Non-metallic mineral trestle plate structure capable of being quickly spliced and mounted
The combination of positioning rods and positioning slots solves the problem of time-consuming and labor-intensive connection of non-metallic mineral bridge panels, and realizes fast and stable bridge panel splicing.
Patent Information
- Application Number
- CN202520119285.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-17
AI Technical Summary
The existing connection methods for non-metallic mineral trestles are time-consuming and labor-intensive, making it difficult to achieve rapid assembly.
The system employs a combination of positioning rods and positioning slots, enabling rapid and precise assembly of the bridge panels through splicing blocks and slot components. The dual connection structure of positioning rods and positioning slots enhances stability.
It enables quick and convenient assembly of bridge panels, enhancing the stability and precision of the assembly.
Smart Images

Figure CN223723578U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of building engineering, and particularly relates to a non-metallic mineral trestle board structure capable of being quickly spliced and installed. BACKGROUND
[0002] The non-metallic mineral trestle board is a board used for trestle construction and made of non-metallic minerals as main raw materials, has good durability, can resist the erosion of acid, alkali and water vapor, and has relatively light texture, so that the overall weight of the trestle can be reduced.
[0003] However, the two adjacent non-metallic mineral trestle boards are currently connected through the connecting structure of bolts and nuts, the splicing part of the trestle board is provided with bolt holes in advance, and the trestle boards are fixed together through connecting pieces such as bolts, nuts and washers, and the specific operation steps are as follows: aligning the two trestle boards, aligning the bolt holes, inserting the bolts, installing the washers and nuts on the two ends of the bolts, and then tightening the nuts through a tool; in the process of aligning the two trestle boards, the operator needs to repeatedly fine-tune the position of the trestle boards, so that the bolt holes in the two trestle boards can be aligned, and it is time-consuming and laborious, so a non-metallic mineral trestle board structure capable of being quickly spliced and installed is needed to solve the above problems. SUMMARY
[0004] The utility model aims at providing a non-metallic mineral trestle board structure capable of being quickly spliced and installed to solve the problems in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a non-metallic mineral trestle board structure capable of being quickly spliced and installed, comprising a trestle board body, a connecting assembly, a first splicing assembly, a second splicing assembly, a first clamping groove assembly and a second clamping groove assembly, the trestle board body comprises a trestle board main body, and a plurality of limiting grooves are formed in the bottom of the trestle board main body;
[0006] The connecting assembly comprises a plurality of splicing blocks;
[0007] The first splicing assembly comprises a first splicing groove, the first splicing groove is formed on one side of the trestle board main body, and a plurality of positioning rods are connected to the bottom of the first splicing groove;
[0008] The second splicing assembly comprises a second splicing groove, and a plurality of positioning grooves are formed in the second splicing groove;
[0009] The first clamping groove assembly comprises a plurality of first clamping groove main bodies, and the plurality of first clamping groove main bodies are formed in the first splicing groove;
[0010] The second clamping groove assembly comprises a plurality of second clamping groove main bodies, and the plurality of second clamping groove main bodies are formed in the second splicing groove.
[0011] As a preferred scheme, the position of the positioning slot corresponds to the position of the positioning rod, and the size of the positioning rod matches the size of the positioning slot.
[0012] As a preferred scheme, the splicing block is inserted into the first clamping groove body and the second clamping groove body.
[0013] As a preferred scheme, the first splicing groove and the second splicing groove are overlapped.
[0014] As a preferred scheme, the first splicing groove and the second splicing groove are staggered.
[0015] As a preferred scheme, a plurality of limiting grooves are arranged between the first clamping groove body and the second clamping groove body.
[0016] As a preferred scheme, the size of the splicing block matches the size of the first clamping groove body and the second clamping groove body.
[0017] Compared with the prior art, the utility model has the advantages of:
[0018] The utility model discloses a movable trestle plate body, when the movable trestle plate body drives a plurality of positioning rods in the first splicing groove to insert into a plurality of positioning grooves in the second splicing groove of another trestle plate body, and after the first splicing groove and the second splicing groove close to each other are mutually attached, after splicing block is inserted into corresponding first clamping groove body and second clamping groove body, the structure can be mutually completed splicing at this time, and the operation is convenient, and the two trestle plate bodies that splice each other are connected through the connecting structure formed by the splicing block, the first clamping groove body and the second clamping groove body and the connecting structure formed by the positioning rod and the positioning groove, thereby improving the stability of the adjacent two trestle plate bodies splicing.
[0019] The utility model discloses a positioning rod and positioning groove are set up, when a plurality of positioning rods all insert into corresponding positioning groove, a plurality of positioning rods and positioning groove cooperate each other and can position the two trestle plate bodies that are adjacent, so that the first splicing groove and the second splicing groove of the two trestle plate bodies that are adjacent can be spliced together accurately, and the first clamping groove body in the first splicing groove and the second clamping groove body in the second splicing groove can be aligned accurately. ACCURATE DESCRIPTION
[0020] Fig. 1 It is the whole three-dimensional structure schematic diagram of the utility model;
[0021] Fig. 2 It is the utility model's structure schematic diagram of elevational view three-dimensional;
[0022] Fig. 3 It is the utility model's structure schematic diagram of partial three-dimensional.
[0023] In the figure: 1, the trestle plate body; 101, the trestle plate main body; 102, the limiting groove; 2, the connecting assembly; 201, the splicing block; 3, the first splicing assembly; 301, the first splicing groove; 302, the positioning rod; 4, the second splicing assembly; 401, the second splicing groove; 402, the positioning groove; 5, the first clamping groove assembly; 501, the first clamping groove main body; 6, the second clamping groove assembly; 601, the second clamping groove main body. DETAILED DESCRIPTION
[0024] The utility model will be further described below in combination with examples.
[0025] The following examples are used to illustrate the utility model, but cannot be used to limit the protection scope of the utility model. The conditions in the examples can be further adjusted according to specific conditions, and simple improvements of the method of the utility model under the concept of the utility model all belong to the range required to be protected by the utility model.
[0026] Please refer to Figs. 1-3 The utility model provides a kind of non-metallic mineral trestle plate structure of quick splicing installation, including trestle plate body 1, connecting assembly 2, first splicing assembly 3, second splicing assembly 4, first clamping groove assembly 5 and second clamping groove assembly 6, trestle plate body 1 includes trestle plate main body 101, the bottom of trestle plate main body 101 is equipped with several limiting grooves 102, by being equipped with limiting groove 102, when moving to trestle plate main body 101 drives limiting groove 102 to move to the limiting block in the outside main body below, limiting groove 102 and the limiting block of outside cooperation can be positioned to the horizontal direction of trestle plate body 1, so that trestle plate body 1 is not prone to slip on the surface of its below main body;
[0027] Connecting assembly 2 includes several splicing blocks 201;
[0028] First splicing assembly 3 includes first splicing groove 301, and first splicing groove 301 is set on one side of trestle plate main body 101, and the bottom of first splicing groove 301 is connected with several positioning rods 302;
[0029] Second splicing assembly 4 includes second splicing groove 401, and several positioning grooves 402 are set in second splicing groove 401;
[0030] First clamping groove assembly 5 includes several first clamping groove main bodies 501, and several first clamping groove main bodies 501 are set in first splicing groove 301;
[0031] The second clamping groove assembly 6 comprises a plurality of second clamping groove bodies 601, the plurality of second clamping groove bodies 601 are arranged in the second splicing groove 401, the position of the positioning groove 402 corresponds to the position of the positioning rod 302, the size of the positioning rod 302 matches the size of the positioning groove 402, the splicing block 201 is inserted into the first clamping groove body 501 and the second clamping groove body 601, and when the splicing block 201 moves into the first clamping groove body 501 and the second clamping groove body 601, the splicing block 201 can connect the two adjacent deck plate bodies 1 through the first clamping groove body 501 and the second clamping groove body 601.
[0032] The first splicing groove 301 and the second splicing groove 401 are close to each other and are overlapped with each other, the first splicing groove 301 and the second splicing groove 401 are staggered, a plurality of limiting grooves 102 are arranged between the first clamping groove body 501 and the second clamping groove body 601, the size of the splicing block 201 matches the size of the first clamping groove body 501 and the second clamping groove body 601, the plurality of positioning rods 302 and the positioning groove 402 are matched with each other and can position the two adjacent deck plate bodies 1 when the plurality of positioning rods 302 are inserted into the corresponding positioning grooves 402, and the first splicing groove 301 and the second splicing groove 401 of the two adjacent deck plate bodies 1 can be accurately spliced, and the first clamping groove body 501 in the first splicing groove 301 and the second clamping groove body 601 in the second splicing groove 401 can be accurately aligned.
[0033] The working principle and use process of the utility model are as follows: when the structure needs to be used, first, the deck plate body 1 is moved, when the moving deck plate body 1 drives the plurality of positioning rods 302 in the first splicing groove 301 to be inserted into the plurality of positioning grooves 402 in the second splicing groove 401 of another deck plate body 1, and after the first splicing groove 301 and the second splicing groove 401 close to each other are matched with each other, the splicing block 201 is inserted into the corresponding first clamping groove body 501 and second clamping groove body 601, and at this time, the structure can be spliced with each other.
[0034] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A non-metallic mineral trestle plate structure capable of being quickly spliced and installed, comprising a trestle plate body (1), a connecting assembly (2), a first splicing assembly (3), a second splicing assembly (4), a first clamping groove assembly (5) and a second clamping groove assembly (6), characterized in that: The trestle plate body (1) comprises a trestle plate main body (101), and a plurality of limiting grooves (102) are formed in the bottom of the trestle plate main body (101); The connecting assembly (2) comprises a plurality of splicing blocks (201); The first splicing assembly (3) comprises a first splicing groove (301), the first splicing groove (301) is formed in one side of the trestle plate main body (101), and a plurality of positioning rods (302) are connected to the bottom of the first splicing groove (301); The second splicing assembly (4) comprises a second splicing groove (401), and a plurality of positioning grooves (402) are formed in the second splicing groove (401); The first clamping groove assembly (5) comprises a plurality of first clamping groove main bodies (501), and the plurality of first clamping groove main bodies (501) are formed in the first splicing groove (301); The second clamping groove assembly (6) comprises a plurality of second clamping groove main bodies (601), and the plurality of second clamping groove main bodies (601) are formed in the second splicing groove (401).
2. A non-metallic mineral trestle board structure that can be quickly spliced and installed according to claim 1, characterized in that: The positions of the positioning grooves (402) correspond to the positions of the positioning rods (302), and the sizes of the positioning rods (302) match the sizes of the positioning grooves (402).
3. A non-metallic mineral trestle board structure that can be quickly spliced and installed according to claim 1, characterized in that: The splicing blocks (201) are inserted into the first clamping groove main bodies (501) and the second clamping groove main bodies (601).
4. A non-metallic mineral trestle board structure that can be quickly spliced and installed according to claim 1, characterized in that: The first splicing groove (301) and the second splicing groove (401) are close to each other and are overlapped with each other.
5. A non-metallic mineral trestle board structure that can be quickly spliced and installed according to claim 1, characterized in that: The first splicing groove (301) and the second splicing groove (401) are staggered.
6. A non-metallic mineral trestle board structure that can be quickly spliced and installed according to claim 1, characterized in that: The plurality of limiting grooves (102) are arranged between the first clamping groove main bodies (501) and the second clamping groove main bodies (601).
7. A non-metallic mineral trestle board structure that can be quickly spliced and installed according to claim 1, characterized in that: The sizes of the splicing blocks (201) match the sizes of the first clamping groove main bodies (501) and the second clamping groove main bodies (601).