed state, and an accommodation-side fulcrum-side rotation shaft 863. , A moving-side fixed rotating shaft 864, a housing-side sliding rotating shaft 865, and a moving-side sliding rotating shaft 866.
  • the cross arm 86 can expand and contract in the elevating direction of the elevating lid member 89 by moving the protruding plate 842 of the moving member 84 in the left-right direction X.
  • the two arm portions 861 are each formed in a plate shape extending in a predetermined direction, and are configured to cross each other.
  • the pair of two arm portions 861 are rotatably connected to each other by a connection rotation shaft 862 disposed substantially at the center in the longitudinal direction.
  • the pair of two arm portions 861 constitute a set of arm portions by being connected in a state where the two arm portions 861 face each other.
  • the pair of two arm portions 861 are rotatably connected by a housing-side fulcrum-side rotating shaft 863 at one end of the arm frame main body 871 in the left-right direction X, and the other end of the arm frame main body 871 in the left-right direction X.
  • the arm-side main body 871 is movably connected along the housing-side slide elongated hole 871 b by the housing-side slide rotation shaft 865.
  • the accommodation side slide long hole 871b is formed on the other end side of the side plate 871a of the arm frame main body 871 in the left-right direction X, penetrates in the projection direction Y, and extends in the left-right direction X.
  • the pair of two arm portions 861 is rotatably connected by a movable-side fixed rotating shaft 864 at one end of the cross arm moving frame 88 in the left-right direction X, and is connected to the cross arm moving frame 88 (described later) in the left-right direction X.
  • the moving arm On the other end side of the cross arm moving frame 88, the moving arm is connected so as to be movable along the moving side sliding elongated hole 881 a by the moving side slide rotating shaft 866.
  • the moving-side slide elongated hole 881a is formed at the other end of the side wall 881 of the cross arm moving frame 88 in the left-right direction X, extends through the side wall of the motor-side base plate 811 in the viewing direction Y, and extends in the left-right direction X.
  • the arm storage side bent pieces 873 are formed in an L-shaped cross section at both ends in the left-right direction X of the cross arm storage base frame 87, rise from both ends in the prediction direction Y, and bend outward in the prediction direction Y. It projects substantially horizontally in the direction Y.
  • the upper surface of the arm-accommodating-side bent piece 873a arranged on the outdoor side is screwed and fixed by a screw 873b that is moved from the upper side in a state of being overlapped with the upper surface of the frame-side rising bent piece 121a (rib).
  • the arm-accommodating-side bent piece 873a may be screw-fixed to the frame-side rising bent piece 121a of the lower frame 12, thereby improving workability.
  • the upper surface of the arm storage side bent piece 873a is screwed by the screw 873b moved from the upper side in a state of being overlapped on the upper surface of the frame side rising bent piece 121a (rib), so that access to the fixed portion is easy. And the workability is good. Further, since it is not necessary to form a screw hole for attaching the center-side lid lifting mechanism 8 to the lower frame 12, the watertightness can be improved.
  • the elevating lid member 89 is connected to the upper part of the cross arm moving frame 88 as shown in FIGS.
  • the elevating lid member 89 has a lid main body 891 having a U-shaped cross section and a pair of elevating positioning ribs 892.
  • the elevating lid member 89 can move up to the same plane as the upper end of the groove M to cover the groove M.
  • the upper surface 891a of the lid main body 891 is formed in a planar shape. When the upper surface 891a of the lid body 891 is arranged at the closed position, it is arranged on the same plane as the upper surface 125c (inner surface) of the lower frame 12 (see FIG. 10).
  • the lifting / lowering alignment rib 892 is formed so as to protrude substantially horizontally outward from the side wall of the lid main body 891 in the viewing direction Y near the upper side of the lid main body 891.
  • the elevating position alignment rib 892 moves the upper surface 891a of the lid body 891 of the elevating lid member 89 to the door wheel of the in-vehicle mounting frame body 120 of the lower frame 12.
  • it is located on the same plane as the upper surface 120a, it comes into contact with the lower end of the downwardly protruding piece 129b of the lower frame chamber outside fixed lid 129.
  • the elevating lid member 89 stops at the position where the elevating alignment rib 892 is in contact with the lower end of the downwardly protruding piece 129b of the lower frame chamber outside fixed lid part 129 when ascending.
  • the lifting / lowering position adjusting rib 892 can restrict the upward movement of the lifting / lowering lid member 89, thereby restricting the rising position.
  • the motor 82 is driven to move the moving member 84 right and left through the rotational driving force of the rotating shaft 83 configured by the ball screw mechanism.
  • the cross arm 86 is moved up and down by moving the moving member 84 in the left and right direction X by being moved in the direction X, and the elevating lid member 89 can be moved up and down.
  • the elevating lid member 89 closes the indoor side portion of the lower frame upper opening 127 by the central side lid elevating mechanism 8,
  • the upper surface 891a of the lid main body 891 of the elevating lid member 89 and the upper surface 120a of the door carriage moving frame 120 of the lower frame 12 can be barrier-free.
  • the rotating shaft 83 can be arranged along the longitudinal direction of the frame body 10, the rotating shaft 83 does not have to be arranged along the width direction or the vertical direction of the frame body 10, and the space for arranging the rotating shaft 83 is lower. It can be secured along the longitudinal direction of the frame 12. Therefore, the size of the lower frame 12 in the width direction and the size in the vertical direction can be suppressed, so that the sash frame can be formed compactly.
  • the center-side lid lifting mechanism 8 includes a cross arm 86 that is configured by a pair of arms 861 crossing each other and that can extend and retract in the lifting direction of the lifting lid member 89. Therefore, since the cross arm 86 can be arranged along the longitudinal direction of the lower frame 12, the size of the lower frame 12 in the width direction and the size of the lower frame 12 in the vertical direction can be suppressed, and a configuration in which the vertical movement can be performed can be achieved. Thus, the center-side lid lifting mechanism 8 can be made compact, and the sash frame can be made compact. Further, the cross arm 86 can be extended and contracted via the rotating shaft 83 constituted by a ball screw mechanism. Therefore, barrier-free can be realized with a simple configuration.
  • the upper surface 891 a of the elevating lid member 89 and the upper surface 120 a of the door-roller moving frame 120 of the door-mounted frame 120 are moved in the vertical direction in the find direction moving door wheel 303 of the second lower moving support 301.
  • the upper surface 891a of the lifting / lowering lid member 89 and the upper surface 120a of the door-roller moving system are configured such that the moving door wheel 303 of the second lower-moving support member 301 is located in the left-right direction X. Since the door 120 is moved between the door wheel moving upper surface 120a and the door roller 120, there is no gap or the gap is as small as possible.
  • FIGS. 17A and 17B are diagrams showing the connecting portions 80A, 80B and 80C of the lower rail.
  • FIG. 17A is a diagram showing the connecting portion 80A of the first example
  • FIG. 17B is a diagram showing the connecting portion 80B of the second example. It is a figure which shows, and (c) is a figure which shows the connection part 80C of the 3rd example.
  • a connecting portion 80A between the upper surface 891a of the elevating lid member 89A and the upper surface 120a of the door carriage moving frame 120A of the door mounted frame 120A is formed in a straight line extending in the projection direction Y.
  • the connecting portion 80B between the upper surface 891a of the lifting / lowering lid member 89B and the upper surface 120a of the door carriage moving frame 120B of the door mounted vehicle frame 120B may be formed in an inclined shape.
  • the connecting portion 80C between the upper surface 891a of the lifting / lowering lid member 89C and the upper surface 120a of the door carriage moving frame 120C of the door mounting frame 120C may be formed in a stepped shape.
  • the shape of the connecting portions 80B and 80C is formed in an inclined shape as shown in FIG. 17B or in a step shape as shown in FIG.
  • the two wheel bodies 303b are arranged side by side in the viewing direction Y and are moved in the left-right direction X
  • the finding direction moving door wheel 303 passes through the connecting portions 80B and 80C
  • the two wheels are used.
  • the timing at which the body 303b passes through the connecting portions 80B and 80C can be shifted.
  • the passing sound of the two wheel bodies 303b when passing through the connecting portions 80B and 80C can be dispersed.
  • the connecting portion 80A when the shape of the connecting portion 80A is formed in a straight line extending in the viewing direction Y shown in FIG. 17A, the two wheel bodies 303b of the finding direction moving door wheel 303 are arranged in parallel in the viewing direction Y.
  • the timing at which the two wheel bodies 303b pass through the connecting portion 80A can be shifted.
  • the passing sound of the two wheel bodies 303b when passing through the connecting portion 80A can be dispersed.
  • the first lower moving support 201 having the first support flat plate 202 disposed thereon is inserted from the lower frame upper opening 127 of the lower frame 12, and is disposed inside the lower frame 12. It is placed on the door moving upper surface 120a of the door-mounted frame 120. Then, the first lower moving support 201 is connected to the standing plate 582 of the projection direction moving member 58 of the projection direction moving mechanism 5 via the L-shaped bracket 204.
  • the plurality of wheel bodies 203b of the plurality of prospective direction movable door rollers 203 are fixed to the first support flat plate 202 of the first lower moving support 201 in a state where the wheels 203b face the same direction. Therefore, in the first lower moving support 201, the plurality of wheel bodies 203 b of the plurality of prospective direction moving door rollers 203 can be attached in a state where they are arranged in the same direction.
  • the projection direction slide panel members 21 and 22 are configured not to move with respect to the first support flat plate 202 by their own weights, and when placed on the upper surface of the first support flat plate 202, the first support flat plate It moves in the prospective direction Y integrally with 202.
  • the upper end portion of the projection direction slide panel body 20 is attached to the first upper support portion 206.
  • the projection direction is adjusted by the fixing screw 209c. While adjusting the screwing position of Y, the pressing member 209d is pressed against the outdoor surface of the upper end portions of the sliding panel bodies 21 and 22 in the viewing direction. Thereby, the upper end portions of the viewing direction slide panel bodies 21 and 22 can be screw-fixed to the L-shaped support bracket 208 while adjusting the screwing position in the viewing direction.
  • the vertical plate 208b side of the L-shaped support member 208 of the first upper support portion 206 is connected to the standing plate 582 of the projection direction moving member 58 of the projection direction moving mechanism 5.
  • the screw fixing long hole has a vertical direction. Is easily adjusted, the vertical plate 208b side of the L-shaped support member 208 can be connected to the standing plate 582 of the projection direction moving member 58 of the projection direction moving mechanism 5.
  • the upper frame indoor side cover portion 116 is attached to the indoor side portion of the upper frame lower opening 117 of the upper frame 11. In this way, the projection direction slide panel body 20 can be attached to the frame body 10.
  • the finding direction slide panel body 30 is attached to the frame body 10 .
  • the second lower moving support body 301 in which the second support plane plate 302 is disposed on the upper side is moved from the lower frame upper opening 127 of the lower frame 12. It is inserted and placed on the upper surface 891a of the elevating lid member 89 of the central lid elevating mechanism 8 arranged inside the lower frame 12.
  • a plurality of wheel bodies 303b of a plurality of find direction moving door wheels 303 are fixed to the second support flat plate 302 of the second lower moving support body 301 in a state of facing in the same direction. Therefore, in the second lower moving support 301, the plurality of wheel bodies 303b of the plurality of finding direction moving door wheels 303 can be mounted in a state where they are arranged in the same direction.
  • the finding direction slide panel body 30 is configured not to move with respect to the second support plane plate 302 by its own weight, and when placed on the upper surface of the second support plane plate 302, the second support plane plate 302 And moves in the left-right direction X integrally.
  • the upper vertically extending piece 307c of the crank-shaped fitting 307 is moved in the finding direction. It connects to the connecting member 64 of the moving mechanism 6.
  • one of the screw holes of the upper and lower extending pieces 307c of the crank-shaped connection fitting 307 or the connecting member 64 of the finding direction moving mechanism 6 is formed of a screw fixing long hole.
  • the upper and lower extending pieces 307c of the crank-shaped connecting fitting 307 can be connected to the connecting member 64 of the finding direction moving mechanism 6 while easily adjusting the vertical position of the screw fixing in the above.
  • the upper frame indoor side cover portion 116 is attached to the indoor side portion of the upper frame lower opening 117 of the upper frame 11. In this way, the finding direction slide panel body 30 can be attached to the frame body 10.
  • the multilayer glasses 310 and 320 include an outdoor glass panel 311, an indoor glass panel 313, and a reinforcing material 316 disposed between the outdoor glass panel 311 and the indoor glass panel 313.
  • the glass 310 at least one end of the multilayer glass 310, one end of the indoor glass panel 313 is located outside the end surface 311 a of the outdoor glass panel 311 in the surface direction of the glass surface of the indoor glass panel 313. It has a protruding extension 313b, and the double-glazed glass 310 is provided with a step protruding shielding portion 316a at least at a portion corresponding to the indoor glass surface or the outdoor glass surface of the extension portion 313b.
  • the multilayer glass 320 includes an indoor glass panel 323, an outdoor glass panel 321, and a reinforcing member 325 disposed between the indoor glass panel 323 and the outdoor glass panel 321, At least one end of the double-glazed glass 320 has one end portion of the outdoor glass panel 321 that extends beyond the end surface 323a of the indoor glass panel 323 to the outside in the surface direction of the glass surface of the outdoor glass panel 321.
  • the double-glazed glass 320 is provided with a step-projection shielding portion 325a at least at a portion corresponding to the indoor glass surface or the outdoor glass surface of the extending portion 321b.
  • the extending portions 313b and 321 are arranged, it is configured such that there is no gap communicating between the inside and outside of the room. Accordingly, the extension portions 313b and 321b are provided with the step-projecting shielding portion 316a of the reinforcing member 316 and the step-projecting shielding portion 325a of the reinforcing member 325, so that light leakage can be suppressed.
  • the reinforcing material 316 is provided at one end of the multilayer glass 310 or 320 of the adjacent slide panel bodies 20 and 30 in the finding direction.
  • the step-projecting shielding portion 316a and the step-projecting shielding portion 325a of the reinforcing member 325 can be staggered and joined to the indoor side and the outdoor side. Thereby, it can be configured without providing a frame such as a cubic panel or a frame between adjacent multilayer panels. Therefore, since no frame such as a cubic or a frame is provided, the number of objects obstructing the field of view is reduced, and the viewability can be improved when viewed from the front or obliquely.
  • the airtight materials 318 and 328 are arranged at the butting portion 42, so that a frame such as a cubicle or a frame is not provided.
  • airtightness can be ensured.
  • the reinforcing member 316 includes a reinforcing portion 316c disposed between the outdoor glass panel 311 and the indoor glass panel 313, and the indoor glass panel 312a located closer to the end surface 311a of the outdoor glass panel 311. And a step-projection shielding portion 316a that protrudes along the extension portion 313b outside the extension direction of the extension portion 313b. Accordingly, the step-projecting shielding portion 316 a of the reinforcing member 316 can reinforce the extension portion 313 b of the indoor glass panel 313 in a state along the indoor glass panel 313.
  • the reinforcing member 325 includes a reinforcing portion 325 c disposed between the outdoor glass panel 321 and the indoor glass panel 323, and an extending portion 321 b of the outdoor glass panel 321 than the end surface 321 a of the outdoor glass panel 321. And a step-protruding shielding portion 316a that protrudes along the extending portion 321b outside the protruding direction. Accordingly, the step-projecting shielding portion 325a of the reinforcing member 325 can reinforce the extension portion 321b of the outdoor glass panel 321 in a state along the outdoor glass panel 321 side.
  • the step-projecting shielding portions 316a and 325a of the reinforcing members 316 and 325 extend in the projecting direction of the extending portion 313b of the indoor glass panel 313 and the extending portion 321b of the outdoor glass panel 321.
  • the protrusions 313b and 321b are arranged over the entire length.
  • the step-projecting shielding portions 316a and 325a of the reinforcing members 316 and 325 can strongly reinforce the extending portion 313b of the indoor glass panel 313 and the extending portion 321b of the outdoor glass panel 321.
  • the reinforcing member 316 is provided between the step projecting shielding portion 316 a of the reinforcing member 316 and the outdoor glass panel 311 on the same plane as the end surface 311 a of the outdoor glass panel 311. It has a flat portion 316b.
  • the reinforcing member 325 has a flat step portion 325b disposed on the same plane as the end surface 323a of the indoor glass panel 323 between the step projecting shielding portion 325a of the reinforcing material 325 and the indoor glass panel 323.
  • a space for receiving the step-projecting shielding portions 316a, 325a of the reinforcing members 316, 325 can be formed in the opposing double-glazed glass 310, 320.
  • the sliding window 1 includes a frame 10 provided in an opening of the building, a first finding direction slide panel body 31 and a second finding direction slide panel body 32 arranged in the frame body 10 in a plurality.
  • the first locating direction slide panel body 31 and the second locating direction slide panel body 32 are composed of multi-layered glass 210, 220, 310, 320.
  • the extending portion 313b of the indoor glass panel 313 of the laminated glass 310 is disposed on the indoor side, and the extending portion 321b of the outdoor glass panel 321 of the multi-layer glass 320 of the second finding direction slide panel body 32 is connected to the interior.
  • the exterior facing surfaces of the adjacent outdoor glass panels 311 and 321 are arranged on the same plane, and the exterior facing surfaces of the adjacent interior glass panels 313 and 323 are the same. There are disposed on the same plane.
  • the step-projecting shielding portions 316a of the reinforcing member 316 and the step-projecting shielding portions 325a of the reinforcing member 325 are alternately combined and hit against the indoor side and the outdoor side, and are arranged on a plane.
  • the step-projecting shielding portion 316 a of the reinforcing member 316 in the first finding direction slide panel body 31 and the reinforcing material in the second finding direction slide panel body 32. 325 and the step protruding shielding portion 325a are arranged so as to overlap with each other. Therefore, when the pair of prospective direction slide panel bodies 20 and the pair of findout direction slide panel bodies 30 are arranged adjacent to each other in the find direction, the sliding windows 1 are moved in the abutting portions 41, 42, 43 in the predictive direction. Is not formed. Thereby, no gap is formed in the abutting portions 41, 42, 43, so that the design can be improved.
  • the sliding window 1 of the present embodiment includes a prospective direction slide panel body 20 and a finding direction slide panel body 30 arranged in the frame body 10, and the prospective direction slide panel body 20 and the finding direction slide panel body 30 are The closing position where the prospective direction slide panel body 20 and the findable direction slide panel body 30 are arranged in a straight line in the prospective direction Y, and the prospective direction slide panel body 20 and the findable direction slide panel body 30 are arranged in the prospective direction Y. It is configured to be movable in the frame body 10 with the open position overlapping when viewed, and the prospective direction slide panel body 20 is configured to be movable only in the prospective direction Y within the frame body 10. Therefore, by moving the prospective direction slide panel body 20 in the frame body 10 only in the prospective direction Y, the find direction slide panel body 30 can be opened and closed. Thereby, the sliding window 1 that can be opened and closed can be realized while maintaining the viewability.
  • the finding direction slide panel body 30 is configured to be movable only in the finding direction in the frame 10. Therefore, the finding direction slide panel body 30 can be moved only in the left-right direction X of the finding direction in a state where the prospective direction slide panel body 20 is moved only in the looking direction Y in the frame 10. Thereby, the sliding window 1 can be easily opened and closed.
  • a projection direction moving mechanism 5 for moving the projection direction slide panel body 20 only in the projection direction Y is connected to the outer peripheral side edge of the projection direction slide panel body 20. Therefore, the projection direction slide panel members 21 and 22 can be stably and reliably moved in the projection direction Y by being supported by the outer peripheral side edges of the projection direction slide panel members 21 and 22.
  • the find direction slide panel body 20 and the discovery direction slide panel body 30 when moving the projection direction slide panel body 20 and the discovery direction slide panel body 30 from the closed position to the open position, after moving the projection direction slide panel body 20 in the projection direction Y, By moving the find direction slide panel body 30 in the left-right direction X of the find direction, the find direction slide panel body 20 and the find direction slide panel body 30 can be moved from the closed position to the open position. Thereby, the opening and closing operation of the sliding window 1 can be easily performed.
  • airtight materials 116b, 125b, and 133b are provided between the frame panel 10 and the sliding panel body 30 in the find direction. Therefore, even if the sliding window 1 is opened and closed, watertightness and airtightness can be ensured.
  • the sliding window 1 of the present embodiment includes a frame 10 provided in an opening of a building, and a prospective direction slide panel body 20 disposed in the frame 10, and the frame 10 (the upper frame 11, the lower frame). 12) are the outdoor side pieces (upper frame outdoor side extending portion 112, lower frame outdoor side extending portion 122) facing the outdoor side surface of the projection direction slide panel body 20, and the indoor side surface of the projection direction slide panel body 20.
  • Opposing indoor side pieces (upper frame indoor side extending portion 114, lower frame indoor side extending portion 124), and bottom piece (lower piece 111t, upper piece) which is continuous from the end of the outdoor side piece to the end of the indoor side piece 121t), and the projection direction slide panel body 20 is provided with a gap (upper) formed between the projection direction slide panel body 20 and the outdoor piece when the projection direction slide panel body 20 moves in the projection direction Y.
  • Cover member for covering the frame gap S1 and the lower frame gap S2) Upper frame exterior side lid portion 118, and a lower frame exterior side closing lid 128).
  • the expectation direction slide panel body 20 by moving the expectation direction slide panel body 20 in the expectation direction Y, the upper frame room outside opening / closing cover part 118 or the lower frame room outside opening / closing cover part 128 is opened and closed, and the estimation direction slide panel body 20 is moved in the estimation direction Y.
  • the upper frame gap S1 or the lower frame gap S2 of the frame body 10 after being moved to can be easily closed by the upper frame room outside opening / closing cover 118 or the lower frame room outside opening / closing cover 128.
  • the lower opening / closing pivot member 711 that rotatably supports the upper frame chamber outer opening / closing lid 118 inside the lower frame 12 or the lower frame chamber outer opening / closing lid 128 is raised. It further includes an upper opening / closing rotation member 721 rotatably supported inside the frame 11.
  • the upper frame opening / closing lid 118 or the lower frame chamber opening / closing lid 128 can be easily opened / closed only by rotating the lower opening / closing rotary member 711 or the upper opening / closing rotary member 721.
  • the locked state that restricts the movement of the lower opening / closing rotation member 711 or the upper opening / closing rotation member 721 and the locked state of the lower opening / closing rotation member 711 or the upper opening / closing rotation member 721 are released. It further includes a control rod 713b, a control rod 723b, and a motor 52 that can be changed to an unlocked state. Therefore, by closing the rotation of the lower opening / closing rotation member 711 or the upper opening / closing rotation member 721, the closed position of the upper frame chamber outer opening / closing lid 118 or the lower frame chamber outer opening / closing lid 128 can be held. . Thereby, a security function is provided. In addition, wind resistance can be improved.
  • the prediction direction slide panel body 20 is moved in the prediction direction Y within the frame 10 by driving the motor 52.
  • the upper frame outdoor opening / closing lid 118 or the lower frame outdoor opening / closing lid 128 can be easily opened / closed.
  • the sash frame of the present embodiment includes a frame body 10 provided in an opening of a building, and the frame body 10 has a groove M capable of accommodating a finding direction slide panel body 30 for closing the opening.
  • a center-side lid lifting mechanism 8 is disposed on the body 10 and is capable of raising and lowering the lifting lid 89 in the groove M of the frame 10.
  • the lifting lid 89 rises to the same plane as the upper end of the groove M.
  • the central lid side lifting mechanism 8 is provided with a motor 82 having a rotating shaft 83, and can raise and lower the lifting lid member 89 via the rotational driving force of the rotating shaft 83.
  • the rotation shaft 83 can extend along the longitudinal direction of the lower frame 12 of the frame 10. Therefore, since the rotating shaft 83 can be arranged along the longitudinal direction of the frame body 10, the rotating shaft 83 does not have to be arranged along the width direction or the vertical direction of the frame body 10, and the space for arranging the rotating shaft 83 is lower. It can be secured along the longitudinal direction of the frame 12. Therefore, the size of the lower frame 12 in the width direction and the size in the vertical direction can be suppressed, so that the sash frame can be formed compactly.
  • the center-side lid lifting mechanism 8 includes a cross arm 86 configured by a pair of arms 861 intersecting and capable of extending and retracting in the lifting direction of the lifting lid member 89. Therefore, since the cross arm 86 can be arranged along the longitudinal direction of the lower frame 12, the size of the lower frame 12 in the width direction and the size of the lower frame 12 in the vertical direction can be suppressed, and a configuration in which the vertical movement can be performed can be achieved. Thus, the center-side lid lifting mechanism 8 can be made compact, and the sash frame can be made compact.
  • the rotating shaft 83 is formed of a ball screw mechanism that is connected to the longitudinal end of the frame 10 of the cross arm 86 and is driven to rotate to raise and lower the lifting lid member 89. Therefore, the cross arm 86 can be extended and contracted via the rotating shaft 83 constituted by a ball screw mechanism. Therefore, barrier-free can be realized with a simple configuration.
  • the frame 10 has a frame-side rising and bending piece 121a formed to protrude from the frame 10 to the inside of the frame 10 and to attach the center-side lid lifting mechanism 8 to the frame 10. Is provided. Therefore, when the center-side lid lifting mechanism 8 is attached to the frame body 10, it can be attached via the frame-side rising and bending piece 121a, so that workability can be improved. Further, when the frame-side rising and bending piece 121a is provided on the lower frame 12, a screw hole for attaching the center-side lid lifting mechanism 8 to the lower frame 12 does not need to be formed, so that the watertightness can be improved. .
  • FIG. 18 is a diagram illustrating a lower lid opening / closing mechanism 73 according to the second embodiment of the present invention.
  • FIG. 19 is a view showing the opening and closing operation of the lower lid opening and closing mechanism 73 according to the second embodiment of the present invention.
  • differences from the first embodiment will be mainly described.
  • configurations that are the same as or equivalent to those in the first embodiment are denoted by the same reference numerals, and redundant description will be appropriately omitted.
  • the lower lid opening / closing mechanism 73 includes a lower frame outdoor opening / closing lid 128, a lower opening / closing rotating member 731 (rotating member), and a lower connecting member 732 in the lower frame 12. And a lower rotation restricting portion 733.
  • the lower connecting member 732 is connected to the first lower moving support 201 (the moving door 203 in the anticipated direction) and is connected to the lower frame room outside opening / closing lid 128.
  • the lower frame chamber outside opening / closing lid 128 is attached to the lower end of the projection direction slide panel body 20 via the first lower moving support 201.
  • the lower connecting member 732 has a lower connecting plate 732a and a protruding piece 732b connected to the lower connecting member 712a.
  • One end of the lower connecting plate 732a is connected to the first lower moving support 201 (the moving door 203 in the anticipated direction), and the other end is connected to the protruding piece 732b.
  • the lower opening / closing pivoting member 731 rotatably supports the lower frame chamber exterior opening / closing lid 128 inside the lower frame 12.
  • the lower opening / closing pivot member 731 is formed in a U-shape in cross section, and is formed at the closed position of the U-shaped portion inside the frame body 10 at the closed position of the lower frame outdoor opening / closing lid 128.
  • a second extension piece 731c extending to the side.
  • a rotating shaft 731x is provided on the lower end side of the second extension piece 731c.
  • the rotation shaft 731x is rotatably connected to a fixing member 121q fixed to the lower frame 12.
  • a locking roller 731z is provided on the upper end side of the second extension piece 731c.
  • the locking roller 731z locks the block locking portion 735 attached to the side surface of the first lower moving support 201.
  • a support roller 731y is disposed at an end of the first extension piece 731b on the side of the lower frame outside opening / closing lid 128.
  • a locking roller 711z is arranged on the indoor side of the closing piece 731a.
  • the lower rotation restricting portion 733 has a driving portion 733a and a regulating rod portion 733b (lock portion).
  • the lower rotation restricting portion 733 has the same configuration as the above-described lower rotation restricting portion 713. Therefore, description of the lower rotation restricting portion 733 is omitted.
  • the opening / closing operation of the lower frame chamber outer opening / closing lid 128 will be described.
  • the lower opening / closing rotation member 731 is maintained in a locked state regulated by the regulating rod-shaped portion 733 b of the lower rotation regulation portion 733. . From this state, the regulation by the regulation bar 733b is released. Then, in the unlocked state in which the restriction by the restriction rod-shaped portion 733b is released, the projection direction slide panel members 21 and 22 are moved from the indoor side in the projection direction Y to the outdoor side.
  • the locked state of the regulating rod-shaped portion 733b is released and the locking force of the block locking portion 735 on the locking roller 731z is not applied, and as shown in FIG.
  • the rotating member 731 is rotated by its own weight to the side that falls to the outside around the rotating shaft 731x, and is inclined such that the outside portion of the lower frame outside opening / closing lid 128 is downward.
  • the rotation of the lower opening / closing rotation member 731 is increased as shown in FIG. Stop.
  • the lower frame outdoor opening / closing lid 128 is attached to the projecting piece 732b as shown in FIG.
  • the lower frame outdoor opening / closing lid 128 is accommodated at the outdoor end inside the lower frame 12 by rotating about the bent portion. In this manner, the lower frame chamber outside opening / closing lid 128 can be moved from the closed position to the open position.
  • the lower frame outdoor opening / closing lid 128 when the lower frame outdoor opening / closing lid 128 is moved from the open position to the closed position, the prospective direction slide panel bodies 21 and 22 are moved from the exterior side in the prospective direction Y to the indoor side, thereby moving from the closed position.
  • the lower frame chamber outside open / close lid 128 By the reverse operation of moving to the open position, the lower frame chamber outside open / close lid 128 can be moved from the open position to the closed position.
  • the lower lid opening / closing mechanism 73 of the second embodiment configured as described above can achieve the same effects as the lower lid opening / closing mechanism 71 of the first embodiment.
  • the case where the lower lid opening / closing mechanism 73 is arranged on the lower frame 12 has been described.
  • the present invention is not limited to this. By doing so, it can also be arranged on the upper frame 11.
  • FIG. 20 is a view of the lower portion of the sliding window 1 according to the third embodiment of the present invention, as viewed from the outdoor side.
  • FIG. 21 is an exploded perspective view of FIG.
  • FIG. 22 is a perspective view illustrating a state in which the end-side lid lifting / lowering mechanism 8A and the projection direction moving mechanism 5A are arranged on the lower frame 12A in the third embodiment.
  • FIG. 23A is a diagram illustrating a state in which the elevating lid member 90 has been lowered from the state illustrated in FIG.
  • FIG. 23B is a diagram illustrating a state where the prospective-direction slide panel body 20 has moved to the outdoor side from the state illustrated in FIG. 23A.
  • differences from the first embodiment will be mainly described.
  • the same or equivalent components as those in the first embodiment will be denoted by the same reference numerals, and redundant description will be omitted as appropriate.
  • an end-side lid lifting mechanism 8A and an anticipation direction moving mechanism 5A are arranged on the end side of the lower frame 12A in the left-right direction X.
  • the end-side lid lifting mechanism 8A is disposed below the projection-direction slide panel body 20 on the end side of the lower frame 12A in the left-right direction X.
  • the end-side lid lifting mechanism 8A is attached to the upper surface of the lower frame body 121 of the lower frame 12A, and raises and lowers the lifting lid member 90 (see FIGS. 20 and 21).
  • Barrier-free is realized by covering the recess K (groove) of the lower frame 12A when the direction slide panel body 20 moves in the viewing direction Y.
  • the elevating lid member 90 can move up to the same plane as the upper end of the recess K to cover the recess K.
  • the concave portion K is capable of accommodating the prospective direction slide panel body 20, and is formed to be concavely concave with respect to the upper surface 91a of the fixed lid member 91 disposed inside the left-right direction X in the finding direction.
  • the concave portion K forms a groove.
  • the projection direction slide panel body 20 is provided. Barrier-free is realized by covering the groove M of the lower frame 12 when it moves in the projection direction Y.
  • the end-side lid elevating mechanism 8A employs a configuration that is partially different from the configuration of the central-part lid elevating mechanism 8 disposed on the center side of the frame 10 of the first embodiment.
  • the center-side lid lifting mechanism 8 of the first embodiment is arranged such that the motor 82 and the cross arm 86 are displaced in the projection direction Y. This is mainly different from the motor offset type (see FIG. 16A) in that the motor 82 and the cross arm 86 are configured as a motor straight type (see FIG. 22). .
  • the end-side lid lifting mechanism 8A of the third embodiment is the same as the center-side lid lifting mechanism 8 of the first embodiment except that the motor 82 and the cross arm 86 are arranged in a straight line. It is a structure of. Therefore, the description of the end-side lid raising / lowering mechanism 8A of the third embodiment will be omitted by referring to the description of the center-side lid lifting / lowering mechanism 8 of the first embodiment.
  • the end-side lid lifting mechanism 8A is disposed on the end side of the frame body 10 in the left-right direction X, so that the configuration of the anticipation direction moving mechanism 5A of the third embodiment is the same as that of the third embodiment.
  • the projection direction moving mechanism 5A of the third embodiment has a notch formed in the standing plate 582a of the projection direction moving member 58A of the projection direction moving mechanism 5 as compared with the projection direction moving mechanism 5 of the first embodiment.
  • the main difference from the projection direction moving mechanism 5 of the first embodiment is that a 582b (see FIG. 22) is provided.
  • the projection direction moving mechanism 5A has four outer peripheral side edges of the projection direction slide panel body 20, similarly to the projection direction moving mechanism 5 of the above-described first embodiment. By moving each section in the viewing direction Y, the viewing direction slide panel body 20 is moved only in the viewing direction Y.
  • the reason why the notch 582b is provided in the standing plate 582a of the estimation direction moving member 58A of the estimation direction moving mechanism 5 will be described.
  • the anticipating direction of the anticipating direction moving mechanism 5 of the first embodiment Since the erecting plate 582 of the moving member 58 contacts the elevating lid member 90, it is necessary to cut the upper surface of the elevating lid member 90 so as to avoid the estimating direction moving member 58.
  • processing the upper surface of the lifting lid member 90 is not preferable in terms of design.
  • a notch 582b is formed in the standing plate 582a of the projection direction moving member 58A of the projection direction moving mechanism 5.
  • the notch 582b is formed inside the upright plate 582a in the left-right direction X, and moves the elevating lid member 90 when moving the estimating direction moving member 58A of the estimating direction moving mechanism 5 in the estimating direction Y. It is cut out in a rectangle so that it can be moved around.
  • the remaining configuration of the prospective direction moving mechanism 5A of the third embodiment is the same as that of the prospective direction moving mechanism 5 of the first embodiment, and a description thereof will be omitted.
  • FIG. 24 is a cross-sectional view showing a continuous window 1A using the FIX panel according to the fourth embodiment of the present invention.
  • the window 1A according to the fourth embodiment is different from the sliding window 1 of the first embodiment mainly in that it is a window using a FIX panel.
  • a pair of prospective slide panel bodies 20 and a pair of find direction slide panel bodies 30 of the first embodiment are arranged in the frame 10A in a straight line in the left-right direction X. Is done.
  • the configuration of the frame 10A of the fourth embodiment is different from the configuration of the frame 10 of the first embodiment.
  • the number of layers of the double-pane glass panel of the continuous window 1A of the fourth embodiment is the same as the number of layers of the double-pane glass panel of the sliding window 1 of the first embodiment.
  • the frame body 10A has a pair of vertical frames 13A, 13A.
  • the vertical frame 13A is formed such that the length of the vertical frame main body 131 in the viewing direction is shorter than that of the vertical frame 13 of the first embodiment, and extends vertically from the outdoor end of the vertical frame main body 131 to the inside in the finding direction. It further has a frame chamber outside extending portion 134.
  • a fitting portion 134a is provided on the inside facing surface of the inner end of the vertical frame exterior extension portion 134.
  • the cushion member 134b is attached to the fitting portion 134a.
  • the sliding window 1 of the first embodiment is different from the sliding window 1 of the first embodiment mainly in that it is a sliding window using a FIX panel. Similar effects can be obtained.
  • FIG. 25 is a cross-sectional view showing a continuous window 1B using the FIX panel according to the fifth embodiment of the present invention.
  • the window 1B according to the third embodiment includes airtight members 227, 318, 327, and 328 of the window 1A according to the fourth embodiment, as compared with the window 1A according to the fourth embodiment. This is mainly different in that it does not include the cushioning members 329b and 229 disposed outside the room.
  • the window 1B of the fifth embodiment is configured by a window using a FIX panel, like the window 1A of the fourth embodiment.
  • the number of layers of the double-pane glass panel of the connecting window 1B of the fifth embodiment is the same as the number of layers of the double-pane glass panel of the sliding window 1 of the first embodiment and the connecting window 1A of the fourth embodiment. Is the same.
  • the connecting window 1B of the fifth embodiment is constituted by a connecting window using a FIX panel, the opening and closing operation is not performed.
  • the continuous window 1B of the fifth embodiment does not include the airtight members 227, 318, 327, and 328 as compared with the sliding window 1 of the first embodiment, and the cushioning members 329b and 229 are disposed outside. Not equipped.
  • the connecting window 1B of the fourth embodiment is different from the connecting window 1B except for the effects of the airtight members 217, 227, 317, 318, 327, 328 and the cushioning members 329b, 229 arranged on the outdoor side.
  • the same effect as that of the window 1A can be obtained.
  • FIG. 26 is a cross-sectional view showing a continuous window 1C using the FIX panel according to the sixth embodiment of the present invention.
  • the number of layers of the double-pane glass panel of the connecting window 1C according to the sixth embodiment is greater than that of the sliding window 1 of the first embodiment and the connecting window 1A of the fourth embodiment.
  • the connecting window 1C of the sixth embodiment is configured by a connecting window using a FIX panel, like the connecting window 1A of the fourth embodiment and the connecting window 1B of the fifth embodiment.
  • the double glazing 210A, 220A, 310A, 320A of the sixth embodiment does not include the intermediate glass panels 212, 222, 312, 322 of the first embodiment, and the outdoor glass panels 211, 221, 311, 321, It has indoor side glass panels 213, 223, 313, 323.
  • the pair of glass panel spacers 214A, 224A, 314A, and 324A are inside the reinforcing members 215, 225, 226, 316, 325, and 326 in the left-right direction X, and the outdoor glass panels 211, 221, 311, and 321 are located on the indoor side. It is arrange
  • the connecting window 1C according to the sixth embodiment is otherwise the same as the connecting window 1A of the fourth embodiment.
  • FIG. 27 is a cross-sectional view showing a continuous window 1D using the FIX panel according to the seventh embodiment of the present invention.
  • the window 1D according to the seventh embodiment is different from the window 1C according to the sixth embodiment in that the airtight members 227, 318, 327, 328 of the window 1D according to the sixth embodiment are provided. This is mainly different in that it does not include the cushioning members 329b and 229 arranged on the outdoor side.
  • the connecting window 1D of the seventh embodiment is configured by a connecting window using a FIX panel, like the connecting window 1C of the sixth embodiment.
  • the number of layers of the double-pane glass panel of the continuous window 1D of the seventh embodiment is the same as the number of layers of the double-pane glass panel of the continuous window 1C of the sixth embodiment.
  • the connecting window 1D of the seventh embodiment is constituted by a connecting window using a FIX panel, the opening and closing operation is not performed.
  • the continuous window 1D of the seventh embodiment does not include the airtight members 227, 318, 327, and 328 and is different from the sliding window 1 of the first embodiment in that the cushioning members 329b and 229 are disposed outside. Not equipped.
  • the connecting window 1D of the sixth embodiment differs from the connecting window 1D in the points other than the effects of the airtight members 217, 227, 317, 318, 327, 328 and the cushioning members 329b, 229 arranged on the outdoor side.
  • the same effect as that of the window 1C can be obtained.
  • the sliding window 1E according to the eighth embodiment will be described.
  • the eighth embodiment is a modification of the first embodiment.
  • projection direction slide panel bodies 21 and 22 and the discovery direction slide panel bodies 31 and 32 of the first embodiment instead of the projection direction slide panel bodies 21 and 22 and the discovery direction slide panel bodies 31 and 32 of the first embodiment, projection direction slide panel bodies 21E and 22E and a discovery direction slide panel body 21 and 22E.
  • the direction slide panel bodies 31E and 32E can also be applied.
  • the other configuration is the same as the configuration of the first embodiment. In the description of the eighth embodiment, differences from the first embodiment will be described.
  • FIG. 28 is a view corresponding to a cross-sectional view taken along the line AA of FIG. 1, and is a cross-sectional view showing a state where the sliding window 1E of the eighth embodiment is located at the closed position.
  • FIG. 29 is a cross-sectional view showing a state where the prospective-direction slide panel body 20E moves to the outdoor side from the closed position shown in FIG. 28 and the sliding window 1E is located at an intermediate position.
  • FIG. 30 is a vertical cross-sectional view showing a state in which the sliding panel body 30E in the finding direction has moved outward in the left-right direction from the middle position shown in FIG. 29 and the sliding window is located at the closed position.
  • FIG. 31 is a view corresponding to a cross-sectional view taken along line BB of FIG.
  • FIG. 32 is a diagram corresponding to a cross-sectional view taken along line CC of FIG.
  • FIG. 33 is a view corresponding to a cross-sectional view taken along line DD of FIG.
  • the sliding window 1E includes prospective direction slide panel bodies 21E and 22E, and find direction slide panel bodies 31E and 32E.
  • Each of the pair of prospective-direction slide panel bodies 21E and 22E is formed of double-glazed glass 210E and 220E having two glass panels (outdoor glass panels 211E and 221E and indoor glass panels 213E and 223E). Further, the pair of finding direction slide panel bodies 31E and 32E are formed of double-glazed glass 310E and 320E having two glass panels (outdoor glass panels 311E and 321E and indoor glass panels 313E and 323E), respectively. You.
  • the double-glazed glass 210E, 220E, 310E, 320E has a pair of inter-glass panel spacers 214E, 224E, 314E on the outer sides on both sides in the lateral direction X in the finding direction. , 324E.
  • the pair of projection direction slide panel bodies 21E and 22E and the pair of projection direction slide panel bodies 31E and 32E are made of reinforcing materials 216E, 226E, 315E, 316E, 325E and 326E, and buffer materials 219E, 229E, 319E and 319F. , 329E, and 329F.
  • the inter-glass panel spacers 214E, 224E, 314E, 324E are respectively disposed on the left and right end sides of the pair of projection direction slide panel bodies 21E, 22E and the pair of discovery direction slide panel bodies 31E, 32E.
  • the inter-glass-panel spacers 214E, 224E, 314E, 324E are arranged between the glass panels (outdoor glass panels 211E, 221E, 311E, 321E, indoor glass panels 213E, 223E, 313E, 323E) in the prospective direction Y, respectively. Is done.
  • the reinforcing members 216E, 226E, 315E, 316E, 325E, and 326E are provided on the left and right sides of the inter-glass panel spacers 214E, 224E, 314E, and 324E arranged in the abutting portions 41E, 42E, and 43E.
  • the reinforcing members 216E, 226E, 315E, 316E, 325E, and 326E are attached to the outside in the direction X, and are formed in a rectangular parallelepiped shape.
  • the reinforcing members 216E, 226E, 315E, 316E, 325E, and 326E are abutting portions 41E in the left-right direction X of the outdoor glass panels 211E, 221E, 311E, 321E and the indoor glass panels 213E, 223E, 313E, 323E, respectively.
  • the reinforcing members 216E, 226E, 315E, 316E, 325E, and 326E are projected at the abutting portions 41E, 42E, and 43E at the abutting portions 41E when the sliding panel body 20E moves from the outside to the indoor side.
  • the reinforcing member 216E of the direction sliding panel body 20E is pressed against the reinforcing member 315E of the finding direction sliding panel body 30E, and the reinforcing member 226E of the prospective direction sliding panel body 20E is brought into contact with the finding direction sliding panel body 30E at the abutting portion 43E.
  • the projection-direction slide panel body 21E is disposed at the end of the projection-direction slide panel body 21E.
  • the reinforcement member 216E to be provided is disposed outside the room, and the reinforcement member 315E disposed at an end of the sliding panel body 31E in the finding direction is disposed inside the room.
  • the reinforcing member 216E of the projection direction slide panel body 21E is arranged on the outdoor side, and the reinforcement member 216E of the finding direction slide panel body 31E is arranged on the indoor side.
  • the reinforcing material 315E is disposed so as to overlap when viewed in the viewing direction Y. Thereby, when the prospective direction slide panel body 21E moves from the outdoor side to the indoor side, the reinforcing member 216E of the prospective direction slide panel body 21E is pressed against the reinforcing member 315E of the finding direction slide panel body 31E.
  • a reinforcing member 226E disposed at an end of the projection-direction slide panel body 22E is disposed outside the room.
  • the reinforcing member 325E arranged at the end of the sliding panel body 32E in the direction of finding is arranged on the indoor side. Therefore, in the abutting portion 43E, the reinforcing member 226E of the projection direction slide panel body 22E is disposed outside the room, and the reinforcing material 325 of the finding direction slide panel body 32E is disposed indoors, and the reinforcing member 226E is disposed.
  • the reinforcing material 325E is disposed so as to overlap when viewed in the viewing direction Y. Thereby, when the prospective direction slide panel body 22E moves from the outdoor side to the indoor side, the reinforcing member 226E of the prospective direction slide panel body 22E is pressed against the reinforcing member 325E of the finding direction slide panel body 31E.
  • the reinforcing material 316E of one finding direction slide panel body 31E is disposed outside the room, and the other finding direction slide panel body.
  • a 32E reinforcing member 326E is disposed on the indoor side.
  • the reinforcing members 316E and 326E are arranged so as to overlap when viewed in the viewing direction Y.
  • the pair of projection direction slide panel bodies 21E and 22E and the pair of discovery direction slide panel bodies 31E and 32E are provided between the pair of glass panels at the upper end and the lower end, respectively. It has spacers 231E and 331E.
  • the pair of glass panel spacers 231E and 331E are disposed between the glass panels on the upper end side and the lower end side of the pair of projection direction slide panel bodies 21E and 22E and the pair of discovery direction slide panel bodies 31E and 32E, respectively. .
  • the pair of projection direction slide panel bodies 21E and 22E are supported at the lower end by the first lower moving support 201E and at the upper end by the first upper support 206E.
  • the pair of finding direction slide panel bodies 31E and 32E are supported at the lower end by the second lower moving support 301E and at the upper end by the second upper support 306E.
  • the present invention is not limited to the above-described embodiments and modifications, and can be appropriately modified.
  • the airtight members 318 and 328 are provided on both the adjacent first-looking-direction slide panel body 31 and the second finding-direction-slide panel body 32, but the invention is not limited to this.
  • the airtight material may be provided only on one of the adjacent panel bodies.
  • the airtight members 318 and 328 are provided at the center of the first finding direction slide panel body 31 and the second finding direction slide panel body 32 in the viewing direction, but the invention is not limited to this.
  • the airtight members 318 and 328 may be provided on the indoor side or the outdoor side in the expected direction.
  • a sealing material having airtightness and watertightness may be provided at a position where the cushioning materials 219, 229, 319a, 319b, 329a, and 329b of the embodiment are arranged. 229, 319a, 319b, 329a, and 329b may have a function of a sealing material having airtightness and watertightness.
  • a glass panel having two or three air layers is used as the double-glazed glass.
  • the present invention is not limited to this. You may.
  • the shielding portion is constituted by the step-projecting shielding portions 316a and 325a that protrude from the reinforcing members 316 and 325, but is not limited thereto.
  • the shielding unit is configured by, for example, attaching a film or a plate material to the indoor glass surface or the outdoor glass surface of the extending portion 313b of the indoor glass panel 313 or the extending portion 321b of the outdoor glass panel 321.
  • the extension 313b of the indoor glass panel 313 or the extension 321b of the outdoor glass panel 321 may be colored.
  • the step-projecting shielding portions 316a and 325a are provided on both the reinforcing members 316 and 325, but the present invention is not limited to this.
  • the portion may be provided on one of the reinforcing members 316 and 325.
  • the estimation direction moving mechanism 5 is connected to the four outer peripheral side edges of the estimation direction slide panel body 20, but the present invention is not limited to this.
  • the projection direction moving mechanism 5 may be arranged at the center of the upper side of the projection direction slide panel body 20 in the left-right direction X and connected to two outer peripheral edges at the lower side.
  • the upper side of the directional slide panel body 20 may be connected to the two outer peripheral edges, and may be arranged at the center of the lower side in the left-right direction X.
  • the present invention is not limited to this.
  • any mechanism may be used as long as it is a mechanism that closes an open portion when the slide panel body moves, and can be applied to a case where the slide panel body is used as a sliding window.
  • the center-side lid raising / lowering mechanism 8 is disposed on the lower frame 12, but is not limited thereto.
  • the center-side lid lifting mechanism 8 may be disposed on the upper frame 11. .
  • the frame-side rising and bending piece 121a is disposed on the lower frame 12 in the center-side lid lifting mechanism 8, but is not limited thereto, and may be disposed on the upper frame 11, for example.
  • the frame-side rising bent piece 121a, the motor-side bent piece 812a, or the arm-accommodating-side bent piece 873a is formed in an L-shaped cross section, but is not limited thereto, and may be formed in, for example, a T-shaped cross section.
  • bent distal end side of the frame-side rising bent piece 121a, the motor-side bent piece 812a, or the arm-accommodating-side bent piece 873a is formed in a horizontal plane, but is not limited to this, and may be formed in a vertical plane or inclined. It may be formed in a plane.
  • the motor straight type end cover lifting mechanism 8A of the third embodiment may be used.
  • the motor-straight-type end-side lid raising / lowering mechanism 8A the motor offset type center-side lid lifting / lowering mechanism 8 of the first embodiment may be used.
  • the rotating shaft 83 is configured by a ball screw mechanism.
  • the present invention is not limited to this.
  • the rotating shaft 83 may be configured by a sliding screw mechanism.
  • the prospective direction slide panel body 20 when the prospective direction slide panel body 20 is moved in the prospective direction Y, the prospective direction slide panel is moved.
  • the upper frame gap S1 (gap) between the body 20 and the upper frame outdoor extension 112 (outdoor piece) is configured to be covered.
  • the anticipation direction slide panel body 20 moves in the anticipation direction Y
  • the anticipation direction slide panel body 20 and the lower frame outdoor extension part 122 (outside piece) are moved to the lower frame outdoor opening / closing lid 128 (cover member).
  • the lower frame gap S2 (gap) between them.
  • the cover member may be configured to cover a gap formed between the projection direction slide panel body 20 and the indoor side piece.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Wing Frames And Configurations (AREA)

Abstract

La présente invention concerne une vitre multicouche et une garniture, qui sont conçues pour empêcher la formation d'un espace reliant l'intérieur d'une pièce à l'extérieur de celle-ci. Des vitres multicouche 310, 320 sont dotées de premières vitres 311, 323, de secondes vitres 313, 321 et de matériaux de renfort 316, 325 placés entre les premières vitres 311, 323 et les secondes vitres 313, 321, respectivement. Selon l'invention : au moins au niveau d'une extrémité respective des vitres multicouche, une extrémité respective des secondes vitres 313, 321 présente des parties en saillie 313b, 321b qui font saillie vers un côté externe en direction plane des surfaces de vitre des secondes vitres 313, 321 au-delà des surfaces d'extrémité 311a, 323a des premières vitres 311, 323; et des parties de protection 316a, 325a sont fournies à des parties, des vitres multicouche 310, 320, correspondant chacune au moins à une surface de vitre côté intérieur ou à une surface de vitre côté extérieur de la partie en saillie 313b, 321b.
PCT/JP2019/032472 2018-08-31 2019-08-20 Vitre multicouche et garniture équipée de celle-ci WO2020045170A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP19855302.6A EP3845735A4 (fr) 2018-08-31 2019-08-20 Vitre multicouche et garniture équipée de celle-ci

Applications Claiming Priority (8)

Application Number Priority Date Filing Date Title
JP2018-163830 2018-08-31
JP2018163829A JP7073231B2 (ja) 2018-08-31 2018-08-31 複層ガラス及びこれを備える建具
JP2018163832A JP7126409B2 (ja) 2018-08-31 2018-08-31 サッシ枠
JP2018-163829 2018-08-31
JP2018163831A JP7039425B2 (ja) 2018-08-31 2018-08-31 建具
JP2018-163832 2018-08-31
JP2018-163831 2018-08-31
JP2018163830A JP7195820B2 (ja) 2018-08-31 2018-08-31 建具

Publications (1)

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WO2020045170A1 true WO2020045170A1 (fr) 2020-03-05

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Families Citing this family (1)

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Publication number Priority date Publication date Assignee Title
FR3129682B1 (fr) * 2021-11-30 2024-04-12 Christophe Carrette Système coulissant de fenêtres vitrées, en particulier porte-fenêtre, dépourvu de profilé de jonction en angle

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JPS5959518A (ja) * 1982-09-03 1984-04-05 メツセルシユミツト−ベルコウ−ブロ−ム・ゲゼルシヤフト・ミト・ベシユレンクテル・ハフツング 車輛窓、特に列車の側面窓
JPH0645074U (ja) 1992-11-29 1994-06-14 コマニー株式会社 移動壁の側端部構造及びジョイントゴム
JPH09228748A (ja) * 1996-02-23 1997-09-02 Asahi Glass Co Ltd 複層ガラス障子、回転窓及びスライド窓
JP2007100450A (ja) * 2005-10-06 2007-04-19 Bs Line Kk 横移動式シャッター装置
JP2008063746A (ja) * 2006-09-05 2008-03-21 Shin Nikkei Co Ltd 複層ガラスサッシ
JP3189401U (ja) 2013-12-24 2014-03-13 興華 官 電動昇降ゲート
JP2015145569A (ja) * 2014-02-03 2015-08-13 Agc−Lixilウィンドウテクノロジー株式会社 多重ガラス障子
JP2018105121A (ja) 2018-04-05 2018-07-05 三協立山株式会社 建具

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DE631068C (de) * 1932-10-14 1936-06-11 Anton Potthoff & Helmuth Loren Fenster, bei dem ein Teil der Fluegel seitlich verschiebbar und ausschwenkbar ist
CH317797A (de) * 1954-03-22 1956-12-15 Baer Soehne Fenster
DE1210712B (de) * 1961-04-17 1966-02-10 Eltreva Ag Ausstellvorrichtung fuer parallel zuruecksetzbare sowie wahlweise um eine seitliche Achse schwenkbare Fluegel von Fenstern, Tueren od. dgl.

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JPS55244B2 (fr) 1971-12-02 1980-01-07
JPS58172673U (ja) * 1982-05-14 1983-11-18 北進木工株式会社 引違い戸
JPS5959518A (ja) * 1982-09-03 1984-04-05 メツセルシユミツト−ベルコウ−ブロ−ム・ゲゼルシヤフト・ミト・ベシユレンクテル・ハフツング 車輛窓、特に列車の側面窓
JPH0645074U (ja) 1992-11-29 1994-06-14 コマニー株式会社 移動壁の側端部構造及びジョイントゴム
JPH09228748A (ja) * 1996-02-23 1997-09-02 Asahi Glass Co Ltd 複層ガラス障子、回転窓及びスライド窓
JP2007100450A (ja) * 2005-10-06 2007-04-19 Bs Line Kk 横移動式シャッター装置
JP2008063746A (ja) * 2006-09-05 2008-03-21 Shin Nikkei Co Ltd 複層ガラスサッシ
JP3189401U (ja) 2013-12-24 2014-03-13 興華 官 電動昇降ゲート
JP2015145569A (ja) * 2014-02-03 2015-08-13 Agc−Lixilウィンドウテクノロジー株式会社 多重ガラス障子
JP2018105121A (ja) 2018-04-05 2018-07-05 三協立山株式会社 建具

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