Combined rubber plate structure

By using a modular design and modular splicing of a combined rubber sheet structure, the problem of needing to replace the entire rubber sheet after it wears out is solved, achieving efficient utilization and convenient installation.

CN223725052UActive Publication Date: 2025-12-26SHANGHAI VICTORY FLUID TECH CO LTD
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Patent Information

Application Number
CN202520551486.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-12-26
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

The existing integral rubber sheet needs to be replaced as a whole after it wears out, which leads to a decrease in utilization and waste of resources.

Method used

It adopts a modular rubber sheet structure, with the first main unit and the second main unit designed separately. The second main unit is a replaceable part as it is vulnerable. Stable connection is ensured by snap-fit ​​units and limiting units. Multiple first main units can be modularly spliced ​​together.

Benefits of technology

It improves the overall utilization rate of rubber sheets, reduces material costs and resource waste, has high connection stability, is convenient for transportation and installation, and can adjust the size and shape according to needs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to a combined rubber plate structure which comprises a first main body unit, a plurality of clamping units, a second main body unit and a limiting unit. The utility model has the advantages that the first main body unit and the second main body unit are separately arranged, and the second main body unit independently exists as a part which is easy to damage and needs to be replaced. When the problems of abrasion, aging and the like occur, only the second main body unit needs to be replaced, and the first main body unit can be continuously used, so that the overall utilization rate of the rubber plate is greatly improved, and the material cost and resource waste are reduced; and through cooperative use of the clamping unit and the limiting unit, the accuracy of the mounting position of the second main body unit is ensured, and the connection stability is enhanced. When the rubber plate is used, the second main body unit can be firmly installed on the first main body unit, and the overall stability of the rubber plate is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to rubber board installation related technical field especially relates to a combined rubber board structure. BACKGROUND

[0002] As a common and widely used industrial material, rubber board plays an important role in many fields. It is mainly made of rubber raw materials through mixing, molding, vulcanization and other processes. Rubber board has various appearances and rich colors, from common black and gray to customized colors. It is soft and has excellent elasticity, which can be easily bent and stretched without breaking. Its surface is smooth and flat, or has special patterns, which can enhance friction and meet different scene requirements. In terms of performance, rubber board is resistant to wear and can effectively resist damage caused by external friction; it is resistant to chemical corrosion and can remain stable in the face of chemicals such as acid and alkali, as well as harsh environments such as moisture and high temperature. Therefore, it is often used as a sealing gasket in industry to prevent liquid and gas leakage; in the construction field, it is used for sound insulation and shock absorption of floors and walls; in daily life, rubber board can also be used as a non-slip mat to ensure people's safety when walking.

[0003] According to the search, the Chinese patent with publication number CN219276863U discloses a high-wear-resistant anti-skid rubber board, which comprises a rubber board, a plurality of groups of grooves are formed on the surface of the rubber board, the plurality of groups of grooves are designed at equal intervals, a heat-resistant layer is arranged on the outer end surface of the rubber board, and a waterproof layer is fixedly arranged on the surface of the side of the heat-resistant layer away from the rubber board. The grooves, corrosion-resistant layer and wear-resistant layer can make the rubber board have excellent corrosion resistance and wear resistance, the grooves can improve the drainage capacity and anti-skid performance of the surface of the rubber board, and the practicality of the rubber board is improved. However, the wear-resistant rubber board is of an integral structure, and the top of the rubber board is integrally formed with wear-resistant protrusions. However, when the wear-resistant protrusions are severely worn or even completely worn out, the overall anti-skid effect will be very poor, and the overall wear-resistant rubber board needs to be replaced, which reduces the overall utilization rate and causes overall waste.

[0004] At present, there is no effective solution to the problem of overall rubber board utilization rate reduction and overall waste in the related art. UTILITY MODEL CONTENTS

[0005] The utility model aims at the deficiency in the prior art, and provides a combined rubber board structure to solve the problem of overall rubber board utilization rate reduction and overall waste in the related art.

[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is:

[0007] A combined rubber board structure comprises:

[0008] a first main unit;

[0009] a plurality of clamping units, the plurality of clamping units being distributed and arranged at the top end of the first main unit and being connected with the first main unit respectively;

[0010] a second main unit, the second main unit being removably arranged at the top end of the first main unit and being clamped with the clamping unit respectively;

[0011] a limiting unit, the limiting unit being arranged at the second main unit and being limitingly connected with the first main unit.

[0012] In some embodiments, the first main unit comprises:

[0013] a first main element;

[0014] a placing element, the placing element being arranged at the top end of the first main element, the inside of the placing element being provided with a plurality of clamping units and the second main unit.

[0015] In some embodiments, the first main unit further comprises:

[0016] a first docking element, the first docking element being arranged at the front end of the first main element;

[0017] a second docking element, the second docking element being arranged at one side of the first main element.

[0018] In some embodiments, the first main unit further comprises:

[0019] a third docking element, the third docking element being arranged at the rear end of the first main element and being clamped with the first docking element of another combined rubber plate structure;

[0020] a fourth docking element, the fourth docking element being arranged at the other side of the first main element and being clamped with the second docking element of another combined rubber plate structure.

[0021] In some embodiments, the first main unit further comprises:

[0022] a first limiting element, the first limiting element being arranged at the inside of the placing element and being limitingly connected with the limiting unit.

[0023] In some embodiments, the clamping unit comprises:

[0024] A first clamping element is arranged at the top end of the first body unit and clamped with the second body unit.

[0025] In some embodiments, the second body unit comprises:

[0026] A second body element is removably arranged at the top end of the first body unit, and the edge of the second body element is provided with the limiting unit and connected with the limiting unit.

[0027] A plurality of groove elements are arranged at the top end of the second body element.

[0028] In some embodiments, the second body unit further comprises:

[0029] A plurality of second clamping elements are arranged at the bottom end of the second body element and clamped with the corresponding clamping units respectively.

[0030] In some embodiments, the second body unit further comprises:

[0031] A through slot element is arranged through the second body element and located inside the groove element for the external screwdriver to pass through.

[0032] In some embodiments, the limiting unit comprises:

[0033] A second limiting element is arranged at the second body unit and connected with the first body unit.

[0034] Compared with the prior art, the above technical scheme has the following technical effects:

[0035] The utility model discloses a combined rubber plate structure, utilize first main unit, second main unit separate setting, and second main unit as the part of easy damage and need to replace the independent existence. When appearing wear and tear, aging etc. problem, only need to replace second main unit, and first main unit can continue to use, the utilization of rubber plate whole has been improved greatly, reduced material cost and resource waste, utilize the cooperation of clamping unit and limiting unit, guarantee the accuracy of second main unit installation position, strengthen the stability of connection. When using, second main unit can also firmly install on first main unit, ensure that rubber plate whole is stable, utilize the cooperation between the first butt joint element, second butt joint element, third butt joint element, fourth butt joint element of setting in first main unit makes and can be modularized splicing like building blocks to multiple first main unit. In large area application scene, multiple first main unit can be connected together through butt joint element, and the rubber plate structure of larger size is formed. Compared with the installation of traditional single whole rubber plate, this kind of modularized splicing mode is more convenient in transportation, storage and installation process, and can adjust the scale and shape of splicing at any time according to actual demand. BRIEF DESCRIPTION OF DRAWINGS

[0036] Figure 1 It is the three-dimensional structure schematic diagram of combined rubber plate structure according to the utility model embodiment;

[0037] Figure 2 It is the explosion drawing of combined rubber plate structure according to the utility model embodiment;

[0038] Figure 3 It is the installation schematic diagram of combined rubber plate structure according to the utility model embodiment;

[0039] Figure 4a It is the three-dimensional structure schematic diagram of first main unit according to the utility model embodiment;

[0040] Figure 4b It is the front view of first main unit according to the utility model embodiment;

[0041] Figure 4c It is the side view of first main unit according to the utility model embodiment;

[0042] Figure 4d It is the enlarged view of the part of first main unit according to the utility model embodiment;

[0043] Figure 5 It is the enlarged view of the part of clamping unit according to the utility model embodiment;

[0044] Figure 6a It is the three-dimensional structure schematic diagram of second main unit according to the utility model embodiment;

[0045] Figure 6b is a perspective structural schematic view of the second main unit according to an embodiment of the utility model from another view angle;

[0046] Figure 7 is a perspective structural schematic view of the limiting unit according to an embodiment of the utility model.

[0047] The reference signs in it are: 10, first main unit;11, first main element;12, placing element;13, first docking element;14, second docking element;15, third docking element;16, fourth docking element;17, first limiting element;

[0048] 20, clamping unit;21, first clamping element;

[0049] 30, second main unit;31, second main element;32, recess element;33, second clamping element;34, through slot element;

[0050] 40, limiting unit;41, second limiting element. DETAILED DESCRIPTION

[0051] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0052] It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.

[0053] The utility model will be further described below in conjunction with the drawings and specific embodiments, but not as the limitation of the utility model.

[0054] An illustrative embodiment of the utility model, as shown in Figure 1 、 Figure 2 、 Figure 3 A combined rubber plate structure, including first main unit 10, a plurality of clamping units 20, second main unit 30 and limiting unit 40. Wherein, a plurality of clamping units 20 are distributed and set up at the top of first main unit 10, and are connected with first main unit 10 respectively;Second main unit 30 is removably set up at the top of first main unit 10, and is clamped with clamping unit 20 respectively;Limiting unit 40 is set up in second main unit 30, and is connected with first main unit 10 limit.

[0055] In some embodiments, the plurality of clamping units 20 are arranged at equal intervals along the length of the first body unit 10.

[0056] As shown in Figure 4a 、 Figure 4b 、 Figure 4c 、 Figure 4d The first body unit 10 includes a first body element 11 and a placement element 12. The placement element 12 is arranged at the top end of the first body element 11, and the interior of the placement element 12 is provided with a plurality of clamping units 20 and a second body unit 30.

[0057] The first body element 11 has a rectangular cross-section.

[0058] In some embodiments, the first body element 11 is made of rubber.

[0059] In some embodiments, the first body element 11 is a first body plate.

[0060] The placement element 12 has a rectangular cross-section.

[0061] The size of the placement element 12 matches the size of the first body element 11. Generally, the length of the placement element 12 is less than the length of the first body element 11, the width of the placement element 12 is less than the width of the first body element 11, and the height of the placement element 12 is less than the height of the first body element 11.

[0062] In some embodiments, the placement element 12 is a placement cavity.

[0063] Further, the first body unit 10 also includes a first docking element 13 and a second docking element 14. The first docking element 13 is arranged at the front end of the first body element 11, and the second docking element 14 is arranged on one side of the first body element 11.

[0064] In some embodiments, the first docking element 13 has an L-shaped cross-section. Specifically, the first docking element 13 includes a first docking groove and a second docking groove. The first docking groove is arranged at the front end of the first body element 11, and the second docking groove is arranged at the top end of the first docking groove and communicates with the first docking groove.

[0065] The size of the first docking groove matches the size of the first body element 11. Generally, the length of the first docking groove is less than the length of the first body element 11, the width of the first docking groove is less than the width of the first body element 11, and the height of the first docking groove is less than the height of the first body element 11.

[0066] The size of the second interface groove matches the size of the first body element 11. Generally, the length of the second interface groove is less than the length of the first body element 11, the width of the second interface groove is less than the width of the first body element 11, and the height of the second interface groove is less than the height of the first body element 11.

[0067] The size of the second interface groove matches the size of the first interface groove. Generally, the length of the second interface groove is equal to the length of the first interface groove, the width of the second interface groove is less than the width of the first interface groove, and the height of the second interface groove is greater than the height of the first interface groove.

[0068] In some embodiments, the cross section of the second interface element 14 is L-shaped. Specifically, the second interface element 14 includes a third interface groove and a fourth interface groove. Among them, the third interface groove is arranged on one side of the first body element 11; the fourth interface groove is arranged at the top end of the third interface groove and communicates with the third interface groove.

[0069] The size of the third interface groove matches the size of the first body element 11. Generally, the length of the third interface groove is less than the width of the first body element 11, the width of the third interface groove is less than the length of the first body element 11, and the height of the third interface groove is less than the height of the first body element 11.

[0070] The size of the fourth interface groove matches the size of the first body element 11. Generally, the length of the fourth interface groove is less than the width of the first body element 11, the width of the fourth interface groove is less than the length of the first body element 11, and the height of the fourth interface groove is less than the height of the first body element 11.

[0071] The size of the fourth interface groove matches the size of the third interface groove. Generally, the length of the fourth interface groove is equal to the length of the third interface groove, the width of the fourth interface groove is less than the width of the third interface groove, and the height of the fourth interface groove is greater than the height of the third interface groove.

[0072] Further, the first body unit 10 further includes a third interface element 15 and a fourth interface element 16. Among them, the third interface element 15 is arranged at the rear end of the first body element 11 and is clamped with the first interface element 13 of another combined rubber plate structure; the fourth interface element 16 is arranged on the other side of the first body element 11 and is clamped with the second interface element 14 of another combined rubber plate structure.

[0073] Specifically, the third interface element 15 is clamped with the first interface groove and the second interface groove of another combined rubber plate structure respectively; the fourth interface element 16 is clamped with the third interface groove and the fourth interface groove of another combined rubber plate structure respectively.

[0074] In some embodiments, the third connecting element 15 has an L-shaped cross section. Specifically, the third connecting element 15 includes a first connecting block and a second connecting block. The first connecting block is arranged at the rear end of the first body element 11 and is engaged with the first connecting groove of another combined rubber sheet structure. The second connecting block is arranged at the top end of the first connecting block and is engaged with the second connecting groove of another combined rubber sheet structure.

[0075] The size of the first connecting block matches the size of the first body element 11. Generally, the length of the first connecting block is less than the length of the first body element 11, the width of the first connecting block is less than the width of the first body element 11, and the height of the first connecting block is less than the height of the first body element 11.

[0076] The size of the first connecting block matches the size of the first connecting element 13. Generally, the length of the first connecting block is equal to the length of the first connecting groove, the width of the first connecting block is equal to the width of the first connecting groove, and the height of the first connecting block is equal to the height of the first connecting groove.

[0077] The size of the second connecting block matches the size of the first body element 11. Generally, the length of the second connecting block is less than the length of the first body element 11, the width of the second connecting block is less than the width of the first body element 11, and the height of the second connecting block is less than the height of the first body element 11.

[0078] The size of the second connecting block matches the size of the first connecting element 13. Generally, the length of the second connecting block is equal to the length of the second connecting groove, the width of the second connecting block is equal to the width of the second connecting groove, and the height of the second connecting block is equal to the height of the second connecting groove.

[0079] The size of the second connecting block matches the size of the first connecting block. Generally, the length of the second connecting block is equal to the length of the first connecting block, the width of the second connecting block is less than the width of the first connecting block, and the height of the second connecting block is greater than the height of the first connecting block.

[0080] In some embodiments, the third connecting element 15 is fixedly connected to the first body element 11, including but not limited to being integrally formed.

[0081] In some embodiments, the third connecting element 15 is made of rubber material.

[0082] In some embodiments, the fourth connecting element 16 has an L-shaped cross section. Specifically, the fourth connecting element 16 includes a third connecting block and a fourth connecting block. The third connecting block is arranged at the other side of the first body element 11 and is engaged with the third connecting groove of another combined rubber sheet structure. The fourth connecting block is arranged at the top end of the third connecting block and is engaged with the fourth connecting groove of another combined rubber sheet structure.

[0083] The third abutting block matches the size of the first main element 11. Generally, the length of the third abutting block is less than the width of the first main element 11, the width of the third abutting block is less than the length of the first main element 11, and the height of the third abutting block is less than the height of the first main element 11.

[0084] The third abutting block matches the size of the second abutting element 14. Generally, the length of the third abutting block is equal to the length of the third abutting slot, the width of the third abutting block is equal to the width of the third abutting slot, and the height of the third abutting block is equal to the height of the third abutting slot.

[0085] The fourth abutting block matches the size of the first main element 11. Generally, the length of the fourth abutting block is less than the width of the first main element 11, the width of the fourth abutting block is less than the length of the first main element 11, and the height of the fourth abutting block is less than the height of the first main element 11.

[0086] The fourth abutting block matches the size of the second abutting element 14. Generally, the length of the fourth abutting block is equal to the length of the fourth abutting slot, the width of the fourth abutting block is equal to the width of the fourth abutting slot, and the height of the fourth abutting block is equal to the height of the fourth abutting slot.

[0087] The fourth abutting block matches the size of the third abutting block. Generally, the length of the fourth abutting block is equal to the length of the third abutting block, the width of the fourth abutting block is less than the width of the third abutting block, and the height of the fourth abutting block is greater than the height of the third abutting block.

[0088] In some embodiments, the fourth abutting element 16 is fixedly connected to the first main element 11, including but not limited to being integrally formed.

[0089] In some embodiments, the fourth abutting element 16 is made of rubber material.

[0090] Further, the first main unit 10 further comprises a first limiting element 17. The first limiting element 17 is arranged on the inner side of the placing element 12 and is in limiting connection with the limiting unit 40.

[0091] The first limiting element 17 is frame-shaped.

[0092] The first limiting element 17 matches the size of the first main element 11. Generally, the outer length of the first limiting element 17 is less than the length of the first main element 11, and the outer width of the first limiting element 17 is less than the width of the first main element 11.

[0093] The size of the first limiting element 17 matches the size of the placing element 12. Generally, the inner length of the first limiting element 17 is equal to the length of the placing element 12, the inner width of the first limiting element 17 is equal to the width of the placing element 12, and the height of the first limiting element 17 is less than the height of the placing element 12.

[0094] In some embodiments, the first limiting element 17 is a limiting groove.

[0095] The clamping unit 20 includes a first clamping element 21. The first clamping element 21 is arranged at the top end of the first main unit 10 and clamped with the second main unit 30.

[0096] Specifically, the first clamping element 21 is arranged at the bottom end inside the placing element 12 and connected with the first main element 11.

[0097] In some embodiments, the first clamping element 21 includes a connecting plate and a clamping plate. The connecting plate is arranged at the bottom end inside the placing element 12 and connected with the first main element 11, and the clamping plate is arranged at the top end of the connecting plate and clamped with the second main unit 30.

[0098] The cross section of the clamping plate is in the shape of a circular arc.

[0099] The size of the connecting plate matches the size of the placing element 12. Generally, the length of the connecting plate is less than the width of the placing element 12, the width of the connecting plate is less than the length of the placing element 12, and the height of the connecting plate is less than the height of the placing element 12.

[0100] The size of the clamping plate matches the size of the placing element 12. Generally, the radial dimension of the clamping plate is less than the length and height of the placing element 12, and the axial dimension of the clamping plate is less than the width of the placing element 12.

[0101] The size of the clamping plate matches the size of the connecting plate. Generally, the radial dimension of the clamping plate is greater than the width and height of the connecting plate, and the axial dimension of the clamping plate is equal to the length of the connecting plate.

[0102] The sum of the height of the connecting plate and the radial dimension (such as the height) of the clamping plate is less than the height of the placing element 12.

[0103] In some embodiments, the first clamping element 21 is fixedly connected with the first main element 11, including but not limited to hot melt connection.

[0104] In some embodiments, the first clamping element 21 is made of rubber material.

[0105] As Figure 6a , Figure 6bAs shown, the second body unit 30 comprises a second body element 31 and a plurality of groove elements 32. Among them, the second body element 31 is removably arranged at the top end of the first body unit 10, the edge of the second body element 31 is provided with a limiting unit 40, and is connected with the limiting unit 40; the plurality of groove elements 32 are arranged at the top end of the second body element 31.

[0106] Specifically, the second body element 31 is removably arranged inside the placing element 12.

[0107] The cross section of the second body element 31 is rectangular.

[0108] The size of the second body element 31 matches the size of the placing element 12. Generally, the length of the second body element 31 is equal to the length of the placing element 12, the width of the second body element 31 is equal to the width of the placing element 12, and the height of the second body element 31 is equal to the height of the placing element 12.

[0109] In some embodiments, the second body element 31 is made of rubber material.

[0110] In some embodiments, the second body element 31 is a second body plate.

[0111] The cross section of the groove element 32 is rectangular.

[0112] The size of the groove element 32 matches the size of the second body element 31. Generally, the length of the groove element 32 is equal to the width of the second body element 31, the width of the groove element 32 is less than the length of the second body element 31, and the height of the groove element 32 is less than the height of the second body element 31.

[0113] In some embodiments, the plurality of groove elements 32 are arranged at equal intervals along the length direction of the second body element 31.

[0114] In some embodiments, the groove element 32 is an anti-skid groove.

[0115] Further, the second body unit 30 further comprises a plurality of second clamping elements 33. Among them, the plurality of second clamping elements 33 are arranged at the bottom end of the second body element 31, and are respectively clamped with the corresponding clamping units 20.

[0116] Specifically, the second clamping element 33 is clamped with the corresponding first clamping element 21.

[0117] More specifically, the second clamping element 33 is respectively clamped with the corresponding connecting plate and clamping plate.

[0118] In some embodiments, the second clamping element 33 comprises a connecting slot and a clamping slot. The connecting slot is arranged at the bottom end of the second body element 31 and clamped with the corresponding connecting plate. The clamping slot is arranged at the top end of the connecting slot and clamped with the corresponding clamping plate.

[0119] The size of the connecting slot matches the size of the second body element 31. Generally, the length of the connecting slot is less than the width of the second body element 31, the width of the connecting slot is less than the length of the second body element 31, and the height of the connecting slot is less than the height of the second body element 31.

[0120] The size of the connecting slot matches the size of the first clamping element 21. Generally, the length of the connecting slot is equal to the length of the connecting plate, the width of the connecting slot is equal to the width of the connecting plate, and the height of the connecting slot is equal to the height of the connecting plate.

[0121] The size of the clamping slot matches the size of the second body element 31. Generally, the radial dimension of the clamping slot is less than the length and height of the second body element 31, and the axial dimension of the clamping slot is less than the width of the second body element 31.

[0122] The size of the clamping slot matches the size of the first clamping element 21. Generally, the radial dimension of the clamping slot is equal to the radial dimension of the clamping plate, and the axial dimension of the clamping slot is equal to the axial dimension of the clamping plate.

[0123] The size of the clamping slot matches the size of the connecting slot. Generally, the radial dimension of the clamping slot is greater than the width and height of the connecting slot, and the axial dimension of the clamping slot is equal to the length of the connecting slot.

[0124] The sum of the height of the connecting slot and the radial dimension (e.g. height) of the clamping slot is less than the height of the second body element 31.

[0125] The number of the second clamping element 33 matches the number of the clamping unit 20. Generally, the number of the second clamping element 33 is equal to the number of the clamping unit 20.

[0126] In some embodiments, the second clamping element 33 is arranged at equal intervals along the length direction of the second body element 31.

[0127] Further, the second body unit 30 further comprises a through slot element 34. The through slot element 34 is arranged through the second body element 31 and located inside a recess element 32, for the external screwdriver to pass through.

[0128] The cross section of the through slot element 34 is rectangular.

[0129] The size of the through-slot element 34 matches the size of the second body element 31. Generally, the length of the through-slot element 34 is less than the width of the second body element 31, the width of the through-slot element 34 is less than the length of the second body element 31, and the height of the through-slot element 34 is less than the height of the second body element 31.

[0130] The size of the through-slot element 34 matches the size of the second body element 31. Generally, the length of the through-slot element 34 is less than the width of the second body element 31, the width of the through-slot element 34 is less than the length of the second body element 31, and the height of the through-slot element 34 is less than the height of the second body element 31.

[0131] The sum of the height of the through-slot element 34 and the height of the recess element 32 is equal to the height of the second body element 31.

[0132] In some embodiments, the through-slot element 34 is a through slot.

[0133] As shown in Figure 7 The limiting unit 40 includes a second limiting element 41. The second limiting element 41 is arranged on the second body unit 30 and is in limiting connection with the first body unit 10.

[0134] Specifically, the second limiting element 41 is arranged on the edge of the second body element 31 and is in limiting connection with the first limiting element 17.

[0135] The second limiting element 41 is frame-shaped.

[0136] The size of the second limiting element 41 matches the size of the second body element 31. Generally, the inner length of the second limiting element 41 is equal to the length of the second body element 31, the inner width of the second limiting element 41 is equal to the width of the second body element 31, and the height of the second limiting element 41 is less than the height of the second body element 31.

[0137] The size of the second limiting element 41 matches the size of the first limiting element 17. Generally, the outer length of the second limiting element 41 is equal to the length of the first limiting element 17, the outer width of the second limiting element 41 is equal to the width of the first limiting element 17, and the height of the second limiting element 41 is equal to the height of the first limiting element 17.

[0138] In some embodiments, the second limiting element 41 is fixedly connected with the second body element 31, including but not limited to being integrally formed.

[0139] In some embodiments, the second limiting element 41 is made of rubber material.

[0140] In some embodiments, the second limiting element 41 is a limiting plate.

[0141] The use method of the utility model is as follows:

[0142] (I) Docking operation (taking three combined rubber plate structures as an example)

[0143] Place the first main unit 10 of the first combined rubber plate structure at a designated position;

[0144] Place the first main unit 10 of the second combined rubber plate structure at the side of the first main unit 10 of the first combined rubber plate structure, and dock the fourth docking element 16 of the second combined rubber plate structure with the second docking element 14 of the first combined rubber plate structure;

[0145] Place the first main unit 10 of the third combined rubber plate structure at the end of the first main unit 10 of the first combined rubber plate structure, and dock the third docking element 15 of the third combined rubber plate structure with the first docking element 13 of the first combined rubber plate structure.

[0146] (II) Replacement of the second main unit 30

[0147] Pass the external screwdriver through the through-slot element 34, and pry the second main element 31 to be replaced with the screwdriver, so that one side of the second limiting element 41 is separated from the first limiting element 17;

[0148] Pull the second main element 31 with one side up to separate it from the placement element 12;

[0149] In the process, the second limiting element 41 is separated from the first limiting element 17 by the second main element 31, and the second clamping element 33 is separated from the first clamping element 21 by the second main element 31;

[0150] Place the new second main element 31 in the placement element 12;

[0151] In the process, the second limiting element 41 is located in the first limiting element 17, and the second clamping element 33 is clamped with the first clamping element 21, thereby completing the replacement operation.

[0152] The utility model discloses the advantage lies in, utilize first main unit, second main unit separate setting, and second main unit as the part of independent existence of easy damage and need to replace. When appearing wear and tear, aging etc. Problem, only need to replace second main unit, first main unit can continue to use, greatly improved the utilization of rubber board whole, reduced material cost and resource waste, utilize the cooperation of clamping unit and limiting unit between use, guarantee the accuracy of second main unit installation position, strengthen the stability of connection. In use, second main unit can also firmly install on first main unit, ensure that rubber board whole stability, utilize the cooperation of first butt joint element, second butt joint element, third butt joint element, fourth butt joint element between setting in first main unit makes multiple first main unit can like building blocks modularization splicing. In large area application scene, multiple first main unit can be connected together through butt joint element quickly, form the rubber board structure of bigger size. Compared with the installation of traditional single whole rubber board, this kind of modularization splicing mode is more convenient in transportation, storage and installation process, can adjust the scale and shape of splicing according to actual demand at any time.

[0153] The above only is the preferred embodiment of the utility model, and does not therefore limit the implementation and protection scope of the utility model, and for the person skilled in the art, should be able to realize that the scheme obtained by equivalent replacement and obvious change of the utility model specification and drawing content, should include in the protection scope of the utility model.

Claims

1. A modular rubber sheet structure, characterized by, The utility model relates to a combined rubber plate structure, including: First main unit (10); If a plurality of carding unit (20), a plurality of carding unit (20) distribution setting in the top of first main unit (10) is connected with first main unit (10) respectively; Second main unit (30), second main unit (30) is removably arranged in the top of first main unit (10), and is clamped with carding unit (20) respectively; Limiting unit (40), limiting unit (40) is arranged in second main unit (30), and is connected with first main unit (10) limitingly.

2. The modular rubber sheet structure of claim 1, wherein, First main unit (10) includes: First main element (11); Place element (12), place element (12) is arranged in the top of first main element (11), and the inside of place element (12) is provided with a plurality of carding unit (20), second main unit (30).

3. The modular rubber sheet structure of claim 2, wherein, First main unit (10) still includes: First docking element (13), first docking element (13) is arranged in the front end of first main element (11); Second docking element (14), second docking element (14) is arranged in one side of first main element (11).

4. The modular rubber sheet structure of claim 3, wherein, First main unit (10) still includes: Third docking element (15), third docking element (15) is arranged in the rear end of first main element (11), and is clamped with the first docking element (13) of another combined rubber plate structure; Fourth docking element (16), fourth docking element (16) is arranged in the other side of first main element (11), and is clamped with the second docking element (14) of another combined rubber plate structure.

5. The modular rubber sheet structure of claim 2, wherein, First main unit (10) still includes: First limiting element (17), first limiting element (17) is arranged in the inside of place element (12), and is connected with limiting unit (40) limitingly.

6. The modular rubber sheet structure of claim 1, wherein Carding unit (20) includes: First clamping element (21), first clamping element (21) is arranged in the top of first main unit (10), and is clamped with second main unit (30).

7. The modular rubber sheet structure of claim 1, wherein Second main unit (30) includes: Second main element (31), second main element (31) is removably arranged in the top of first main unit (10), and the edge of second main element (31) is provided with limiting unit (40), and is connected with limiting unit (40); A plurality of recess elements (32), a plurality of recess elements (32) are arranged in the top of second main element (31).

8. The modular rubber sheet structure of claim 7, wherein, Second main unit (30) still includes: A plurality of second clamping elements (33), a plurality of second clamping elements (33) are arranged in the bottom of second main element (31), and are clamped with corresponding carding unit (20) respectively.

9. The modular rubber sheet structure of claim 7, wherein, Second main unit (30) still includes: A through slot element (34) is arranged through the second body element (31) and is located inside the recess element (32) for allowing an external screwdriver to pass through.

10. The modular rubber sheet structure of claim 1, wherein, The limiting unit (40) comprises: A second limiting element (41) is arranged on the second body unit (30) and is in limiting connection with the first body unit (10).

Citation Information

Patent Citations

  • Highly wear-resistant antiskid rubber plate

    CN219276863U