Ball polishing device
By designing the polishing wheel assembly, conveying assembly, and adjustment assembly of the spherical polishing device, the problem of existing equipment being unable to polish uniformly in all directions was solved, achieving a highly efficient spherical polishing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2026-04-03
AI Technical Summary
Existing small-scale polishing equipment is unable to achieve uniform polishing of spheres from all directions, resulting in low polishing efficiency.
Design a sphere polishing device, including a polishing wheel assembly, a conveying assembly, and an adjusting assembly. The polishing wheel unit polishes the sphere, while the worm gear unit and the conveying unit drive the sphere to rotate back and forth and left and right. The adjusting assembly adjusts the gap between the polishing wheel and the conveying assembly to achieve all-round polishing without dead angles.
It achieves uniform polishing of the sphere from all directions without dead angles, improves polishing efficiency, and achieves ideal polishing results without damaging the sphere.
Smart Images

Figure CN224074024U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of polishing equipment technology, and in particular to a spherical polishing device. Background Technology
[0002] Currently, during the sphere processing, polishing is required to make the sphere surface bright and smooth, which helps to improve the sphere's accuracy and quality. At present, machine polishing is usually used to polish the sphere. However, existing small polishing equipment is difficult to achieve all-round uniform polishing of the sphere due to the influence of structure and polishing wheel, and the polishing efficiency is low.
[0003] In view of this, it is necessary to propose further improvements to the current spherical polishing structure. Utility Model Content
[0004] Therefore, the purpose of this utility model is to at least partially address the shortcomings of the prior art, thereby proposing a spherical polishing device.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] This utility model provides a spherical polishing device, comprising:
[0007] A polishing wheel assembly includes a polishing wheel unit, which can polish a sphere to be polished;
[0008] The conveying assembly includes a worm gear unit and a conveying unit. The worm gear unit can drive the ball to be polished to rotate back and forth, and the conveying unit can drive the ball to be polished to rotate left and right.
[0009] An adjustment component is provided, which connects the polishing wheel assembly and the conveying assembly, and can move the conveying assembly closer to or further away from the polishing wheel assembly.
[0010] Furthermore, the polishing wheel assembly also includes a first base and a first drive member. The first drive member is connected to one side of the first base, and the polishing wheel unit is connected to the other side. The polishing wheel unit is connected to the first drive member via a first transmission belt. The first drive member drives the polishing wheel unit to rotate via the first transmission belt to polish the sphere to be polished.
[0011] Furthermore, the polishing wheel unit includes at least two seated bearings, a polishing wheel shaft, and a polishing wheel. The two seated bearings are spaced apart at both ends of the first base, and the polishing wheel shaft is connected between the two seated bearings. The polishing wheel is detachably mounted on the polishing wheel shaft.
[0012] Furthermore, the first transmission belt is connected to the first driving member and any of the belt bearings. The first driving member drives the belt bearings to rotate the polishing wheel shaft through the first transmission belt, so that the polishing wheel sleeved on the polishing wheel shaft polishes the sphere to be polished.
[0013] Furthermore, at least two blocking members are provided on the polishing wheel shaft, and the at least two blocking members are provided at both ends of the polishing wheel.
[0014] Furthermore, the worm gear unit includes a worm gear component, a second base, and a second driving component. The worm gear component and the second driving component are connected to the second base. The worm gear component and the second driving component are connected by a second transmission belt. The second driving component drives the worm gear component to rotate through the second transmission belt, thereby causing the sphere to be polished to rotate back and forth.
[0015] Furthermore, the conveying unit is connected to the second base. The conveying unit includes a conveyor belt, a third driving member, and a tensioning member. The third driving member and the tensioning member are respectively provided at both ends of the conveyor belt. The third driving member and the tensioning member are respectively connected to the second base. The third driving member can also drive the conveyor belt to rotate the ball to be polished left and right.
[0016] Furthermore, at least two linear guide rails are provided on the side of the second base away from the worm gear, and the second base is slidably connected to the first base through the at least two linear guide rails, so that the conveying assembly can approach or move away from the polishing wheel assembly.
[0017] Furthermore, the adjustment component is provided between the first base and the second base. The adjustment component is connected to the first base and the second base respectively. The adjustment component can drive the second base to slide on the first base through the linear guide rail, so that the conveying component can move closer to or further away from the polishing wheel assembly.
[0018] Furthermore, the adjustment assembly includes an adjusting member and a pushing member that cooperate with each other. The adjusting member can drive the pushing member to move closer to or away from the polishing wheel. The adjusting member is fixedly connected to the first base, and the pushing member is fixedly connected to the second base. When the adjusting member drives the pushing member to move closer to or away from the polishing wheel, the pushing member can drive the worm gear on the second base to move closer to or away from the polishing wheel.
[0019] Furthermore, it also includes a housing and a control component. The control component is disposed on the housing and is used to control whether the polishing wheel assembly and the conveying assembly are working. The control component includes an electrically connected control element and an electrical control element. The control element is disposed on the housing, and the electrical control element is disposed inside the housing and electrically connected to the first drive element, the second drive element, and the third drive element.
[0020] This utility model provides a spherical polishing device, comprising: a polishing wheel assembly, including a polishing wheel unit, which polishes a sphere to be polished; a conveying assembly, including a worm gear unit and a conveying unit, wherein the worm gear unit drives the sphere to be polished to rotate back and forth, and the conveying unit drives the sphere to be polished to rotate left and right; and an adjusting assembly, which connects the polishing wheel assembly and the conveying assembly, and can move the conveying assembly closer to or further away from the polishing wheel assembly. With the spherical polishing device provided by this utility model, by setting the polishing wheel unit to polish the sphere to be polished, while the worm gear unit and the conveying unit drive the sphere to rotate back and forth and left and right respectively, they can combine to form a rotation along an inclined opposite direction, thereby achieving uniform polishing of the sphere to be polished from all directions without dead angles, thus achieving an ideal polishing effect. Furthermore, by setting the adjusting assembly to adjust the gap between the conveying assembly and the polishing wheel assembly, the pressure of the polishing wheel assembly on the sphere to be polished can be changed according to the characteristics of the sphere to be polished, ensuring that the ideal polishing effect is achieved without damaging the sphere. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram of the overall structure of the ball polishing device of this utility model;
[0023] Figure 2 This is a side view of the spherical polishing device of this utility model;
[0024] Figure 3 This is a schematic diagram of the polishing wheel assembly of the spherical polishing device of this utility model;
[0025] Figure 4 This is a schematic diagram of the conveying component of the ball polishing device of this utility model.
[0026] The reference numerals in the figure are as follows: 1. Polishing wheel assembly; 11. Polishing wheel unit; 111. Bearing with seat; 112. Polishing wheel shaft; 113. Polishing wheel; 114. Blocking component; 12. First base; 13. First driving component; 14. First transmission belt; 2. Conveying assembly; 21. Worm gear unit; 211. Worm gear component; 212. Second base; 213. Second driving component; 214. Second transmission belt; 22. Conveying unit; 221. Conveyor belt; 222. Third driving component; 223. Tensioning component; 3. Adjusting assembly; 31. Adjusting component; 32. Pushing component; 4. Linear guide rail. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] It should be noted that the descriptions involving "first," "second," etc., in this utility model are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.
[0029] Please refer to Figures 1 to 4 This utility model provides a spherical polishing device, comprising:
[0030] The polishing wheel assembly 1 includes a polishing wheel unit 11, which can polish the sphere to be polished.
[0031] The conveying assembly 2 includes a worm gear unit 21 and a conveying unit 22. The worm gear unit 21 can drive the ball to be polished to rotate back and forth, and the conveying unit 22 can drive the ball to be polished to rotate left and right.
[0032] Adjustment component 3 connects polishing wheel assembly 1 and conveying component 2. Adjustment component 3 can move conveying component 2 closer to or further away from polishing wheel assembly 1.
[0033] In this embodiment, the ball polishing device includes a polishing wheel assembly 1, which includes a polishing wheel unit 11, wherein the polishing wheel unit 11 is used to polish the ball to be polished.
[0034] The spherical polishing device also includes a conveying assembly 2, which comprises a worm gear unit 21 and a conveying unit 22. When the worm gear unit 21 is working, it drives the spherical object to be polished to rotate back and forth, while the conveying unit 22 drives the spherical object to rotate left and right. The combined back-and-forth and left-and-right rotation of the spherical object creates rotation along an inclined direction, thereby achieving uniform polishing of the spherical object from all directions without dead angles, thus achieving the desired polishing effect. Existing polishing devices typically polish the spherical object only in one direction, making it difficult to achieve uniform polishing from all directions. Therefore, multiple polishing operations are required. However, in this embodiment, the spherical object is polished only once, achieving uniform polishing from all directions without dead angles, thus improving polishing efficiency.
[0035] The ball polishing device also includes an adjustment component 3, which is connected to both the polishing wheel assembly 1 and the conveying component 2. The adjustment component 3 can move the conveying component 2 closer to or further away from the polishing wheel assembly 1, adjusting the gap between them and thus changing the pressure of the polishing wheel assembly 1 on the ball to be polished. When the ball is polished by the polishing wheel assembly 1 and the conveying component 2, the ball is placed between them. The conveying component 2 adjusts the orientation of the ball, while the polishing wheel assembly 1 polishes it. For easily deformable balls, the pressure of the polishing wheel assembly 1 is appropriately reduced to prevent deformation during polishing; that is, the adjustment component 3 moves the conveying component 2 away from the polishing wheel assembly 1. For balls with higher hardness, the pressure of the polishing wheel assembly 1 is appropriately increased to improve the polishing effect; that is, the adjustment component 3 moves the conveying component 2 closer to the polishing wheel assembly 1. When adjusting the gap between the polishing wheel assembly 1 and the conveying assembly 2, it is also necessary to make appropriate fine adjustments according to the actual polishing effect to ensure that the ideal polishing effect is achieved without damaging the sphere to be polished.
[0036] Furthermore, the polishing wheel assembly 1 also includes a first base 12 and a first drive member 13. The first drive member 13 is connected to one side of the first base 12 and the polishing wheel unit 11 is connected to the other side. The polishing wheel unit 11 and the first drive member 13 are connected through a first transmission belt 14. The first drive member 13 drives the polishing wheel unit 11 to rotate through the first transmission belt 14 to polish the sphere to be polished.
[0037] In this embodiment, the polishing wheel assembly 1 further includes a first base 12, on which a first driving member 13 and a polishing wheel unit 11 are connected. The first driving member 13 and the polishing wheel unit 11 are respectively disposed on both sides of the first base 12. Furthermore, the first driving member 13 and the polishing wheel unit 11 are connected by a first transmission belt 14, so that when the first driving member 13 is working, it can drive the polishing wheel unit 11 to rotate through the first transmission belt 14, thereby polishing the sphere to be polished.
[0038] In this embodiment, the first driving component 13 is specifically a motor. When the motor rotates, it drives the polishing wheel unit 11 to rotate through the first transmission belt 14, thereby polishing the sphere to be polished.
[0039] Furthermore, the polishing wheel unit 11 includes at least two seated bearings 111, a polishing wheel shaft 112, and a polishing wheel 113. The two seated bearings 111 are spaced apart at both ends of the first base 12, and the polishing wheel shaft 112 is connected between the two seated bearings 111. The polishing wheel 113 is detachably sleeved on the polishing wheel shaft 112.
[0040] In this embodiment, the polishing wheel unit 11 includes at least two seated bearings 111, which are respectively fixedly connected to the two ends of the first base 12. A polishing wheel shaft 112 is connected between the two seated bearings 111. A polishing wheel 113 is detachably sleeved on the polishing wheel shaft 112. According to the material, size and polishing requirements of the surface of the ball to be polished, the appropriate polishing wheel 113 can be quickly replaced for polishing, ensuring that a good polishing effect can be achieved for different balls to be polished.
[0041] Furthermore, the first transmission belt 14 is connected to the first driving member 13 and any of the bearing seats 111. The first driving member 13 drives the bearing seats 111 to rotate in conjunction with the polishing wheel shaft 112 through the first transmission belt 14, so that the polishing wheel 113 sleeved on the polishing wheel shaft 112 polishes the ball to be polished.
[0042] In this embodiment, the first transmission belt 14 is connected to the first driving member 13 and the bearing 111. When the first driving member 13 is working, it rotates and drives the bearing 111 to rotate through the first transmission belt 14. The bearing 111 will also rotate in conjunction with the polishing wheel shaft 112 on it, thereby realizing the operation of the polishing wheel 113, and thus the polishing wheel 113 polishes the ball to be polished.
[0043] Furthermore, at least two blocking members 114 are provided on the polishing wheel shaft 112, and the at least two blocking members 114 are provided at both ends of the polishing wheel 113.
[0044] In this embodiment, the blocking member 114 is used to prevent the polishing wheel 113 from moving on the polishing wheel shaft 112. By setting a blocking member 114 at each end of the polishing wheel 113, the polishing wheel 113 can be fixed on the polishing wheel shaft 112 so that the polishing wheel shaft 112 can better drive the polishing wheel 113 to rotate when it rotates, thereby polishing the ball to be polished.
[0045] In this embodiment, the blocking component 114 is specifically a round nut.
[0046] Furthermore, the specific steps for replacing polishing wheel 113 are as follows:
[0047] Remove the two seated bearings 111 from the first base 12, and at the same time remove the first transmission belt 14 connecting the seated bearings 111 and the first drive member 13. Then remove the seated bearings 111 connected to the first transmission belt 14 from the polishing wheel shaft 112. Loosen the blocking member 114 at the end of the polishing wheel 113 near the removed seated bearings 111, and then pull out the polishing wheel 113. Replace it with another polishing wheel 113. At this time, the replacement of the polishing wheel 113 is completed.
[0048] By replacing the polishing wheel 113 with one of suitable material and setting appropriate working parameters, such as replacing the wool cloth wheel and setting the spindle speed, conveying speed, working pressure, compensation, etc., the polishing work can be completed efficiently and with high quality, meeting diverse processing and refurbishment needs.
[0049] Furthermore, the worm unit 21 includes a worm 211, a second base 212, and a second drive member 213. The worm 211 and the second drive member 213 are connected to the second base 212. The worm 211 and the second drive member 213 are connected by a second transmission belt 214. The second drive member 213 drives the worm 211 to rotate through the second transmission belt 214, thereby causing the ball to be polished to rotate back and forth.
[0050] In this embodiment, the worm gear unit 21 includes a worm gear 211, a second base 212, and a second drive member 213. The worm gear 211 and the second drive member 213 are connected to the second base 212. When the worm gear 211 is working, it drives the ball to be polished to rotate back and forth, while the second drive member 213 drives the worm gear 211 to rotate. Specifically, the second drive member 213 is connected to the worm gear 211 through a second transmission belt 214. When the second drive member 213 rotates, it can drive the worm gear 211 to rotate through the second transmission belt 214. When the worm gear 211 rotates, it can drive the ball to be polished to rotate back and forth.
[0051] In this embodiment, the second driving component 213 is specifically a motor.
[0052] Furthermore, the conveying unit 22 is connected to the second base 212. The conveying unit 22 includes a conveyor belt 221, a third driving member 222, and a tensioning member 223. The two ends of the conveyor belt 221 are respectively provided with the third driving member 222 and the tensioning member 223. The third driving member 222 and the tensioning member 223 are respectively connected to the second base 212. The third driving member 222 can also drive the conveyor belt 221 to rotate the ball to be polished left and right.
[0053] In this embodiment, the conveying unit 22 is also connected to the second base 212. Specifically, the conveying unit 22 includes a conveyor belt 221, a third drive member 222, and a tensioning member 223. The tensioning member 223 and the third drive member 222 are respectively disposed at both ends of the conveyor belt 221. The conveyor belt 221 is used to drive the ball to be polished to rotate left and right. The third drive member 222 is used to drive the conveyor belt 221 to drive the ball to be polished to move left and right. The tensioning member 223 applies tension to ensure that the conveyor belt 221 is neither too loose nor too tight. Appropriate tension helps to maintain the smooth operation of the conveyor belt 221 and prevent it from slipping or deviating during operation, thereby ensuring the stability of the ball to be polished.
[0054] In this embodiment, the third driving component 222 is specifically a motor; the tensioning component 223 is specifically a tensioning wheel.
[0055] Furthermore, at least two linear guide rails 4 are provided on the side of the second base 212 away from the worm gear 211. The second base 212 is slidably connected to the first base 12 through the at least two linear guide rails 4, so that the conveying assembly 2 can approach or move away from the polishing wheel assembly 1.
[0056] In this embodiment, a worm gear 211 and a conveyor belt 221 are connected to one side of the second base 212, and at least two spaced linear guide rails 4 are provided on the other side. The second base 212 slides on the first base 12 through the at least two linear guide rails 4, so that the conveying component 2 can move closer to or further away from the polishing wheel assembly 1, thereby adjusting the gap between the conveying component 2 and the polishing wheel assembly 1, thereby changing the pressure of the polishing wheel assembly 1 on the ball to be polished, so as to ensure that the ideal polishing effect is achieved without damaging the ball to be polished.
[0057] Furthermore, an adjustment component 3 is provided between the first base 12 and the second base 212. The adjustment component 3 is connected to the first base 12 and the second base 212 respectively. The adjustment component 3 can drive the second base 212 to slide on the first base 12 through the linear guide rail 4, so that the conveying component 2 can move closer to or further away from the polishing wheel component 1.
[0058] In this embodiment, an adjustment component 3 is also provided between the first base 12 and the second base 212. The adjustment component 3 is connected to the first base 12 and the second base 212 respectively, that is, it is connected to the polishing wheel assembly 1 and the conveying component 2 respectively. The adjustment component 3 can drive the second base 212 to slide on the first base 12 through the linear guide rail 4, so that the conveying component 2 on the second base 212 can slide relative to the polishing wheel assembly 1 on the first base 12, thereby driving the conveying component 2 to move closer to or away from the polishing wheel assembly 1, so as to adjust the gap between the conveying component 2 and the polishing wheel assembly 1.
[0059] Furthermore, the adjustment assembly 3 includes an adjustment member 31 and a pushing member 32 that cooperate with each other. The adjustment member 31 can drive the pushing member 32 to move closer to or away from the polishing wheel 113. The adjustment member 31 is fixedly connected to the first base 12, and the pushing member 32 is fixedly connected to the second base 212. When the adjustment member 31 drives the pushing member 32 to move closer to or away from the polishing wheel 113, the pushing member 32 can drive the worm gear member 211 on the second base 212 to move closer to or away from the polishing wheel 113.
[0060] In this embodiment, the adjustment assembly 3 includes an adjustment member 31 and a pushing member 32, which are connected to each other. Rotating the adjustment member 31 can cause the pushing member 32 to slide on the first base 12, thereby moving the pushing member 32 closer to or away from the polishing wheel assembly 1. The adjustment member 31 is fixedly connected to the first base 12, and the pushing member 32 is fixedly connected to the second base 212. When the adjustment member 31 is rotated, it can cause the second base 212, to which the pushing member 32 is connected, to slide on the first base 12 via the linear guide 4. This means the adjustment member 31 can cause the worm gear 211 on the second base 212, connected to the pushing member 32, to move closer to or away from the polishing wheel 113 on the first base 12, thereby adjusting the gap between the worm gear 211 and the polishing wheel 113.
[0061] In one embodiment of the present invention, a housing and a control component are further included. The control component is disposed on the housing and is used to control whether the polishing wheel assembly and the conveying assembly are working. The control component includes an electrically connected control element and an electrical control element. The control element is disposed on the housing, and the electrical control element is disposed inside the housing and electrically connected to the first drive element 13, the second drive element 213 and the third drive element 222.
[0062] Furthermore, the working steps of the spherical polishing device are as follows:
[0063] Based on the characteristics of the sphere to be polished, a suitable polishing wheel 113 is replaced on the polishing wheel shaft 112. The first driving component 13 drives the polishing wheel shaft 112 to rotate, thereby polishing the sphere. The second driving component 213 drives the worm gear 211 to rotate, causing the sphere to rotate back and forth. The third driving component 222 drives the conveyor belt 221 to rotate the sphere left and right. Based on the characteristics of the sphere, the gap between the worm gear 211 and the polishing wheel 113 is adjusted by the adjusting component 3. For easily deformable spheres, the pressure of the polishing wheel assembly 1 on the sphere is appropriately reduced to prevent deformation during polishing. That is, the adjusting component 3 drives the conveying component 2 away from the polishing wheel assembly 1. For spheres with higher hardness, the pressure of the polishing wheel assembly 1 on the sphere is appropriately increased to improve the polishing effect.
[0064] The ball to be polished is then thrown between the worm gear 211 and the polishing wheel 113 for polishing. The polishing wheel 113 can polish the ball to be polished. The worm gear 211 and the conveyor belt 221 drive the ball to be polished back and forth and left and right, forming a combined rotation in an inclined direction, thereby achieving uniform polishing in all directions without dead angles, achieving the ideal polishing effect, and improving polishing efficiency.
[0065] This utility model provides a spherical polishing device, comprising: a polishing wheel assembly, including a polishing wheel unit, which polishes a sphere to be polished; a conveying assembly, including a worm gear unit and a conveying unit, wherein the worm gear unit drives the sphere to be polished to rotate back and forth, and the conveying unit drives the sphere to be polished to rotate left and right; and an adjusting assembly, which connects the polishing wheel assembly and the conveying assembly, and can move the conveying assembly closer to or further away from the polishing wheel assembly. With the spherical polishing device provided by this utility model, by setting the polishing wheel unit to polish the sphere to be polished, while the worm gear unit and the conveying unit drive the sphere to rotate back and forth and left and right respectively, they can combine to form a rotation along an inclined opposite direction, thereby achieving uniform polishing of the sphere to be polished from all directions without dead angles, thus achieving an ideal polishing effect. Furthermore, by setting the adjusting assembly to adjust the gap between the conveying assembly and the polishing wheel assembly, the pressure of the polishing wheel assembly on the sphere to be polished can be changed according to the characteristics of the sphere to be polished, ensuring that the ideal polishing effect is achieved without damaging the sphere.
[0066] It should be noted that the various embodiments in this utility model are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.
[0067] It should also be noted that, in the present invention, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0068] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined in the present invention may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A spherical polishing device, characterized in that, include: A polishing wheel assembly includes a polishing wheel unit, which can polish a sphere to be polished; The conveying assembly includes a worm gear unit and a conveying unit. The worm gear unit can drive the ball to be polished to rotate back and forth, and the conveying unit can drive the ball to be polished to rotate left and right. An adjustment component is provided, which connects the polishing wheel assembly and the conveying assembly, and can move the conveying assembly closer to or away from the polishing wheel assembly.
2. The spherical polishing apparatus according to claim 1, characterized in that, The polishing wheel assembly further includes a first base and a first drive member. The first drive member is connected to one side of the first base, and the polishing wheel unit is connected to the other side. The polishing wheel unit is connected to the first drive member via a first transmission belt. The first drive member drives the polishing wheel unit to rotate via the first transmission belt to polish the sphere to be polished.
3. The spherical polishing apparatus according to claim 2, characterized in that, The polishing wheel unit includes at least two seated bearings, a polishing wheel shaft, and a polishing wheel. The two seated bearings are spaced apart at both ends of the first base, and the polishing wheel shaft is connected between the two seated bearings. The polishing wheel is detachably mounted on the polishing wheel shaft.
4. The spherical polishing apparatus according to claim 3, characterized in that, The first transmission belt is connected to the first driving member and any of the belt bearings. The first driving member drives the belt bearings to rotate the polishing wheel shaft through the first transmission belt, so that the polishing wheel sleeved on the polishing wheel shaft polishes the sphere to be polished. The polishing wheel shaft is also provided with at least two blocking members, which are located at both ends of the polishing wheel.
5. The spherical polishing apparatus according to claim 3, characterized in that, The worm gear unit includes a worm gear component, a second base, and a second drive component. The worm gear component and the second drive component are connected to the second base. The worm gear component and the second drive component are connected by a second transmission belt. The second drive component drives the worm gear component to rotate through the second transmission belt, thereby causing the sphere to be polished to rotate back and forth.
6. The spherical polishing apparatus according to claim 5, characterized in that, The conveying unit is connected to the second base. The conveying unit includes a conveyor belt, a third driving component, and a tensioning component. The third driving component and the tensioning component are respectively provided at both ends of the conveyor belt. The third driving component and the tensioning component are respectively connected to the second base. The third driving component can also drive the conveyor belt to rotate the ball to be polished left and right.
7. The spherical polishing apparatus according to claim 5, characterized in that, The second base is provided with at least two linear guide rails on the side away from the worm gear, and the second base is slidably connected to the first base through the at least two linear guide rails, so that the conveying assembly can be close to or away from the polishing wheel assembly.
8. The spherical polishing apparatus according to claim 7, characterized in that, The adjustment component is provided between the first base and the second base. The adjustment component is connected to the first base and the second base respectively. The adjustment component can drive the second base to slide on the first base through the linear guide rail, so that the conveying component can move closer to or further away from the polishing wheel assembly.
9. The spherical polishing apparatus according to claim 8, characterized in that, The adjustment assembly includes an adjusting member and a pushing member that cooperate with each other. The adjusting member can drive the pushing member to move closer to or away from the polishing wheel. The adjusting member is fixedly connected to the first base, and the pushing member is fixedly connected to the second base. When the adjusting member drives the pushing member to move closer to or away from the polishing wheel, the pushing member can drive the worm gear on the second base to move closer to or away from the polishing wheel.
10. The spherical polishing apparatus according to any one of claims 2 to 9, characterized in that, It also includes a housing and a control component. The control component is disposed on the housing and is used to control whether the polishing wheel assembly and the conveying assembly are working. The control component includes an electrically connected control element and an electrical control element. The control element is disposed on the housing, and the electrical control element is disposed inside the housing and electrically connected to the first drive element, the second drive element, and the third drive element.