Smc insulating plate structure with high supporting performance

The self-locking design of boards A and B solves the problem of complex installation of SMC insulation boards, enables simple and fast splicing and construction, enhances support strength, reduces consumables, and maintains insulation and sound insulation effects.

CN223308818UActive Publication Date: 2025-09-05SHENGMING (SHANDONG) NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202422729863.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-09-05
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Existing SMC insulation panels require metal support frames when installed and fixed, which is complicated to construct, requires a lot of consumable materials, and is easily damaged when punched, affecting the insulation and sound insulation effects.

Method used

The self-locking design of the a-plate and b-plate is adopted, and the mutual cooperation of the card slot and the card strip can realize the splicing and construction without gluing, bolts and other fixed structures, forming a self-locking buckle and enhancing the supporting strength.

Benefits of technology

It can realize a simple and fast construction method, reduce consumables, improve support strength, maintain insulation and sound insulation effects, and the construction is simple and damage-free.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an smc insulating plate structure with high supporting performance, and mainly relates to the field of smc plate structures. Comprising a plate a and a plate b, a folded plate part a is arranged in the middle of the plate a, a folded plate part b is arranged in the middle of the plate b, a first clamping groove and a second clamping groove with opposite groove openings are formed in one side of the plate b, the groove opening of the first clamping groove is formed in the direction away from the folded plate part b, and an inner protruding strip is arranged on one side of the plate a. The inner protruding strip of the plate a is movably connected with the first clamping groove or the second clamping groove in a clamped mode. The utility model has the beneficial effects that self-locking can be realized based on splicing, a simple and rapid building mode is realized, and consumables are reduced.
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Description

Technical Field

[0001] The utility model relates to the field of SMC plate structures, in particular to a high-support SMC insulating plate structure. Background Art

[0002] Insulation board is an insulating material made by compression molding unsaturated polyester glass fiber reinforced sheet molding compound. It is mainly composed of GF (special yarn), UP (unsaturated resin), low shrinkage additives, MD (filler) and various additives. It has many characteristics such as high strength, high insulation, lightweight, corrosion resistance and easy processing. These excellent properties have made SMC insulation board widely used in many fields.

[0003] Among them, SMC insulation panels consume a lot of materials in the construction field. In many aspects, such as solar panel support, sound insulation panels, floors, partitions, roofs, bathroom compartments, etc., SMC panels can be used to build. When used as partition walls and sound insulation panels in wall structures, the panels need to be installed and fixed. The existing method is to first build a metal support structure, and then fix the panels on the bracket through a drilling structure. This installation method is relatively complicated and cannot be separated from the metal structure as the basic support. The drilling position forms a weak area that is easily damaged. The construction period, difficulty, and waste are all high, and its insulation and sound insulation effects are also compromised. Utility Model Content

[0004] The purpose of the utility model is to provide a highly supportive SMC insulation board structure, which can achieve self-locking based on splicing, realize a simple and fast construction method, and reduce consumables.

[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical solutions:

[0006] A highly supportive SMC insulation board structure comprises an A plate and a B plate, wherein the A plate is provided with an A folding plate portion in the middle, the B plate is provided with a B folding plate portion in the middle, a first card slot and a second card slot with opposite slot openings are provided on one side of the B plate, the slot opening of the first card slot is arranged away from the B folding plate portion, an inner convex strip is provided on one side of the A plate, and the inner convex strip of the A plate is movably engaged with the first card slot or the second card slot.

[0007] The notches of the first card slot and the second card slot are respectively provided with card strips, and the card strips are engaged with the inner convex strips for limiting position.

[0008] The a-plate is a parallel flat plate on both sides of the a-folded plate portion, and the b-plate is a parallel flat plate on both sides of the b-folded plate portion.

[0009] The side of the b plate away from the first card slot is a clean side without any protruding structure, and one side of the a folding plate portion is provided with a slot, and the clean side is movably plugged into the slot.

[0010] An outer convex strip is provided on the side of the a plate away from the inner convex strip, and a right-angle step structure is provided on one side of the b folding plate portion. The step structure is arranged on one side of the first card slot, and the outer convex strip is consistent with the outer edge of the second card slot and interferes with the step structure.

[0011] The a plate and the b plate can form a circulation unit including an ab parallel unit and an ab alternating unit. The ab parallel unit is obtained by overlapping the a plate and the b plate so that the positions of the a folding plate part and the b folding plate part overlap in reverse, and the inner convex strip is engaged with the second card slot. The ab alternating unit is obtained by engaging the inner convex strip with the first card slot so that one side of the a plate and the b plate are connected.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] This structure can be constructed by splicing and plugging. By plugging in at the height and forming mutual constraints in the horizontal direction, self-locking buckles can be formed without the need for other fixing structures such as glue, bolts, and clamps. The supporting strength can be enhanced by overlapping double plates to achieve efficient, simple, and lossless construction, greatly reducing costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a cross-sectional view of the a plate and the b plate of the present invention.

[0015] Figure 2 It is a schematic diagram of plate a of the present invention.

[0016] Figure 3 It is a schematic diagram of the b plate of the present invention.

[0017] Figure 4 It is a schematic diagram of the ab parallel unit of the utility model.

[0018] Figure 5 It is a schematic diagram of the ab alternating unit of the present invention.

[0019] Figure 6 It is a schematic diagram of two groups of cycles of ab parallel units of the present invention.

[0020] Figure 7 It is a schematic diagram of two groups of cycles of the ab alternating unit of the present invention.

[0021] Figure 8 This utility model Figure 5 Magnified view of part A.

[0022] Figure 9 This utility model Figure 6 Enlarged view of part B.

[0023] Figure 10 It is a schematic diagram of the connection of the overlapping parts of the ab alternating unit of the present invention.

[0024] Reference numerals shown in the accompanying drawings:

[0025] 1. Folding plate part a; 2. Inner convex strip; 3. Outer convex strip; 4. Slot; 5. Folding plate part b; 6. Clean side; 7. First card slot; 8. Second card slot; 9. Card strip; 10. Step structure. DETAILED DESCRIPTION

[0026] The present invention will be further described below with reference to specific embodiments. It should be understood that these embodiments are intended only to illustrate the present invention and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the contents of this invention, those skilled in the art may make various changes or modifications to the present invention, and that these equivalent forms also fall within the scope defined in this application.

[0027] Example: A highly supportive SMC insulation board structure

[0028] This panel structure mainly adopts self-joining, and through the unique snap-on design, it can realize self-joining and fixing of various structures, and can complete the installation without the cooperation of other bolts or clamps.

[0029] The plates mainly include a plate and b plate.

[0030] like Figure 1-Figure 3 As shown, the a plate and the b plate both adopt a "Z" shaped structure, specifically:

[0031] The a plate is provided with a folded plate portion 5b1a in the middle, and the two sides of the folded plate portion 5b1a are parallel flat plates, so that the a plate is formed shape.

[0032] The b plate is provided with a b folded plate portion 5b1a in the middle, and the two sides of the folded plate portion 5b1a are parallel flat plates, so that the b plate is formed. shape.

[0033] One side of the b plate is a clean side 6, and there is no protruding structure on both sides of the side plate;

[0034] The other side of the b-board is respectively provided with a first card slot 7 and a second card slot 8. The notch of the first card slot 7 is set away from the net surface side 6 of the b-board, and the notch of the second card slot 8 is opposite to the notch of the first card slot 7, and the notches of the first card slot 7 and the second card slot 8 are respectively provided with a card strip 9.

[0035] The clamping strip 9 is used to form a clamping relationship with the inner convex strip 2 of the a-plate.

[0036] A right-angled step structure 10 is provided on one side of the b-folded plate portion 5 b 1 a of the b-plate. The step structure 10 is provided on one side of the first card slot 7 .

[0037] One side of the a-plate is provided with an inner convex strip 2, which is engaged with the first card slot 7 / the second card slot 8. When one side of the a-plate with the inner convex strip 2 is inserted into the first card slot 7 from the height direction, the inner convex strip 2 is used to cooperate with the card strip 9 at the notch of the first card slot 7, so that it can be plugged in in the height direction but cannot be split in the horizontal direction.

[0038] The other side of the a-plate is provided with an outer ridge 3, which is used to cooperate with the outer edge of the second slot 8 on the outside, covering the outside of the second slot 8, and constraining one side of the second slot 8. The outer ridge 3 is adapted to the height of the step structure 10, and can form a mutual engagement relationship with the step structure 10.

[0039] A slot 4 is provided on one side of the folded plate portion a 5b1a of the a-plate, which is adapted to and matingly engages with the clean side 6. When the clean side 6 is inserted into the slot 4, the flat plate portion of the b-plate adjacent to the clean side 6 contacts the flat plate portion of the a-plate.

[0040] There are two ways to build the above-mentioned a and b boards:

[0041] The first one, such as Figure 4 、 Figure 6 As shown, the a plate and the b plate are formed into a circular structure of ab parallel units: partition-compartment-partition-compartment..., specifically, the a folding plate portion 5b1a and the b folding plate portion 5b1a are arranged in reverse overlap, that is, the a folding plate portion 5b1a and the b folding plate portion 5b1a form a trumpet-shaped triangular structure, and the step structure 10 is arranged outside, and the slot 4 is arranged inside, thereby forming a chamber structure with an open end. In terms of fixation, one side of a group of ab parallel units is plugged in by inserting one side of the inner convex strip 2 of the a plate into the second slot 4, and the first card slot 7 and the second card slot 8 of the adjacent ab parallel units are inserted between the a plate and the b plate of the adjacent ab parallel units (at the opening of the chamber structure). The overall width of the first card slot 7 and the second card slot 8 is adapted to the thickness of the chamber structure, and the outer convex strip 3 is matched with the outer side of the second card slot 8 for plugging, so as to realize the splicing of adjacent ab parallel units.

[0042] The aforementioned structure, based on the inversely arranged folded plate portions a 5b1a and b 5b1a, allows the flat halves of plate a and plate b to fit together, forming a thickened, high-strength partition structure. The remaining flat halves form a chamber structure, which is enclosed by adjacent parallel units a and b when assembled, creating a closed chamber space that meets the needs and functions of routing wiring and piping, adding support structures, and providing thermal insulation. This closed space is waterproof, heat-insulating, and electrically insulating, providing excellent isolation.

[0043] The second type, such as Figure 5 、 Figure 7 As shown, the a plate and the b plate are formed into a loop structure of ab alternating units: a plate - b plate - a plate - b plate..., specifically, when the a folding plate portion 5b1a and the b folding plate portion 5b1a are in the opposite directions and away from each other, one side of the inner convex strip 2 of the a plate is inserted into the first slot 4, and the inner convex strip 2 forms a constraint relationship with the card strip 9 in the first slot 4 to prevent separation in the lateral direction, so that the a plate and the b plate can only be plugged in from the height direction to form a group of ab alternating units, and the flat halves of the a plate and the b plate of adjacent ab alternating units are overlapped, and the net surface side 6 of the b plate is inserted into the slot 4 in the middle of the a plate, and the step structure 10 in the middle of the b plate is stuck in the outer convex strip 3 of the a plate, so that the adjacent ab alternating units are spliced ​​and built, and a structure of double-plate reinforced support at the splicing position is obtained, based on the structure of the a folding plate portion 5b1a and the b folding plate portion 5b1a being bent in reverse and alternating directions, the ab alternating units still maintain a uniform plane extension after the cycle.

[0044] The above-mentioned application construction methods all adopt splicing. By plugging in the height direction, the combined construction between the ab boards and the ab units can be completed, forming mutual constraints in the horizontal direction. No other fixing structures such as glue, bolts, and clamps are required to form self-locking buckles, and the double-board support part can greatly improve the support strength and obtain a good support effect. The first structure can obtain an insulated closed chamber, which is convenient for functional layout and has better support strength. The second structure is more material-saving, and alternating double boards can also enhance the support force. It is flexible in application, efficient and simple to build, reduces consumables, and can be reused after disassembly, achieving seamless installation and lower cost.

[0045] It should be noted that based on construction needs, it is not ruled out that bolts and metal brackets can be added to further enhance the application of fixation.

Claims

1. A highly supportive SMC insulation board structure, characterized in that: It includes plate a and plate b, wherein the middle part of plate a is provided with a folding plate part a, the middle part of plate b is provided with a folding plate part b, one side of plate b is provided with a first card slot and a second card slot with opposite slots, the slot of the first card slot is set away from the direction of the folding plate part b, and one side of plate a is provided with an inner convex strip, and the inner convex strip of plate a is movably engaged with the first card slot or the second card slot.

2. A highly supportive SMC insulation board structure according to claim 1, characterized in that: The notches of the first card slot and the second card slot are respectively provided with card strips, and the card strips are engaged with the inner convex strips for limiting position.

3. The high-support SMC insulation board structure according to claim 1, characterized in that: The a-plate is a parallel flat plate on both sides of the a-folded plate portion, and the b-plate is a parallel flat plate on both sides of the b-folded plate portion.

4. The high-support SMC insulation board structure according to claim 1, characterized in that: The side of the b plate away from the first card slot is a clean side without any protruding structure, and one side of the a folding plate portion is provided with a slot, and the clean side is movably plugged into the slot.

5. The high-support SMC insulation board structure according to claim 4, characterized in that: An outer convex strip is provided on the side of the a plate away from the inner convex strip, and a right-angle step structure is provided on one side of the b folding plate portion. The step structure is arranged on one side of the first card slot, and the outer convex strip is consistent with the outer edge of the second card slot and interferes with the step structure.

6. The high-support SMC insulation board structure according to claim 5, characterized in that: The a plate and the b plate can form a circulation unit including an ab parallel unit and an ab alternating unit. The ab parallel unit is obtained by overlapping the a plate and the b plate so that the positions of the a folding plate part and the b folding plate part overlap in reverse, and the inner convex strip is engaged with the second card slot. The ab alternating unit is obtained by engaging the inner convex strip with the first card slot so that one side of the a plate and the b plate are connected.