Inorganic arch covering stone line
By designing rectangular streamline grooves, arc lines and anti-cracking reinforcement on the arch stone body, combined with anti-cracking nets and adhesives, the problems of complex arch stone construction and inaccurate splicing are solved, and simplified construction, standard lines and anti-cracking effects are achieved.
Patent Information
- Application Number
- CN202422838685.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-21
AI Technical Summary
The existing arch stone construction process is complicated, the lines are non-standard, it is difficult to splice accurately, and it is easy to crack.
The arch-wrapped stone body is made of composite inorganic materials, with rectangular streamline grooves and arc lines on the surface, and is equipped with anti-crack reinforcement and anti-crack nets. The splicing grooves and splicing strips are designed, and adhesive is used to achieve precise docking.
Simplify the construction process, standardize and regularize the lines, improve the strength, ensure accurate and stable splicing, and avoid cracking.
Smart Images

Figure CN223358630U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of arch-wrapped stone, and more specifically, to an inorganic arch-wrapped stone line. Background Art
[0002] Arch-wrapped stone is a decorative material that uses imitation stone paint and other materials through a specific construction process to create a stone-like effect. This material is often used for building exterior wall decoration and can simulate the effects of marble, pockmarked stone, etc. It has the advantages of low cost and easy construction.
[0003] However, the current arch stone construction is complicated, has high construction requirements, is easy to rework, and is complicated to construct directly on the wall. The lines are not standard, the convex and concave cannot be consistent, the wire harness cannot be horizontal and vertical, and it is difficult to achieve precise splicing. In view of this, the utility model provides inorganic arch stone lines. Utility Model Content
[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides an inorganic arch-clad stone line to solve the problems raised in the above-mentioned background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: inorganic arch-wrapped stone lines, including an arch-wrapped stone body, the bottom of the arch-wrapped stone body is compounded with an anti-cracking net, the surface of the arch-wrapped stone body is provided with a rectangular streamline groove, and the surface of the arch-wrapped stone body is formed with arc lines on both sides of the streamline groove, the surface of the arch-wrapped stone body is located at the cross-section corresponding to the arc line and is compounded with anti-cracking ribs, the anti-cracking net specifically includes a first anti-cracking strip and a second anti-cracking strip, the first anti-cracking strip and the second anti-cracking strip are criss-crossed, and the first anti-cracking strip and the second anti-cracking strip are both made of glass fiber material.
[0006] It can be seen that in the above structure, the arch-wrapped stone body is composed of composite inorganic materials, anti-cracking reinforcement and anti-cracking net, which makes the arch-wrapped stone body not easy to crack, and the surface of the arch-wrapped stone body is provided with rectangular streamline grooves and arc lines. The lines make the construction faster and the lines are standard and regular.
[0007] In order to achieve the accuracy of assembling the arch-wrapped stone body, preferably, a splicing groove is opened at one end of the arch-wrapped stone body, and a splicing strip adapted to the splicing groove structure is provided at the other end, and the splicing strip and the arch-wrapped stone body are an integrated structure.
[0008] In order to achieve precise docking between the splicing strip and the splicing groove, preferably, a plurality of alignment grooves are opened on the inner wall of the splicing groove, and one end of the splicing strip is fixed with an alignment strip with the same number and structure as the alignment grooves, and the alignment strip is slidably connected inside the alignment groove.
[0009] In order to achieve a tight connection between the splicing strip and the splicing groove, preferably, adhesive glue is provided on the surface of the splicing groove and the bottom of the splicing strip, and release paper is provided on the surface of the adhesive glue.
[0010] The technical effects and advantages of this utility model are:
[0011] By setting rectangular streamline grooves and arc lines on the surface of the arch-wrapped stone body made of composite inorganic materials, the lines on the surface of the arch-wrapped stone body can be beautiful, the concave and convex are consistent, and the line bundles are horizontal and vertical. In the specific construction process, there is no need to directly construct on the wall. The required construction requirements can be met by pasting and assembling the arch-wrapped stone body. The process is simple, the pasting is convenient, and the construction is easy.
[0012] The anti-cracking reinforcement is composited with the arch stone body. At the same time, the bottom of the arch stone body is composited with an anti-cracking net, which is woven from a first anti-cracking strip and a second anti-cracking strip made of glass fiber. It can greatly improve the strength of the arch stone body and is not easy to crack. The lines make construction faster and the lines are standard and regular.
[0013] By inserting multiple alignment strips at one end of the splicing strip into the corresponding alignment grooves, and guiding the position by sliding the alignment strip downward inside the alignment groove, the splicing strip can be accurately placed inside the splicing groove, and the two corresponding adhesives are used to assemble and connect two adjacent arch-wrapped stone bodies, making the splicing of the two adjacent arch-wrapped stone bodies more accurate, the construction more convenient, and the stability better. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0015] Figure 2 This is a schematic diagram of the anti-cracking net structure of the present utility model.
[0016] Figure 3 For the utility model Figure 1 Enlarged structural diagram at point A in the middle.
[0017] Figure 4 This is an enlarged view of the connection between the alignment strip and the splicing strip of the utility model.
[0018] The accompanying drawings are marked as follows: 1. Arch-wrapped stone body; 2. Anti-cracking net; 3. Rectangular streamline groove; 4. Arc line; 5. Anti-cracking rib; 20. First anti-cracking strip; 21. Second anti-cracking strip; 6. Splicing groove; 7. Splicing strip; 8. Alignment groove; 9. Alignment strip; 10. Adhesive; 11. Release paper. DETAILED DESCRIPTION
[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described 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 creative efforts are within the scope of protection of the present invention. Example
[0020] As attached Figure 1 、 2 As shown, this embodiment provides an inorganic arch-wrapped stone line, including an arch-wrapped stone body 1, the bottom of the arch-wrapped stone body 1 is compounded with an anti-crack net 2, a rectangular streamline groove 3 is opened on the surface of the arch-wrapped stone body 1, and arc lines 4 are formed on both sides of the streamline groove on the surface of the arch-wrapped stone body 1, and anti-crack ribs 5 are compounded on the cross section of the surface of the arch-wrapped stone body 1 corresponding to the arc line 4;
[0021] The anti-cracking net 2 specifically includes a first anti-cracking strip 20 and a second anti-cracking strip 21 . The first anti-cracking strip 20 and the second anti-cracking strip 21 are arranged in a crisscross pattern. The first anti-cracking strip 20 and the second anti-cracking strip 21 are both made of glass fiber material.
[0022] Specifically, in this structure, the arch-wrapped stone body 1 is made of a composite inorganic material, and a rectangular streamline groove 3 and an arc line 4 are provided on the surface of the arch-wrapped stone body 1, so that the lines on the surface of the arch-wrapped stone body 1 are beautiful, the concave and convex are consistent, and the line bundle is horizontal and vertical. In the specific construction process, it is not necessary to directly construct on the wall. The construction requirements of the demand are met by pasting and assembling the arch-wrapped stone body 1. The process is simple, the pasting is convenient, and the construction is convenient.
[0023] The anti-crack reinforcement 5 is integrated with the arch-wrapped stone body 1. At the same time, the bottom of the arch-wrapped stone body 1 is compounded with an anti-crack net 2. The anti-crack net 2 is woven from a first anti-crack strip 20 and a second anti-crack strip 21 made of glass fiber, which can greatly improve the strength of the arch-wrapped stone body 1 and is not easy to crack.
[0024] In short, the arch-wrapped stone body 1 of this embodiment is quickly pasted and easy to construct. It is specifically composed of composite inorganic materials, anti-crack reinforcement 5 and anti-crack mesh 2, is not easy to crack, and the lines make construction faster and the lines are standard and regular. Example
[0025] This embodiment provides an inorganic arch-enclosed stone line. Based on the first embodiment, in order to facilitate the precise docking of several adjacent arch-enclosed stone bodies 1, specifically:
[0026] In this embodiment, as shown in the attached Figure 1 、 3As shown in 4, a splicing groove 6 is provided at one end of the arch-wrapped stone body 1, and a splicing strip 7 adapted to the structure of the splicing groove 6 is provided at the other end. The splicing strip 7 and the arch-wrapped stone body 1 are an integrated structure.
[0027] Specifically, when two adjacent arch-wrapped stone bodies 1 are spliced, the splicing strip 7 at one end of the arch-wrapped stone body 1 is placed against the inside of the splicing groove 6, so that the two adjacent arch-wrapped stone bodies 1 are precisely docked, achieving the accuracy of the assembly of the arch-wrapped stone body 1.
[0028] In this embodiment, as shown in the attached Figure 3 、 4 As shown, the inner wall of the splicing groove 6 is provided with a plurality of alignment grooves 8, and one end of the splicing strip 7 is fixedly provided with an alignment strip 9 with the same number and structure as the alignment grooves 8, and the alignment strip 9 is slidably connected inside the alignment groove 8.
[0029] Specifically, in order to further achieve the precise splicing effect of two adjacent arch-wrapped stone bodies 1 and avoid the mismatch during docking, the multiple alignment bars 9 at one end of the splicing bar 7 are respectively inserted into the corresponding alignment grooves 8, and the alignment bars 9 are slid downward inside the alignment grooves 8 for position guidance, so that the splicing bar 7 can be accurately placed inside the splicing groove 6 to realize the splicing and docking of two adjacent arch-wrapped stone bodies 1.
[0030] In this embodiment, as shown in the attached Figure 3 、 4 As shown, adhesive 10 is provided on the surface of the splicing groove 6 and the bottom of the splicing strip 7 , and release paper 11 is provided on the surface of the adhesive 10 .
[0031] Specifically, in this structure, the release paper 11 can be torn off from the corresponding adhesive 10. After the splicing strip 7 is placed inside the splicing groove 6, the adhesive 10 set on the surface of the splicing groove 6 and the bottom of the splicing strip 7 can be adhered to each other, thereby making the two adjacent arch-wrapped stone bodies 1 more firm, stable, and convenient for splicing.
[0032] Working principle of this utility model:
[0033] The present application provides an inorganic arch-wrapped stone line. Specifically, when assembling two adjacent arch-wrapped stone bodies 1, first tear off the release paper 11 corresponding to the adhesive 10 provided on the surface of the splicing groove 6 and the bottom of the splicing strip 7, and insert the multiple alignment strips 9 at one end of the splicing strip 7 into the corresponding alignment groove 8 respectively, and slide the alignment strip 9 downward inside the alignment groove 8 to guide the position, so that the splicing strip 7 can be accurately placed inside the splicing groove 6 to realize the splicing and docking of the two adjacent arch-wrapped stone bodies 1;
[0034] After the splicing strip 7 is laid inside the splicing groove 6, the adhesive 10 provided on the surface of the splicing groove 6 and the bottom of the splicing strip 7 can be adhered to each other, thereby making the two adjacent arch-wrapped stone bodies 1 more firm, stable, and convenient for splicing;
[0035] The arch-wrapped stone body 1 is made of a composite inorganic material. A rectangular streamline groove 3 and an arc line 4 are provided on the surface of the arch-wrapped stone body 1, so that the lines on the surface of the arch-wrapped stone body 1 are beautiful, the concave and convex are consistent, and the line harness is horizontal and vertical. In the specific construction process, there is no need to directly construct on the wall. The construction requirements of the demand can be met by pasting and assembling the arch-wrapped stone body 1. The process is simple, the pasting is convenient, and the construction is convenient.
[0036] The anti-cracking ribs 5 are compounded into one with the arch-wrapped stone body 1. At the same time, the bottom of the arch-wrapped stone body 1 is compounded with an anti-cracking net 2. The anti-cracking net 2 is woven from a first anti-cracking strip 20 and a second anti-cracking strip 21 made of glass fiber. It can greatly improve the strength of the arch-wrapped stone body 1 and is not easy to crack. Then the arch-wrapped stone body 1 can be quickly pasted and is convenient for construction. It is specifically composed of a composite inorganic material, anti-cracking ribs 5 and an anti-cracking net 2. It is not easy to crack. The lines make construction faster and the lines are standard and regular.
[0037] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An inorganic arch-wrapped stone line, comprising an arch-wrapped stone body (1), characterized in that: The bottom of the arch-wrapped stone body (1) is compounded with an anti-cracking net (2), the surface of the arch-wrapped stone body (1) is provided with a rectangular streamline groove (3), and the surface of the arch-wrapped stone body (1) is formed with arc lines (4) on both sides of the streamline groove, and the surface of the arch-wrapped stone body (1) is compounded with anti-cracking reinforcement (5) on the section corresponding to the arc line (4).
2. The inorganic arch-clad stone molding according to claim 1, characterized in that: The anti-cracking net (2) specifically comprises a first anti-cracking strip (20) and a second anti-cracking strip (21), wherein the first anti-cracking strip (20) and the second anti-cracking strip (21) are arranged in a crisscross pattern, and both the first anti-cracking strip (20) and the second anti-cracking strip (21) are made of glass fiber material.
3. The inorganic arch-clad stone molding according to claim 1, characterized in that: One end of the arch-enclosed stone body (1) is provided with a splicing groove (6), and the other end is provided with a splicing strip (7) that is compatible with the splicing groove (6) structure, and the splicing strip (7) and the arch-enclosed stone body (1) are an integrated structure.
4. The inorganic arch-clad stone molding according to claim 3, characterized in that: The inner wall of the splicing groove (6) is provided with a plurality of alignment grooves (8), and one end of the splicing strip (7) is fixedly provided with an alignment strip (9) having the same number as the alignment grooves (8) and a structure that matches the alignment strips (9), and the alignment strips (9) are slidably connected inside the alignment grooves (8).
5. The inorganic arch-clad stone molding according to claim 3, characterized in that: The surface of the splicing groove (6) and the bottom of the splicing strip (7) are both provided with adhesive glue (10), and the surface of the adhesive glue (10) is provided with release paper (11).