An adjustable installation design structure for multi-point dry-hanging large-format honeycomb rock panels
By using multi-point dry-hanging structure and dry-hanging connectors in the installation of honeycomb slabs, the problems of high construction cost and low efficiency of large-size honeycomb slabs are solved, and efficient angle and position adjustment is achieved to adapt to uneven walls.
Patent Information
- Application Number
- CN202110841043.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-07-23
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2041-07-23
AI Technical Summary
Large-format honeycomb rock slabs require the use of a large keel to level, resulting in high construction costs, difficult adjustment and low construction efficiency.
A multi-point dry-hanging installation structure is adopted. By arranging small keels on the wall base layer and using dry-hanging connectors, combining an angle adjustment mechanism and a pulling mechanism, multiple degrees of freedom adjustment of the rock slabs are achieved, reducing dependence on keels.
It reduces construction costs, simplifies adjustment operations, improves construction efficiency, and can quickly adjust the angle and position of the rock slabs to adapt to wall unevenness and installation deviations.
Smart Images

Figure CN113482269B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of building decoration, and in particular relates to an adjustable installation design structure of a multi-point dry-hanging large-format honeycomb rock slab. Background Art
[0002] Honeycomb rock board is a new type of wall decoration material, which is mainly suitable for high-end engineering decoration or home decoration wall decoration. Aluminum substrate is used as the base material of honeycomb rock board, making the whole board flat and integrated. It has the effects of no deformation and cracking, waterproof, moisture-proof and mildew-proof, and can be made into large-format honeycomb rock board.
[0003] Chinese patent (CN201710347193.1) discloses a dry hanging assembly, comprising: a bracket for fixing the dry hanging assembly on a wall, the bracket being provided with a sliding hole extending in a horizontal direction, the extension direction of the sliding hole being perpendicular to the wall; an adjusting member and a support rod group, the support rod group comprising a first support rod assembly and a second support rod assembly, one end of the first support rod assembly and the second support rod assembly respectively passing through the sliding hole and the adjusting member, so that the adjusting member is slidably supported on the bracket in a horizontal direction; a hooking member, provided at one end of the adjusting member facing the outside of the bracket, for hooking the item to be hung.
[0004] A Chinese patent (CN201810170216.0) discloses a back-bolt dry-hang stone installation structure and method for exterior walls. The structure includes stone, back bolts, hangers, and a metal keel. The metal keel is fixed to the exterior wall, and the stone is connected to the hanger via the back bolts. The sub-hanger and the mother hanger are connected via a slot to form a double-clip mother-child hanger. An adjustment screw is added to the top of the mother hanger to adjust the straightness of the stone's horizontal seam. The mother hanger is fixed to the upper end of the metal keel, and bolt holes are provided at the bottom of the mother hanger for adjusting the stone slab surface flatness and the stone joint straightness. The adjustment bolts are used to adjust the stone slab surface flatness and the stone joint straightness, thus achieving two-way adjustment of the stone slab surface flatness and the stone horizontal joint straightness.
[0005] A Chinese patent (CN201911070624.X) discloses an adjustable stone dry-hanging system in the technical field of indoor wall stone dry-hanging, comprising a wall base and a decorative wall dry-hanged on the wall base, the decorative wall comprising several pieces of spliced stone, symmetrical metal fittings being provided on the upper and lower sides of the decorative wall, a metal hanger being provided between the upper and lower adjacent stones, a stone slide rail being provided between the upper and lower metal fittings, or between the metal fitting and the adjacent metal hanger, or between the upper and lower adjacent metal hangers, a concave bottom groove being provided on the upper and lower sides of the stone, the bottom groove sliding into the stone slide rail, and being fixed to the metal fitting or metal hanger by fixing glue, and the metal fitting and the metal hanger being fixed to the wall base by self-tapping screws.
[0006] At present, when installing large-format honeycomb rock panels, it is necessary to use keels to level the wall base, which requires a large amount of keel materials and increases construction costs. In addition, the fasteners of the honeycomb rock panels are all installed on the back of the honeycomb rock panels, and the fasteners need to be adjusted from the gap between the honeycomb rock panels and the wall, making the adjustment operation difficult and reducing construction efficiency. Summary of the Invention
[0007] The purpose of the present invention is to solve the problem that when large-format honeycomb rock panels are installed according to conventional installation methods, keels need to be used for leveling, and the honeycomb rock panels need to be extended into the gap between the honeycomb rock panels and the wall to adjust the honeycomb rock panels, resulting in large keel usage, high construction costs, difficult adjustment operations, and low construction efficiency. A multi-point dry-hanging large-format honeycomb rock panel with an adjustable installation design structure is proposed.
[0008] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions: an adjustable installation design structure of a multi-point dry-hanging large-format honeycomb rock board, which includes a plurality of small keels, a rock board body and a dry-hanging connector, wherein the plurality of small keels are arranged in a rectangular array and fixedly installed on the wall base, a slide groove is provided on the small keel, and a back rib is provided on the back of the rock board body. One end of the dry-hanging connector is clamped on the slide groove, and the other end of the dry-hanging connector is clamped on the back rib. A single rock board body is connected to at least four small keels;
[0009] The dry hanging connector includes a first connector and a second connector, the first connector being clamped in the slide groove and sliding along the slide groove, the first connector being fixedly connected to the small keel through a pulling mechanism, the second connector being overlapped on the first connector, the contact surfaces of the second connector and the first connector being arranged at a certain angle, the first connector being provided with an angle adjustment mechanism, the angle adjustment mechanism being against the second connector, the first connector and the second connector being connected by two fixing bolts, and the end of the second connector being clamped on the back rib.
[0010] As a further description of the above technical solution:
[0011] The second connecting member is a hanging member with a T-shaped cross section.
[0012] As a further description of the above technical solution:
[0013] The first connecting member includes a slider and a first flat plate, the slider slides in the slide groove, the first flat plate is fixedly connected to the slider, and the first flat plate extends toward the direction of the rock plate body, the second connecting member includes a second flat plate and a vertical plate, the second flat plate is connected to the first flat plate through the two fixing bolts, the vertical plate is fixedly connected to the end of the first flat plate, and the vertical plate is clamped on the back rib.
[0014] As a further description of the above technical solution:
[0015] The back reinforcement is a C-shaped slide rail.
[0016] As a further description of the above technical solution:
[0017] A gasket is provided on the screw head, and the gasket abuts against the second flat pressing plate. The diameter of the large circular hole is larger than the diameter of the fixing bolt, and the diameter of the large circular hole is smaller than the diameter of the gasket.
[0018] As a further description of the above technical solution:
[0019] A gasket is provided on the screw head, and the gasket abuts against the second flat pressing plate. The diameter of the large circular hole is larger than the diameter of the fixing bolt, and the diameter of the large circular hole is smaller than the diameter of the gasket.
[0020] As a further description of the above technical solution:
[0021] A groove is provided on the plane of the first flat plate facing the second flat plate, and the angle adjustment mechanism includes an eccentric wheel and an adjusting rod. The eccentric wheel is located in the groove and the eccentric wheel is against the second flat plate. The adjusting rod is inserted into the groove from one side of the first flat plate, the adjusting rod passes through the eccentric wheel, and the adjusting rod is fixedly connected to the eccentric wheel, and the adjusting rod is screwed to the first flat plate.
[0022] As a further description of the above technical solution:
[0023] The pulling mechanism includes a connecting rod and a fixed plate. The connecting rod is located in the slide groove. One end of the connecting rod is fixedly connected to the slider. The fixed plate is fixedly connected to the other end of the connecting rod. The fixed plate is fixedly connected to the end of the small keel through 4 adjusting bolts.
[0024] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0025] 1. In the present invention, a plurality of small keels are arranged on the wall base, and dry-hanging connectors are used to connect the rock slab body and the small keels. Large circular holes are used to provide space for the fixing bolts to move, so that the second connector can be slid and adjusted relative to the first connector. The eccentric wheel is driven to rotate by the adjusting rod to adjust the gap between the first and second flat pressing plates, thereby adjusting the angle of the second flat pressing plate, thereby realizing adjustment of the rock slab body in multiple degrees of freedom directions, compensating for the unevenness of the wall base, and also compensating for deviations during the installation process. There is no need to invest a large number of keels to build a leveling base, thereby reducing construction costs.
[0026] 2. In the present invention, the dry-hanging connector can be pulled to slide in the slide groove on the small keel by pulling the fixed plate, and the dry-hanging connector can be pulled to the edge of the rock slab body to quickly adjust the angle adjustment mechanism and the dry-hanging connector. The adjustment operation is simple and convenient, which greatly improves the construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a schematic diagram of the overall structure of an adjustable installation design structure for a multi-point dry-hanging large-format honeycomb rock panel.
[0028] Figure 2 This is a schematic diagram of the internal structure of an adjustable installation design structure for a multi-point dry-hanging large-format honeycomb rock panel.
[0029] Figure 3 for Figure 2 A partial enlarged view of part A.
[0030] Figure 4 This is a schematic diagram of the installation structure of dry-hanging connectors in an adjustable installation design structure for a multi-point dry-hanging large-format honeycomb rock panel.
[0031] Figure 5 for Figure 1 Reference diagram of usage status.
[0032] Figure 6 for Figure 4 Reference diagram of usage status.
[0033] Legend:
[0034] 1. Small keel; 2. Rock slab body; 3. Dry hanging connector; 31. First connector; 311. Slider; 312. First flat plate; 32. Second connector; 321. Second flat plate; 322. Vertical plate; 4. Wall base; 5. Slide; 6. Back reinforcement; 7. Pull-out mechanism; 71. Connecting rod; 72. Fixed plate; 8. Angle adjustment mechanism; 81. Eccentric wheel; 82. Adjustment rod; 9. Fixing bolt; 10. Large round hole; 11. Screw head; 12. Gasket; 13. Groove; 14. Adjustment bolt. DETAILED DESCRIPTION
[0035] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.
[0036] See also Figure 1-6 The present invention provides a technical solution: an adjustable installation design structure of a multi-point dry-hanging large-format honeycomb rock board, comprising a plurality of small keels 1, a rock board body 2 and a dry-hanging connector 3. The plurality of small keels 1 are arranged in a rectangular array and fixedly installed on a wall base 4. A slide groove 5 is provided on the small keel 1, and a back rib 6 is provided on the back of the rock board body 2. One end of the dry-hanging connector 3 is clamped on the slide groove 5, and the other end of the dry-hanging connector 3 is clamped on the back rib 6. A single rock board body 2 is connected to at least four small keels 1.
[0037] The dry hanging connector 3 includes a first connector 31 and a second connector 32. The first connector 31 is clamped in the slide groove 5 and slides along the slide groove 5. The first connector 31 is fixedly connected to the small keel 1 through a pulling mechanism 7. The second connector 32 is overlapped on the first connector 31. The contact surfaces of the second connector 32 and the first connector 31 are arranged at a certain angle. The first connector 31 is provided with an angle adjustment mechanism 8, and the angle adjustment mechanism 8 is against the second connector 32. The first connector 31 and the second connector 32 are connected by two fixing bolts 9. The end of the second connector 32 is clamped on the back rib 6.
[0038] The second connecting member 32 is a T-shaped hanging member, which facilitates the second connecting member 32 to be clamped on the back rib 6 and also facilitates the interlaced sliding between the back rib 6 and the second connecting member 32;
[0039] The first connecting member 31 includes a slider 311 and a first flat plate 312. The slider 311 slides in the slide groove 5. The first flat plate 312 is fixedly connected to the slider 311 and extends toward the rock plate body 2. The second connecting member 32 includes a second flat plate 321 and a vertical plate 322. The second flat plate 321 is connected to the first flat plate 312 via two fixing bolts 9. The vertical plate 322 is fixedly connected to the end of the first flat plate 312. The vertical plate 322 is clamped on the back rib 6.
[0040] The back rib 6 is a C-shaped slide rail, which facilitates the second connecting member 32 to be clamped on the back rib 6, and also facilitates the interlaced sliding between the back rib 6 and the second connecting member 32;
[0041] Two large circular holes 10 are provided on the first flat pressing plate 312, one end of the fixing bolt 9 passes through the large circular hole 10 and is screwed to the second flat pressing plate 321, and a screw head 11 is provided on the other end of the fixing bolt 9, and the screw head 11 presses against the first flat pressing plate 312; a gasket 12 is provided on the screw head 11, and the gasket 12 presses against the second flat pressing plate 321, the diameter of the large circular hole 10 is larger than the diameter of the fixing bolt 9, and the diameter of the large circular hole 10 is smaller than the diameter of the gasket 12, and the large circular hole 10 provides space for the second flat pressing plate 321 to move in multiple directions relative to the first flat pressing plate 312, thereby facilitating the adjustment of the second flat pressing plate 321, compensating for the deviation generated during the installation process, and also compensating for the unevenness of the wall base 4 itself.
[0042] A groove 13 is formed on the plane of the first flat plate 312 facing the second flat plate 321. The angle adjustment mechanism 8 includes an eccentric wheel 81 and an adjusting rod 82. The eccentric wheel 81 is located in the groove 13 and abuts against the second flat plate 321. The adjusting rod 82 penetrates the groove 13 from one side of the first flat plate 312. The adjusting rod 82 passes through the eccentric wheel 81 and is fixedly connected to the eccentric wheel 81. 82 is screwed to the first flat plate 312, and the adjusting rod 82 is rotated. The adjusting rod 82 drives the eccentric wheel 81 to rotate, and the eccentric wheel 81 gradually protrudes from the groove 13 on the surface of the first flat plate 312. The eccentric wheel 81 presses against the second flat plate 321, so that the gap between the first flat plate 312 and the second flat plate 321 changes, thereby adjusting the angle between the first flat plate 312 and the second flat plate 321, which is beneficial to compensate for the unevenness of the wall base layer 4, and also compensates for the deviation during the installation process.
[0043] The pulling-out mechanism 7 includes a connecting rod 71 and a fixing plate 72. The connecting rod 71 is located in the sliding groove 5. One end of the connecting rod 71 is fixedly connected to the slider 311, and the fixing plate 72 is fixedly connected to the other end of the connecting rod 71. The fixing plate 72 is fixedly connected to the end of the small keel 1 by four adjusting bolts 14. Loosening the adjusting bolts 14 and pulling the fixing plate 72 can pull the connecting rod 71 and the dry hanging connector 3 to the edge of the rock slab body 2. The dry hanging connector 3 slides along the back rib 6. After adjusting the angle adjustment mechanism 8 and the dry hanging connector 3, the fixing plate 72 is pushed to send the dry hanging connector 3 to its original position, thereby facilitating the adjustment of the rock slab body 2 and achieving high construction efficiency. In addition, the distance between the fixing plate 72 and the side of the small keel 1 can be adjusted by turning the adjusting bolts 14, thereby adjusting the dry hanging connector 3 left and right.
[0044] Working principle: First, fix multiple small keels 1 on the wall base layer 4 to ensure that the multiple small keels 1 are arranged in a rectangular array, and at the same time ensure that the small keels 1 are arranged horizontally, and the slider 311 on the dry hanging connector 3 is clamped in the slide groove 5, and the fixing plate 72 is connected to the small keel 1 through the adjusting bolt 14. Secondly, align the back reinforcement 6 on the rock board body 2 with the vertical plate 322 on the dry hanging connector 3 and clamp it in. The single rock board body 2 is connected to the 4 groups of dry hanging connectors 3 to complete the preliminary installation of the rock board body 2. Then, after the rock board body 2 is installed, the uneven characteristics of the wall base layer 4 and the deviations in the installation process will be reflected on the rock board body 2, thereby affecting the installation effect of the rock board body 2. Loosen the adjusting bolt 14 and pull the fixing plate 72 to pull the connecting rod 71 and the dry hanging connector 3 to the rock board body 2 When the adjusting screw 14 is turned, the distance between the fixing plate 72 and the side of the small keel 1 can be adjusted, thereby adjusting the dry hanging connector 3 left and right.
[0045] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. An adjustable installation design structure for a multi-point dry hanging large-format honeycomb rock panel, characterized by: The invention comprises a plurality of small keels (1), a rock plate body (2) and a dry hanging connector (3), wherein the plurality of small keels (1) are arranged in a rectangular array and fixedly mounted on a wall base (4), a slide groove (5) is provided on the small keel (1), a back rib (6) is provided on the back of the rock plate body (2), one end of the dry hanging connector (3) is clamped on the slide groove (5), and the other end of the dry hanging connector (3) is clamped on the back rib (6), and a single rock plate body (2) is connected to at least four small keels (1); The dry hanging connecting member (3) comprises a first connecting member (31) and a second connecting member (32), wherein the first connecting member (31) is clamped in the sliding groove (5), and the first connecting member (31) slides along the sliding groove (5), the first connecting member (31) is fixedly connected to the small keel (1) through a pulling mechanism (7), the second connecting member (32) is overlapped on the first connecting member (31), and the contact surfaces of the second connecting member (32) and the first connecting member (31) are arranged at a certain angle, the first connecting member (31) is provided with an angle adjustment mechanism (8), the angle adjustment mechanism (8) abuts against the second connecting member (32), the first connecting member (31) and the second connecting member (32) are connected by two fixing bolts (9), and the end of the second connecting member (32) is clamped on the back rib (6); The first connecting member (31) includes a slider (311) and a first flat plate (312), the slider (311) slides in the slide groove (5), the first flat plate (312) is fixedly connected to the slider (311), and the first flat plate (312) extends toward the rock plate body (2), the second connecting member (32) includes a second flat plate (321) and a vertical plate (322), the second flat plate (321) is connected to the first flat plate (312) through two fixing bolts (9), the vertical plate (322) is fixedly connected to the end of the first flat plate (312), and the vertical plate (322) is clamped on the back rib (6); The pulling mechanism (7) includes a connecting rod (71) and a fixing plate (72), wherein the connecting rod (71) is located in the sliding groove (5), one end of the connecting rod (71) is fixedly connected to the slider (311), and the fixing plate (72) is fixedly connected to the other end of the connecting rod (71), and the fixing plate (72) is fixedly connected to the end of the small keel (1) via four adjusting bolts (14); A groove (13) is provided on the plane of the first flat plate (312) facing the second flat plate (321), and the angle adjustment mechanism (8) includes an eccentric wheel (81) and an adjustment rod (82), and the eccentric wheel (81) is located in the groove (13).
2. The adjustable installation design structure of a multi-point dry hanging large-format honeycomb rock panel according to claim 1 is characterized in that: The second connecting member (32) is a hanging member with a T-shaped cross section.
3. The adjustable installation design structure of a multi-point dry hanging large-format honeycomb rock panel according to claim 1 is characterized in that: The back rib (6) is a C-shaped slide rail.
4. The adjustable installation design structure of a multi-point dry hanging large-format honeycomb rock panel according to claim 1 is characterized in that: Two large circular holes (10) are provided on the first flat plate (312), one end of the fixing bolt (9) passes through the large circular hole (10) and is screwed to the second flat plate (321), and a screw head (11) is provided on the other end of the fixing bolt (9), and the screw head (11) is pressed against the first flat plate (312).
5. The adjustable installation design structure of a multi-point dry hanging large-format honeycomb rock panel according to claim 4 is characterized in that: A gasket (12) is provided on the screw head (11), and the gasket (12) abuts against the second flat pressing plate (321). The diameter of the large circular hole (10) is larger than the diameter of the fixing bolt (9), and the diameter of the large circular hole (10) is smaller than the diameter of the gasket (12).
6. The adjustable installation design structure of a multi-point dry hanging large-format honeycomb rock panel according to claim 1 is characterized in that: The eccentric wheel (81) is pressed against the second flat plate (321), and the adjusting rod (82) is inserted into the groove (13) from one side of the first flat plate (312). The adjusting rod (82) passes through the eccentric wheel (81), and the adjusting rod (82) is fixedly connected to the eccentric wheel (81), and the adjusting rod (82) is screwed to the first flat plate (312).
Citation Information
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