WO2018227955A1 - 节约空间的可全开式移动门窗系统 - Google Patents

节约空间的可全开式移动门窗系统 Download PDF

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Publication number
WO2018227955A1
WO2018227955A1 PCT/CN2018/071687 CN2018071687W WO2018227955A1 WO 2018227955 A1 WO2018227955 A1 WO 2018227955A1 CN 2018071687 W CN2018071687 W CN 2018071687W WO 2018227955 A1 WO2018227955 A1 WO 2018227955A1
Authority
WO
WIPO (PCT)
Prior art keywords
door
window
space
traverse
track
Prior art date
Application number
PCT/CN2018/071687
Other languages
English (en)
French (fr)
Inventor
刘海波
顾贤光
肖炳科
孙波
Original Assignee
江苏建筑职业技术学院
中国矿业大学
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
Application filed by 江苏建筑职业技术学院, 中国矿业大学 filed Critical 江苏建筑职业技术学院
Priority to US16/478,855 priority Critical patent/US11002051B2/en
Publication of WO2018227955A1 publication Critical patent/WO2018227955A1/zh

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D13/00Accessories for sliding or lifting wings, e.g. pulleys, safety catches
    • 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
    • E05D15/0604Suspension arrangements for wings for wings sliding horizontally more or less in their own plane allowing an additional movement
    • 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
    • E05D15/58Suspension arrangements for wings with successive different movements with both swinging and sliding movements
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F15/00Power-operated mechanisms for wings
    • E05F15/60Power-operated mechanisms for wings using electrical actuators
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F15/00Power-operated mechanisms for wings
    • E05F15/60Power-operated mechanisms for wings using electrical actuators
    • E05F15/603Power-operated mechanisms for wings using electrical actuators using rotary electromotors
    • E05F15/611Power-operated mechanisms for wings using electrical actuators using rotary electromotors for swinging wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F15/00Power-operated mechanisms for wings
    • E05F15/60Power-operated mechanisms for wings using electrical actuators
    • E05F15/603Power-operated mechanisms for wings using electrical actuators using rotary electromotors
    • E05F15/632Power-operated mechanisms for wings using electrical actuators using rotary electromotors for horizontally-sliding wings
    • 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
    • E06B3/4636Horizontally-sliding wings for doors
    • E06B3/4645Horizontally-sliding wings for doors with the sliding wing flush closing or moving a considerable distance towards the opening when closing
    • 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
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/40Motors; Magnets; Springs; Weights; Accessories therefor
    • E05Y2201/43Motors
    • 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
    • E05Y2400/00Electronic control; Electrical power; Power supply; Power or signal transmission; User interfaces
    • E05Y2400/10Electronic control
    • E05Y2400/40Control units therefor
    • E05Y2400/41Control units therefor for multiple motors
    • 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
    • E05Y2800/00Details, accessories and auxiliary operations not otherwise provided for
    • E05Y2800/10Additional functions
    • E05Y2800/102Additional wing movements
    • 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
    • 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
    • E05Y2900/148Windows
    • 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

Definitions

  • the present invention relates to a mobile door and window system, and belongs to the field of intelligent building technology.
  • the door form such as the floor-to-ceiling window
  • the door form is either a rotary opening and closing mode or a push-pull opening and closing mode
  • the space of the door and window cannot be completely opened, and the rotary opening and closing mode is adopted.
  • the sliding door and window will also leave one or two doors and windows, and it will not be fully opened, which will limit the space in the building and make it difficult to meet further requirements. Take advantage of space requirements.
  • the present invention provides a space-saving fully openable mobile door and window system, which can realize complete opening, further save space, intelligent control mode and convenient use.
  • a space-saving fully openable moving door and window system including a door form installation space, a door form storage space, and a door form control module.
  • the door window installation space includes an upper track groove located in the top plate and a lower track groove located below the ground, the upper track groove and the lower track groove are in the same direction and parallel, and the plurality of sectors are arranged between the upper track groove and the lower track groove.
  • a door form the door form storage space is located at one end of the door window installation space, and the door form storage space comprises a door form overlapping space between the top plate and the ground, an upper vertical space located in the top plate, and a lower vertical position under the ground.
  • Space, the lateral width of the door window overlapping space is the width of each door window, and the longitudinal width of the door window folding space is the sum of the thicknesses of all the door forms in the same row.
  • the door window comprises a door and window body, a door and window top frame at an upper part of the door and window body, and a door and window base at a lower part of the door and window body, wherein the upper track groove is provided with an upper traverse track, and the upper part of the door and window top frame is matched with the upper traverse track.
  • the upper traverse guide wheel is provided with a lower traverse track in the lower track groove, and the lower traverse wheel is matched with the lower traverse track at the lower part of the door and window base, and at least the lower traverse wheel of each door form
  • There is a transverse moving force wheel and the transverse moving force wheel is driven by the traverse motor of each door form
  • the upper vertical displacement space is provided with an upper longitudinal moving track
  • the upper vertical moving track is perpendicular to the upper horizontal moving track
  • the upper vertical moving track An upper rail frame capable of longitudinally sliding along the upper longitudinal rail is mounted, and the upper rail frame is erected on the upper longitudinal rail by an upper longitudinal moving force wheel, and the upper longitudinal moving force wheel is driven by the upper longitudinal moving motor, and the lower vertical moving space is lower
  • the position corresponding to the overlapping space of the door form has an upper moving slot
  • the upper rail space has an upper rail frame receiving cavity at a position opposite to the upper moving slot
  • the upper rail frame has a plurality of upper docking rails matched with
  • the upper docking track is a continuation of the upper traverse track in the lateral direction, when an upper docking track After the upper traverse track is docked, the remaining upper butt track and the upper traverse track are staggered, and the upper traverse guide wheel of the upper part of each door form can be inserted into the corresponding upper butt track after docking.
  • the lower vertical displacement space is provided with a lower longitudinal movement rail, and the lower vertical movement rail is perpendicular to the lower transverse movement rail, and the lower vertical displacement rail is provided with a lower rail frame capable of longitudinally sliding along the lower longitudinal orbit, and the lower rail frame passes
  • the lower longitudinal moving force wheel is erected on the lower longitudinal moving track, and the lower vertical moving force wheel is driven by the lower longitudinal moving motor, and the upper part of the lower vertical moving space and the position corresponding to the door window overlapping space are opened with a lower moving slot, the lower vertical shift
  • a lower rail frame receiving cavity is arranged inside the space opposite to the lower moving slot, and a lower docking rail is matched with the door form in the upper part of the lower rail frame, and the lower docking track is a continuation of the lower traverse track in the lateral direction.
  • the door form control module includes a main control unit, a main control switch, a communication module, an inductive switch, a driving unit and an execution unit, wherein the main control switch is connected to the main control unit through a communication module, and the main control unit passes the driving unit.
  • the driving execution unit includes an extension motor and the traverse motor, and the synchronous operation of the upper and lower longitudinal motors is regarded as a whole to constitute the longitudinal motor, and the induction switch is connected to the main control unit.
  • the communication module sends a message to the main control unit, and the main control unit drives the traverse motor to move through the drive unit, and controls the door window to move toward the door window storage space, and when the sensor switch senses the door and window
  • the sensing switch sends a signal to the main control unit, and the main control unit drives the longitudinal motor to move through the driving unit, and controls the upper and lower rail frames to vertically move one station to the door window storage direction.
  • the rear upper and lower docking tracks are docked with the upper and lower traverse tracks; the above process is repeated, and each door form is controlled to enter a predetermined track and overlapped in the door window overlapping space.
  • the communication module sends a message to the main control unit, and the main control unit drives the traverse motor to move through the driving unit, and the control door window moves toward the door window installation space, and the sensing switch senses the door and window.
  • the sensing switch sends a signal to the main control unit, and the main control unit drives the longitudinal motor through the driving unit to control the vertical direction of the upper and lower rail frame storage chambers.
  • a station enables the latter upper and lower docking tracks to be docked with the upper and lower traverse tracks; the above process is repeated, and each door form is controlled to enter the upper and lower traverse tracks and expand in the door window installation space to close the space.
  • each of the door and window bodies is hingedly connected to the door and window top frame and the door and window base through a single window rotating shaft, and the other end of each of the door and window bodies is locked on the door and window base by a single window manual latch. .
  • One end of each of the door and window bodies adjacent to the single window manual latch is formed with a concave arcuate groove for providing a rotational space for the adjacent door and window body.
  • Each of the door forms is provided with a rechargeable power supply for supplying power to the traverse motor, and the rechargeable power source passes through the positive and negative wires.
  • the conductor interface is connected with the conductor interfaces of other door forms to form a parallel charging circuit.
  • the wall is provided with an AC charging connector, and the conductor interface of the door window near the wall is docked with the AC charging connector to form a charging circuit.
  • the upper longitudinal motor and the lower longitudinal motor are connected to a wired power source.
  • the communication module is a wired communication device.
  • the communication module is a wireless communication device.
  • the upper longitudinal motor, the traverse motor and the lower longitudinal motor are all connected to the corresponding power wheel through a belt drive pair or a chain drive pair.
  • the beneficial effects of the present invention are:
  • the present invention adopts a horizontal and vertical movement system, and a door window storage space is provided, and all the door forms can be completely accommodated in the door window storage space, so that the door forms are all opened, and the outlet is provided. Take up all the space.
  • the door form storage space can be located inside or outside the wall, hide the stacked door form, realize the effective docking and automatic action between the door forms through the operation of the movement system and the control system, and is convenient to use, save space, and effectively improve the space. Utilization rate.
  • a single door window rotation device is also provided, and the manner of opening the door window is diversified, and the use of doors, windows and spaces is more free and flexible.
  • a door form charging system is provided, which can be charged after the door and window are closed.
  • the invention has good promotion and utilization value.
  • FIG. 1 is a schematic view of the structure of the present invention (please rotate the 90 degree clockwise reading);
  • Figure 2 is a bottom view of Figure 1 (please rotate 90 degrees clockwise to read the picture);
  • Figure 3 is a partial enlarged view of the door window installation space and the door window storage space of the present invention.
  • Figure 4 is a cross-sectional view taken along line A-A of Figure 1;
  • Figure 5 is a cross-sectional view taken along line B-B of Figure 1;
  • Figure 6 is a schematic view of a single door window structure
  • Figure 7 is a schematic view showing the rotation of a single door window
  • Figure 8 is a schematic diagram of power supply charging of the present invention.
  • Figure 9 is a left side view of Figure 8.
  • Figure 10 is a control schematic diagram of the present invention.
  • Figure 11 is a schematic view showing the state of use of the present invention
  • Figure 12 is a schematic view of the second state of use of the present invention
  • Figure 13 is a schematic view of the state of use of the present invention.
  • Figure 14 is a schematic view of the state of use of the present invention.
  • a space-saving fully openable moving door and window system as shown in FIG. 1 to FIG. 10, comprising a door form installation space 11, a door form storage space 1 and a door form control module;
  • the door window installation space 11 includes an upper track groove 19 located in the top plate and a lower track groove 20 located below the ground.
  • the upper track groove is parallel and parallel with the lower track groove, and the plurality of sectors are arranged between the upper track groove and the lower track groove.
  • a door form 8 the door form storage space 1 is located at one end of the door window installation space, the door form storage space 1 includes a door form overlapping space 21 between the top plate and the ground, and an upper vertical space 2 located in the top plate.
  • a lower lower vertical space 17 a lateral width of the door form overlapping space 21 is a width of each door window 8
  • a longitudinal width of the door form overlapping space is a sum of thicknesses of all door forms in the same row;
  • the door window 8 includes a door and window body 8-1, a door and window top frame 8-2 at the upper part of the door and window body, and a door and window base 8-3 at the lower part of the door and window body.
  • the upper track groove 19 is provided with an upper traverse track 10, a door and window top frame.
  • the upper portion of the 8-1 is provided with an upper traverse guide wheel 9 which cooperates with the upper traverse track 10, and the lower traverse track 12 is provided with a lower traverse track 12, and the lower part of the door and window base 8-3 is fitted with the lower traverse
  • the lower traverse wheel 13 of the track 12 cooperates, and at least one transverse movement wheel of each lower traverse wheel 13 of the door form is driven by the traverse motor 23 of each door form; the upper longitudinal movement
  • the space 2 is provided with an upper longitudinal trajectory 3, and the upper vertical trajectory 3 is perpendicular to the upper traverse track 10, and the upper vertical trajectory is provided with an upper rail frame 7 capable of longitudinally sliding along the upper longitudinal trajectory, and the upper rail frame 7 passes the upper longitudinal moving force
  • the wheel 6 is erected on the upper longitudinal movement rail, and the upper longitudinal movement force wheel is driven by the upper longitudinal movement motor 22, and the upper vertical movement force wheel 6 has an upper axle 5 therebetween.
  • the upper longitudinal movement motor 22 drives the upper axle first through the transmission pair. 5 turns.
  • An upper movement notch 2-1 is opened at a position corresponding to a lower portion of the upper vertical displacement space 2 and the door window overlap space, and an upper rail frame storage cavity 2-2 is provided at a position opposite to the upper movement slot in the upper vertical movement space 2
  • the upper portion of the upper rail frame 7 is provided with a plurality of upper docking rails 4 which cooperate with the door window.
  • the upper docking rails are continuation of the upper traverse rails 10 in the lateral direction, when an upper docking rail is docked with the upper traverse rails. Thereafter, the remaining upper butt rails are offset from the upper traverse rails, and the upper traverse guide wheels 9 at the upper portion of each door window 8 can be accessed into the corresponding upper docking rails 4 after docking.
  • the lower vertical displacement space 17 is provided with a lower vertical movement rail 14 which is perpendicular to the lower horizontal movement rail 12, and the lower vertical movement rail 14 is provided with a lower rail frame which can slide longitudinally along the lower vertical movement rail 14.
  • the lower rail frame is erected on the lower longitudinal movement rail by the lower longitudinal movement force wheel 16
  • the lower longitudinal movement force wheel 16 is driven by the lower longitudinal movement motor 24
  • the lower longitudinal movement force wheel 16 has the lower axle 15 between the lower longitudinal movement motor 24 first drives the lower axle 15 to rotate by the transmission pair.
  • a lower moving slot 17-1 is opened at an upper portion of the lower vertical shifting space 17 corresponding to the door window overlapping space 21, and a lower rail frame is disposed at a position opposite to the lower moving slot 17-1 in the lower vertical shifting space.
  • the cavity 17-2, the upper portion of the lower rail frame 18 is provided with a plurality of lower docking rails 18-1 cooperating with the door window, and the lower docking rail is a continuation of the lower traverse rail 12 in the lateral direction, when a lower docking rail and the lower After the traverse track is docked, the remaining lower butt track and the lower traverse track are staggered, and the lower traverse wheel 13 at the lower part of each door form can enter the corresponding lower butt track after docking; the present invention adopts a horizontal and vertical moving system, The door form storage space is set, and all the door forms can be completely stored in the door form storage space, so that the door forms are all opened, and all the occupied space is given out.
  • the door form storage space can be located inside or outside the wall, hide the stacked door form, realize the effective docking and automatic action between the door forms through the operation of the movement system and the control system, and is convenient to use, save space, and effectively improve the space. Utilization rate.
  • the door form control module includes a main control unit, a main control switch, a communication module, an inductive switch, a driving unit and an execution unit, wherein the main control switch is connected to the main control unit through a communication module, and the main control unit passes through the driving unit.
  • the driving execution unit includes an extension motor and the traverse motor, and the synchronous operation of the upper and lower longitudinal motors is regarded as a whole to constitute the longitudinal motor, and the induction switch is connected to the main control unit.
  • the communication module sends a message to the main control unit, and the main control unit drives the traverse motor to move through the driving unit, and controls the door window to move toward the door window storage space, and when the sensor switch senses the door and window After the body completely enters the corresponding upper and lower docking tracks, the sensing switch sends a signal to the main control unit, and the main control unit drives the longitudinal motor to move through the driving unit, and controls the upper and lower rail frames to vertically move one station to the door window storage direction. , the rear upper and lower docking tracks are docked with the upper and lower traverse tracks; the above process is repeated, and each door form is controlled to enter a predetermined track and overlapped in the door window overlapping space.
  • the main control unit When the main control switch starts the closing command, the main control unit sends a communication to the main control unit through the communication module, and the main control unit drives the traverse motor to move through the driving unit, and controls the door window to move toward the door window installation space, and when the sensing switch senses the door and window After the body is completely detached from the corresponding upper and lower docking tracks, the sensing switch sends a signal to the main control unit, and the main control unit drives the longitudinal motor through the driving unit to control the vertical direction of the upper and lower rail frame storage chambers.
  • a station enables the latter upper and lower docking tracks to be docked with the upper and lower traverse tracks; the above process is repeated, and each door form is controlled to enter the upper and lower traverse tracks and expand in the door window installation space to close the space.
  • One end of each of the door and window bodies 8-1 is hingedly connected to the door and window top frame 8-2 and the door and window base 8-3 through a single window rotating shaft 8-4, and each of the door and window bodies 8 is The other end of the -1 is locked to the door and window base 8-3 by a single window manual latch 8-5.
  • the manual latch 8-5 effectively secures the door form.
  • each of the door and window bodies 8-1 adjacent to the single-window manual latches 8-5 is formed with a concave curved recess 8-6 for providing a rotational space for the adjacent door and window bodies 8-1.
  • the device for rotating a single door window of the invention realizes diversification of the manner in which the door window is opened, and the utilization of the door and window and the space is more free and flexible.
  • Each of the door forms 8 is provided with a rechargeable power source 25 for supplying power to the traverse motor 23, and the rechargeable power source 25 is connected to the conductor interface 27 of the other door window 8 through the conductor interface 27 of the positive and negative wires.
  • a parallel charging circuit is formed together, and the wall is provided with an AC charging connector 26, and the conductor interface 27 of the door window 8 adjacent to the wall is docked with the AC charging connector 26 to form a charging circuit.
  • the upper longitudinal motor 22 and the lower longitudinal motor 24 are connected to a wired power source.
  • the communication module is a wired communication device.
  • the communication module is a wireless communication device, such as zigbee wireless control or infrared.
  • the upper longitudinal motor 22, the traverse motor 23 and the lower longitudinal motor 24 are all connected to the corresponding power wheel via a belt drive pair or a chain drive pair.
  • the door and window gradually move in the same direction, that is, the direction of the door window storage space. After the first door and window reaches the designated position, the bottom moves longitudinally, and the next free track is vacated for the second door and window to move in. .
  • the doors and windows are gradually moved laterally in the same direction. After the first door and window reaches the designated position, the bottom moves longitudinally, and the free track is vacated for the second door and window to move in until all doors and windows are moved in, and the total storage is completed.
  • the volume is the sum of all the window volumes, all the door forms are stacked together in the overlapping space, saving the storage space, and the space windows and doors are all opened.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Power-Operated Mechanisms For Wings (AREA)

Abstract

一种节约空间的可全开式移动门窗系统,属于智能建筑技术领域。该系统包括门窗体安装空间(11)、门窗体收纳空间(1)和门窗体控制模块,采用横向和纵向的移动系统,所有的门窗体(8)可以全部收纳在门窗体收纳空间(1)内,使得门窗体(8)全部打开,让出所占的全部空间。门窗体收纳空间(1)可位于墙体内或室外,将叠放的门窗体(8)隐藏,通过移动系统和控制系统的操作,实现门窗体(8)之间的有效对接和自动动作,使用方便、节约空间,有效提高空间利用率。

Description

节约空间的可全幵式移动门窗系统 技术领域
[0001] 本发明涉及一种移动门窗系统, 属于智能建筑技术领域。
背景技术
[0002] 现有的建筑中, 门窗体如落地窗等, 要么是旋转式的开闭方式, 要么是推拉式的开闭 方式, 都不能让门窗所在空间完全自由的打开, 旋转式的开闭方式至少会留有转轴, 且会占 用旋转后的空间, 推拉式的门窗也会留一扇或两扇的门窗面积, 也做不到完全打开, 使得建 筑内的空间使用受到限制, 难以满足更进一步利用空间的要求。
发明内容
[0003] 为了克服上述现有技术的不足之处, 本发明提供一种节约空间的可全开式移动门窗系 统, 能够实现完全打开, 进一步节约空间, 控制方式智能, 使用方便。
[0004] 本发明是通过如下技术方案实现的: 一种节约空间的可全开式移动门窗系统, 包括门 窗体安装空间、 门窗体收纳空间和门窗体控制模块。
[0005] 所述门窗体安装空间包括位于顶板内的上轨道槽和位于地面下的下轨道槽, 上轨道槽 与下轨道槽同向且平行, 上轨道槽与下轨道槽之间安装多扇次第排列的门窗体, 所述门窗体 收纳空间位于门窗体安装空间的一端, 门窗体收纳空间包括顶板与地面之间的门窗体叠合空 间、 位于顶板内的上纵移空间、 位于地面下的下纵移空间, 所述门窗体叠合空间的横向宽度 为每扇门窗体的宽度, 门窗体叠合空间的纵向宽度为同排所有门窗体的厚度之和。
[0006] 所述门窗体包括门窗本体、 门窗本体上部的门窗顶框和门窗本体下部的门窗底座, 所 述上轨道槽内设有上横移轨道, 门窗顶框上部装有与上横移轨道配合的上横移导轮, 所述下 轨道槽内设有下横移轨道, 所述门窗底座下部装有与下横移轨道配合的下横移轮, 每扇门窗 体的下横移轮中至少有一个横移动力轮, 横移动力轮由每扇门窗体的横移电机驱动; 所述上 纵移空间内装有上纵移轨道, 上纵移轨道与上横移轨道垂直, 上纵移轨道上装有能沿上纵移 轨道纵向滑动的上轨道架, 上轨道架通过上纵移动力轮架设在上纵移轨道上, 上纵移动力轮 由上纵移电机驱动, 上纵移空间下部与所述门窗体叠合空间对应的位置开有上移动槽口, 上 纵移空间内部与上移动槽口相反的位置设有上轨道架收纳腔, 上轨道架下部装有多个与门窗 体配合的上对接轨道, 上对接轨道在横向上是所述上横移轨道的延续, 当一个上对接轨道与 上横移轨道对接后, 其余上对接轨道与上横移轨道错开, 每扇门窗体上部的上横移导轮能在 对接后进入对应的上对接轨道内。
[0007] 所述下纵移空间内装有下纵移轨道, 下纵移轨道与下横移轨道垂直, 下纵移轨道上装 有能沿下纵移轨道纵向滑动的下轨道架, 下轨道架通过下纵移动力轮架设在下纵移轨道上, 下纵移动力轮由下纵移电机驱动, 下纵移空间上部与所述门窗体叠合空间对应的位置开有下 移动槽口, 下纵移空间内部与下移动槽口相反的位置设有下轨道架收纳腔, 下轨道架上部装 有多个与门窗体配合的下对接轨道, 下对接轨道在横向上是所述下横移轨道的延续, 当一个 下对接轨道与下横移轨道对接后, 其余下对接轨道与下横移轨道错开, 每扇门窗体下部的下 横移轮能在对接后进入对应的下对接轨道内。
[0008] 所述门窗体控制模块包括主控制单元、 主控开关、 通讯模块、 感应开关、 驱动单元及 执行单元, 所述主控开关通过通讯模块与主控制单元相连, 主控制单元通过驱动单元驱动执 行单元, 执行单元包括纵移电机和所述横移电机, 所述上、 下纵移电机同步动作视为一个整 体构成所述纵移电机, 所述感应开关与主控制单元相连。
[0009] 当主控开关启动打开指令后, 通过通讯模块向主控制单元发讯, 主控制单元通过驱动 单元驱动横移电机动作, 控制门窗体朝门窗体收纳空间移动, 当感应开关感应到门窗体完全 进入对应的上、 下对接轨道内后, 感应开关向主控制单元发讯, 主控制单元通过驱动单元驱 动纵移电机动作, 控制上、 下轨道架向门窗体收纳方向纵移一个工位, 使得后一个上、 下对 接轨道与上、 下横移轨道实现对接; 重复上述过程, 控制每扇门窗体进入预定轨道并在门窗 体叠合空间内叠合在一起。
[0010] 当主控开关启动关闭指令后, 通过通讯模块向主控制单元发讯, 主控制单元通过驱动 单元驱动横移电机动作, 控制门窗体朝门窗体安装空间移动, 当感应开关感应到门窗体完全 脱离对应的上、 下对接轨道内后, 感应开关向主控制单元发讯, 主控制单元通过驱动单元驱 动纵移电机动作, 控制上、 下轨道架向上、 下轨道架收纳腔方向纵移一个工位, 使得后一个 上、 下对接轨道与上、 下横移轨道实现对接; 重复上述过程, 控制每扇门窗体进入上、 下横 移轨道并在门窗体安装空间内展开将空间封闭。
[0011] 每扇所述的门窗本体的一端通过单窗转轴与所述门窗顶框和所述门窗底座铰接连接, 每扇所述的门窗本体的另一端通过单窗手动插销锁定在门窗底座上。
[0012] 每扇所述的门窗本体靠近单窗手动插销的一端制作有为相邻门窗本体提供旋转空间 的内凹式弧形凹槽。
[0013] 每扇所述门窗体上均装有为横移电机供电的可充电电源, 可充电电源通过正负极导线 的导体接口与其它门窗体的导体接口对接在一起形成并联的充电回路, 墙体上装有交流电充 电接头, 靠近墙体的门窗体的导体接口与交流电充电接头对接形成充电回路。
[0014] 所述上纵移电机和下纵移电机连接有线电源。
[0015] 所述通讯模块为有线通讯装置。
[0016] 所述通讯模块为无线通讯装置。
[0017] 所述的上纵移电机、 横移电机和下纵移电机均通过带传动副或链传动副与相应的动力 轮相连。
[0018] 本发明的有益效果是: 本发明采用横向和纵向的移动系统, 设置了门窗体收纳空间, 所有的门窗体可以全部收纳在门窗体收纳空间内, 使得门窗体全部打开, 让出所占的全部空 间。 门窗体收纳空间可位于墙体内或室外, 将叠放的门窗体隐藏, 通过移动系统和控制系统 的操作, 实现门窗体之间的有效对接和自动动作, 使用方便、 节约空间, 有效提高空间利用 率。
[0019] 还设置了单个门窗体转动的装置, 实现门窗体打开的方式多样化, 门窗和空间的利用 更加自由灵活。 门窗体之间有内凹式弧形凹槽, 保证了门窗体对接之后的密封性, 同时不影 响单个门窗体的转动。
[0020] 设置了门窗体充电系统, 在门窗封闭后可以实现充电。
[0021] 本发明具有很好的推广利用价值。
附图说明
[0022] 下面根据附图和实施例对本发明进一步说明。
[0023] 图 1是本发明结构示意图 (请顺时针旋转 90度读图);
图 2是图 1的仰视图 (请顺时针旋转 90度读图);
图 3是本发明门窗体安装空间与门窗体收纳空间局部放大图;
图 4是图 1的 A-A剖视图;
图 5是图 1的 B-B剖视图;
图 6是单个门窗体结构示意图;
图 7是单个门窗体旋转打开示意图;
图 8是本发明电源充电示意图;
图 9是图 8的左视图;
图 10是本发明控制原理图;
图 11是本发明使用状态一示意图; 图 12是本发明使用状态二示意图;
图 13是本发明使用状态三示意图;
图 14是本发明使用状态四示意图。
[0024] 图中, 1、 门窗体收纳空间; 2、 上纵移空间; 3、 上纵移轨道; 4、 上对接轨道; 5、 上 轮轴; 6、 上纵移动力轮; 7、 上轨道架; 8、 门窗体; 9、 上横移导轮; 10、 上横移轨道; 11、 门窗体安装空间; 12、 下横移轨道; 13、 下横移轮; 14、 下纵移轨道; 15、 下轮轴; 16、 下 纵移动力轮; 17、 下纵移空间; 18、 下轨道架; 19、 上轨道槽; 20、 下轨道槽; 21、 门窗体 叠合空间; 22、 上纵移电机; 23、 横移电机; 24、 下纵移电机; 25、 可充电电源; 26、 交流 电充电接头; 27、 导体接口。
具体实施方式
[0025] 下面结合实施例对本发明进一步说明。
[0026] 如图 1-图 10所示的一种节约空间的可全开式移动门窗系统,包括门窗体安装空间 11、 门窗体收纳空间 1和门窗体控制模块;
所述门窗体安装空间 11包括位于顶板内的上轨道槽 19和位于地面下的下轨道槽 20, 上轨道 槽与下轨道槽同向且平行, 上轨道槽与下轨道槽之间安装多扇次第排列的门窗体 8, 所述门 窗体收纳空间 1位于门窗体安装空间的一端, 门窗体收纳空间 1包括顶板与地面之间的门窗 体叠合空间 21、 位于顶板内的上纵移空间 2、 位于地面下的下纵移空间 17, 所述门窗体叠合 空间 21的横向宽度为每扇门窗体 8的宽度,门窗体叠合空间的纵向宽度为同排所有门窗体的 厚度之和;
所述门窗体 8包括门窗本体 8-1、 门窗本体上部的门窗顶框 8-2和门窗本体下部的门窗底座 8-3, 所述上轨道槽 19内设有上横移轨道 10, 门窗顶框 8-1上部装有与上横移轨道 10配合的 上横移导轮 9, 所述下轨道槽 20内设有下横移轨道 12, 所述门窗底座 8-3下部装有与下横移 轨道 12配合的下横移轮 13, 每扇门窗体的下横移轮 13中至少有一个横移动力轮, 横移动力 轮由每扇门窗体的横移电机 23驱动; 所述上纵移空间 2内装有上纵移轨道 3, 上纵移轨道 3 与上横移轨道 10垂直, 上纵移轨道上装有能沿上纵移轨道纵向滑动的上轨道架 7, 上轨道架 7通过上纵移动力轮 6架设在上纵移轨道上, 上纵移动力轮由上纵移电机 22驱动, 两个上纵 移动力轮 6之间具有上轮轴 5, 上纵移电机 22通过传动副先驱动上轮轴 5转动。 上纵移空间 2下部与所述门窗体叠合空间对应的位置开有上移动槽口 2-1, 上纵移空间 2内部与上移动槽 口相反的位置设有上轨道架收纳腔 2-2,上轨道架 7下部装有多个与门窗体配合的上对接轨道 4, 上对接轨道在横向上是所述上横移轨道 10的延续, 当一个上对接轨道与上横移轨道对接 后, 其余上对接轨道与上横移轨道错开, 每扇门窗体 8上部的上横移导轮 9能在对接后进入 对应的上对接轨道 4内。
[0027] 所述下纵移空间 17内装有下纵移轨道 14, 下纵移轨道与下横移轨道 12垂直, 下纵移 轨道 14上装有能沿下纵移轨道 14纵向滑动的下轨道架 18, 下轨道架通过下纵移动力轮 16 架设在下纵移轨道上, 下纵移动力轮 16由下纵移电机 24驱动, 下纵移动力轮 16之间具有下 轮轴 15, 下纵移电机 24通过传动副先驱动下轮轴 15转动。 下纵移空间 17上部与所述门窗 体叠合空间 21对应的位置开有下移动槽口 17-1, 下纵移空间内部与下移动槽口 17-1相反的 位置设有下轨道架收纳腔 17-2, 下轨道架 18上部装有多个与门窗体配合的下对接轨道 18-1, 下对接轨道在横向上是所述下横移轨道 12的延续, 当一个下对接轨道与下横移轨道对接后, 其余下对接轨道与下横移轨道错开,每扇门窗体下部的下横移轮 13能在对接后进入对应的下 对接轨道内; 本发明采用横向和纵向的移动系统, 设置了门窗体收纳空间, 所有的门窗体可 以全部收纳在门窗体收纳空间内, 使得门窗体全部打开, 让出所占的全部空间。 门窗体收纳 空间可位于墙体内或室外, 将叠放的门窗体隐藏, 通过移动系统和控制系统的操作, 实现门 窗体之间的有效对接和自动动作, 使用方便、 节约空间, 有效提高空间利用率。
[0028] 所述门窗体控制模块包括主控制单元、 主控开关、 通讯模块、 感应开关、 驱动单元及 执行单元, 所述主控开关通过通讯模块与主控制单元相连, 主控制单元通过驱动单元驱动执 行单元, 执行单元包括纵移电机和所述横移电机, 所述上、 下纵移电机同步动作视为一个整 体构成所述纵移电机, 所述感应开关与主控制单元相连。
[0029] 当主控开关启动打开指令后, 通过通讯模块向主控制单元发讯, 主控制单元通过驱动 单元驱动横移电机动作, 控制门窗体朝门窗体收纳空间移动, 当感应开关感应到门窗体完全 进入对应的上、 下对接轨道内后, 感应开关向主控制单元发讯, 主控制单元通过驱动单元驱 动纵移电机动作, 控制上、 下轨道架向门窗体收纳方向纵移一个工位, 使得后一个上、 下对 接轨道与上、 下横移轨道实现对接; 重复上述过程, 控制每扇门窗体进入预定轨道并在门窗 体叠合空间内叠合在一起。
[0030] 当主控开关启动关闭指令后, 通过通讯模块向主控制单元发讯, 主控制单元通过驱动 单元驱动横移电机动作, 控制门窗体朝门窗体安装空间移动, 当感应开关感应到门窗体完全 脱离对应的上、 下对接轨道内后, 感应开关向主控制单元发讯, 主控制单元通过驱动单元驱 动纵移电机动作, 控制上、 下轨道架向上、 下轨道架收纳腔方向纵移一个工位, 使得后一个 上、 下对接轨道与上、 下横移轨道实现对接; 重复上述过程, 控制每扇门窗体进入上、 下横 移轨道并在门窗体安装空间内展开将空间封闭。 [0031] 每扇所述的门窗本体 8-1的一端通过单窗转轴 8-4与所述门窗顶框 8-2和所述门窗底 座 8-3铰接连接, 每扇所述的门窗本体 8-1 的另一端通过单窗手动插销 8-5锁定在门窗底座 8-3上。 手动插销 8-5将门窗体有效固定。
[0032] 每扇所述的门窗本体 8-1靠近单窗手动插销 8-5的一端制作有为相邻门窗本体 8-1提 供旋转空间的内凹式弧形凹槽 8-6。本发明单个门窗体转动的装置, 实现门窗体打开的方式多 样化, 门窗和空间的利用更加自由灵活。 门窗体之间有内凹式弧形凹槽, 保证了门窗体对接 之后的密封性, 同时不影响单个门窗体的转动。
[0033] 每扇所述门窗体 8上均装有为横移电机 23供电的可充电电源 25,可充电电源 25通过 正负极导线的导体接口 27与其它门窗体 8的导体接口 27对接在一起形成并联的充电回路, 墙体上装有交流电充电接头 26, 靠近墙体的门窗体 8的导体接口 27与交流电充电接头 26对 接形成充电回路。
[0034] 所述上纵移电机 22和下纵移电机 24连接有线电源。
[0035] 所述通讯模块为有线通讯装置。
[0036] 所述通讯模块为无线通讯装置,如 zigbee无线控制或红外线等。
[0037] 所述的上纵移电机 22、横移电机 23和下纵移电机 24均通过带传动副或链传动副与相 应的动力轮相连。
[0038] 本发明使用状态, 有四种:
参见图 11, 使用状态一, 正常多扇门窗, 可单扇旋转开启, 不开启时, 手动插销 8-5将门窗 体有效固定。
[0039] 参见图 12, 使用状态二, 门窗全部闭合, 底部单窗转轴 8-4被手动插销锁死, 准备移 动叠合。
[0040] 参见图 13, 使用状态三, 门窗逐步向同一方向即门窗体收纳空间方向横向移动, 第一 扇门窗到达指定位置后, 底部纵向移动, 空出下一个空余轨道供第二扇门窗移入。
[0041] 参见图 14,使用状态四, 门窗逐步向同一方向横向移动,第一扇门窗到达指定位置后, 底部纵向移动, 空出空余轨道供第二扇门窗移入,直至所有门窗移入, 总收纳体积为所有窗户 体积之和, 所有门窗体在叠合空间内叠合在一起, 节约收纳空间, 空间的门窗被全部打开。

Claims

权利要求书
1. 一种节约空间的可全开式移动门窗系统, 其特征在于: 包括门窗体安装空间 (11 )、 门窗 体收纳空间 (1 ) 和门窗体控制模块;
所述门窗体安装空间(11 )包括位于顶板内的上轨道槽(19)和位于地面下的下轨道槽(20), 上轨道槽与下轨道槽同向且平行, 上轨道槽与下轨道槽之间安装多扇次第排列的门窗体(8), 所述门窗体收纳空间 (1 ) 位于门窗体安装空间的一端, 门窗体收纳空间 (1 ) 包括顶板与地 面之间的门窗体叠合空间(21 )、位于顶板内的上纵移空间(2)、位于地面下的下纵移空间(17), 所述门窗体叠合空间 (21 ) 的横向宽度为每扇门窗体(8) 的宽度, 门窗体叠合空间的纵向宽 度为同排所有门窗体的厚度之和;
所述门窗体 (8 ) 包括门窗本体 (8-1 )、 门窗本体上部的门窗顶框 (8-2) 和门窗本体下部的 门窗底座 (8-3 ), 所述上轨道槽 (19) 内设有上横移轨道 (10), 门窗顶框 (8-1 ) 上部装有 与上横移轨道 (10) 配合的上横移导轮 (9), 所述下轨道槽 (20) 内设有下横移轨道 (12), 所述门窗底座 (8-3 ) 下部装有与下横移轨道 (12) 配合的下横移轮 (13 ), 每扇门窗体的下 横移轮 (13 ) 中至少有一个横移动力轮, 横移动力轮由每扇门窗体的横移电机 (23 ) 驱动; 所述上纵移空间 (2) 内装有上纵移轨道 (3 ), 上纵移轨道 (3 ) 与上横移轨道 (10) 垂直, 上纵移轨道上装有能沿上纵移轨道纵向滑动的上轨道架(7), 上轨道架(7)通过上纵移动力 轮 (6) 架设在上纵移轨道上, 上纵移动力轮由上纵移电机 (22) 驱动, 上纵移空间 (2) 下 部与所述门窗体叠合空间对应的位置开有上移动槽口 (2-1 ), 上纵移空间 (2) 内部与上移动 槽口相反的位置设有上轨道架收纳腔 (2-2), 上轨道架 (7) 下部装有多个与门窗体配合的上 对接轨道 (4), 上对接轨道在横向上是所述上横移轨道 (10) 的延续, 当一个上对接轨道与 上横移轨道对接后, 其余上对接轨道与上横移轨道错开, 每扇门窗体(8)上部的上横移导轮
(9) 能在对接后进入对应的上对接轨道 (4) 内,
所述下纵移空间 (17) 内装有下纵移轨道 (14), 下纵移轨道与下横移轨道(12) 垂直, 下纵 移轨道(14)上装有能沿下纵移轨道(14)纵向滑动的下轨道架 (18), 下轨道架通过下纵移 动力轮 (16) 架设在下纵移轨道上, 下纵移动力轮 (16) 由下纵移电机 (24) 驱动, 下纵移 空间 (17) 上部与所述门窗体叠合空间 (21 )对应的位置开有下移动槽口 (17-1 ), 下纵移空 间内部与下移动槽口 (17-1 ) 相反的位置设有下轨道架收纳腔 (17-2), 下轨道架 (18) 上部 装有多个与门窗体配合的下对接轨道 (18-1 ), 下对接轨道在横向上是所述下横移轨道 (12) 的延续, 当一个下对接轨道与下横移轨道对接后, 其余下对接轨道与下横移轨道错开, 每扇 门窗体下部的下横移轮 (13 ) 能在对接后进入对应的下对接轨道内。
2. 根据权利要求 1所述的节约空间的可全开式移动门窗系统, 其特征在于:
所述门窗体控制模块包括主控制单元、 主控开关、 通讯模块、 感应开关、 驱动单元及执行单 元, 所述主控开关通过通讯模块与主控制单元相连, 主控制单元通过驱动单元驱动执行单元, 执行单元包括纵移电机和所述横移电机, 所述上、 下纵移电机同步动作视为一个整体构成所 述纵移电机, 所述感应开关与主控制单元相连;
当主控开关启动打开指令后, 通过通讯模块向主控制单元发讯, 主控制单元通过驱动单元驱 动横移电机动作, 控制门窗体朝门窗体收纳空间移动, 当感应开关感应到门窗体完全进入对 应的上、 下对接轨道内后, 感应开关向主控制单元发讯, 主控制单元通过驱动单元驱动纵移 电机动作, 控制上、 下轨道架向门窗体收纳方向纵移一个工位, 使得后一个上、 下对接轨道 与上、 下横移轨道实现对接; 重复上述过程, 控制每扇门窗体进入预定轨道并在门窗体叠合 空间内叠合在一起;
当主控开关启动关闭指令后, 通过通讯模块向主控制单元发讯, 主控制单元通过驱动单元驱 动横移电机动作, 控制门窗体朝门窗体安装空间移动, 当感应开关感应到门窗体完全脱离对 应的上、 下对接轨道内后, 感应开关向主控制单元发讯, 主控制单元通过驱动单元驱动纵移 电机动作, 控制上、 下轨道架向上、 下轨道架收纳腔方向纵移一个工位, 使得后一个上、 下 对接轨道与上、 下横移轨道实现对接; 重复上述过程, 控制每扇门窗体进入上、 下横移轨道 并在门窗体安装空间内展开将空间封闭。
3. 根据权利要求 1所述的节约空间的可全开式移动门窗系统, 其特征在于: 每扇所述的门窗 本体 (8-1 ) 的一端通过单窗转轴 (8-4) 与所述门窗顶框 (8-2)和所述门窗底座 (8-3 ) 铰接 连接, 每扇所述的门窗本体(8-1 ) 的另一端通过单窗手动插销 (8-5 )锁定在门窗底座 (8-3 ) 上。
4. 根据权利要求 3所述的节约空间的可全开式移动门窗系统, 其特征在于: 每扇所述的门窗 本体 (8-1 ) 靠近单窗手动插销 (8-5 ) 的一端制作有为相邻门窗本体 (8-1 ) 提供旋转空间的 内凹式弧形凹槽 (8-6)。
5. 根据权利要求 1所述的节约空间的可全开式移动门窗系统, 其特征在于: 每扇所述门窗体 ( 8 ) 上均装有为横移电机 (23 ) 供电的可充电电源 (25), 可充电电源 (25 ) 通过正负极导 线的导体接口 (27 ) 与其它门窗体 (8 ) 的导体接口 (27 ) 对接在一起形成并联的充电回路, 墙体上装有交流电充电接头 (26), 靠近墙体的门窗体 (8 ) 的导体接口 (27 ) 与交流电充电 接头 (26) 对接形成充电回路。
6. 根据权利要求 1所述的节约空间的可全开式移动门窗系统, 其特征在于: 所述上纵移电机 ( 22) 和下纵移电机 (24 ) 连接有线电源。
7. 根据权利要求 2所述的节约空间的可全开式移动门窗系统, 其特征在于: 所述通讯模块为 有线通讯装置。
8. 根据权利要求 2所述的节约空间的可全开式移动门窗系统, 其特征在于: 所述通讯模块为 无线通讯装置。
9. 根据权利要求 1所述的节约空间的可全开式移动门窗系统, 其特征在于: 所述的上纵移电 机(22)、 横移电机(23 )和下纵移电机(24 )均通过带传动副或链传动副与相应的动力轮相 连。
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