A locking clip for a zip-type wall component

Through the locking clips of the plyboard components and bolt components, the problems of unstable wall connections and hot and cold bridges in prefabricated buildings are solved, and waterless operations and detachable connecting ceiling functions are realized, which are suitable for various wall parts.

CN112814193BActive Publication Date: 2025-07-04INNER MONGOLIA LOCK TYPE NEW BUILDING MATERIALS TECH CO LTD
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Patent Information

Application Number
CN201911186485.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-11-16
Publication Date
2025-07-04
Estimated Expiration
2039-11-16

AI Technical Summary

Technical Problem

In prefabricated buildings, there is a contradiction between the wet construction method of traditional zipper wall panels and wall member blocks and the dry construction method of waterless operations, resulting in unstable connections and cracking problems, and the use of metal materials leads to hot and cold bridge phenomena.

Method used

The locking card parts using ply plate components and bolt components are connected to the building steel beams through non-threaded end extension rods, and non-thermal conductive materials are used to avoid hot and cold bridges, so as to achieve the connection and hanging functions of waterless operations, and solve the problem of inaccurate positioning through split inserts.

Benefits of technology

It realizes the connection and ceiling functions of waterless operations, avoids the phenomenon of hot and cold bridges, is suitable for various connection types of wall parts, and is removable and reusable.

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Abstract

The present invention provides a locking clip for a zip-type wall component. The locking clip can be applied to the connection, locking and fastening between zip-type wall panels or wall component blocks, or between zip-type wall panels or wall component blocks and beams or the ground. The locking clip includes a clamping plate assembly I, a clamping plate assembly II and a bolt assembly. The clamping plate assembly I and the clamping plate assembly II are connected by the bolt assembly. Both the clamping plate assembly I and the clamping plate assembly II include a left wing plate and a right wing plate fixedly connected together. The plate body shapes of the left wing plate and the right wing plate match the shape of the trapezoidal side of the zip groove of the zip-type wall component. After connection, the left wing plate and the right wing plate form a V-shaped shape with an angle less than 180 degrees and greater than 90 degrees. The clamping plate assembly I and the clamping plate assembly II clamp the trapezoidal side of the zip groove of the zip-type wall component through their left wing plates and right wing plates to complete the connection between two zip-type wall components.
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Description

Technical Field

[0001] A locking clip for a zip-type wall component, which relates to an installation and combination clip for building components, and particularly relates to a locking clip for a zip-type wall component applied to prefabricated buildings. Background Art

[0002] The application of building wall panels and wall block components in the fields of building frame structures, steel structures, etc. has a history of nearly a hundred years. In the past, when building wall panels and wall block components were applied in the above structures, cement slurry or other adhesive slurries were used for bonding between the wall panels and between the wall blocks. Due to the different wet expansion and dry shrinkage values of each wall panel, wall block and the adhesive slurry, cracks often occurred between the wall panels and wall blocks. With the emergence of "zip-type" wall panels and wall block components, the problem of frequent cracking between the wet expansion and dry shrinkage wall panels and wall blocks has been effectively solved.

[0003] With the rise of prefabricated buildings and the encouragement and promotion of prefabricated buildings by the state, new problems have emerged in the construction of "zip-type" wall panels and wall block components in prefabricated building construction. Since most components in prefabricated building construction adopt a dry construction method without water operation, while the traditional "zip-type" wall panels and wall block components use a wet construction method in which a large amount of water is used to stir and dilute the adhesive slurry in the bonding technology using cement or other adhesive slurries. This is contrary to the development and construction technology of prefabricated buildings, and the original standards and construction operation procedures formulated for the wet construction method of "zip-type" wall panels and wall block components are also unable to meet the new construction requirements in prefabricated building construction. Summary of the Invention

[0004] To solve the above problems, the present invention provides a locking clip for a zip-type wall component. The locking clip can be applied to the connection, locking and fastening between zip-type wall panels or wall block components in prefabricated buildings, can be applied to the connection, locking and fastening in the ceiling of zip-type wall panels in prefabricated buildings, and can also be applied to the connection, locking and fastening between zip-type wall panels or wall block components and beams, floors.

[0005] The specific structure of the locking clip applied to the connection between two zip-type wall panels or zip-type wall block components is as follows.

[0006] Specific Embodiment 1: The locking clip includes a splint assembly I, a splint assembly II, and a bolt assembly. The splint assembly I and the splint assembly II are connected by the bolt assembly. Both the splint assembly I and the splint assembly II include a left wing plate and a right wing plate fixedly connected together. The plate body shapes of the left wing plate and the right wing plate match the shape of the trapezoidal side of the zip groove of the zip-type wall component. After the left wing plate and the right wing plate are connected, they form a V-shaped shape with an angle less than 180 degrees and greater than 90 degrees. The splint assembly I and the splint assembly II clamp on the trapezoidal side of the zip groove of the zip-type wall component through their left wing plates and right wing plates to complete the connection between two lock-type wall components.

[0007] Specific Embodiment 2: Based on the locking clip for the zip-type wall component described in the above Specific Embodiment 1. The splint assembly I and the splint assembly II further include a flat connecting plate; the left wing plate and the right wing plate are fixedly connected to both ends of the flat connecting plate.

[0008] Specific Embodiment 3: The locking clip includes a splint assembly I, a splint assembly II, and a bolt assembly. The splint assembly I and the splint assembly II are connected by the bolt assembly. Both the splint assembly I and the splint assembly II include a left wing plate and a right wing plate fixedly connected together. After the left wing plate and the right wing plate are connected, they form a flat shape with an angle of 180 degrees. Convex tenons are made on the transverse end faces at both ends of the plate surfaces of the left wing plate and the right wing plate. The splint assembly I and the splint assembly II clamp on the trapezoidal side of the zip groove of the zip-type wall component through the convex tenons made on the end faces of their left wing plates and right wing plates to complete the connection between two lock-type wall components.

[0009] To further improve the connection, locking, and fastening effects between the zip-type wall components and increase the friction coefficient between the locking clip and the trapezoidal side of the zip groove of the zip-type wall component. Clamping structures are provided on the left wing plate and the right wing plate of the locking clip described in Specific Embodiment 1, Specific Embodiment 2, and Specific Embodiment 3.

[0010] Furthermore, the clamping structures in Specific Embodiment 1 and Specific Embodiment 2 are serrations provided on the two end faces of the left wing plate and the right wing plate, or are conical protrusions provided on the two inner side surfaces of the left wing plate and the right wing plate, or are spikes punched from the outside to the inside on the two plate surfaces of the left wing plate and the right wing plate.

[0011] Furthermore, the clamping structure in Specific Embodiment 3 is serrations provided on the convex tenons of the left wing plate and the right wing plate.

[0012] Further, the clamping structure described in the third embodiment is a trapezoidal strip that abuts against the left wing plate and the right wing plate. The shape of the chord side of the upper trapezoidal strip matches the shape of the trapezoidal side of the zip groove of the zip-type wall component. The included angle between the chord sides of the two symmetrically arranged upper trapezoidal strips on the left wing plate A and the right wing plate is consistent with the angle formed by the trapezoidal sides of the zip grooves after the two zip-type wall components are correspondingly connected.

[0013] To further improve the installation convenience of the locking fastener between the zip-type wall components and enhance the centering effect of the connection gaps between the splint assembly I and the splint assembly II and the two zip-type wall components. An insertion strip is provided inside the connection of the left wing plate and the right wing plate of the splint assembly I or the splint assembly II described in the first embodiment and the third embodiment. An insertion strip is provided inside the middle of the straight connection plate of the splint assembly I or the splint assembly II described in the second embodiment.

[0014] To reduce the weight of the locking fastener described in the first embodiment, the second embodiment, and the third embodiment above, a number of micropores are provided on the left wing plate and the right wing plate of the splint assembly I and the splint assembly II.

[0015] In the above three embodiments, there are the following two connection methods for the splint assembly I, the splint assembly II, and the bolt assembly of the locking fastener.

[0016] Method 1: Bolt holes are provided on the connection ends of the left wing plate and the right wing plate of the splint assembly I and the splint assembly II of the locking fastener or on the center line of the straight connection plate. The bolt assembly passes through the bolt holes to achieve the fastening connection of the splint assembly I and the splint assembly II.

[0017] Method 2: Bolt holes are provided on the connection ends of the left wing plate and the right wing plate of the splint assembly I or the splint assembly II of the locking fastener or on the center line of the straight connection plate. The non-threaded end of the bolt assembly is fixedly provided on the connection ends of the left wing plate and the right wing plate of the splint assembly I or the splint assembly II of the locking fastener or on the center line of the straight connection plate. The threaded end of the bolt assembly passes through the bolt hole to achieve the fastening connection of the splint assembly I and the splint assembly II.

[0018] In the above three embodiments, the bolt assembly is separately provided, and its middle part is connected by a tubular component or a soft connection belt assembly.

[0019] Specifically, the tubular component is made of a non-thermal conductive material, and threads are made in the inner cavities at both ends thereof or internally threaded connectors are fixedly provided. The fastening screw I and the fastening screw II are connected to the tubular component through the threads made in the inner cavities at both ends of the tubular component or the internally threaded connectors fixedly provided. The non-thermal conductive material includes PVC or PE or ABS or PMMA materials.

[0020] Specifically, the soft connection belt assembly is composed of a connection belt and two connection and fixation components symmetrically arranged and fixedly connected to both ends of the connection belt. The connection belt is made of a non-thermal conductive material. The connection and fixation components are composed of two symmetrically arranged fixing pieces and nuts, and the nuts are clamped between the two fixing pieces. The fastening screw I and the fastening screw II are connected to the connection belt by screwing into the nuts. The soft connection belt assembly also has the functions of being bendable and curlable. The non-thermal conductive material includes PVC or PE or ABS or PMMA materials.

[0021] For the locking clip for the zip-type wall component of the present invention, the solution adopted to realize the functions of connection, locking and fastening of the zip-type wall panel in the ceiling of the prefabricated building is that the non-threaded end of the bolt assembly is fixedly connected with an extension rod. The extension rod of the bolt assembly is welded to the embedded part on the building steel beam or the roof to realize the hanging function of the locking clip for the wall component. Preferably, an expansion bolt is provided at the top end of the extension rod.

[0022] To realize the connection, locking and fastening between the zip-type wall component of the three embodiments of the locking clip for the zip-type wall component of the present invention and the building beam and the ground. The locking clip for the zip-type wall component of the present invention further includes an L-shaped insertion splint or a T-shaped insertion splint.

[0023] Specifically, the L-shaped upper insertion splint is composed of a fixing plate I and a lower splint I fixedly connected perpendicular to each other at one end. A through hole I is made on the fixing plate I, and the lower splint I is clamped between the splint assembly I and the splint assembly II. In the specific application of the L-shaped insertion splint, the fixing plate I is fixed to the bottom surface of the building beam by expansion screws through its through hole, and the lower splint I of the L-shaped upper insertion splint is clamped in the connection gap of the wall component while the splint assembly I and the splint assembly II of the locking clip are connecting, locking and fastening the wall component, so as to realize the above functions of the locking clip.

[0024] Specifically, the T-shaped insertion splint is composed of a fixing plate II, a lower splint II and a double-headed screw fixedly arranged at the bottom end of the lower splint II. The lower splint II is fixedly connected to the middle of the lower surface of the fixing plate II. A through hole II is made on the fixing plate II, and the lower splint II is clamped between the splint assembly I and the splint assembly II. The T-shaped insertion splint realizes the tight connection of the three of them by inserting both ends of its double-headed screw into the bolt holes made on the splint assembly I and the splint assembly II respectively.

[0025] When the locking clip for the zip-type wall component of the present invention is applied to the connection, locking and fastening of the zip-type external wall component and the beam and the ground, due to the large temperature difference between indoor and outdoor in winter in the north, the L-shaped insertion splint or the T-shaped insertion splint of the locking clip made of metal material will conduct the low temperature outside into the room, resulting in the cold bridge phenomenon of frosting at the locking clip part at the indoor connection of the building zip-type external wall component.

[0026] To solve the above problems, the L-shaped insertion splint or T-shaped insertion splint can be arranged in a split manner. Specifically, the L-shaped insertion splint is arranged in a split manner as a left L-shaped insertion splint and a right L-shaped insertion splint. The T-shaped insertion splint is arranged in a split manner as a left T-shaped insertion splint and a right T-shaped insertion splint.

[0027] To solve the technical problems caused by the split arrangement of the L-shaped insertion splint or T-shaped insertion splint, such as inaccurate positioning during construction and installation, resulting in the inability to effectively align them parallel and perpendicular to each other, or the distance between the two being too large or too small.

[0028] Preferably, an installation and fixing member is provided between the split left L-shaped insertion splint and right L-shaped insertion splint or T-shaped insertion splint and right T-shaped insertion splint. The installation and fixing member is made of a non-thermal conductive material, and slots are symmetrically arranged at both its left and right ends. The width of the slots is the same as the thickness of the L-shaped insertion splint or T-shaped insertion splint.

[0029] The beneficial effects of the locking card for the zip-type wall component of the present invention are as follows: (1) The locking card not only has the functions of connecting, locking, and fastening between the zip-type wall components, but also takes into account the connection, locking, and fastening functions among the zip-type wall components, building beams, and the ground. (2) During the installation and construction of the zip-type wall components, no various adhesive slurries are required, realizing a dry construction method for component connection in prefabricated buildings without water operation. (3) The locking card is not only applicable to the connection, locking, and fastening of zip-type wall components, but also has the functions of connecting, locking, and fastening ordinary wall boards and wall components. (4) The zip-type wall components or ordinary wall boards connected, locked, and fastened by using the locking card of the present invention also have the function of being detachable and reusable, and will not damage the outer surface and internal structure of the wall components during the disassembly process of the wall components. Description of the Drawings

[0030] Figure 1 It is a three-dimensional axonometric view of the locking card for the zip-type wall component of the present invention connecting the zip-type wall component.

[0031] Figure 2 It is a cross-sectional view of the locking card for the zip-type wall component of the present invention connecting the zip-type wall component (the first embodiment).

[0032] Figure 3 It is a three-dimensional axonometric view of the locking card for the zip-type wall component of the present invention (the first embodiment).

[0033] Figure 4 It is a cross-sectional view of the locking card for the zip-type wall component of the present invention connecting the zip-type wall component (the second embodiment).

[0034] Figure 5 3D axonometric view of a locking clip for a zip - type wall component (second embodiment) of the present invention.

[0035] Figure 6 Cross - sectional view of a locking clip for a zip - type wall component connecting a zip - type wall component (third embodiment) of the present invention.

[0036] Figure 7 3D axonometric view of a locking clip for a zip - type wall component (third embodiment) of the present invention.

[0037] Figure 8 Schematic diagram (1) of the clamping structure of a locking clip for a zip - type wall component (first and second embodiments) of the present invention.

[0038] Figure 9 Schematic diagram (2) of the clamping structure of a locking clip for a zip - type wall component (first and second embodiments) of the present invention.

[0039] Figure 10 Schematic diagram (3) of the clamping structure of a locking clip for a zip - type wall component (first and second embodiments) of the present invention.

[0040] Figure 11 Schematic diagram (1) of the clamping structure of a locking clip for a zip - type wall component (third embodiment) of the present invention.

[0041] Figure 12 Schematic diagram (2) of the clamping structure of a locking clip for a zip - type wall component (third embodiment) of the present invention.

[0042] Figure 13 Schematic diagram of the insertion strip structure of a locking clip for a zip - type wall component (third embodiment) of the present invention.

[0043] Figure 14 Schematic diagram of the insertion strip structure of a locking clip for a zip - type wall component (first and second embodiments) of the present invention.

[0044] Figure 15 Schematic diagram of the through - holes of the left and right wing plates of a locking clip for a zip - type wall component of the present invention.

[0045] Figure 16 Schematic diagram of the bolt assembly (set on the left and right planes) of a locking clip for a zip - type wall component of the present invention.

[0046] Figure 17 Schematic diagram of the bolt assembly (tubular component) of a locking clip for a zip - type wall component of the present invention.

[0047] Figure 18 Schematic diagram of the bolt assembly (soft connection belt assembly) of a locking clip for a zip-type wall component according to the present invention.

[0048] Figure 19 Cross-sectional schematic diagram of the application of the bolt assembly (soft connection belt assembly) of a locking clip for a zip-type wall component according to the present invention in the zip-type wall component.

[0049] Figure 20 Schematic diagram of the application state of the bolt assembly (soft connection belt assembly) of a locking clip for a zip-type wall component according to the present invention.

[0050] Figure 21 Schematic diagram of the application state of the bolt assembly (ceiling of the wall component) of a locking clip for a zip-type wall component according to the present invention.

[0051] Figure 22 Schematic diagram of the application of the L-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention for firm connection with a beam between the zip-type wall components.

[0052] Figure 23 Three-dimensional schematic diagram of the L-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention.

[0053] Figure 24 Schematic diagram of the application of the T-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention for firm connection with a beam between the zip-type wall components.

[0054] Figure 25 Three-dimensional schematic diagram of the T-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention (Example 1).

[0055] Figure 26 Schematic diagram of the application of the T-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention for firm connection with the ground between the zip-type wall components.

[0056] Figure 27 Three-dimensional schematic diagram of the T-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention (Example 2).

[0057] Figure 28 Three-dimensional schematic diagram of the split structure of the L-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention.

[0058] Figure 29 Three-dimensional schematic diagram of the split structure of the T-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention.

[0059] Figure 30Three-dimensional schematic diagram of the installation and fixing part of a locking clip for a zip-type wall component according to the present invention.

[0060] Figure 31 Three-dimensional schematic diagram of the application of the installation and fixing part of a locking clip for a zip-type wall component according to the present invention in a separately arranged L-shaped insertion splint.

[0061] Figure 32 Three-dimensional schematic diagram of the application of the installation and fixing part of a locking clip for a zip-type wall component according to the present invention in a separately arranged T-shaped insertion splint.

[0062] Figure 33 Three-dimensional schematic of the double-headed screw embodiment of the L-shaped insertion splint of a locking clip for a zip-type wall component according to the present invention. Detailed implementation mode

[0063] Figure 1 As shown, a locking clip for a zip-type wall component according to the present invention is applied to the connection, locking and fastening between zip-type wall components A, and its specific structure is as follows. Specific embodiment one;

[0065] As Figure 2 Figure 3 shown, the locking clip includes a splint assembly Ⅰ1, a splint assembly Ⅱ2 and a bolt assembly 3. The splint assembly Ⅰ1 and the splint assembly Ⅱ2 are connected by the bolt assembly 3. Both the splint assembly Ⅰ1 and the splint assembly Ⅱ2 include a left wing plate Aa and a right wing plate Ab fixedly connected together. The plate shapes of the left wing plate Aa and the right wing plate Ab match the trapezoidal side A1 of the zip groove of the zip-type wall component A. After the left wing plate Aa and the right wing plate Ab are connected, they form a V-shaped shape with an angle less than 180 degrees and greater than 90 degrees. The splint assembly Ⅰ1 and the splint assembly Ⅱ2 clamp the trapezoidal side A1 of the zip groove of the zip-type wall component A through their left wing plate Aa and right wing plate Ab to complete the connection between two zip-type wall components A. Specific embodiment two;

[0067] Based on the locking clip for a zip-type wall component described in the above embodiment one. As Figure 4 Figure 5 shown, the splint assembly Ⅰ1 and the splint assembly Ⅱ2 further include a straight connecting plate Ad; the left wing plate Aa and the right wing plate Ab are fixedly connected to both ends of the straight connecting plate Ad. Specific embodiment three

[0069] As Figure 6 Figure 7As shown, the locking clip includes a clamping plate assembly Ⅰ1, a clamping plate assembly Ⅱ2 and a bolt assembly 3. The clamping plate assembly Ⅰ1 and the clamping plate assembly Ⅱ2 are connected by the bolt assembly 3. Both the clamping plate assembly Ⅰ1 and the clamping plate assembly Ⅱ2 include a left wing plate Aa and a right wing plate Ab fixedly connected together. The left wing plate Aa and the right wing plate Ab are in a straight shape with an angle of 180 degrees after connection. Convex tenons Ae are made on the transverse ends of the plate surfaces of the left wing plate Aa and the right wing plate Ab. The clamping plate assembly Ⅰ1 and the clamping plate assembly Ⅱ2 are clamped on the trapezoidal side A1 of the zip groove of the zip-type wall part A through the convex tenons Ae on the two ends of their left wing plates Aa and right wing plates Ab to complete the connection between two zip-type wall parts A.

[0070] Specifically Figure 2 Figure 4 As shown, in the first embodiment and the second embodiment, the connection setting angle of the left wing plate (Aa) and the right wing plate (Ab) is equal to or less than the angle formed by the trapezoidal side (A1) of the zip groove of two corresponding connected zip-type wall parts A.

[0071] To further improve the connection, locking and fastening effects between the zip-type wall parts A and increase the friction coefficient between the locking clip and the trapezoidal side A1 of the zip groove of the zip-type wall part A.

[0072] Preferably Figure 8 Figure 9 Figure 10 As shown, a clamping structure is provided on the left wing plate Aa and the right wing plate Ab of the locking clip in the first embodiment and the second embodiment. Figure 11 Figure 12 As shown, a clamping structure is provided on the left wing plate Aa and the right wing plate Ab of the locking clip in the third embodiment.

[0073] Furthermore Figure 8 As shown, the clamping structure of the left wing plate Aa and the right wing plate Ab of the locking clip in the first embodiment and the second embodiment is saw teeth Af provided on the two end faces of the left wing plate Aa and the right wing plate Ab.

[0074] Furthermore Figure 9 As shown, the clamping structure of the left wing plate Aa and the right wing plate Ab of the locking clip in the first embodiment and the second embodiment is conical protrusions Ag provided on the two inner side plate surfaces of the left wing plate Aa and the right wing plate Ab.

[0075] Furthermore Figure 10 As shown, the clamping structure of the left wing plate Aa and the right wing plate Ab of the locking clip in the first embodiment and the second embodiment is spikes Ah punched from the outside to the inside on the two plate surfaces of the left wing plate Aa and the right wing plate Ab.

[0076] Furthermore Figure 11As shown, the clamping structure of the left wing plate Aa and the right wing plate Ab of the locking clip in the third embodiment is a sawtooth Af provided on the convex tenons Ae of the left wing plate Aa and the right wing plate Ab.

[0077] Furthermore Figure 12 As shown, the clamping structure of the left wing plate Aa and the right wing plate Ab of the locking clip in the third embodiment is a trapezoidal strip Ai that abuts against the left wing plate Aa and the right wing plate Ab. The shape of the chord side Ai1 of the upper trapezoidal strip Ai matches the shape of the trapezoidal side A1 of the zip groove of the zip-type wall component A. The included angle between the chord sides Ai1 of the two symmetrically arranged upper trapezoidal strips Ai on the left wing plate Aa and the right wing plate Ab is consistent with the angle formed by the trapezoidal sides A1 of the zip grooves after the two zip-type wall components A are correspondingly connected.

[0078] To further improve the installation convenience of the locking clip between the zip-type wall components A and improve the centering effect of the connection gap between the clamping plate assembly I1 and the clamping plate assembly II2 and the two zip-type wall components A.

[0079] Preferably Figure 13 As shown, an insertion strip Aj is provided inside the connection of the left wing plate Aa and the right wing plate Ab of the clamping plate assembly I1 or the clamping plate assembly II2 in the first embodiment and the third embodiment. Figure 14 As shown, an insertion strip Aj is provided inside the middle part of the straight connecting plate Ad of the clamping plate assembly I1 or the clamping plate assembly II2 in the second embodiment.

[0080] Specifically Figure 13 Figure 14 As shown, the insertion strips Aj can be symmetrically arranged on the clamping plate assembly I1 or the clamping plate assembly II2 at the same time. During installation, the insertion strips Aj are inserted into the connection gap between the two zip-type wall components A for centering and positioning between the clamping plate assembly I1 and the clamping plate assembly II2. The thickness of the insertion strips Aj is less than the connection gap between the two zip-type wall components A.

[0081] To reduce the weight of the locking clip in the above-mentioned first embodiment, second embodiment and third embodiment, without affecting the strength of the clamping plate assembly I1 and the clamping plate assembly II2. Preferably, as Figure 15 As shown, a number of micro-holes Ak are provided on the left wing plate Aa and the right wing plate Ab of the clamping plate assembly I1 and the clamping plate assembly II2.

[0082] In the above three embodiments, there are the following two connection methods for the clamping plate assembly I1, the clamping plate assembly II2 and the bolt assembly 3 of the locking clip.

[0083] Method 1 Figure 3 Figure 5 Figure 7As shown, bolt holes Ac are provided on the center lines of the connecting ends of the left wing plates Aa and right wing plates Ab of the locking clip splint assembly Ⅰ1 and the splint assembly Ⅱ2, or on the center line of the straight connecting plate Ad. The bolt assembly 3 passes through the bolt holes Ac to achieve the fastening connection of the splint assembly Ⅰ1 and the splint assembly Ⅱ2.

[0084] Method 2 Figure 13 Figure 14 Figure 15 As shown, bolt holes Ac are provided on the center lines of the connecting ends of the left wing plates Aa and right wing plates Ab of the locking clip or on the center line of the straight connecting plate Ad of the splint assembly Ⅰ1 or the splint assembly Ⅱ2. The non-threaded end of the bolt assembly 3 is fixedly provided on the center line of the connecting ends of the left wing plates Aa and right wing plates Ab of the locking clip or on the center line of the straight connecting plate Ad of the splint assembly Ⅰ1 or the splint assembly Ⅱ2. The threaded end of the bolt assembly 3 passes through the bolt holes Ac to achieve the fastening connection of the splint assembly Ⅰ1 and the splint assembly Ⅱ2.

[0085] During the installation of the locking clip in the above three embodiments, the bolt assembly 3 passes through the connection gap between the two zippered wall components A to achieve the connection of the splint assembly Ⅰ1 and the splint assembly Ⅱ2. To reduce the connection gap between the two zippered wall components A, preferably Figure 16 As shown, plane Ⅰ3a is provided in parallel on the left and right sides of the middle connecting rod of the bolt assembly 3, and the distance between the left and right plane Ⅰ3a is less than the diameter of the middle connecting rod of the bolt assembly 3.

[0086] When the locking clip for the zippered wall component of the present invention connects, locks, and fastens the zippered exterior wall component A, due to the large temperature difference between indoor and outdoor in winter in the north, the bolt assembly 3 of the locking clip made of metal material will conduct the low temperature outdoors into the room, forming a cold bridge phenomenon of frosting at the locking clip part on the indoor side of the building exterior wall.

[0087] To solve the above problems, in the above three embodiments, the bolt assembly 3 is separately provided, and its middle part is connected by a tubular component 31 or a soft connection belt assembly 34.

[0088] Specifically Figure 17 As shown, the tubular component 31 is made of a non-thermal conductive material, and threads 31b are made in the inner cavities 31a at both ends thereof or inner threaded connectors 31c are fixedly provided. The fastening screw Ⅰ32 and the fastening screw Ⅱ33 are connected to the tubular component 31 through the threads 31b made in the inner cavities 31a at both ends of the tubular component 31 or the fixedly provided inner threaded connectors 31c. The non-thermal conductive material includes PVC or PE or ABS or PMMA materials.

[0089] Specifically Figure 18As shown, the flexible connection belt assembly 34 is composed of a connection belt 34a and two connection and fixation assemblies 34b symmetrically arranged and fixedly connected to both ends of the connection belt 34a. The connection belt 34a is made of a non-thermal conductive material, and the connection and fixation assembly 34b is composed of two symmetrically arranged fixing members 34b1 and nuts 34b2, and the nut 34b2 is clamped between the two fixing members 34b1. The fastening screw I 32 and the fastening screw II 33 are connected to the connection belt 34a by screwing into the nut 34b2. The non-thermal conductive material includes materials such as PVC, PE, ABS, or PMMA, etc.

[0090] In the split setting of the bolt assembly 3, the flexible connection belt assembly 34 is adopted, which also has the functions of being bendable and curlable. The locking clip of the bolt assembly 3 adopting the flexible connection belt assembly 34 can be applied to the connection of traditional non-"zipper-type" wall components A. Specifically Figure 19 Figure 20 As shown, one end of the traditional wall component A is provided with a tenon strip A2, and the other end is provided with a groove (A3). After the connection of two wall components A, the tenon strip A2 of one wall component A is inserted into the groove (A3) of the other wall component A. The flexible connection belt assembly 34 bends and curls along with the connection gap of the two wall components A, so that the locking clip for the zipper-type wall component of the present invention is applicable to wall components A of various connection types and structures.

[0091] The locking clip for the zipper-type wall component of the present invention also has the function of hanging the zipper-type wall component. Specifically Figure 21 As shown, an extension rod 35 is fixedly connected to the non-threaded end of the bolt assembly 3, and the extension rod 35 of the bolt assembly 3 is welded to the embedded part on the building steel beam or roof to realize the hanging function of the locking clip for the wall component A. Preferably Figure 21 As shown, an expansion bolt 35a is provided at the top end of the extension rod 35.

[0092] To realize the connection, locking, and fastening among the zipper-type wall component A, the building beam B, and the ground C in the above three embodiments of the locking clip for the zipper-type wall component of the present invention. The locking clip for the zipper-type wall component of the present invention further includes an L-shaped insertion splint 4 or a T-shaped insertion splint 5.

[0093] Specifically Figure 22 Figure 23As shown, the L-shaped upper inserting splint 4 is composed of a fixing plate Ⅰ 41 and a lower splint Ⅰ 42 which are fixedly connected perpendicular to each other at one end. A through hole Ⅰ 41a is formed on the fixing plate Ⅰ 41, and the lower splint Ⅰ 42 is clamped between the splint assembly Ⅰ 1 and the splint assembly Ⅱ 2. In the specific application of the L-shaped inserting splint 4, the fixing plate Ⅰ 41 is fixed to the bottom surface of the building beam B by expansion screws through its through hole Ⅰ 41a. While the splint assembly Ⅰ 1 and the splint assembly Ⅱ 2 of the locking part clamp, lock and fasten the wall component A, the lower splint Ⅰ 42 of the L-shaped upper inserting splint 4 is clamped in the connection gap of the wall component A, so as to realize the above functions of the locking part.

[0094] Specifically Figure 24 Figure 25 As shown, the T-shaped inserting splint 5 is composed of a fixing plate Ⅱ 51, a lower splint Ⅱ 52 and a double-headed screw 53 fixedly arranged at the bottom end of the lower splint Ⅱ 52. The lower splint Ⅱ 52 is fixedly connected to the middle of the lower surface of the fixing plate Ⅱ 51. A through hole Ⅱ 51a is formed on the fixing plate Ⅱ 51, and the lower splint Ⅱ 52 is clamped between the splint assembly Ⅰ 1 and the splint assembly Ⅱ 2. The T-shaped inserting splint 5 realizes the fastening connection of the three through the two ends of its double-headed screw 53 being respectively inserted into the bolt holes Ac formed on the splint assembly Ⅰ 1 and the splint assembly Ⅱ 2. In the specific application of the T-shaped inserting splint 5, the fixing plate Ⅱ 51 is fixed to the bottom surface of the building beam B by expansion screws through its through hole Ⅱ 51a. While the splint assembly Ⅰ 1 and the splint assembly Ⅱ 2 of the locking part clamp, lock and fasten the wall component A, the lower splint Ⅱ 52 of the T-shaped upper inserting splint 5 is clamped in the connection gap of the wall component A. The double-headed screw 53 arranged at the bottom end of the lower splint Ⅱ 52 passes through the bolt holes Ac formed on the splint assembly Ⅰ 1 and the splint assembly Ⅱ 2, so as to realize the above functions of the locking part.

[0095] As Figure 24 Figure 25 As shown, when the T-shaped inserting splint 5 is applied to the connection, locking and fastening between the wall component A and the beam B, the width of the fixing plate Ⅱ 51 is smaller than the thickness of the zip-type wall component A, and the through holes Ⅱ 51a formed on its plate surface are all arranged in the connection area of the two outer zip-type wall components A of the splint assembly Ⅰ 1 and the splint assembly Ⅱ 2.

[0096] As Figure 26 As shown, when the T-shaped inserting splint 5 is applied to the connection, locking and fastening between the wall component A and the ground C, the size of the fixing plate Ⅱ 51 of the T-shaped inserting splint 5 can be set according to specific needs, and the through holes Ⅱ 51a arranged on its plate surface can be set according to specific needs.

[0097] When the locking clip for the zip - type wall component of the present invention is applied to the connection, locking, and fastening of the zip - type external wall component A with the beam B and the ground C, due to the large temperature difference between indoor and outdoor in winter in the north, the L - shaped insertion splint 4 or T - shaped insertion splint 5 of the locking clip made of metal material will conduct the low temperature outdoors into the room, resulting in the cold - heat bridge phenomenon of frosting at the locking clip part at the indoor connection of the building zip - type external wall component A.

[0098] To solve the above problems, the L - shaped insertion splint 4 or T - shaped insertion splint 5 can be split - set.

[0099] Specifically Figure 28 As shown, the L - shaped insertion splint 4 is split into a left L - shaped insertion splint 4a and a right L - shaped insertion splint 4b. The fixing plate Ⅰ41 of the left L - shaped insertion splint 4a and the right L - shaped insertion splint 4b is provided with a through - hole Ⅰ41a.

[0100] Specifically Figure 29 As shown, the T - shaped insertion splint 5 is split into a left T - shaped insertion splint 5a and a right T - shaped insertion splint 5b.

[0101] To solve the technical problems of inaccurate positioning during the construction and installation process caused by the split - setting of the L - shaped insertion splint 4 or T - shaped insertion splint 5, resulting in their inability to be effectively parallel and perpendicular to each other, or the distance between the two being too large or too small.

[0102] Preferably Figure 30 Figure 32 As shown, an installation and fixing part 6 is arranged between the split - set left L - shaped insertion splint 4a and right L - shaped insertion splint 4b or T - shaped insertion splint 5a and right T - shaped insertion splint 5b. Figure 30 As shown, the installation and fixing part 6 is made of a non - heat - conducting material, and symmetrically arranged slots 6a are provided at its left and right ends. The width of the slots 6a is the same as the thickness of the L - shaped insertion splint 4 or T - shaped insertion splint 5. During the installation process, first, the two left L - shaped insertion splints 4a and right L - shaped insertion splints 4b or T - shaped insertion splints 5a and right T - shaped insertion splints 5b are respectively symmetrically inserted into the slots 6a provided at the left and right ends of the installation and fixing part 6 for positioning and width - setting. After the two left L - shaped insertion splints 4a and right L - shaped insertion splints 4b or T - shaped insertion splints 5a and right T - shaped insertion splints 5b are fixedly connected to the beam B or the ground C, the installation and fixing part 6 can be taken out between the L - shaped insertion splint 4a and the right L - shaped insertion splint 4b or T - shaped insertion splint 5a and right T - shaped insertion splint 5b. The non - heat - conducting materials for making the installation and fixing part 6 include PVC or PE or ABS or PMMA materials.

[0103] To reduce the connection gap between two zip - type wall components, preferably Figure 33As shown, the double-headed screw 53 is provided with a plane II 53a parallel to the two side surfaces of the lower clamping plate II 52, and the distance between the two planes 53a of the double-headed screw 53 is equal to or greater than the thickness of the lower clamping plate II 52.

[0104] The above is a detailed introduction to a locking clip for a zip-type wall component provided by an embodiment of the present invention. For those of ordinary skill in the art, according to the idea of the embodiment of the present invention, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation of the present invention, and any changes made according to the design idea of the present invention are within the protection scope of the present invention.

Claims

1. A locking clip for a zip-type wall component, characterized in that, The locking clip includes a clamping plate assembly I (1), a clamping plate assembly II (2) and a bolt assembly (3), and the clamping plate assembly I (1) and the clamping plate assembly II (2) are connected by the bolt assembly (3); Both the clamping plate assembly I (1) and the clamping plate assembly II (2) include a left wing plate (Aa) and a right wing plate (Ab) fixedly connected together; The plate shapes of the left wing plate (Aa) and the right wing plate (Ab) match the shape of the trapezoidal side (A1) of the zip groove of the zip-type wall component (A); After the left wing plate (Aa) and the right wing plate (Ab) are connected, they form a V shape with an angle less than 180 degrees and greater than 90 degrees; The clamping plate assembly I (1) and the clamping plate assembly II (2) are clamped on the trapezoidal side (A1) of the zip groove of the zip-type wall component (A) through their left wing plates (Aa) and right wing plates (Ab) to complete the connection between two lock-type wall components (A).

2. The locking clip for a zip - type wall component according to claim 1, wherein, The clamping plate assembly I (1) and the clamping plate assembly II (2) also include a straight connecting plate (Ad); The left wing plate (Aa) and the right wing plate (Ab) are fixedly connected to both ends of the straight connecting plate (Ad).

3. The locking clip for a zip - type wall component according to claim 2, characterized in that, An insertion strip (Aj) is provided on the inner side of the middle of the straight connecting plate (Ad) of the clamping plate assembly I (1) or the clamping plate assembly II (2).

4. The locking clip for a zip-type wall component according to claim 1, characterized in that, The connection angle of the left wing plate (Aa) and the right wing plate (Ab) is equal to or less than the angle formed by the trapezoidal sides (A1) of the zip grooves of two corresponding zip-type wall components (A) after connection.

5. A locking clip for a zip-type wall component according to claim 1, characterized in that, A clamping structure is provided on the left wing plate (Aa) and the right wing plate (Ab).

6. The locking clip for a zip - type wall component according to claim 5, characterized in that, The clamping structure is a sawtooth (Af) provided on the two end faces of the left wing plate (Aa) and the right wing plate (Ab); Or it is a conical protrusion (Ag) provided on the two inner side faces of the left wing plate (Aa) and the right wing plate (Ab); Or it is a spike (Ah) punched from the outside to the inside on the two plates of the left wing plate (Aa) and the right wing plate (Ab).

7. The locking clip for a zip-type wall component according to claim 1, characterized in that, An insertion strip (Aj) is provided on the inner side of the connection of the left wing plate (Aa) and the right wing plate (Ab) of the clamping plate assembly I (1) or the clamping plate assembly II (2).

8. The locking clip for a zip - type wall component according to claim 1, characterized in that, A number of micropores (Ak) are provided on the left wing plate (Aa) and the right wing plate (Ab) of the clamping plate assembly I (1) and the clamping plate assembly II (2).

9. A locking clip for a zip-type wall component according to claim 1, characterized in that, Bolt holes (Ac) are provided on the connection ends of the left wing plate (Aa) and the right wing plate (Ab) or on the center line of the straight connecting plate (Ad) of the locking clip clamping plate assembly I (1) and the clamping plate assembly II (2); The bolt assembly (3) passes through the bolt hole (Ac) to realize the fastening connection of the clamping plate assembly I (1) and the clamping plate assembly II (2).

10. A locking clip for a zip-type wall component according to claim 1, characterized in that, Bolt holes (Ac) are provided on the connection ends of the left wing plate (Aa) and the right wing plate (Ab) or on the center line of the straight connecting plate (Ad) of any one of the clamping plate assembly I (1) and the clamping plate assembly II (2) of the locking clip; The non-threaded end of the bolt assembly (3) is fixedly arranged on the center line of the connection ends of the left wing plate (Aa) and the right wing plate (Ab) or on the center line of the straight connecting plate (Ad) of any one of the clamping plate assembly I (1) and the clamping plate assembly II (2) of any one clip; The threaded end of the bolt assembly (3) passes through the bolt hole (Ac) to realize the fastening connection of the clamping plate assembly I (1) and the clamping plate assembly II (2).

11. The locking clip for a zip - type wall component according to claim 1, wherein, On the left and right sides of the middle connecting rod of the bolt assembly (3), there are two parallel planes I (3a), and the distance between the two planes I (3a) on the left and right is smaller than the diameter of the middle connecting rod of the bolt assembly (3).

12. The locking clip for a zip-type wall component according to claim 1, characterized in that, The bolt assembly (3) is separately provided, and its middle part is connected by a tubular component (31) or a soft connection belt assembly (34).

13. The locking clip for a zip - type wall component according to claim 12, wherein, The tubular component (31) is made of a non-heat-conducting material, and threads (31b) are made in the inner cavities (31a) at both ends thereof, or internally threaded connectors (31c) are fixedly arranged therein; The fastening screw I (32) and the fastening screw II (33) are connected to the tubular component (31) by the threads (31b) made in the inner cavities (31a) at both ends of the tubular component (31) or the internally threaded connectors (31c) fixedly arranged therein, so as to realize the connection between the fastening screw I (32), the fastening screw II (33) and the tubular component (31).

14. The locking clip for a zip - type wall component according to claim 12, characterized in that, The soft connection belt assembly (34) is composed of a connection belt (34a) and two symmetrically arranged connection and fixation assemblies (34b) fixedly connected to both ends of the connection belt (34a), and the connection belt (34a) is made of a non-heat-conducting material; The connection and fixation assembly (34b) is composed of two symmetrically arranged fixing members (34b1) and a nut (34b2), and the nut (34b2) is clamped between the two fixing members (34b1); The fastening screw I (32) and the fastening screw II (33) are connected to the connection belt (34a) through the nut (34b2), so as to realize the connection between the fastening screw I (32), the fastening screw II (33) and the connection belt (34a).

15. A locking clip for a zip-type wall component according to claim 14, characterized in that, The connection belt (34a) has the functions of being bendable and curly.

16. A locking clip for a zip-type wall component according to claim 13 or 14, characterized in that, The non-heat-conducting material includes PVC or PE or ABS or PMMA materials.

17. The locking clip for a zip - type wall component according to claim 1, characterized in that, An extension rod (35) is fixedly connected to the non-threaded end of the bolt assembly (3).

18. A locking clip for a zip-type wall component according to claim 17, characterized in that, An expansion bolt (35a) is arranged at the top end of the extension rod (35).

19. The locking clip for a zip-type wall component according to claim 1, characterized in that, The locking clip further includes an L-shaped inserting clamping plate (4), and the L-shaped inserting clamping plate (4) is composed of a fixing plate I (41) and a lower clamping plate I (42) which are fixedly connected perpendicular to each other at one end; A through hole I (41a) is made in the fixing plate I (41), and the lower clamping plate I (42) is clamped between the clamping plate assembly I (1) and the clamping plate assembly II (2).

20. The locking clip for a zip - type wall component according to claim 19, characterized in that, The L-shaped inserting clamping plate (4) is separately provided with a left L-shaped inserting clamping plate (4a) and a right L-shaped inserting clamping plate (4b).

21. The locking clip for a zip-type wall component according to claim 1, characterized in that, The locking clip further includes a T-shaped inserting clamping plate (5), and the T-shaped inserting clamping plate (5) is composed of a fixing plate II (51), a lower clamping plate II (52) and a double-headed screw (53) fixedly arranged at the bottom end of the lower clamping plate II (52), and the lower clamping plate II (52) is fixedly connected to the middle part of the lower surface of the fixing plate II (51); A through hole II (51a) is made in the fixing plate II (51), and the lower clamping plate II (52) is clamped between the clamping plate assembly I (1) and the clamping plate assembly II (2); The T-shaped inserting clamping plate (5) realizes the fastening connection among the three by inserting both ends of its double-headed screw (53) into the bolt holes (Ac) made in the clamping plate assembly I (1) and the clamping plate assembly II (2) respectively.

22. The locking clip for a zip - type wall component according to claim 21, wherein, The T-shaped inserting clamping plate (5) is separately provided with a left T-shaped inserting clamping plate (5a) and a right T-shaped inserting clamping plate (5b).

23. The locking clip for a zip-type wall component according to claim 21, characterized in that, The width of the fixed plate II (51) is less than the thickness of the zip-type wall component, and the through holes II (51a) formed on its plate surface are all arranged in the connection area of the two outer zip-type wall components of the clamping plate assembly I (1) and the clamping plate assembly II (2).

24. The locking clip for a zip - type wall component according to claim 21, wherein, The double-headed screw (53) is provided with a plane II (53a) parallel to the two side surfaces of the lower clamping plate II (52); The distance between the two planes II (53a) of the double-headed screw (53) is equal to or greater than the thickness of the lower clamping plate II (52).

25. A locking clip for a zip-type wall component according to claim 20 or 22, characterized in that, An installation and fixing member (6) is arranged between the separately arranged left L-shaped insertion clamping plate (4a) and the right L-shaped insertion clamping plate (4b) or the T-shaped insertion clamping plate (5a) and the right T-shaped insertion clamping plate (5b); The installation and fixing member (6) is made of a non-thermal conductive material, and slots (6a) are symmetrically arranged at its left and right ends, and the width of the slots (6a) is the same as the thickness of the L-shaped insertion clamping plate (4) or the T-shaped insertion clamping plate (5).

26. A locking clip for a zip-type wall component, characterized in that, The locking member includes a clamping plate assembly I (1), a clamping plate assembly II (2) and a bolt assembly (3), and the clamping plate assembly I (1) and the clamping plate assembly II (2) are connected by the bolt assembly (3); Both the clamping plate assembly I (1) and the clamping plate assembly II (2) include a left wing plate (Aa) and a right wing plate (Ab) fixedly connected together; The left wing plate (Aa) and the right wing plate (Ab) are in a straight shape with an angle of 180 degrees after connection; Convex tenons (Ae) are formed on the transverse end faces at both ends of the plate surfaces of the left wing plate (Aa) and the right wing plate (Ab); The clamping plate assembly I (1) and the clamping plate assembly II (2) are clamped on the trapezoidal side (A1) of the zip convex groove of the zip-type wall component (A) through the convex tenons (Ae) formed on the two end faces of their left wing plates (Aa) and right wing plates (Ab) to complete the connection between the two lock-type wall components (A).

27. The locking clip for a zip-type wall component according to claim 26, characterized in that, A clamping structure is arranged on the left wing plate (Aa) and the right wing plate (Ab).

28. The locking clip for a zip-type wall component according to claim 27, wherein The clamping structure is a sawtooth (Af) arranged on the convex tenon (Ae) of the left wing plate (Aa) and the right wing plate (Ab).

29. The locking clip for a zip - type wall component according to claim 27, characterized in that, The clamping structure is a trapezoidal strip (Ai) abutted against the left wing plate (Aa) and the right wing plate (Ab); The shape of the chord side (Ai1) of the trapezoidal strip (Ai) matches the shape of the trapezoidal side (A1) of the zip convex groove of the zip-type wall component (A). The included angle between the chord sides (Ai1) of the two symmetrically arranged upper trapezoidal strips (Ai) of the left wing plate (Aa) and the right wing plate (Ab) is consistent with the angle formed by the trapezoidal sides (A1) of the zip convex grooves after the corresponding connection of the two zip-type wall components (A).

30. A locking clip for a zip - type wall component according to claim 26, characterized in that, An insertion strip (Aj) is arranged inside the connection of the left wing plate (Aa) and the right wing plate (Ab) of the clamping plate assembly I (1) or the clamping plate assembly II (2).

31. The locking clip for a zip - type wall component according to claim 26, characterized in that, A number of micropores (Ak) are arranged on the left wing plate (Aa) and the right wing plate (Ab) of the clamping plate assembly I (1) and the clamping plate assembly II (2).

32. The locking clip for a zip-type wall component according to claim 26, wherein, Bolt holes (Ac) are arranged on the connection ends of the left wing plate (Aa) and the right wing plate (Ab) or on the center line of the straight connecting plate (Ad) of the locking member clamping plate assembly I (1) and the clamping plate assembly II (2); The bolt assembly (3) passes through the bolt holes (Ac) to realize the fastening connection of the clamping plate assembly I (1) and the clamping plate assembly II (2).

33. A locking clip for a zip-type wall component according to claim 26, characterized in that, On any clamping plate assembly Ⅰ (1), Ⅱ (2) of the locking clamping part, bolt holes (Ac) are provided on the connecting ends of the left wing plates (Aa) and right wing plates (Ab) or on the center line of the straight connecting plate (Ad). The non-threaded end of the bolt assembly (3) is fixedly arranged on the center line of the connecting ends of the left wing plates (Aa) and right wing plates (Ab) or the straight connecting plate (Ad) of any clamping part of the clamping plate assembly Ⅰ (1), Ⅱ (2). The threaded end of the bolt assembly (3) passes through the bolt hole (Ac) to realize the fastening connection of the clamping plate assembly Ⅰ (1) and the clamping plate assembly Ⅱ (2).

34. The locking clip for a zip - type wall component according to claim 26, characterized in that, On the left and right sides of the middle connecting rod of the bolt assembly (3), planes Ⅰ (3a) are arranged in parallel, and the distance between the two planes Ⅰ (3a) on the left and right is less than the diameter of the middle connecting rod of the bolt assembly (3).

35. The locking clip for a zip - type wall component according to claim 26, wherein, The bolt assembly (3) is arranged in a split manner, and its middle part is connected by a tubular part (31) or a soft connection belt assembly (34).

36. The locking clip for a zip - type wall component according to claim 35, characterized in that, The tubular part (31) is made of a non-heat-conducting material, and threads (31b) are made in the inner cavities (31a) at both ends or internally threaded connectors (31c) are fixedly arranged. The fastening screw Ⅰ (32) and the fastening screw Ⅱ (33) are connected to the tubular part (31) through the threads (31b) made in the inner cavities (31a) at both ends of the tubular part (31) or the internally threaded connectors (31c) fixedly arranged.

37. The locking clip for a zip - type wall component according to claim 35, characterized in that, The soft connection belt assembly (34) is composed of a connection belt (34a) and two symmetrically arranged connection components (34b) fixedly connected to both ends of the connection belt (34a), and the connection belt (34a) is made of a non-heat-conducting material. The connection component (34b) is composed of two symmetrically arranged fixing parts (34b1) and nuts (34b2), and the nut (34b2) is clamped between the two fixing parts (34b1). The fastening screw Ⅰ (32) and the fastening screw Ⅱ (33) are connected to the connection belt (34a) through the nut (34b2).

38. A locking clip for a zip-type wall component according to claim 36 or 37, characterized in that The non-heat-conducting material includes PVC or PE or ABS or PMMA materials.

39. A locking clip for a zip - type wall component according to claim 37, characterized in that, The connection belt (34a) has the functions of being bendable and curlable.

40. A locking clip for a zip - type wall component according to claim 26, characterized in that, The non-threaded end of the bolt assembly (3) is fixedly connected with an extension rod (35).

41. A locking clip for a zip-type wall component according to claim 40, characterized in that, An expansion bolt (35a) is arranged at the top end of the extension rod (35).

42. The locking clip for the zippered wall component according to claim 26, wherein The locking clamping part further includes an L-shaped insertion clamping plate (4), and the L-shaped insertion clamping plate (4) is composed of a fixing plate Ⅰ (41) and a lower clamping plate Ⅰ (42) whose ends are fixedly connected perpendicular to each other. A through hole Ⅰ (41a) is made on the fixing plate Ⅰ (41), and the lower clamping plate Ⅰ (42) is clamped between the clamping plate assembly Ⅰ (1) and the clamping plate assembly Ⅱ (2).

43. The locking clip for the zippered wall component according to claim 42, wherein, The L-shaped insertion clamping plate (4) is arranged in a split manner into a left L-shaped insertion clamping plate (4a) and a right L-shaped insertion clamping plate (4b).

44. A locking clip for a zip-type wall component according to claim 26, characterized in that, The locking card member further includes a T-shaped inserting splint (5), and the T-shaped inserting splint (5) is composed of a fixing plate II (51), a lower splint II (52), and a double-headed screw rod (53) fixedly arranged at the bottom end of the lower splint II (52). The lower splint II (52) is fixedly connected to the middle of the lower surface of the fixing plate II (51). Through holes II (51a) are formed in the fixing plate II (51), and the lower splint II (52) is clamped between the splint assembly I (1) and the splint assembly II (2). The T-shaped inserting splint (5) realizes the fastening connection of the three through the two ends of its double-headed screw rod (53) being respectively inserted into the bolt holes (Ac) formed in the splint assembly I (1) and the splint assembly II (2).

45. The locking clip for a zip - type wall component according to claim 44, characterized in that, The double-headed screw rod (53) is provided with a plane II (53a) parallel to the two side surfaces of the lower splint II (52). The distance between the two planes II (53a) of the double-headed screw rod (53) is equal to or greater than the thickness of the lower splint II (52).

46. The locking clip for a zip-type wall component according to claim 44, characterized in that, The width of the fixing plate II (51) is smaller than the thickness of the zip-type wall component, and the through holes II (51a) formed on its plate surface are all arranged in the connection area of the two outer zip-type wall components of the splint assembly I (1) and the splint assembly II (2).

47. The locking clip for a zip - type wall component according to claim 44, characterized in that, The T-shaped inserting splint (5) is divided into a left T-shaped inserting splint (5a) and a right T-shaped inserting splint (5b).

48. A locking clip for a zip-type wall component according to claim 43 or 47, characterized in that, An installation and fixing member (6) is arranged between the separately arranged left L-shaped inserting splint (4a) and right L-shaped inserting splint (4b) or the left T-shaped inserting splint (5a) and right T-shaped inserting splint (5b). The installation and fixing member (6) is made of a non-heat-conducting material, and slots (6a) are symmetrically arranged at its left and right ends. The width of the slots (6a) is the same as the thickness of the L-shaped inserting splint (4) or the T-shaped inserting splint (5).

Citation Information

Patent Citations

  • Locking clamping piece for zipper type wall component

    CN213837162U