CN204645997U - Built-in transmission totally-enclosed aluminum alloy push-pull door - Google Patents

Built-in transmission totally-enclosed aluminum alloy push-pull door Download PDF

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Publication number
CN204645997U
CN204645997U CN201520365489.2U CN201520365489U CN204645997U CN 204645997 U CN204645997 U CN 204645997U CN 201520365489 U CN201520365489 U CN 201520365489U CN 204645997 U CN204645997 U CN 204645997U
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CN
China
Prior art keywords
locking
lock body
groove
snap ring
side frame
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Withdrawn - After Issue
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CN201520365489.2U
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Chinese (zh)
Inventor
潘志新
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Qu Huifang
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Qu Huifang
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Priority to CN201520365489.2U priority Critical patent/CN204645997U/en
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Abstract

Built-in transmission totally-enclosed aluminum alloy push-pull door, comprise fixed frame and activity framework, described activity framework is slided between two side frames of described fixed frame; The side frame of described fixed frame is provided with the inside groove of opening, and the side frame of described activity framework is closed hollow frame structure, and described side frame is fixed by locking device after embedding described groove; Described locking device comprises lock body and locking body, and described lock body is located in described groove; Described locking body is located in the hollow cavity of described side frame; The side of described side frame is provided with the locking through hole for described lock body turnover, and this side contacts with the bottom surface of described groove, and described locking through hole is corresponding with the position of described lock body.Most of structure of locking device is all hidden in the side frame of framework, and whole door body structure is elegant in appearance; The side of activity framework is smooth complete plane, and easy to operate during surfacing, working (machining) efficiency is high, and not easily shelter evil people and countenance evil practices in smooth side, easy to clean.

Description

Built-in transmission totally-enclosed aluminum alloy push-pull door
Technical field
The utility model relates to sliding door structure field, particularly a kind of built-in transmission totally-enclosed aluminum alloy push-pull door.
Background technology
In the aluminium alloy sliding door of current domestic use, locking groove is processed with in the side frame of sliding door, locking device for locking a door also all exposes, locking device is built in locking groove, cannot surfacing be carried out in such locking groove, such one be make product outward appearance unsightly, two is non-surface-treated metals, use in particular circumstances is easily destroyed, and three is that locking groove is easily sheltered evil people and countenance evil practices and extremely difficult cleaning-nursing in routine use process.
When the materials processing that sliding door adopts density larger, the larger sliding door of weight is in the process of opening the door, because locking groove and fixed frame coordinate too tight, fixed frame is easily subject to the pulling force to a lateral movement that movable frame brings, fixed frame is deformed, is unfavorable for Long-Time Service.
Summary of the invention
For above-mentioned defect, the purpose of this utility model is to propose built-in transmission totally-enclosed aluminum alloy push-pull door always.
For reaching this object, the utility model by the following technical solutions:
Built-in transmission totally-enclosed aluminum alloy push-pull door, comprise fixed frame and activity framework, described activity framework is slided between two side frames of described fixed frame; The side frame of described fixed frame is provided with the inside groove of opening, and the side frame of described activity framework is closed hollow frame structure, and described side frame is fixed by locking device after embedding described groove;
Described locking device comprises lock body and locking body,
Described lock body is located in described groove;
Described locking body is located in the hollow cavity of described side frame;
The side of described side frame is provided with the locking through hole for described lock body turnover, and this side contacts with the bottom surface of described groove, and described locking through hole is corresponding with the position of described lock body.
Further, described locking body comprises snap ring and pushing component, and the inner ring of described snap ring is communicated with described locking through hole, and the inner ring of described snap ring is divided into card-tight part and unclamps portion; After described side frame embeds described groove, described lock body inserts described locking through hole and described snap ring successively, described pushing component promotes the upper-lower position scope activity of described snap ring at described locking through hole, be locking state when the card-tight part of described snap ring blocks described lock body, when described lock body is in the portion of unclamping of described snap ring, described side frame and described fixed frame are releasing orientation.
Further, the inner ring of described snap ring is by the great circle differed in size and ringlet is end to end forms, described lock body comprises holder and fixed bar, described holder is arranged in described groove, described fixed bar is variable diameters rod member, and its one end is fixed on holder, is larger diameter end, the other end extends to the side at described activity framework place, is smaller diameter end; The end of described fixed bar smaller diameter end is provided with casting lug thereon, and the face area of described casting lug thereon is greater than the area of ringlet and is less than the area of described great circle.
Further, described pushing component comprises chute, draw runner and Power Component, described chute is arranged in the hollow cavity of described side frame, described draw runner is slidably arranged in described chute, described snap ring is fixed on described draw runner, described Power Component drives described draw runner to slide up and down in described chute, thus drives described snap ring in the upper-lower position scope activity of described locking through hole.
Further, described Power Component comprises external tapered end and trace, described trace is vertically fixed on described draw runner, and the free end of described trace extends to the direction away from described locking through hole, described external tapered end is fixed on the outside of described activity framework, the inner side of described external tapered end is provided with U-shaped draw-in groove and blocks described trace, described external tapered end press the driving of key external force under, drive described U-shaped draw-in groove to move in the direction perpendicular to described trace.
Further, described trace is fixed on the medium position of described draw runner, and the two ends of described draw runner are fixed with snap ring respectively, be then provided with the described lock body of respective numbers in described groove, and the side of described side frame is provided with the locking through hole of respective numbers.
Further, be provided with can along the elastic clamping block of described trough width direction elastic deformation in the both sides of described draw runner.
Further, described chute and described locking through hole arrange the same side of described side frame, and described snap ring is arranged in described chute.
Further, described bottom portion of groove is provided with lock body chute, can slide before described lock body is unfixing in described lock body chute.
The beneficial effects of the utility model: such sash structure, most of structure of locking device is all hidden in the side frame of framework, and whole door body structure is elegant in appearance; The side of activity framework is smooth complete plane, is adding man-hour, and its each side can be worked into, and namely can be sprayed onto same decorative paint or protective paint, and easy to operate during surfacing, and working (machining) efficiency is high, and not easily shelter evil people and countenance evil practices in smooth side, easy to clean; The larger activity framework of weight is in the process of opening the door, and fixed frame can not be subject to the pulling force to a lateral movement that movable frame brings, and fixed frame is not yielding.
Lock body is arranged in the groove of fixed frame, when in specific product, movable frame weight is larger, only can there is lock body and not extract locking body out completely and situation about cannot open the door, and prior art can not occur lock body is arranged on activity framework, locking body is arranged on fixed frame, the larger activity framework of weight in the process of opening the door, when lock body does not depart from locking body completely, directly hauling locking body for leaving, bringing the problem of distortion to fixed frame.
Accompanying drawing explanation
Fig. 1 is the assembling schematic diagram of an embodiment of fixed frame and side frame in the utility model;
Fig. 2 is the structural representation of an embodiment of lock body in the utility model;
Fig. 3 is the structural representation of an embodiment of locking body in the utility model;
Fig. 4 is the structural representation of an embodiment of locking device in the utility model;
Fig. 5 is the structural representation of an embodiment of the utility model medium power assembly;
Fig. 6 is the assembling schematic diagram of an embodiment of draw runner and chute in the utility model.
Wherein: fixed frame 1, groove 11, lock body chute 12;
Activity framework 2, side frame 21;
Locking device 3, lock body 31, holder 311, fixed bar 312, casting lug thereon 313; Locking body 32;
Locking through hole 4;
Chute 51, draw runner 52, Power Component 53, external tapered end 531, trace 532, presses key 533; Elastic clamping block 6.
Detailed description of the invention
The technical solution of the utility model is further illustrated by detailed description of the invention below in conjunction with accompanying drawing.
As shown in Figure 1, Figure 2 and Figure 3, built-in transmission totally-enclosed aluminum alloy push-pull door, comprise fixed frame 1 and activity framework 2, described activity framework 2 is slided between two side frames of described fixed frame 1; The side frame of described fixed frame 1 is provided with the inside groove of opening 11, and the side frame 21 of described activity framework 2 is closed hollow frame structure, is fixed after described side frame 21 embeds described groove 11 by locking device 3;
Described locking device 3 comprises lock body 31 and locking body 32,
Described lock body 31 is located in described groove 11;
Described locking body 32 is located in the hollow cavity of described side frame 21;
The side of described side frame 21 is provided with the locking through hole 4 passed in and out for described lock body 31, and this side contacts with the bottom surface of described groove 11, and described locking through hole 4 is corresponding with the position of described lock body 31.
Be different from majority of case, locking groove is processed with in the side frame of sliding door, locking device 3 is built in this locking groove, surfacing process cannot be carried out in such locking groove, such one be make product outward appearance unsightly, two is non-surface-treated metals, and use in particular circumstances is easily destroyed.
In the technical program, be first that the side frame of fixed frame 1 is provided with the inside groove of opening, the side frame 21 of activity framework 2 embeds described groove, ensure that compactness when doorframe is closed; In the present embodiment, the side frame 21 of activity framework is closed hollow frame structure, the locking body 32 of locking device 3 is arranged in the hollow cavity of side frame 21, and the side of side frame 21 only arranges locking through hole 4 lock bodies 31 and passes in and out, with the action completing locking or unlock; Such sash structure, most of structure of locking device 3 is all hidden in the side frame of framework, whole door body structure is elegant in appearance, the more important thing is and be different from traditional sash structure, the side (except arranging the position of locking through hole 4) of activity framework 2 is smooth complete plane, instead of the inner groovy under conventional situation, then activity framework 2 is adding man-hour, its each side can be worked into, same decorative paint or protective paint can be sprayed onto, and easy to operate during surfacing, working (machining) efficiency is high; And the cooperation at this moment between fixed frame 1 and activity framework 2 is not prior art further groove and the location fit (coordinating too tight) between groove, the larger activity framework 2 of weight is in the process of opening the door, fixed frame 1 can not be subject to the pulling force to a lateral movement that movable frame 2 brings, and fixed frame 1 is not yielding.
Lock body 31 is arranged in the groove 11 of fixed frame 1, when in specific product, movable frame 2 weight is larger, lock body 31 can be there is and do not extract locking body 32 and situation about cannot open the door completely out, and prior art can not occur lock body 31 is arranged on activity framework 2, locking body 32 is arranged on fixed frame 1, the larger activity framework 2 of weight in the process of opening the door, when lock body 31 does not depart from locking body 32 completely, directly hauling locking body 32 for leaving, bringing the problem of distortion to fixed frame 1.
Described locking body 32 comprises snap ring and pushing component, and the inner ring of described snap ring is communicated with described locking through hole 4, and the inner ring of described snap ring is divided into card-tight part and unclamps portion; After described side frame 21 embeds described groove 11, described lock body 31 inserts described locking through hole 4 and described snap ring successively, described pushing component promotes the upper-lower position scope activity of described snap ring at described locking through hole 4, be locking state when the card-tight part of described snap ring blocks described lock body 31, when described lock body 31 is in the portion of unclamping of described snap ring, described side frame 21 is releasing orientation with described fixed frame 1.
When one end that activity framework 2 slides into described fixed frame 1 needs locking, the upper-lower position scope activity of described snap ring at described locking through hole 4 is promoted by pushing component, what make lock body 31 stretch into described snap ring unclamps portion, promote described snap ring again, make lock body 31 arrive the interior clamping of card-tight part of described snap ring, realize the action of locking a door; Reverse operating is the action of enabling, and structure is simple, and user is easy to operate.
The inner ring of described snap ring is by the great circle differed in size and ringlet is end to end forms, described lock body 31 comprises holder 311 and fixed bar 312, described holder 311 is arranged in described groove 11, described fixed bar 312 is variable diameters rod member, its one end is fixed on holder 311, for larger diameter end, the other end extends to the side at described activity framework 2 place, is smaller diameter end; The end of described fixed bar 312 smaller diameter end is provided with casting lug thereon 313, and the face area of described casting lug thereon 313 is greater than the area of ringlet and is less than the area of described great circle.
In the present embodiment, when one end that activity framework 2 slides into described fixed frame 1 needs locking, the activity of described snap ring at described locking through hole 4 is promoted by pushing component, lock body 31 is made to stretch in the great circle of described snap ring, promote described snap ring again, make lock body 31 arrive the interior clamping of ringlet of described snap ring, realize the action of locking a door; Reverse operating is the action of enabling, and structure is simple, and user is easy to operate.
As shown in Fig. 4 and Fig. 6, described pushing component comprises chute 51, draw runner 52 and Power Component 53, described chute 51 is arranged in the hollow cavity of described side frame 21, described draw runner 52 is slidably arranged in described chute 51, described snap ring is fixed on described draw runner 52, described Power Component 53 drives described draw runner 52 to slide up and down in described chute 51, thus drives described snap ring in the upper-lower position scope activity of described locking through hole 4.
Drive snap ring in the upper-lower position scope activity of described locking through hole 4 by draw runner 52, realize opening the door or the action of locking a door, and the sliding up and down of draw runner 52, the driving force provided by Power Component 53 is realized, and structure is simple, easy to operate.
As shown in Figures 4 and 5, described Power Component 53 comprises external tapered end 531 and trace 532, described trace 532 is vertically fixed on described draw runner 52, and the free end of described trace 532 extends to the direction away from described locking through hole 4, described external tapered end 531 is fixed on the outside of described activity framework 2, the inner side of described external tapered end 531 is provided with U-shaped draw-in groove and blocks described trace 532, described external tapered end 531 press key 533 under the driving of external force, drive described U-shaped draw-in groove to move in the direction perpendicular to described trace 532.
In the present embodiment, external tapered end 531 is that the inner side that market can conveniently be bought has U-shaped draw-in groove, outside has the lock body structure pressing key that U-shaped draw-in groove can be driven to move in vertical direction, U-shaped draw-in groove is blocked described trace 532, key 533 is pressed by upwards or downwards driving, U-shaped draw-in groove and then moves in the vertical direction, thus drive trace 532 in the vertical direction upwards or move downward, trace 532 drives draw runner 52 upwards or move downward, structure is simple, easy for installation, when driving draw runner 52 to move, stability is strong, accurately quick during locking.
Described trace 532 is fixed on the medium position of described draw runner 52, and the two ends of described draw runner 52 are fixed with snap ring respectively, be then provided with the described lock body 31 of respective numbers in described groove 11, and the side of described side frame 21 is provided with the locking through hole 4 of respective numbers.
According to the length of the vertical height adjustment draw runner 52 of side frame 21, thus two or more snap ring (in the present embodiment, the quantity of snap ring is two) is locked the lock body 31 of the respective numbers be now arranged on described groove 11, ensure stability when movable frame 2 is locked; And two snap rings carry out locking operation by same draw runner 52, are pinned by two lock bodies 31 during locking simultaneously, easy to operate.
The both sides of described draw runner 52 are provided with can along the elastic clamping block 6 of described chute 51 width elastic deformation.
Draw runner 52 pushes against chute 51 by elastic clamping block 6, and in push-and-pull process, transmission bar double swerve can not occur, and stability is high; Rubbed by elastic clamping block 6 and chute 51 sidewall, greatly reduce draw runner 52 and the contact surface of chute 51, decrease noise during slip.
Described chute 51 and described locking through hole 4 arrange the same side of described side frame 21, and described snap ring is arranged in described chute 51.
Relative to the motion transmission relation increasing other transmission devices again and realize between snap ring and draw runner 52, directly chute 51 and described locking through hole 4 are arranged the same side of described side frame 21, simplify apparatus structure, improve transmission efficiency.
Be provided with lock body chute 12 bottom described groove 11, can slide in described lock body chute 12 before described lock body 31 is unfixing.Bottom groove 11, arrange lock body chute 12, be convenient to regulate and the position of location lock body 31 before described lock body 31 is unfixing, after simultaneously fixing, lock body chute 12 limits lock body 31 perpendicular to the degree of freedom on direction, groove 11 bottom surface, and stability is strong.
Below know-why of the present utility model is described in conjunction with specific embodiments.These describe just in order to explain principle of the present utility model, and can not be interpreted as the restriction to the utility model protection domain by any way.Based on explanation herein, those skilled in the art does not need to pay performing creative labour can associate other detailed description of the invention of the present utility model, and these modes all will fall within protection domain of the present utility model.

Claims (9)

1. built-in transmission totally-enclosed aluminum alloy push-pull door, comprise fixed frame and activity framework, described activity framework is slided between two side frames of described fixed frame, it is characterized in that: the side frame of described fixed frame is provided with the inside groove of opening, the side frame of described activity framework is closed hollow frame structure, and described side frame is fixed by locking device after embedding described groove;
Described locking device comprises lock body and locking body,
Described lock body is located in described groove;
Described locking body is located in the hollow cavity of described side frame;
The side of described side frame is provided with the locking through hole for described lock body turnover, and this side contacts with the bottom surface of described groove, and described locking through hole is corresponding with the position of described lock body.
2. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 1, it is characterized in that: described locking body comprises snap ring and pushing component, the inner ring of described snap ring is communicated with described locking through hole, and the inner ring of described snap ring is divided into card-tight part and unclamps portion; After described side frame embeds described groove, described lock body inserts described locking through hole and described snap ring successively, described pushing component promotes the upper-lower position scope activity of described snap ring at described locking through hole, be locking state when the card-tight part of described snap ring blocks described lock body, when described lock body is in the portion of unclamping of described snap ring, described side frame and described fixed frame are releasing orientation.
3. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 2, it is characterized in that: the inner ring of described snap ring is by the great circle differed in size and ringlet is end to end forms, described lock body comprises holder and fixed bar, described holder is arranged in described groove, described fixed bar is variable diameters rod member, and its one end is fixed on holder, is larger diameter end, the other end extends to the side at described activity framework place, is smaller diameter end; The end of described fixed bar smaller diameter end is provided with casting lug thereon, and the face area of described casting lug thereon is greater than the area of ringlet and is less than the area of described great circle.
4. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 2, it is characterized in that: described pushing component comprises chute, draw runner and Power Component, described chute is arranged in the hollow cavity of described side frame, described draw runner is slidably arranged in described chute, described snap ring is fixed on described draw runner, described Power Component drives described draw runner to slide up and down in described chute, thus drives described snap ring in the upper-lower position scope activity of described locking through hole.
5. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 4, it is characterized in that: described Power Component comprises external tapered end and trace, described trace is vertically fixed on described draw runner, and the free end of described trace extends to the direction away from described locking through hole, described external tapered end is fixed on the outside of described activity framework, the inner side of described external tapered end is provided with U-shaped draw-in groove and blocks described trace, described external tapered end press the driving of key external force under, drive described U-shaped draw-in groove to move in the direction perpendicular to described trace.
6. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 5, it is characterized in that: described trace is fixed on the medium position of described draw runner, the two ends of described draw runner are fixed with snap ring respectively, then be provided with the described lock body of respective numbers in described groove, the side of described side frame is provided with the locking through hole of respective numbers.
7. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 4, is characterized in that: the both sides of described draw runner are provided with can along the elastic clamping block of described trough width direction elastic deformation.
8. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 4, is characterized in that: described chute and described locking through hole arrange the same side of described side frame, and described snap ring is arranged in described chute.
9. built-in transmission totally-enclosed aluminum alloy push-pull door according to claim 1, is characterized in that: described bottom portion of groove is provided with lock body chute, can slide before described lock body is unfixing in described lock body chute.
CN201520365489.2U 2015-05-29 2015-05-29 Built-in transmission totally-enclosed aluminum alloy push-pull door Withdrawn - After Issue CN204645997U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520365489.2U CN204645997U (en) 2015-05-29 2015-05-29 Built-in transmission totally-enclosed aluminum alloy push-pull door

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Application Number Priority Date Filing Date Title
CN201520365489.2U CN204645997U (en) 2015-05-29 2015-05-29 Built-in transmission totally-enclosed aluminum alloy push-pull door

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104879034A (en) * 2015-05-29 2015-09-02 区慧芳 Embedded transmission fully-enclosed aluminum alloy sliding door structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104879034A (en) * 2015-05-29 2015-09-02 区慧芳 Embedded transmission fully-enclosed aluminum alloy sliding door structure
CN104879034B (en) * 2015-05-29 2016-08-24 区慧芳 Built-in transmission total enclosing aluminum alloy push-pull door

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GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20150916

Effective date of abandoning: 20160824

C25 Abandonment of patent right or utility model to avoid double patenting