Ceramic plate connecting mechanism for curtain wall installation
By setting self-locking components and power components on the ceramic panels and keels, the problem of removing the upper ceramic panels when replacing ceramic panels in the existing ceramic panel dry hanging system is solved, which enables fast and firm ceramic panel replacement, reduces costs and time, and improves the safety and stability of installation.
Patent Information
- Application Number
- CN202510897412.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2025-10-10
AI Technical Summary
The existing ceramic tile dry hanging system requires the removal of all the ceramic tiles above when replacing the ceramic tile in the middle, which is costly and carries the risk of poor stress resistance of the marble glue.
A first connecting piece is provided on the ceramic plate and a second connecting piece is provided on the keel, and the ceramic plate is quickly and firmly locked by a self-locking component and a power component, thereby simplifying the replacement process.
It achieves fast and firm replacement of ceramic panels, reduces construction costs and time, and improves installation safety and stability.
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Figure CN120759371A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of curtain wall installation, and in particular to a ceramic panel connecting mechanism for curtain wall installation. Background Art
[0002] Curtain walls are a type of non-load-bearing structural system for building exteriors. They typically consist of a metal frame (such as aluminum alloy) and panels of materials such as ceramic, glass, metal sheets, and stone. They are suspended from the main building structure. They do not bear the load of the floor or roof, primarily serving as a protective enclosure, aesthetics, and energy conservation. Curtain walls are typically installed using a dry hanging method.
[0003] For example, the Chinese patent document, entitled "A Ceramic Panel Dry-Hanging System," with authorization publication number CN201620496U and publication date November 3, 2010, includes ceramic panels and a keel system. The keel system is fixedly connected to the wall of a building, and the back of the ceramic panels is provided with a slot. The keel system has hooks on the ceramic panel connection surface, which snap into place with the slots. Compared to existing ceramic panel dry-hanging systems, this ceramic panel dry-hanging system eliminates the need for transverse keels. The ceramic panels are directly connected to the longitudinal keels, making the connection between the ceramic panels and the keel system simpler and more secure. Furthermore, during installation, the ceramic panel dry-hanging system significantly reduces labor consumption at the construction site, lowering installation costs. Furthermore, the lack of transverse keels reduces production costs.
[0004] The disadvantage of the existing technology is that when the ceramic panel in the middle part is damaged and needs to be replaced, the damaged ceramic panel needs to be removed, and then all the ceramic panels above it need to be disassembled before replacement can be carried out. Obviously, the above solution has the disadvantages of high cost and long production cycle. There is also a method of opening holes in the back of the ceramic panel and then connecting it with a pick and marble glue. Although this solution is convenient and fast, the stress resistance of marble glue is poor, and there is a risk of the ceramic panel falling off. Therefore, a solution for replacing the ceramic panel that is convenient, fast, and firmly installed is needed. Summary of the Invention
[0005] The object of the present invention is to provide a ceramic panel connection mechanism for curtain wall installation to solve the above-mentioned deficiencies in the prior art.
[0006] In order to achieve the above object, the present invention provides the following technical solutions: A ceramic panel connection mechanism for curtain wall installation includes a ceramic panel body and a keel providing a support point for the ceramic panel body, a first connecting member provided on the ceramic panel body, a fixing member provided on the keel, a second connecting member slidably provided on the fixing member, and a self-locking assembly provided between the first connecting member and the second connecting member; After the first connecting member moves below the second connecting member, the self-locking assembly locks the position of the first connecting member.
[0007] In the above-mentioned ceramic panel connection mechanism for curtain wall installation, the self-locking assembly includes a first clamping portion provided on the first connecting member, and a second clamping portion adapted to the first clamping portion is provided on the second connecting member; It also includes a power assembly for driving the second clamping portion to clamp with the first clamping portion.
[0008] In the above-mentioned ceramic panel connection mechanism for curtain wall installation, the power assembly includes a fixing rod fixedly connected to the second connecting member, and a first elastic member is provided between the fixing rod and the fixing member.
[0009] In the above-mentioned ceramic panel connection mechanism for curtain wall installation, the power assembly includes a locking rod slidably arranged on the fixing member, and the second connecting member is provided with a locking groove; The second clamping portion has a first position away from the first clamping portion and a second position clamped with the first clamping portion. When the second clamping portion is in the first position, the locking rod is plugged into the locking groove.
[0010] In the above-mentioned ceramic panel connection mechanism for curtain wall installation, a transmission part is slidably provided on the locking rod, the transmission part is located on the movement stroke of the first connecting member, and an accommodating groove adapted to the transmission part is provided on the fixing member.
[0011] In the above-mentioned ceramic panel connecting mechanism for curtain wall installation, a plurality of the first connecting members and a plurality of the second connecting members are respectively provided.
[0012] In the above-mentioned ceramic panel connecting mechanism for curtain wall installation, connecting rods are provided between each of the second connecting members.
[0013] In the above-mentioned ceramic panel connecting mechanism for curtain wall installation, the first connecting member is provided with an arc-shaped portion.
[0014] In the above-mentioned ceramic panel connection mechanism for curtain wall installation, the width of the end portion of the first connection member is smaller than the width of the first clamping portion.
[0015] In the above-mentioned ceramic panel connection mechanism for curtain wall installation, a protrusion is provided on the locking rod, a groove is provided on the inner wall of the locking slot, and the protrusion is plugged into the groove.
[0016] In the above technical solution, the present invention provides a ceramic panel connection mechanism for curtain wall installation, wherein a first connection member is provided on the ceramic panel body and a second connection member is provided on the keel. When replacing a damaged ceramic panel body, the damaged ceramic panel body is first removed, and then the first connection member on the new ceramic panel body is inserted under the second connection member, and the position of the first connection member is locked by a self-locking component, thereby locking the position of the ceramic panel body to achieve convenient, fast and firm installation of the ceramic panel body. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments described in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0018] Figure 1 A schematic diagram of the connection structure between the ceramic panel body and the keel provided in an embodiment of the present invention; Figure 2 An exploded view of a first connecting member and a second connecting member provided in an embodiment of the present invention; Figure 3 A schematic diagram of the connection structure between the ceramic panel body and the keel provided in another embodiment of the present invention; Figure 4 A schematic diagram of the connection structure between the locking rod and the second connecting member provided in another embodiment of the present invention; Figure 5 A schematic diagram of a connection structure between a first connecting member and a second connecting member provided in another embodiment of the present invention; Figure 6 An explosion diagram provided for another embodiment of the present invention; Figure 7 A schematic cross-sectional view of a second clamping portion in a first position provided by another embodiment of the present invention; Figure 8 A schematic cross-sectional view of a second clamping portion in a second position provided by another embodiment of the present invention; Figure 9 This is a schematic diagram of the overall structure of a locking rod provided in another embodiment of the present invention.
[0019] Description of reference numerals: 1. Ceramic panel body; 2. Keel; 3. First connecting member; 4. Fixing member; 5. Second connecting member; 6. First clamping portion; 7. Second clamping portion; 8. Fixing rod; 9. First elastic member; 10. Locking rod; 11. Locking groove; 12. Horizontal groove; 13. Sliding rod; 14. Transmission portion; 15. Accommodating groove; 16. Vertical groove; 17. Sliding portion; 18. Second elastic member; 19. Connecting rod; 20. First curved surface; 21. Raised portion; 22. Grooved portion; 23. Second curved surface; 24. Third curved surface; 25. Vacant portion. DETAILED DESCRIPTION
[0020] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.
[0021] In the description of the present invention, it is to be understood that Figure 7 The middle vertical groove 16 is positioned above the sliding portion 17, and vice versa. Figure 7 The position of the middle slide bar 13 relative to the horizontal slot 12 is on the left, and vice versa. The terms "center", "longitudinal", "lateral", "length", "width", "degree", "up", "down", "vertical", "horizontal", "top", "bottom", "inside", "outside", "axial", "radial", "circumferential", etc., indicating the orientation or position relationship are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore cannot be understood as limiting the present invention.
[0022] Reference Figure 1-9 An embodiment of the present invention provides a ceramic panel connection mechanism for curtain wall installation, comprising a ceramic panel body 1 and a keel 2 providing a support point for the ceramic panel body 1. A first connecting member 3 is provided on the ceramic panel body 1, a fixing member 4 is provided on the keel 2, a second connecting member 5 is slidably provided on the fixing member 4, and a self-locking component is provided between the first connecting member 3 and the second connecting member 5. After the first connecting member 3 moves to below the second connecting member 5 , the self-locking assembly locks the position of the first connecting member 3 .
[0023] The keel 2 is a steel frame structure fixed to the outer peripheral surface of the wall. Hanging parts are provided on the keel 2 and the keel 2 to connect the hanging parts on the two. Protrusions are provided on the upper and lower ends of the keel 1. After the lower keel 1 is installed, the upper keel 1 is clamped on the lower keel 1 through the protrusions. The two upper and lower adjacent keel 1s are clamped with each other, and this process is repeated to complete the installation of the keel 1. When the keel 1 in the middle is damaged and needs to be replaced, all the keel 1 above the damaged keel 1 need to be removed before the replacement is completed. This is the prior art and will not be repeated. One of the core innovations of the embodiment of the present invention is that a first connecting member 3 is provided on the keel 2. The first connecting member 3 is preferably L-shaped, and its vertical edge is fixed to the keel 2 by a bolt or other structure. A fixing member 4 is provided. The fixing member 4 is close to the keel 2. The second link 5 is preferably a plate-shaped structure, and the top wall of the fixing member 4 is provided with a sliding groove adapted to the second link 5. The second link 5 is slidably connected to the fixing member 4 through the sliding groove. A self-locking component is provided between the first link 3 and the second link 5. The self-locking component can be an existing clamping structure such as a card plate. The purpose of such a setting is that when replacing a damaged ceramic plate body 1, the damaged ceramic plate body 1 is first removed, and then the new ceramic plate body 1 is placed in the position of the notch (which is the area generated after the damaged ceramic plate body 1 is removed) and pushed horizontally into the notch. When the first link 3 is inserted under the second link 5, the position of the first link 3 is locked by the self-locking component, thereby locking the position of the new ceramic plate body 1 to achieve replacement of the ceramic plate body 1, which is convenient, fast and firm.
[0024] Preferably, the self-locking assembly includes a first clamping portion 6 disposed on the first connecting member 3, a second clamping portion 7 adapted to mate with the first clamping portion 6 disposed on the second connecting member 5, and a power assembly for driving the second clamping portion 7 to engage with the first clamping portion 6. Specifically, the first clamping portion 6 is a toothed plate structure disposed on the upper surface of the first connecting member 3, and the second clamping portion 7 is disposed on the lower surface of the second connecting member 5, also a toothed plate structure. The power assembly can be an existing reciprocating drive structure such as an electric push rod. This arrangement serves the purpose of positioning the second clamping portion 7 away from the first clamping portion 6 during the insertion of the horizontal section of the first connecting member 3 below the second connecting member 5. Once the first connecting member 3 is inserted below the second connecting member 5, the power assembly controls the second clamping portion 7 to engage with the first clamping portion 6, thereby fixing the position of the first connecting member 3 and, in turn, the ceramic panel body 1, thereby completing the replacement of the ceramic panel body 1.
[0025] As an alternative to the above-mentioned electric push rod controlling the engagement of the second engaging portion 7 with the first engaging portion 6 , preferably, the power assembly includes a fixing rod 8 fixedly connected to the second connecting member 5 , and a first elastic member 9 is provided between the fixing rod 8 and the fixing member 4 . Specifically, the teeth of the toothed plate on the first clamping portion 6 are one-way teeth, that is, the cross-section of the teeth is a right triangle, and the cross-section of the teeth on the second clamping portion 7 is also a right triangle. The fixing rod 8 is preferably a cylindrical rod, which passes through the top wall of the slide groove and extends to the top of the fixing piece 4, and the radial dimension of the top end of the fixing rod 8 is larger than the radial dimension of the bottom end. The first elastic member 9 is preferably a spring, one end of which is fixed to the fixing rod 8 and the other end is fixed to the upper surface of the fixing piece 4. Under the elastic force of the first elastic member 9, the inclined surface on the second clamping portion 7 is located on the movement stroke of the inclined surface of the first clamping portion 6. The effect of such a setting is that, in the process of horizontally pushing the new ceramic plate body 1 to slide into the notch, the inclined surface of the first clamping portion 6 will abut against the inclined surface of the second clamping portion 7 to fix The second clamping portion 7 and the second connecting member 5 push upward and store force on the first elastic member 9. When the inclined surfaces of the two are in contact, the elastic force of the first elastic member 9 is released, and the gravity of the second connecting member 5 and the second clamping portion 7 is used to move the second clamping portion 7 downward. This reciprocating motion causes the second clamping portion 7 to continuously move back and forth to achieve avoidance. When the first clamping portion 6 moves to the end of the stroke, the ceramic plate body 1 abuts against the side of the keel 2, so that the first clamping portion 6 cannot continue to move, thereby limiting the left side of the ceramic plate body 1. Because the second clamping portion 7 is clamped with the first clamping portion 6 and the vertical surface of the teeth of the two abut, the first clamping portion 6 cannot slide in the opposite direction, thereby limiting the right side of the ceramic plate body 1, thereby achieving passive fixation of the ceramic plate body 1.
[0026] The above embodiment has the following problems. First, during the insertion of the first connecting member 3, the first elastic member 9 needs to continuously store and release force, which undoubtedly increases the resistance of the first connecting member 3 during the movement. Second, the second clamping portion 7 is only clamped with the first clamping portion 6 by the elastic force of the first elastic member 9, that is, the second clamping portion 7 is flexibly limited in the vertical direction only by the elastic force of the first elastic member 9, so that there is a risk of separation between the first clamping portion 6 and the second clamping portion 7. As another embodiment of the present invention, preferably, the power assembly includes a locking rod 10 slidably arranged on the fixing member 4, and a locking groove 11 is provided on the second connecting member 5; the second clamping portion 7 has a first position away from the first clamping portion 6 and a second position clamped with the first clamping portion 6. When the second clamping portion 7 is in the first position, the locking rod 10 is plugged into the locking groove 11. Specifically, a horizontal groove 12 is provided on the fixing member 4, and a sliding rod 13 is provided on the locking rod 10. The sliding rod 13 is slidably connected to the horizontal groove 12 so that the locking rod 10 can slide horizontally as a whole, and a limiting strip or the like is provided between the sliding rod 13 and the horizontal groove 12 to prevent the two from rotating relative to each other. The effect of such a setting is that when the first connecting member 3 slides inside the fixing member 4, the locking rod 10 is controlled to be plugged into the locking groove 11 by an existing reciprocating drive assembly. When the first clamping portion 6 is completely moved to the bottom of the second clamping portion 7, the locking rod 10 is pulled out of the locking groove 11. At this time, the second clamping portion 7 moves downward under the action of its own gravity, so that the second clamping portion 7 and the first The clamping portion 6 is clamped, and at this time the lower surface of the locking rod 10 and the upper surface of the second connecting member 5 are almost at the same vertical height. Then the locking rod 10 is controlled to slide in the opposite direction so that the lower surface of the locking rod 10 abuts against the top of the second connecting member 5. The advantages brought about by this are: first, the second clamping portion 7 is controlled to be clamped with the first clamping portion 6 at the end of the movement stroke of the first clamping portion 6 to reduce the resistance during the movement of the first clamping portion 6; second, because the lower surface of the locking rod 10 abuts against the top of the second connecting member 5, the second clamping portion 7 is rigidly limited in the vertical direction to fix the second clamping portion 7 in the position clamped with the first clamping portion 6, thereby improving the stability of the ceramic plate body 1 during installation.
[0027] As an alternative to the above-mentioned active drive position switching of the locking rod 10, a transmission part 14 is slidingly provided on the locking rod 10, and the transmission part 14 is located on the movement stroke of the first connecting member 3, and a receiving groove 15 adapted to the transmission part 14 is provided on the fixing member 4. Specifically, the transmission part 14 is preferably L-shaped, and a first curved surface 20 is provided at its bottom end, and the first curved surface 20 is located on the movement stroke of the first connecting member 3. The receiving groove 15 is provided on the fixing member 4, and its internal space is adapted to the size of the transmission part 14, that is, the transmission part 14 can be received in the receiving groove 15, and an inclined surface is provided on the inner bottom wall of the receiving groove 15. A vertical groove 16 is provided inside the locking rod 10, and a sliding part 17 is provided at the top of the transmission part 14, and a convex ring or the like is provided on the sliding part 17 to prevent the two from disengaging from each other, and a limiting structure is provided in the horizontal groove 12 and the sliding rod 13. A second elastic member 18 is provided between them, and the second elastic member 18 is also preferably a spring, and the upper surface of the horizontal edge of the transmission part 14 abuts against the outer bottom wall of the accommodating groove 15. The effect of such a setting is that when the first connecting member 3 is inserted into the interior of the fixing member 4, the end of the first connecting member 3 will abut against the first arcuate surface 20. At this time, since the upper surface of the horizontal edge of the transmission part 14 abuts against the outer bottom wall of the accommodating groove 15, the transmission part 14 cannot slide upward, and can only drive the transmission part 14 to move horizontally, and under the limiting action of the sliding part 17 and the vertical groove 16, the locking rod 10 will be driven from The locking groove 11 is pulled out and the second elastic member 18 is charged. At this time, the second connecting member 5 slides downward under the action of its own gravity. During this process, the transmission part 14 moves to the side of the accommodating groove 15. At this time, the first connecting member 3 continues to move a short distance under the action of inertia, and the first clamping part 6 is just placed under the second clamping part 7. When the second connecting member 5 slides down, the elastic force of the second elastic member 18 is released, thereby driving the locking rod 10 and the transmission part 14 to slide in the opposite direction. Under the action of the first curved surface 20 abutting against the end of the first connecting member 3, the transmission part 14 slides obliquely upward to The first curved surface 20 moves up to the upper left of the inclined surface of the accommodating groove 15, that is, at this time, the inclined surface of the accommodating groove 15 is located on the movement range of the first curved surface 20, and in the subsequent movement of the transmission part 14, it will slide upward along the inclined surface, and finally completely enter the accommodating groove 15 to achieve avoidance. Therefore, the locking rod 10 also slides in the opposite direction synchronously under the elastic force of the second elastic member 18. When the locking rod 10 moves to above the second connecting member 5, it will limit the second connecting member 5 in the vertical direction, so that the second clamping part 7 is passively switched from the first position to the second position.
[0028] Preferably, a plurality of the first connecting members 3 and the second connecting members 5 are provided. Specifically, for a single ceramic panel body 1, four first connecting members 3 are preferably provided, and the four first connecting members 3 are arranged in a rectangular shape. Correspondingly, four second connecting members 5 are also provided. The four first connecting members 3 can provide four fulcrums for the ceramic panel body 1, thereby improving the stability of the ceramic panel body 1 after installation.
[0029] Preferably, a connecting rod 19 is provided between each of the second connecting members 5. Specifically, the four second connecting members 5 are divided into two groups, upper and lower, and the connecting rod 19 connects the two second connecting members 5 in each group. The effect of such an arrangement is that, with respect to a single group of second connecting members 5, if a first connecting member 3 is inserted under one of the second connecting members 5, while a first connecting member 3 is not inserted under another second connecting member 5, this situation will reduce the stability of the ceramic panel body 1 during installation. In this embodiment, when such a situation occurs, the connecting rod 19 prevents both second connecting members 5 from falling. At this time, the ceramic panel body 1 can be pulled out of the gap, and after adjusting the position of the second connecting members 5, the ceramic panel body 1 can be installed again. That is, only when a first connecting member 3 is inserted under both second connecting members 5 will the two second connecting members 5 fall simultaneously, thereby achieving the effect of preventing misinsertion.
[0030] Preferably, an arcuate portion is provided on the first connecting member 3. Specifically, the arcuate portion is provided at the end of the horizontal section of the first connecting member 3, which can reduce the vertical dimension of the end, thereby facilitating the insertion of the first connecting member 3 under the second connecting member 5.
[0031] Preferably, the width of the end portion of the first connecting member 3 is smaller than the width of the first clamping portion 6 , thereby facilitating the insertion of the first connecting member 3 under the second connecting member 5 .
[0032] Furthermore, the locking rod 10 is provided with a protrusion 21, and the inner wall of the locking groove 11 is provided with a groove 22, and the protrusion 21 is plugged into the groove 22. Specifically, the protrusion 21 is an arc-shaped structure on the locking rod 10, which is provided at the bottom of the locking rod 10, and a second arc-shaped surface 23 is provided at the edge position. The groove 22 is provided on the inner bottom wall of the locking groove 11, and the size of the groove 22 is larger than the size of the protrusion 21. The edge position of the groove 22 is also provided with an inclined surface. A vacancy 25 is provided on the inner top wall of the locking groove 11, and the size of the vacancy 25 is also larger than the size of the protrusion 21. The effect of such a setting is that when the second clamping portion 7 is in the first position, the upper surface of the locking rod 10 will abut against the inner top wall of the locking groove 11, and the lower surface of the protrusion 21 will abut against the inner bottom wall of the locking groove 11, so as to lock the second connecting portion 7. The position of the connecting member 5 is locked. When the transmission part 14 is pushed, the locking rod 10 and the protrusion 21 will be driven to move synchronously. When the protrusion 21 first moves, it will not abut against the edge of the groove 22. Therefore, it will not push the second connecting member 5 to move downward at the beginning. It will abut against the inclined surface of the groove 22 during the subsequent movement of the protrusion 21. At this time, the protrusion 21 has moved to the position of the vacant part 25. During the subsequent abutment between the protrusion 21 and the groove 22, a downward force is generated on the second connecting member 5, thereby providing an initial velocity for the initial process of the second connecting member 5 moving downward, so as to avoid the second connecting member 5 from being unable to move downward due to getting stuck.
[0033] Preferably, the locking rod 10 is provided with a third curved surface 24. Specifically, the third curved surface 24 is provided at the end of the locking rod 10. After the locking rod 10 is completely pulled out of the locking groove 11, the protrusion 21 abuts against the inclined surface, which has driven the second connecting member 5 to move downward for a distance. At this time, the upper edge of the inner wall of the vacant portion 25 moves down to the movement stroke of the third curved surface 24. When the elastic force of the second elastic member 18 is released, it will drive the locking rod 10 to slide in the opposite direction. If the second connecting member 5 is still in a stuck state, the third curved surface 24 will abut against the upper edge of the inner wall of the vacant portion 25 to provide the second connecting member 5 with a downward force to push the second connecting member 5 downward, thereby avoiding the second connecting member 5 from getting stuck as much as possible. That is, in this process, the movement of the locking rod 10 also produces an effect of assisting the second connecting member 5 to move downward.
[0034] The above description is merely illustrative of certain exemplary embodiments of the present invention. It goes without saying that those skilled in the art will be able to modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims.
Claims
1. A ceramic panel connection mechanism for curtain wall installation, comprising a ceramic panel body and a keel providing a support point for the ceramic panel body, characterized in that: A first connecting piece is provided on the ceramic plate body, a fixing piece is provided on the keel, a second connecting piece is slidably provided on the fixing piece, and a self-locking component is provided between the first connecting piece and the second connecting piece; After the first connecting member moves below the second connecting member, the self-locking assembly locks the position of the first connecting member.
2. A ceramic panel connection mechanism for curtain wall installation according to claim 1, characterized in that: The self-locking assembly includes a first clamping portion provided on the first connecting member, and a second clamping portion adapted to the first clamping portion is provided on the second connecting member; It also includes a power assembly for driving the second clamping portion to clamp with the first clamping portion.
3. A ceramic panel connection mechanism for curtain wall installation according to claim 2, characterized in that: The power assembly includes a fixing rod fixedly connected to the second connecting member, and a first elastic member is provided between the fixing rod and the fixing member.
4. The ceramic panel connection mechanism for curtain wall installation according to claim 2, characterized in that: The power assembly includes a locking rod slidably arranged on the fixing member, and the second connecting member is provided with a locking groove; The second clamping portion has a first position away from the first clamping portion and a second position clamped with the first clamping portion. When the second clamping portion is in the first position, the locking rod is plugged into the locking groove.
5. The ceramic panel connection mechanism for curtain wall installation according to claim 4, characterized in that: A transmission part is slidably provided on the locking rod, and the transmission part is located on the movement stroke of the first connecting member. An accommodating groove adapted to the transmission part is provided on the fixing member.
6. The ceramic panel connection mechanism for curtain wall installation according to claim 1, characterized in that: A plurality of the first connecting members and a plurality of the second connecting members are provided respectively.
7. The ceramic panel connection mechanism for curtain wall installation according to claim 6, characterized in that: A connecting rod is provided between each of the second connecting members.
8. The ceramic panel connection mechanism for curtain wall installation according to claim 1, characterized in that: The first connecting member is provided with an arc portion.
9. The ceramic panel connection mechanism for curtain wall installation according to claim 1, characterized in that: The width of the end portion of the first connecting member is smaller than the width of the first clamping portion.
10. The ceramic panel connection mechanism for curtain wall installation according to claim 4, characterized in that: The locking rod is provided with a protrusion, the inner wall of the locking slot is provided with a groove, and the protrusion is plugged into the groove.
Citation Information
Patent Citations
Ceramic panel dry-hang system
CN201620496U