A polishing assembly

CN224765110UActive Publication Date: 2026-09-18RONGGUI XINZHAORONG PLASTIC CO LTD SHUNDE DISTRICT FOSHAN CITY
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Patent Information

Application Number
CN202521719565.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2026-09-18
Estimated Expiration
2035-08-13

AI Technical Summary

Technical Problem

[0002]现有打磨组件包括用于打磨抛光的磨体、以及用于安装缓冲垫的基座,当磨体接触瓷砖或石材,缓冲垫起到缓冲作用,防止磨体损坏基座,磨体通过粘贴固定在缓冲垫上,现有基座没有对磨体设置定位安装结构,当磨体安装时,由于缓冲垫上有粘合层,导致磨体往往容易滑动,不利于缓冲垫与磨体之间的粘贴固定

Benefits of technology

通过在基座上设置凹槽和定位结构,显著提升了磨体的安装精度和稳定性。定位结构能够有效约束磨体在安装过程中的滑动问题,尤其是在缓冲垫带有粘合层的情况下,避免了因粘性导致的磨体偏移或错位。此外,这种结构设计便于安装,简化了安装流程,避免了人工安装对位调整的时间,防安装错位,提高了生产效率。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of porcelain tile, stone material polishing, propose a kind of polishing assembly, including pedestal, the polishing assembly still include setting on pedestal: grinding body, the grinding body is used for polishing polishing;Buffer pad, the buffer pad is located grinding body lower part;The recess for accommodating installation buffer pad is equipped on the pedestal, grinding body is fixed in buffer pad upper part, and recess upper part is equipped with for the positioning structure for positioning installation grinding body, to make grinding body positioning installation on pedestal, grinding body and positioning structure both coincide in projection direction on side view projection. By setting recess and positioning structure on pedestal, the installation accuracy and stability of grinding body are significantly improved. Positioning structure can effectively constrain the sliding problem of grinding body during installation, especially in the case where buffer pad has adhesive layer, avoid the deviation or misplacement of grinding body due to viscosity. In addition, this structure design simplifies the installation process, avoids the time of manual installation alignment adjustment, improves production efficiency.
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Description

Technical Field

[0001] This utility model relates to the technical field of ceramic tile and stone polishing, and specifically to a polishing component. Background Technology

[0002] Existing grinding components include a grinding body for grinding and polishing, and a base for mounting a buffer pad. When the grinding body comes into contact with the tile or stone, the buffer pad acts as a cushion to prevent the grinding body from damaging the base. The grinding body is fixed to the buffer pad by adhesive. However, the existing base does not have a positioning and mounting structure for the grinding body. When the grinding body is installed, the grinding body tends to slide easily due to the adhesive layer on the buffer pad, which is not conducive to the bonding and fixing between the buffer pad and the grinding body. Utility Model Content

[0003] This invention proposes a grinding assembly that significantly improves the installation accuracy and stability of the grinding body by incorporating grooves and positioning structures on the base. The positioning structure effectively prevents the grinding body from sliding during installation, especially when the buffer pad has an adhesive layer, avoiding grinding body displacement or misalignment due to adhesion. Furthermore, this structural design simplifies the installation process, eliminates the time required for manual installation and alignment, and improves production efficiency. A polishing assembly designed for this purpose includes a base, and the polishing assembly further includes, on the base: A grinding body, the grinding body being used for grinding and polishing; A buffer pad is located at the lower part of the grinding body; The base is provided with a groove for accommodating the installation of the buffer pad. The grinding body is fixed on the upper part of the buffer pad, and the upper part of the groove is provided with a positioning structure for positioning and installing the grinding body, so that the grinding body is positioned and installed on the base, and the projections of the grinding body and the positioning structure coincide in the side view projection direction.

[0004] The groove, positioning structure and base are integrally formed and form an inseparable whole; Alternatively, the positioned structure can be detachably fixed to the base.

[0005] The front and / or rear end of the groove are provided with positioning structures, and the front and rear ends of the grinding body cooperate with the positioning structures to constrain the grinding body from sliding outward to the base during installation.

[0006] The front end of the groove is provided with a first positioning block extending upward toward the upper part of the groove, and the rear end of the groove is provided with a second positioning block extending upward toward the upper part of the groove; The first positioning block and the second positioning block are arranged with their left and right ends extending along the sides of the groove, so that the first positioning block and the second positioning block constitute a positioning structure for positioning and installing the grinding body in the front and rear.

[0007] The grinding body is fixed to the buffer pad by adhesive.

[0008] The cushioning pad is fixed in the groove of the base by adhesive.

[0009] The grinding media material is diamond grit.

[0010] The base material is plastic, resin, metal, or inorganic material.

[0011] The base has a hollowed-out groove at its bottom, and reinforcing ribs are installed inside the hollowed-out groove to increase the structural strength of the base.

[0012] The reinforcing ribs are arranged along the length of the hollowed-out groove.

[0013] The beneficial technical effects of this utility model are as follows: By incorporating grooves and positioning structures on the base, the installation accuracy and stability of the grinding media are significantly improved. The positioning structure effectively prevents sliding of the grinding media during installation, especially when the buffer pad has an adhesive layer, avoiding displacement or misalignment due to adhesion. Furthermore, this structural design facilitates installation, simplifies the installation process, eliminates the time required for manual alignment and adjustment, prevents misalignment, and improves production efficiency. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of a grinding component according to an embodiment of the present invention.

[0015] Figure 2 This is an exploded view of the assembly structure of a grinding component according to an embodiment of the present invention.

[0016] Figure 3 This is a three-dimensional cross-sectional structural diagram of a grinding component according to an embodiment of the present invention.

[0017] Figure 4 This is a schematic diagram of the bottom structure of the base according to an embodiment of the present invention. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. In order to make the above-mentioned objects, features and advantages of the present application more apparent and understandable, many specific details are set forth in the following description in order to provide a full understanding of the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.

[0019] See Figures 1-4A polishing assembly includes a base 1, and the polishing assembly further includes components disposed on the base 1: Grinding body 2, which is used for grinding and polishing; Buffer pad 3, the buffer pad 3 is located at the lower part of the grinding body 2; The base 1 is provided with a groove 101 for accommodating the installation of the buffer pad 3. The grinding body 2 is fixed on the upper part of the buffer pad 3, and the upper part of the groove 101 is provided with a positioning structure 102 for positioning and installing the grinding body 2, so that the grinding body 2 is positioned and installed on the base 1, and the projections of the grinding body 2 and the positioning structure 102 coincide in the side view projection direction.

[0020] By providing a groove 101 and a positioning structure 102 on the base 1, the installation accuracy and stability of the grinding body 2 are significantly improved. The positioning structure 102 effectively constrains the sliding of the grinding body 2 during installation, especially when the buffer pad 3 has an adhesive layer, preventing the grinding body 2 from shifting or misaligning due to adhesion. Furthermore, this structural design facilitates installation, simplifies the installation process, avoids the time required for manual installation and alignment adjustments, and improves production efficiency.

[0021] The groove 101, the positioning structure 102 and the base 1 are integrally formed and form an inseparable whole; Alternatively, the positioning structure 102 can be detachably fixed to the base 1.

[0022] The integrated design of the groove 101, positioning structure 102, and base 1 enhances the overall integrity and strength of the structure, reducing the risk of failure due to loosening or separation of components, while also lowering assembly difficulty and production costs. The detachable positioning structure 102 provides flexibility, allowing for easy replacement or adjustment to suit different grinding needs and adapt to various grinding media 2 installation requirements. This dual-choice design meets the structural stability requirements of mass production while also providing convenience for personalized or special applications, further broadening the applicability of the grinding components.

[0023] For example, the positioning structure 102 is fixed on the base 1 by a snap fastener.

[0024] The groove 101 has a positioning structure 102 at its front end and / or rear end. The front and rear ends of the grinding body 2 cooperate with the positioning structure 102 to constrain the grinding body 2 to slide outward from the base 1 during installation.

[0025] By setting a positioning structure 102 at the front end and / or rear end of the groove 101, the back-and-forth sliding of the grinding body 2 during installation can be effectively restricted, ensuring that the grinding body 2 remains in a fixed position during the bonding process.

[0026] The front end of the groove 101 is provided with a first positioning block 103 extending upward toward the upper part of the groove 101, and the rear end of the groove 101 is provided with a second positioning block 104 extending upward toward the upper part of the groove 101. The first positioning block 103 and the second positioning block 104 are arranged to extend along the side of the groove 101 at their left and right ends, so that the first positioning block 103 and the second positioning block 104 constitute a positioning structure 102 for positioning and installing the grinding body 2 in the front and rear.

[0027] The design of the first positioning block 103 and the second positioning block 104 not only achieves precise positioning of the grinding body 2 in the front-back direction, but also enhances the stability of positioning through the left-right extension structure, reducing the lateral offset of the grinding body 2.

[0028] The grinding body 2 is fixed to the buffer pad 3 by adhesive bonding. This adhesive bonding method eliminates the need for fasteners and reduces the processing cycle.

[0029] The buffer pad 3 is fixed in the groove 101 of the base 1 by adhesive. The grinding body 2 is made of diamond.

[0030] The base 1 is made of plastic, resin, metal, or inorganic materials (stone). Plastic or resin bases offer advantages such as light weight, low cost, and ease of processing. The base 1 has a hollowed-out groove 105 at its bottom, within which reinforcing ribs 106 are installed to increase the structural strength of the base 1. The hollowed-out groove 105 reduces the overall weight of the base 1, while the reinforcing ribs 106 effectively compensate for the structural strength loss caused by the hollowing out, achieving both lightweight design and sufficient mechanical strength.

[0031] The reinforcing ribs 106 are arranged along the length of the hollowed-out groove 105, which reduces weight while improving the durability and deformation resistance of the base 1.

[0032] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A polishing assembly, comprising a base (1), characterized in that: The polishing assembly also includes components disposed on the base (1): Grinding body (2), the grinding body (2) is used for grinding and polishing; Buffer pad (3), the buffer pad (3) is located at the lower part of the grinding body (2); The base (1) is provided with a groove (101) for accommodating the installation of the buffer pad (3). The grinding body (2) is fixed on the upper part of the buffer pad (3), and the upper part of the groove (101) is provided with a positioning structure (102) for positioning and installing the grinding body (2), so that the grinding body (2) is positioned and installed on the base (1). The projections of the grinding body (2) and the positioning structure (102) coincide in the side view projection direction. The groove (101) is provided with a positioning structure (102) at the front end and / or rear end. The front and rear ends of the grinding body (2) cooperate with the positioning structure (102) to constrain the grinding body (2) to slide outward to the base (1) during installation. The front end of the groove (101) is provided with a first positioning block (103) extending upward toward the upper part of the groove (101), and the rear end of the groove (101) is provided with a second positioning block (104) extending upward toward the upper part of the groove (101). The first positioning block (103) and the second positioning block (104) are arranged to extend along the side of the groove (101) at their left and right ends, so that the first positioning block (103) and the second positioning block (104) constitute a positioning structure (102) for positioning and installing the grinding body (2) in the front and rear.

2. The polishing assembly according to claim 1, characterized in that: The groove (101), positioning structure (102) and base (1) are integrally formed and form an inseparable whole; Alternatively, the positioning structure (102) can be detachably fixed to the base (1).

3. The polishing assembly according to claim 1, characterized in that: The grinding body (2) is fixed to the buffer pad (3) by adhesive.

4. The polishing assembly according to claim 1, characterized in that: The buffer pad (3) is fixed in the groove (101) of the base (1) by adhesive.

5. The polishing assembly according to claim 1, characterized in that: The grinding body (2) is made of diamond.

6. The polishing assembly according to claim 1, characterized in that: The base (1) is made of plastic, resin, metal or inorganic material.

7. The polishing assembly according to claim 1, characterized in that: The base (1) has a hollowed-out groove (105) at the bottom, and a reinforcing rib (106) for increasing the structural strength of the base (1) is provided in the hollowed-out groove (105).

8. The polishing assembly according to claim 7, characterized in that: The reinforcing rib (106) is arranged along the length of the hollowed-out groove (105).