CN209510029U - A kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure - Google Patents
A kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure Download PDFInfo
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- CN209510029U CN209510029U CN201822253155.2U CN201822253155U CN209510029U CN 209510029 U CN209510029 U CN 209510029U CN 201822253155 U CN201822253155 U CN 201822253155U CN 209510029 U CN209510029 U CN 209510029U
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Abstract
The utility model discloses a kind of low-carbon heat-insulating and energy-saving glass sliding doors of monoblock type suspended structure, including glass door and slide plate, the surrounding of the glass door is fixedly connected with doorframe, the surface of the glass door and be located at doorframe two sides between be fixedly connected with fixed bar, the surface of the slide plate is provided with movable part, and there are two movable part settings, the first fixing axle is fixedly connected at the top of movable part inner wall front and the back side, the utility model relates to energy-saving glass sliding door technical fields.The low-carbon heat-insulating and energy-saving glass sliding door of the monoblock type suspended structure, doorframe is fixedly connected with by the surrounding of glass door, the surface of glass door and be located at doorframe two sides between be fixedly connected with fixed bar, the surface of slide plate is provided with movable part, and movable part setting there are two, can when occurring thrusting or pulling locking slide construction, cannot continue to operate, until restoring after pausing, avoid pushing and pulling the damage for causing suspension door energetically.
Description
Technical field
The utility model relates to energy-saving glass sliding door technical field, specially a kind of low-carbon of monoblock type suspended structure is heat-insulated
Energy-saving glass sliding door.
Background technique
In present interior decoration, the installation of door, in addition to selection vertical hinged door it is this most it is traditional outdoors, sliding door and suspension
The installation of formula translation door also becomes more and more popular, and sliding door is most commonly that double-track sliding door, also there is a kind of hanging type sliding of single track
Door, monoblock type suspension sliding door very has globality, hanging to be arranged, and combines together with wall, very strong, the Neng Gourang of dicoration
Whole living room becomes more roomy.
In the prior art, monoblock type suspension sliding door cannot be protected for the behavior of great dynamics push-and-pull, easy in translation
Because of thrust or the excessive damage for leading to suspended structure or moving structure of pulling force, to cause the failure of overhead door.
Utility model content
In view of the deficiencies of the prior art, the utility model provides a kind of low-carbon heat-insulating and energy-saving glass of monoblock type suspended structure
Glass sliding door solves the problems, such as that monoblock type suspended structure sliding door is not resistant to push and pull energetically to easily lead to structural failure in the prior art.
In order to achieve the above object, the utility model is achieved by the following technical programs: a kind of monoblock type suspended structure
Low-carbon heat-insulating and energy-saving glass sliding door, including glass door and slide plate, the surrounding of the glass door is fixedly connected with doorframe, described
The surface of glass door and be located at doorframe two sides between be fixedly connected with fixed bar, the surface of the slide plate is provided with activity
Part, and there are two movable part settings, the first fixing axle is fixedly connected at the top of movable part inner wall front and the back side, and
And first the surface pivots of fixing axle be connected with pulley, there are two the pulley settings, and is provided with and leads at the top of slide plate
Rail, there are two the guide rail settings, and the top of two guide rails and the bottom connection of two pulleys touch, the slide plate bottom
Front be provided with the first ratchet, and the back side of slide plate bottom is provided with the second ratchet, the front of the movable part inner wall
The second fixing axle, the back side rotation on second fixing axle surface are fixedly connected between the back side and positioned at the bottom of slide plate
It is connected with rotational sleeve, and the bottom on rotational sleeve surface is fixedly connected with spring, the bottom end of the spring is fixedly connected with
Clump weight, and the side on rotational sleeve surface is fixedly connected with spine plate, and the side of the clump weight is fixedly connected with arc company
Fitting, and side of the arc connector far from clump weight is fixedly connected with the side in spine board bottom portion.
Preferably, the front on first fixing axle surface is fixedly connected to connecting plate with the back side, and connecting plate
Bottom runs through movable part and extends to the bottom of movable part, passes through fixing piece and door between the opposite side of two connecting plates
It is fixedly connected at the top of frame.
Preferably, the side between the front and the back side of the movable part inner wall and positioned at the second fixing axle surface is fixed connects
It is connected to postive stop baffle, and the bottom connection of the top of postive stop baffle and spine plate touches.
Preferably, the bottom of the movable part offers link slot compatible with connecting plate, and link slot is provided with
Two.
Preferably, the two sides inside the slide plate offer threaded hole, and the inner thread of threaded hole is connected with
Fixing bolt.
Preferably, through slot compatible with slide plate is offered in the middle part of the movable part.
Beneficial effect
The utility model provides a kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure.With prior art phase
Than have it is following the utility model has the advantages that
(1), the low-carbon heat-insulating and energy-saving glass sliding door of the monoblock type suspended structure, is fixedly connected with by the surrounding of glass door
Doorframe, the surface of glass door and be located at doorframe two sides between be fixedly connected with fixed bar, the surface of slide plate is provided with work
Moving part, and there are two movable part settings, the first fixing axle is fixedly connected at the top of movable part inner wall front and the back side, and
The surface pivots of first fixing axle are connected with pulley, and there are two pulley settings, and guide rail is provided at the top of slide plate, guide rail
There are two settings, and the top of two guide rails and the bottom connection of two pulleys touch, and the front of slide plate bottom is provided with the
One ratchet, and the back side of slide plate bottom is provided with the second ratchet, between the front and the back side of movable part inner wall and is located at cunning
The bottom of rail plate is fixedly connected with the second fixing axle, and the back side on the second fixing axle surface is rotatably connected to rotational sleeve, and turns
The bottom on moving sleeve surface is fixedly connected with spring, and the bottom end of spring is fixedly connected with clump weight, and rotational sleeve surface
Side is fixedly connected with spine plate, and the side of clump weight is fixedly connected with arc connector, and arc connector is far from clump weight
Side be fixedly connected with the side in spine board bottom portion, the first fixing axle surface front with the back side be fixedly connected to connecting plate,
And the bottom of connecting plate runs through movable part and extends to the bottom of movable part, by solid between the opposite side of two connecting plates
Determine to be fixedly connected at the top of part and doorframe, can when occurring thrusting or pulling locking slide construction, cannot continue to operate, until
Restore after pause, avoids pushing and pulling the damage for causing suspension door energetically.
(2), the low-carbon heat-insulating and energy-saving glass sliding door of the monoblock type suspended structure, passes through the front and the back side of movable part inner wall
Between and be located at the second fixing axle surface side be fixedly connected with postive stop baffle, and the bottom at the top of postive stop baffle and spine plate
Portion is in contact, and the bottom of movable part offers link slot compatible with connecting plate, and there are two link slot settings, slide plate
Internal two sides offer threaded hole, and the inner thread of threaded hole is connected with fixing bolt, opens up in the middle part of movable part
There is through slot compatible with slide plate, postive stop baffle plays the role of limit block and support to spine plate.
Detailed description of the invention
Fig. 1 is the main view of the utility model structure;
Fig. 2 is the front view of the utility model movable part internal structure;
Fig. 3 is the side view of the utility model movable part internal structure;
Fig. 4 is the top view of the utility model slide plate internal structure;
Fig. 5 is the partial enlarged view in the utility model Fig. 2 at A.
In figure: 1- glass door, 2- slide plate, 3- doorframe, 4- fixed bar, 5- movable part, the first fixing axle of 6-, 7- are sliding
Wheel, 8- guide rail, the first ratchet of 9-, the second ratchet of 10-, the second fixing axle of 11-, 12- rotational sleeve, 13- spring, 14- clump weight,
15- spine plate, 16- arc connector, 17- connecting plate, 18- postive stop baffle, 19- link slot, 20- threaded hole, 21- fixing bolt,
22- through slot.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-5 is please referred to, the utility model provides a kind of technical solution: a kind of heat-insulated section of low-carbon of monoblock type suspended structure
Energy glass sliding door, including glass door 1 and slide plate 2, glass door 1 are double-layer vacuum structure, play better heat insulation and preservation effect,
The surrounding of glass door 1 is fixedly connected with doorframe 3, the surface of glass door 1 and is located between the two sides of doorframe 3 and is fixedly connected with fixation
Horizontal stripe 4, the two sides inside slide plate 2 offer threaded hole 20, and the inner thread of threaded hole 20 is connected with fixing bolt
21, the surface of slide plate 2 is provided with movable part 5, and the middle part of movable part 5 offers through slot 22 compatible with slide plate 2, and
There are two the settings of movable part 5, fixes between the front and the back side of 5 inner wall of movable part and positioned at the side on 11 surface of the second fixing axle
It is connected with postive stop baffle 18, and the bottom connection of the top of postive stop baffle 18 and spine plate 15 touches, the bottom of movable part 5 offers
Link slot 19 compatible with connecting plate 17, and there are two the settings of link slot 19, the top in movable part 5 inner wall front and the back side
It is fixedly connected with the first fixing axle 6, front and the back side on 6 surface of the first fixing axle are fixedly connected to connecting plate 17, and even
The bottom of fishplate bar 17 runs through movable part 5 and extends to the bottom of movable part 5, by solid between the opposite side of two connecting plates 17
Determine part to be fixedly connected with the top of doorframe 3, and the surface pivots of the first fixing axle 6 are connected with pulley 7, pulley 7 is provided with two
A, sister block 7 is arranged, and guarantees the mobile stationarity of overhead door, anti-bias performance is good, and the top of slide plate 2 is provided with guide rail
8, there are two the settings of guide rail 8, and the top of two guide rails 8 and the bottom connection of two pulleys 7 touch, and 2 bottom of slide plate is just
Face is provided with the first ratchet 9, and the back side of 2 bottom of slide plate is provided with the second ratchet 10, front and the back of 5 inner wall of movable part
It is fixedly connected with the second fixing axle 11 between face and positioned at the bottom of slide plate 2, the back side on 11 surface of the second fixing axle, which rotates, to be connected
It is connected to rotational sleeve 12, and the bottom on 12 surface of rotational sleeve is fixedly connected with spring 13, the bottom end of spring 13 is fixedly connected
There is clump weight 14, and the side on 12 surface of rotational sleeve is fixedly connected with spine plate 15, the side of clump weight 14 is fixedly connected with
Arc connector 16, and side of the arc connector 16 far from clump weight 14 is fixedly connected with the side of 15 bottom of spine plate, phase
What is adapted to is provided with the extremely connection structure of spine plate 15 matched with the second ratchet 10, consistent with the structure of the first ratchet 9, still
Reversely, to complete the locking of both direction.
In use, clump weight is deviateed by effect of inertia to side, and passes through arc connector when pushing or pulling on overhead door suddenly
16 drive spine plate 15 to rotate around the second fixing axle 11, and 15 side of spine plate is caught in upwards in the first ratchet 9 or the second ratchet 10,
Slide construction is locked up at this time, cannot be continued to move to, and after stopping, under the gravity of spring 13 and clump weight 14 itself, being matched
Pouring weight 14 resets, and drives spine plate 15 to deviate from out of the first ratchet 9 or the second ratchet 10 by arc connector 16, can continue
Mobile overhead door.
It should be noted that, in this document, relational terms such as first and second and the like are used merely to a reality
Body or operation are distinguished with another entity or operation, are deposited without necessarily requiring or implying between these entities or operation
In any actual relationship or order or sequence.Moreover, the terms "include", "comprise" or its any other variant are intended to
Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those
Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment
Intrinsic element.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art,
It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired
Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.
Claims (6)
1. a kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure, including glass door (1) and slide plate (2), described
The surrounding of glass door (1) is fixedly connected with doorframe (3), the surface of the glass door (1) and is located at solid between the two sides of doorframe (3)
Surely fixed bar (4) are connected with, it is characterised in that: the surface of the slide plate (2) is provided with movable part (5), and movable part
(5) it there are two setting, is fixedly connected with the first fixing axle (6) at the top of movable part (5) the inner wall front and the back side, and the
The surface pivots of one fixing axle (6) are connected with pulley (7), and there are two pulley (7) settings, and the top of slide plate (2)
It is provided with guide rail (8), there are two guide rail (8) settings, and the bottom at the top of two guide rails (8) and two pulleys (7)
It is in contact, the front of slide plate (2) bottom is provided with the first ratchet (9), and the back side of slide plate (2) bottom is provided with
Second ratchet (10) is fixedly connected between the front and the back side of movable part (5) inner wall and positioned at the bottom of slide plate (2)
The back side of second fixing axle (11), the second fixing axle (11) surface is rotatably connected to rotational sleeve (12), and turning set
The bottom on cylinder (12) surface is fixedly connected with spring (13), and the bottom end of the spring (13) is fixedly connected with clump weight (14), and
And the side on rotational sleeve (12) surface is fixedly connected with spine plate (15), the side of the clump weight (14) is fixedly connected with arc
Connector (16), and the fixed company in side of side and spine plate (15) bottom of the arc connector (16) far from clump weight (14)
It connects.
2. a kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure according to claim 1, it is characterised in that:
Front and the back side on the first fixing axle (6) surface are fixedly connected to connecting plate (17), and the bottom of connecting plate (17)
Through movable part (5) and the bottoms of movable part (5) is extended to, two connecting plates (17) pass through fixation between opposite side
It is fixedly connected at the top of part and doorframe (3).
3. a kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure according to claim 1, it is characterised in that:
Limit is fixedly connected between the front and the back side of movable part (5) inner wall and positioned at the side on the second fixing axle (11) surface
Baffle (18), and the bottom connection of the top of postive stop baffle (18) and spine plate (15) touches.
4. a kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure according to claim 2, it is characterised in that:
The bottom of the movable part (5) offers and connecting plate (17) compatible link slot (19), and link slot (19) is provided with
Two.
5. a kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure according to claim 1, it is characterised in that:
The internal two sides of the slide plate (2) offer threaded hole (20), and the inner thread of threaded hole (20) is connected with fixation
Bolt (21).
6. a kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure according to claim 1, it is characterised in that:
It is offered in the middle part of the movable part (5) and slide plate (2) compatible through slot (22).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822253155.2U CN209510029U (en) | 2018-12-29 | 2018-12-29 | A kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822253155.2U CN209510029U (en) | 2018-12-29 | 2018-12-29 | A kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure |
Publications (1)
Publication Number | Publication Date |
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CN209510029U true CN209510029U (en) | 2019-10-18 |
Family
ID=68198731
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201822253155.2U Active CN209510029U (en) | 2018-12-29 | 2018-12-29 | A kind of low-carbon heat-insulating and energy-saving glass sliding door of monoblock type suspended structure |
Country Status (1)
Country | Link |
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CN (1) | CN209510029U (en) |
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2018
- 2018-12-29 CN CN201822253155.2U patent/CN209510029U/en active Active
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