A base for a grinding wheel dresser

CN224795451UActive Publication Date: 2026-09-25MOLOCH (SUZHOU) INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521765161.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-19
Publication Date
2026-09-25
Estimated Expiration
2035-08-19

AI Technical Summary

Technical Problem

及时而正确地修整砂轮,是提高磨削效率和保证磨削质量不可缺少的重要环节,砂轮修整一般有车削、用金刚石滚轮、磨削和滚轧等方法,在对磨砂轮进行打磨时,一般采用表面附着金刚砂的打磨器对磨砂轮进行修整,在打磨工序中,金刚石砂与磨砂轮完全接触,因为摩擦而产生高温热量,产生的热量不能及时的分散,容易造成设备损坏,导致工作效率下降

Benefits of technology

本实用新型磁铁定子通过电力转化为磁力,动子在磁力的作用下,带动Y轴移动板进行往返直线运动,从而带动磨砂轮修整器在Y轴方向上移动,通过X轴滑座能够带动磨砂轮修整器在X轴方向上移动,进而实现磨砂轮修整器在XY轴上移动,磨砂轮修整器在工作过程中,产生热量通过散热鳍片,散热鳍片增加了散热面积,提升了散热效果和散热能力,一部分热量可经过散热鳍片散出,另一部分通过传递至Y轴移动板内的盘管内,盘管的“S”型结构增加了冷却水的行程,扩大了冷却效果,冷却水在盘管中将散热鳍片上的热量带走,最终从出水软管排出,这样配合散热鳍片散热,提升了其散热效率。

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Abstract

The utility model relates to a base for grinding wheel dresser, including X axle sliding seat, Y axle sliding seat and heat dissipation subassembly, install Y axle sliding seat on X axle sliding seat, install heat dissipation subassembly on Y axle sliding seat, heat dissipation subassembly includes coil pipe and water pump, the coil pipe is installed in Y axle moving plate, and one end of coil pipe is connected with water inlet hose, and install water inlet valve between water inlet hose and coil pipe, and water pump is connected on water inlet hose, and the other end of coil pipe is connected with water outlet hose, and install water outlet valve between water outlet hose and coil pipe, the utility model discloses through heat dissipation fin has increased the heat dissipation area, has improved the heat dissipation effect and heat dissipation capacity, and a part of heat can be scattered through heat dissipation fin, and another part is passed in the coil pipe in Y axle moving plate, and the '' S '' type structure of coil pipe increases the journey of cooling water, expands the cooling effect, and the heat on heat dissipation fin is taken away by cooling water in the coil pipe, and heat dissipation is cooperated heat dissipation fin, and improves its heat dissipation efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of grinding wheel dressing technology, specifically to a base for a grinding wheel dresser. Background Technology

[0002] Grinding wheel dressing is the process of using dressing tools to shape or remove the dull surface layer of a grinding wheel to restore its grinding performance and correct geometry. Timely and correct grinding wheel dressing is an essential step in improving grinding efficiency and ensuring grinding quality. Grinding wheel dressing generally includes methods such as turning, using diamond rollers, grinding, and rolling. When grinding wheels, grinding tools with diamond abrasive on their surface are generally used. During the grinding process, the diamond abrasive is in complete contact with the grinding wheel, generating high temperatures due to friction. If this heat cannot be dissipated in time, it can easily damage the equipment and reduce work efficiency. In view of the above shortcomings, it is necessary to design a base for grinding wheel dressers. Utility Model Content

[0003] The purpose of this invention is to provide a base for a grinding wheel dresser to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a base for a grinding wheel dresser, comprising an X-axis slide, a Y-axis slide, and a heat dissipation assembly. The Y-axis slide is mounted on the X-axis slide, and the heat dissipation assembly is mounted on the Y-axis slide. The heat dissipation assembly includes a coil and a water pump. The coil is installed inside the Y-axis moving plate, and the coil is S-shaped and arranged along the length of the Y-axis moving plate. One end of the coil is connected to a water inlet hose, and a water inlet valve is installed between the water inlet hose and the coil. A water pump is connected to the water inlet hose, and the water inlet hose is connected to a receiving cavity. The other end of the coil is connected to a water outlet hose, and a water outlet valve is installed between the water outlet hose and the coil, and the water outlet valve is connected to the receiving cavity.

[0005] Preferably, the Y-axis slide has the same structure as the X-axis slide. The X-axis slide includes a Y-axis moving plate and a drive assembly for driving the Y-axis moving plate. A slider is installed at the bottom of the Y-axis moving plate, and the slider is slidably mounted on a slide rail, which is mounted on a support base.

[0006] Preferably, the support base has an internal cavity, and both sides of the support base have strip grooves. A support plate is inserted into each strip groove, and two cross roller guides are provided between the support plate and the Y-axis moving plate.

[0007] Preferably, each of the cross roller guides includes a fixed rail and a sliding rail that slide against each other, with a plurality of cross rollers arranged in an alternating manner between the fixed rail and the sliding rail. The fixed rail is mounted on a support plate, and the sliding rail is mounted on the bottom of the Y-axis moving plate.

[0008] Preferably, the drive assembly includes a magnet stator and a mover. The magnet stator is mounted on a support base, and the mover is disposed above the magnet stator. There is no contact between the magnet stator and the mover. A connecting plate is mounted on the mover, and a Y-axis moving plate is mounted on the connecting plate.

[0009] Preferably, both ends of the Y-axis moving plate are provided with bosses, and the middle part of the Y-axis moving plate is provided with multiple heat dissipation fins. The multiple heat dissipation fins are evenly spaced between the two bosses, and bolt holes are provided on the bosses.

[0010] Compared with the prior art, the technical solution provided by this utility model has at least the following technical effects or advantages: This invention utilizes a magnetic stator that converts electricity into magnetic force. The mover, under the influence of this magnetic force, drives the Y-axis moving plate in a reciprocating linear motion, thereby moving the grinding wheel dresser along the Y-axis. The X-axis slide allows the grinding wheel dresser to move along the X-axis, thus enabling movement of the grinding wheel dresser along the XY axes. During operation, the grinding wheel dresser generates heat, which is dissipated through the heat dissipation fins. These fins increase the heat dissipation area, improving the heat dissipation effect and capacity. Part of the heat is dissipated through the fins, while the rest is transferred to the coil within the Y-axis moving plate. The "S"-shaped structure of the coil increases the cooling water's travel distance, expanding the cooling effect. The cooling water carries away the heat from the heat dissipation fins within the coil and is finally discharged through the outlet hose. This combination of heat dissipation fins and cooling water enhances the overall heat dissipation efficiency. Attached Figure Description

[0011] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the internal structure of the Y-axis moving plate in this utility model.

[0012] In the attached image: 1. Y-axis slide; 101. Y-axis moving plate; 102. Slider; 103. Slide rail; 104. Support base; 105. Strip groove; 106. Support plate; 107. Fixed rail; 108. Sliding rail; 109. Cross roller; 110. Magnet stator; 111. Mover; 112. Connecting plate; 113. Boss; 114. Heat dissipation fins; 2. X-axis slide; 3. Heat dissipation assembly; 301. Coil; 302. Water pump; 303. Inlet hose; 304. Inlet valve; 305. Outlet hose; 306. Outlet valve. Detailed Implementation

[0013] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.

[0014] Please see Figure 1 and 2 As shown, this utility model provides a technical solution: a base for a grinding wheel dresser, including a Y-axis slide 1, an X-axis slide 2, and a heat dissipation assembly 3. The Y-axis slide 1 is mounted on the X-axis slide 2, and the heat dissipation assembly 3 is mounted on the Y-axis slide 1. The heat dissipation assembly 3 includes a coil 301 and a water pump 302. The coil 301 is installed inside the Y-axis moving plate 101, and the coil 301 is S-shaped and arranged along the length direction of the Y-axis moving plate 101. One end of the coil 301 is connected to a water inlet hose 303. A water inlet valve 304 is installed between the water inlet hose 303 and the coil 301. The water pump 302 is connected to the water inlet hose 303, and the water inlet hose 303 is connected to a receiving cavity. The other end of the coil 301 is connected to a water outlet hose 305. A water outlet valve 306 is installed between the water outlet hose 305 and the coil 301, and the water outlet valve 306 is connected to the receiving cavity.

[0015] The Y-axis slide block 1 in this embodiment includes a Y-axis moving plate 101 and a driving assembly for driving the Y-axis moving plate 101. A slider 102 is installed at the bottom of the Y-axis moving plate 101. The slider 102 is slidably disposed on a slide rail 103. The slide rail 103 is installed on a support base 104. A receiving cavity is provided inside the support base 104. Strip grooves 105 are provided on both sides of the support base 104. A support plate 106 is inserted into each strip groove 105. Two cross roller guides are provided between the support plate 106 and the Y-axis moving plate 101. Each cross roller guide includes a fixed rail 107 and a sliding rail 108 that slide and cooperate with each other. A plurality of cross rollers 109 are provided between the fixed rail 107 and the sliding rail 108. The fixed rail 107 is installed on the support plate 106, and the sliding rail 108 is installed at the bottom of the Y-axis moving plate 101. By providing two cross roller guides between the support plate 106 and the Y-axis moving plate 101, the connection between the support plate 106 and the Y-axis moving plate 101 becomes more rigid, the movement becomes smoother, and the effective stroke becomes larger, thereby improving the load capacity of the Y-axis moving plate 101.

[0016] The driving assembly in this embodiment includes a magnetic stator 110 and a mover 111. The magnetic stator 110 is mounted on the support base 104, and the mover 111 is disposed above the magnetic stator 110. There is no contact between the magnetic stator 110 and the mover 111. A connecting plate 112 is mounted on the mover 111, and a Y-axis moving plate 101 is mounted on the connecting plate 112. The magnetic stator 110 converts electricity into magnetic force, and the mover 111 drives the Y-axis moving plate 101 to perform reciprocating linear motion under the action of the magnetic force.

[0017] In this embodiment, both ends of the Y-axis moving plate 101 are provided with bosses 113, and the middle part of the Y-axis moving plate 101 is provided with multiple heat dissipation fins 114. The multiple heat dissipation fins 114 are evenly spaced between the two bosses 113, and bolt holes are provided on the bosses 113.

[0018] In this embodiment, the X-axis slide 2 has the same structure as the Y-axis slide 1.

[0019] The working principle of this utility model is as follows: The two ends of the grinding wheel dresser are fixedly mounted on the bosses 113 at both ends of the Y-axis moving plate 101 using bolts. The magnet stator 110 converts electricity into magnetic force. Under the action of the magnetic force, the mover 111 drives the Y-axis moving plate 101 to perform reciprocating linear motion, thereby moving the grinding wheel dresser in the Y-axis direction. The X-axis slide 2 can then drive the grinding wheel dresser to move in the X-axis direction, thus realizing the movement of the grinding wheel dresser along the X and Y axes. During operation, the grinding wheel dresser generates… Heat is dissipated through the heat dissipation fins 114, which increase the heat dissipation area and improve the heat dissipation effect and capacity. Some of the heat can be dissipated through the heat dissipation fins 114, and the rest is transferred to the coil 301 inside the Y-axis moving plate 101. The "S"-shaped structure of the coil 301 increases the travel of the cooling water and expands the cooling effect. The cooling water carries away the heat on the heat dissipation fins 114 in the coil 301 and is finally discharged from the outlet hose 305. This combination of heat dissipation fins 114 and cooling water improves the heat dissipation efficiency.

[0020] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A base for a grinding wheel dresser, characterized in that: The system includes a Y-axis slide (1), an X-axis slide (2), and a heat dissipation assembly (3). The X-axis slide (2) is equipped with the Y-axis slide (1), and the Y-axis slide (1) is equipped with the heat dissipation assembly (3). The heat dissipation assembly (3) includes a coil (301) and a water pump (302). The coil (301) is installed inside the Y-axis moving plate (101). The coil (301) is S-shaped and is arranged along the length of the Y-axis moving plate (101). One end is connected to the inlet hose (303), and an inlet valve (304) is installed between the inlet hose (303) and the coil (301). A water pump (302) is connected to the inlet hose (303), and the inlet hose (303) is connected to the receiving cavity. The other end of the coil (301) is connected to the outlet hose (305), and an outlet valve (306) is installed between the outlet hose (305) and the coil (301). The outlet valve (306) is connected to the receiving cavity.

2. The base for a grinding wheel dresser according to claim 1, characterized in that: The X-axis slide (2) has the same structure as the Y-axis slide (1). The Y-axis slide (1) includes a Y-axis moving plate (101) and a driving assembly for driving the Y-axis moving plate (101) to move. A slider (102) is installed at the bottom of the Y-axis moving plate (101). The slider (102) is slidably mounted on the slide rail (103). The slide rail (103) is mounted on the support base (104).

3. A base for a grinding wheel dresser according to claim 2, characterized in that: The support base (104) has an internal cavity, and both sides of the support base (104) have strip grooves (105). A support plate (106) is inserted into each strip groove (105), and two cross roller guides are provided between the support plate (106) and the Y-axis moving plate (101).

4. A base for a grinding wheel dresser according to claim 3, characterized in that: Each of the cross roller guides includes a fixed rail (107) and a sliding rail (108) that slide against each other. A number of cross rollers (109) are provided between the fixed rail (107) and the sliding rail (108). The fixed rail (107) is mounted on the support plate (106), and the sliding rail (108) is mounted on the bottom of the Y-axis moving plate (101).

5. A base for a grinding wheel dresser according to claim 2, characterized in that: The drive assembly includes a magnet stator (110) and a mover (111). The magnet stator (110) is mounted on a support base (104), and the mover (111) is disposed above the magnet stator (110). There is no contact between the magnet stator (110) and the mover (111). A connecting plate (112) is mounted on the mover (111), and a Y-axis moving plate (101) is mounted on the connecting plate (112).

6. A base for a grinding wheel dresser according to claim 5, characterized in that: Both ends of the Y-axis moving plate (101) are provided with bosses (113), and the middle part of the Y-axis moving plate (101) is provided with multiple heat dissipation fins (114). The multiple heat dissipation fins (114) are evenly spaced between the two bosses (113), and bolt holes are provided on the bosses (113).