Portable polishing equipment for ball machining and renovating
By designing portable spherical polishing equipment, the existing equipment has solved the problems of large size, large weight and low polishing efficiency, and the equipment is light and portable and all-round uniform polishing, reducing costs and improving efficiency.
Patent Information
- Application Number
- CN202510404378.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing spherical polishing equipment is large in size, heavy in weight, fixed installation, high cost and inconvenient, unable to provide on-site maintenance services, and low polishing efficiency, making it difficult to achieve all-round uniform polishing.
A portable sphere processing and renovation polishing equipment is designed, including the main body of the equipment, with small length, width and height dimensions, compact internal structure and light weight of the whole machine. The combination of polishing wheel components and conveying components is used to achieve all-round uniform polishing of the sphere.
It realizes the light and portability of the equipment, reduces manufacturing costs, improves polishing efficiency, and achieves all-round uniform polishing of the sphere without dead corners, reduces the operating costs of merchants, changes the business model, and makes door-to-door service possible.
Smart Images

Figure CN120055946A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of polishing, and in particular to a portable polishing device for sphere processing and refurbishment. Background Art
[0002] A sphere polishing machine is a mechanical device specifically used for cleaning and polishing the surfaces of various spheres. For example, spheres with high surface requirements such as billiard balls can maintain a shiny surface after polishing, so as to enhance the user experience. However, the existing sphere polishing equipment has the following problems:
[0003] 1. Affected by the structural design, the existing large-scale polishing equipment generally has the characteristics of large volume, heavy weight, and fixed installation, with high costs and inconvenience in carrying. It is generally used in the last polishing process of the billiard production line and cannot provide on-site polishing and maintenance services for each billiard business unit. Instead, the billiard balls have to be sent back to the manufacturer for maintenance, which is time-consuming and affects the operation of each unit.
[0004] 2. When polishing spheres, the existing small-scale polishing equipment is difficult to achieve full-round and uniform polishing of the spheres due to its structure and polishing wheels, and it can only polish 1 or 2 balls at a time, resulting in low polishing efficiency.
[0005] 3. The existing polishing equipment cannot solve the above two problems simultaneously, resulting in limited scope of its commercial application. Summary of the Invention
[0006] Therefore, the purpose of the present invention is to solve at least to some extent the deficiencies in the prior art, and thus propose a portable polishing device for sphere processing and refurbishment.
[0007] To achieve the above purpose, a technical solution adopted by the present invention is as follows:
[0008] The present invention provides a portable polishing device for sphere processing and refurbishment, including a device main body. The length dimension range of the device main body is 650 mm - 750 mm, the width dimension range is 400 mm - 500 mm, and the height dimension range is 300 mm - 500 mm. The device main body includes:
[0009] A machine shell;
[0010] A polishing wheel assembly, arranged inside the machine shell and capable of rotating relative to the machine shell to polish the sphere to be polished;
[0011] A conveying assembly, arranged inside the machine shell and spaced relative to the polishing wheel assembly. The conveying assembly can rotate and reciprocate relative to the machine shell to drive the sphere to be polished to rotate forward and backward, left and right;
[0012] The control component is arranged on the machine shell and is used to control whether the polishing wheel component and the conveying component work.
[0013] Further, a first slideway is arranged at the top of the machine shell. One end of the first slideway is arranged on the machine shell, and the other end is arranged above the gap between one end of the polishing wheel component and the conveying component. A guiding member is also arranged at a position between the gaps of the polishing wheel component and the conveying component and close to one end of the first slideway.
[0014] Further, an electric component is also arranged in the first slideway. One side of one end of the first slideway is close to the gap between the polishing wheel component and the conveying component, and the electric component is arranged on the other side.
[0015] Further, an opening and a waxing port are also arranged at the top of the machine shell. The opening is correspondingly arranged above the gap between the polishing wheel component and the conveying component, and the opening is communicated with one end of the first slideway arranged above the gap between one end of the polishing wheel component and the conveying component; the waxing port is correspondingly arranged above the polishing wheel component.
[0016] Further, a second slideway and a third slideway which are connected to each other are also arranged on the side surface of the machine shell. One end of the second slideway is correspondingly arranged at the end of the gap between the polishing wheel component and the conveying component far from the first slideway. The other end of the second slideway is connected to one end of the third slideway, and a baffle is arranged at the other end of the third slideway.
[0017] Further, the polishing wheel component includes a first base, a first driving member and a polishing wheel member. The first driving member and the polishing wheel member are respectively connected to two sides of the first base. The first driving member can drive the polishing wheel member to rotate relative to the machine shell through a first transmission belt so as to polish the sphere to be polished.
[0018] Further, the polishing wheel member includes a polishing wheel shaft and a polishing wheel. The polishing wheel is detachably sleeved on the polishing wheel shaft. The polishing wheel shaft is connected to the first driving member through the first transmission belt; the diameter dimension range of the polishing wheel shaft is 180mm - 200mm.
[0019] Further, the conveying assembly includes a worm rod, a conveying member, a tensioning member, a second driving member, a third driving member, and a second base. The worm rod and the second driving member are connected to the second base, and the second driving member can drive the worm rod to rotate relative to the housing through a second transmission belt, so as to drive the sphere to be polished to rotate back and forth; the conveying member is arranged between the worm rod and the polishing wheel member, and the tensioning member and the third driving member are respectively arranged at both ends of the conveyor belt, and the tensioning member and the third driving member are connected to the second base. The third driving member can drive the conveying member to reciprocate relative to the housing, so as to drive the sphere to be polished to rotate left and right.
[0020] Further, the second base is slidably connected to the first base through a linear guide rail, and an adjusting assembly is further connected between the first base and the second base. The adjusting assembly includes an adjusting member connected to the first base and a pushing member connected to the second base. The adjusting member can drive the pushing member to approach or move away from the polishing wheel member, so that the pushing member drives the second base to move closer to or away from the polishing wheel member relative to the first base through the linear guide rail, so that the worm rod can approach or move away from the polishing wheel member.
[0021] Further, the control assembly includes a control member and an electric control member that are electrically connected. The control member is arranged on the housing, and the electric control member is arranged inside the housing and is electrically connected to the first driving member, the second driving member, and the third driving member, and the electric control member uses a 220V voltage.
[0022] The present invention provides a polishing device for portable sphere processing and refurbishment, including a device main body. The length dimension range of the device main body is 650 mm - 750 mm, the width dimension range is 400 mm - 500 mm, and the height dimension range is 300 mm - 500 mm. The device main body includes: a machine shell; a polishing wheel assembly disposed within the machine shell and capable of rotating relative to the machine shell to polish a sphere to be polished; a conveying assembly disposed within the machine shell and spaced relatively apart from the polishing wheel assembly. The conveying assembly can rotate and reciprocate relative to the machine shell to drive the sphere to be polished to rotate forward and backward, left and right; a control assembly disposed on the machine shell for controlling whether the polishing wheel assembly and the conveying assembly operate. Through the polishing device provided by the present invention, compared with traditional polishing machines, the length, width, and height dimensions of the device main body in this application are much smaller than those of conventional polishing machines, the internal structure is more compact, the overall weight of the machine is lighter, the manufacturing cost is reduced, it is more conducive to marketization, and the energy consumption is lower. It is convenient to carry along with a vehicle and can process and refurbish the sphere to be polished at any time and anywhere, making on-site services such as B2C and C2C possible, changing the business model, and reducing the operating costs of merchants. Moreover, the polishing wheel assembly can polish the sphere to be polished, and the conveying assembly can also drive the sphere to be polished to move forward and backward, left and right, thereby compounding into a rotation along an inclined reverse direction, so as to achieve uniform polishing of the sphere to be polished without dead angles in all directions, and further achieve an ideal polishing effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention, and for those of ordinary skill in the art, other drawings can be obtained based on the structures shown in these drawings without creative efforts.
[0024] Figure 1 It is a front view schematic diagram of the overall structure of the polishing device for portable sphere processing and refurbishment of the present invention;
[0025] Figure 2 It is a rear view schematic diagram of the overall structure of the polishing device for portable sphere processing and refurbishment of the present invention;
[0026] Figure 3 It is a front view schematic diagram of the internal structure of the polishing device for portable sphere processing and refurbishment of the present invention;
[0027] Figure 4 It is a rear view schematic diagram of the internal structure of the polishing device for portable sphere processing and refurbishment of the present invention;
[0028] Figure 5Schematic structural diagram of the polishing wheel assembly of the polishing device for portable sphere processing and refurbishment according to the present invention;
[0029] Figure 6 Schematic structural diagram of the conveying assembly of the polishing device for portable sphere processing and refurbishment according to the present invention.
[0030] In the figure, the reference numerals are represented as: 1, equipment main body; 11, housing; 111, first slide; 112, electric component; 113, opening; 114, waxing port; 115, second slide; 116, third slide; 117, baffle; 12, guiding component; 2, polishing wheel assembly; 21, first base; 22, first driving component; 23, polishing wheel component; 231, polishing wheel shaft; 232, polishing wheel; 24, first transmission belt; 25, pedestal bearing; 26, round nut; 3, conveying assembly; 31, worm component; 32, conveying component; 33, tensioning component; 34, second driving component; 35, third driving component; 36, second base; 37, second transmission belt; 38, linear guide rail; 4, adjusting assembly; 41, adjusting component; 42, pushing component; 5, control assembly; 51, control component; 52, electric control component; 6, sphere to be polished; 7, polished sphere. Specific embodiments
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the protection scope of the present invention.
[0032] It should be noted that the descriptions involving "first", "second", etc. in the present invention are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first", "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement them. When the combination of technical solutions appears to be contradictory or unable to be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present invention.
[0033] Please refer to Figures 1 to 6 , the present invention provides a polishing device for portable sphere processing and refurbishment, including an equipment main body 1. The length dimension range of the equipment main body 1 is 650 mm - 750 mm, the width dimension range is 400 mm - 500 mm, and the height dimension range is 300 mm - 500 mm; the equipment main body 1 includes:
[0034] Housing 11;
[0035] The polishing wheel assembly 2 is disposed in the housing 11 and can rotate relative to the housing 11 to polish the ball 6 to be polished;
[0036] The conveying assembly 3 is disposed in the housing 11 and is spaced apart from the polishing wheel assembly 2. The conveying assembly 3 can rotate and reciprocate relative to the housing 11 to drive the ball 6 to be polished to rotate forward and backward and left and right.
[0037] The control assembly 5 is disposed on the housing 11 and is used to control whether the polishing wheel assembly 2 and the conveying assembly 3 are working.
[0038] Because the traditional polishing equipment is too large, about 1.6m long, 1m wide, 1.2m high, and has a large mass of about 1-2 tons and a high power of about 7.5-15kW. The traditional polishing equipment is too large in size and mass, and is not easy to move or transport. It can only be used in the last process of the billiard production line. It cannot provide door-to-door polishing and maintenance services for billiard balls in billiard ball operating units. Billiard balls can only be sent back to the manufacturer for maintenance, which is costly and time-consuming, and affects the operation of each unit.
[0039] The portable ball processing and refurbishment polishing equipment provided in the embodiment of the present application includes an equipment body 1, the length of the equipment body 1 is in the range of 650-750mm, specifically 720mm in the present embodiment; the width is in the range of 400mm-500mm, specifically 470mm in the present embodiment; the height is in the range of 300mm-500mm, specifically 450mm in the present embodiment. The total size of the equipment body 1 is reduced, the total mass is also reduced, about 60 kg, the volume is reduced, the power is also reduced, only about 1.75kW, the energy consumption is lower, it can be conveniently carried with the vehicle (van, car, etc.), and door-to-door service can be better provided. It can also meet the needs of processing and refurbishing the polished ball 6 in different venues, such as small spaces, on-site maintenance, etc., reducing the operating costs in the billiards industry, making door-to-door services such as B2C and C2C possible, and changing the business model.
[0040] In this embodiment, the device body 1 includes a housing 11, which is made by sheet metal forming technology, divided into upper and lower layers and assembled by screw connection, and has a light and beautiful appearance and is easy to carry. In addition, multiple components can be installed inside the housing 11, which can collect dust, cotton wool, etc. generated by polishing when the device is working and reduce working noise.
[0041] Specifically, a polishing wheel assembly 2, a conveying assembly 3, and a control assembly 5 are provided inside the casing 11. The polishing wheel assembly 2 can rotate inside the casing 11 relative to the casing 11. When the polishing wheel assembly 2 rotates, it is used to polish the sphere 6 to be polished. Polishing the sphere 6 to be polished improves the surface gloss of the sphere 6 to be polished. Taking billiards as an example, it reduces the friction between the billiard ball and the cloth on the billiard table, increases the speed of the billiard ball during movement, makes it easier to perform various shots, brings a better experience to sports enthusiasts, and at the same time reduces the wear of the cloth and extends the service life of the cloth, reducing the operating costs in the billiard industry. Among them, the cloth refers to a layer of fabric covering the surface of the billiard table, usually made of wool or other synthetic fibers.
[0042] The conveying assembly 3 is arranged at an interval relative to the polishing wheel assembly 2 inside the casing 11, and there is a gap between the two, so that the sphere 6 to be polished can be arranged in the gap between the conveying assembly 3 and the polishing wheel assembly 2. Furthermore, when the polishing wheel assembly 2 rotates to polish the sphere 6 to be polished, the conveying assembly 3 can rotate and reciprocate relative to the casing 11, thereby driving the sphere 6 to be polished to rotate back and forth and left and right. Combining the back-and-forth and left-and-right rotations of the sphere 6 to be polished can form the rotation of the sphere 6 to be polished in an inclined direction, so as to achieve uniform polishing of the sphere 6 to be polished without dead angles in all directions, and further achieve an ideal polishing effect. The existing polishing equipment usually polishes the sphere 6 to be polished only in one direction, and it is difficult to achieve uniform polishing of the sphere 6 to be polished in all directions in place. Therefore, it is necessary to polish the sphere 6 to be polished multiple times, while in the embodiment of the present application, only one polishing of the sphere 6 to be polished is required to achieve uniform polishing without dead angles in all directions, improving the polishing efficiency.
[0043] Among them, the control assembly 5 is used to control whether the polishing wheel assembly 2 polishes, and whether the conveying assembly 3 drives the sphere 6 to be polished to rotate back and forth and left and right.
[0044] Furthermore, a first slide 111 is provided at the top of the casing 11. One end of the first slide 111 is arranged on the casing 11, and the other end is arranged above the gap at one end of the polishing wheel assembly 2 and the conveying assembly 3. A guiding member 12 is also provided at a position between the gaps of the polishing wheel assembly 2 and the conveying assembly 3 and close to one end of the first slide 111.
[0045] In this embodiment, a first slide 111 is provided at the top of the housing 11. The starting end of the first slide 111 is provided on the housing 11, and the end is provided above the gap between one end of the polishing wheel assembly 2 and the conveying assembly 3. The entire first slide 111 is inclined, and under the action of gravity, the sphere 6 to be polished can slide from the starting end of the first slide 111 to the end, that is, the sphere 6 to be polished can slide from the housing 11 to the gap between the polishing wheel assembly 2 and the conveying assembly 3, so that the polishing wheel assembly 2 and the conveying assembly 3 can polish the sphere 6 to be polished in all directions.
[0046] Specifically, a guide member 12 is further provided at a position near the end of the first slide 111 between the polishing wheel assembly 2 and the conveying assembly 3. The guide member 12 can guide the sphere 6 to be polished sliding out from the end of the first slide 111 to a proper position in the gap between the polishing wheel assembly 2 and the conveying assembly 3, and prevent it from sliding out from between the two gaps.
[0047] Furthermore, an electric component 112 is provided in the first slide 111. One side of one end of the first slide 111 is close to the gap between the polishing wheel assembly 2 and the conveying assembly 3, and the electric component 112 is provided on the other side.
[0048] In this embodiment, one side of the end of the first slide 111 is communicated with the gap between the polishing wheel assembly 2 and the conveying assembly 3, and the electric component 112 is provided on the other side. When a plurality of spheres 6 to be polished need to slide from the first slide 111 into the gap between the polishing wheel assembly 2 and the conveying assembly 3 for polishing, the electric component 112 will sequentially push the spheres 6 to be polished from the end of the first slide 111 into the gap between the polishing wheel assembly 2 and the conveying assembly 3 for polishing at a set time interval. Among them, the set time interval is set according to the user's needs. The electric component 112 is specifically an electromagnet in this embodiment.
[0049] Furthermore, an opening 113 and a waxing port 114 are further provided at the top of the housing 11. The opening 113 is correspondingly provided above the gap between the polishing wheel assembly 2 and the conveying assembly 3, and the opening 113 is communicated with one end of the first slide 111 provided above the gap between one end of the polishing wheel assembly 2 and the conveying assembly 3; the waxing port 114 is correspondingly provided above the polishing wheel assembly 2.
[0050] In this embodiment, an opening 113 and a waxing port 114 are further provided at the top of the casing 11 where the first slide 111 is provided. Among them, the opening 113 is correspondingly provided above the gap between the polishing wheel assembly 2 and the conveying assembly 3, and the end of the first slide 111 is communicated with the opening 113. Thus, the sphere 6 to be polished can slide from the end of the first slide 111 into the opening 113 and enter the gap between the polishing wheel assembly 2 and the conveying assembly 3 for polishing. And a long strip opening 113 is opened, so that the user can observe the polishing condition of the sphere 6 to be polished.
[0051] A waxing port 114 is further provided at the top of the casing 11. The waxing port 114 is correspondingly provided above the polishing wheel assembly 2. The waxing port 114 is used for inserting polishing wax. The user abuts the polishing wax against the polishing wheel assembly 2. The sizes of the waxing port 114 and the polishing wheel assembly 2 correspond to each other, so that the polishing wax can be evenly applied to the surface of the polishing wheel assembly 2, so that the polishing wheel assembly 2 can polish the sphere 6 to be polished evenly.
[0052] Further, a second slide 115 and a third slide 116 which are connected to each other are further provided on the side surface of the casing 11. One end of the second slide 115 is correspondingly provided at the end of the gap between the polishing wheel assembly 2 and the conveying assembly 3 away from the first slide 111. The other end of the second slide 115 is connected to one end of the third slide 116. A baffle 117 is provided at the other end of the third slide 116.
[0053] In this embodiment, a second slide 115 and a third slide 116 which are communicated with each other are further provided on the side surface of the casing 11. The starting end of the second slide 115 is correspondingly provided between the gaps between the polishing wheel assembly 2 and the conveying assembly 3, that is, both ends of the gap between the polishing wheel assembly 2 and the conveying assembly 3 are correspondingly provided at the end of the first slide 111 and the starting end of the second slide 115 respectively. The sphere 6 to be polished enters the gap between the polishing wheel assembly 2 and the conveying assembly 3 from the end of the first slide 111 for polishing. After polishing, the sphere 6 to be polished will enter the starting end of the second slide 115 and slide from the second slide 115 into the third slide 116. A baffle 117 is provided at the end of the third slide 116, which can prevent the polished sphere 7 from sliding out of the third slide 116. Among them, the second slide 115 and the third slide 116 are inclined along the side surface of the casing 11, so that the polished sphere can slide from the starting end of the second slide 115 to the end of the third slide 116 under the action of gravity.
[0054] Further, the polishing wheel assembly 2 includes a first base 21, a first driving member 22 and a polishing wheel member 23. The first driving member 22 and the polishing wheel member 23 are respectively connected to both sides of the first base 21. The first driving member 22 can drive the polishing wheel member 23 to rotate relative to the casing 11 through a first transmission belt 24 to polish the sphere 6 to be polished.
[0055] In this embodiment, the polishing wheel assembly 2 includes a first base 21, a first driving member 22 and a polishing wheel member 23. Among them, the first driving member 22 and the polishing wheel member 23 are respectively arranged on both sides of the first base 21, and the first driving member 22 and the polishing wheel member 23 are connected by a first transmission belt 24. Thus, when the first driving member 22 works, the polishing wheel member 23 can be driven by the first transmission belt 24 to rotate relative to the machine housing 11, so as to polish the sphere 6 to be polished. Among them, polishing wax is applied to the polishing wheel member 23 through the waxing port 114. Thus, when the polishing wheel member 23 coated with wax rotates, the sphere 6 to be polished is polished and refurbished.
[0056] Among them, the first driving member 22 is specifically a motor in this embodiment; and the machine housing 11 is divided into an upper housing and a lower housing. The first driving member 22 is arranged in the lower housing, while the polishing wheel member 23 is arranged in the upper housing, so that the polishing device looks more beautiful.
[0057] Furthermore, the polishing wheel member 23 includes a polishing wheel shaft 231 and a polishing wheel 232. The polishing wheel 232 is detachably sleeved on the polishing wheel shaft 231, and the polishing wheel shaft 231 is connected to the first driving member 22 through the first transmission belt 24; the diameter size range of the polishing wheel shaft 231 is 180 mm - 200 mm.
[0058] In this embodiment, the polishing wheel member 23 includes a polishing wheel shaft 231, and a polishing wheel 232 is detachably connected to the polishing wheel shaft 231. The polishing wheel 232 is used to polish the sphere 6 to be polished. Among them, polishing wax is also applied to the polishing wheel 232 through the waxing port 114. The polishing wheel shaft 231 is connected to the first driving member 22 through the first transmission belt 24. That is, when the first driving member 22 works, the first driving member 22 drives the polishing wheel shaft 231 to rotate through the first transmission belt 24, and then drives the polishing wheel 232 thereon to polish the sphere 6 to be polished. Among them, the polishing wheel 232 is detachably sleeved on the polishing wheel shaft 231. That is, according to the material, size and polishing requirements of the surface of the sphere 6 to be polished, by detachably sleeving the polishing wheel 232 on the polishing wheel shaft 231, the appropriate polishing wheel 232 can be quickly replaced for polishing, ensuring good polishing effects for different spheres 6 to be polished.
[0059] Wherein, both ends of the polishing wheel shaft 231 are respectively connected with a pedestal bearing 25, and are connected to the first base 21 through the two pedestal bearings 25. Wherein, the pedestal bearing 25 and the first driving member 22 are connected through a first transmission belt 24. When the first driving member 22 works, it drives the first transmission belt 24 to drive the polishing wheel shaft 231 to rotate, thereby driving the polishing wheel 232 thereon to rotate. Two round nuts 26 are further arranged on the polishing wheel shaft 231. The two round nuts 26 are respectively arranged at both ends of the polishing wheel 232 and are used to fix the polishing wheel 232 on the polishing wheel shaft 231 to prevent the polishing wheel 232 from moving on the polishing wheel shaft 231, thereby affecting the polishing effect on the sphere 6 to be polished.
[0060] The diameter of the traditional polishing wheel shaft 231 is about 300 mm. However, the overall size of the polishing device in the embodiment of the present application is reduced. Therefore, the diameter size range of the polishing wheel shaft 231 is between 180 mm and 200 mm, and its outer diameter size is specifically 185 mm. The diameter size of the polishing wheel shaft 231 is smaller than that of the traditional polishing wheel part, which enables the polishing device to be portable.
[0061] Further, the conveying assembly 3 includes a worm member 31, a conveying member 32, a tensioning member 33, a second driving member 34, a third driving member 35 and a second base 36. The worm member 31 and the second driving member 34 are connected to the second base 36, and the second driving member 34 can drive the worm member 31 to rotate relative to the machine housing 11 through a second transmission belt 37 to drive the sphere 6 to be polished to rotate back and forth; the conveying member 32 is arranged between the worm member 31 and the polishing wheel member 23. Tensioning members 33 and a third driving member 35 are respectively arranged at both ends of the conveyor belt, and the tensioning member 33 and the third driving member 35 are connected to the second base 36. The third driving member 35 can drive the conveying member 32 to move reciprocally relative to the machine housing 11 to drive the sphere 6 to be polished to rotate left and right.
[0062] In this embodiment, the conveying assembly 3 includes a worm member 31, a second driving member 34, a conveying member 32, a tensioning member 33, a third driving member 35 and a second base 36. Among them, the worm member 31 and the second driving member 34 are arranged on the second base 36. When the worm member 31 works, it is used to drive the sphere 6 to be polished to rotate back and forth, and the second driving member 34 is used to drive the worm member 31 to rotate. Specifically, the second driving member 34 and the worm member 31 are connected through a second transmission belt 37. When the second driving member 34 rotates and works, the second driving member 34 can drive the worm member 31 to rotate through the second transmission belt 37. When the worm member 31 rotates, it can drive the sphere 6 to be polished to rotate back and forth.
[0063] Wherein, the second driving member 34 is specifically a motor in this embodiment.
[0064] In this embodiment, the tension member 33 and the third driving member 35 are respectively arranged at both ends of the conveying member 32. The tension member 33 and the third driving member 35 are respectively connected to the second base 36. The conveying member 32 is used to drive the sphere 6 to be polished to rotate left and right, and the third driving member 35 is used to drive the conveying member 32 to drive the sphere 6 to be polished to move left and right. The tension member 33 ensures that the conveyor belt is neither too loose nor too tight by applying tension. Appropriate tension helps to maintain the stable operation of the conveying member 32 and prevent phenomena such as slipping and deviation during operation, thereby ensuring the stability of the sphere 6 to be polished.
[0065] Among them, the conveying member 32 is specifically a conveyor belt in this embodiment; the third driving member 35 is specifically a motor in this embodiment; the tension member 33 is specifically a tension pulley in this embodiment. And the machine shell 11 is divided into upper and lower shells. The second driving member 34 is arranged in the lower shell, while the worm rod member 31 and the conveying member 32 are arranged in the upper shell, making the polishing equipment look more beautiful.
[0066] Further, the second base 36 is slidably connected to the first base 21 through a linear guide rail 38. An adjusting assembly 4 is also connected between the first base 21 and the second base 36. The adjusting assembly 4 includes an adjusting member 41 connected to the first base 21 and a pushing member 42 connected to the second base 36. The adjusting member 41 can drive the pushing member 42 to approach or move away from the polishing wheel member 23, so that the pushing member 42 drives the second base 36 to move closer to or away from the polishing wheel member 23 relative to the first base 21 through the linear guide rail 38, so that the worm rod member 31 can approach or move away from the polishing wheel member 23.
[0067] In this embodiment, the second base 36 makes a sliding movement on the first base 21 through the linear guide rail 38, so that the conveying assembly 3 connected to the second base 36 can approach or move away from the polishing wheel assembly 2 on the first base 21, thereby adjusting the gap between the conveying assembly 3 and the polishing wheel assembly 2, and then changing the pressure of the polishing wheel assembly 2 on the sphere 6 to be polished, so as to ensure an ideal polishing effect without damaging the sphere 6 to be polished.
[0068] Specifically, an adjusting assembly 4 is also connected between the second base 36 and the first base 21. According to the characteristics of the sphere 6 to be polished, the gap between the worm rod member 31 and the polishing wheel 232 is adjusted through the adjusting assembly 4. For spheres that are easily deformed, the pressure of the polishing wheel assembly 2 on the sphere 6 to be polished is appropriately reduced to prevent the sphere 6 to be polished from deforming during the polishing process, that is, the conveying assembly 3 is driven away from the polishing wheel assembly 2 through the adjusting assembly 4; for the sphere 6 to be polished with higher hardness, the pressure of the polishing wheel assembly 2 on the sphere 6 to be polished can be appropriately increased to improve the polishing effect.
[0069] Specifically, the adjusting assembly 4 includes an adjusting member 41 and a pushing member 42. The adjusting member 41 and the pushing member 42 are cooperatively connected. Rotating the adjusting member 41 can drive the pushing member 42 to slide on the first base 21, that is, drive the pushing member 42 to approach or move away from the polishing wheel assembly 2. Among them, the adjusting member 41 is fixedly connected to the first base 21, and the pushing member 42 is fixedly connected to the second base 36. When the adjusting member 41 is rotated, the adjusting member 41 can drive the second base 36 connected to the pushing member 42 to slide on the first base 21 through the linear guide 38, that is, the adjusting member 41 can drive the worm rod member 31 on the second base 36 connected to the pushing member 42 to move closer to or away from the polishing wheel 232 on the first base 21, so as to adjust the gap between the worm rod member 31 and the polishing wheel 232.
[0070] Furthermore, the control assembly 5 includes a control member 51 and an electric control member 52 that are electrically connected. The control member 51 is arranged on the machine shell 11, and the electric control member 52 is arranged inside the machine shell 11 and is electrically connected to the first driving member, the second driving member 34, and the third driving member 35, and the electric control member 52 uses a 220V voltage.
[0071] In this embodiment, the control assembly 5 includes a control member 51 and an electric control member 52 that are electrically connected. The control member 51 is arranged on the machine shell 11. In this embodiment, the control member 51 is specifically a display screen. The control interface is displayed on the display screen, which integrates PLC, switches, parameter settings, etc., enabling the operator to easily and quickly complete various operations. The operation parameter settings are mainly used to control the appropriate working parameters of the first driving member 22, the second driving member 34, and the third driving member 35 to drive the polishing wheel member 23, the worm rod member 31, and the conveying member 32, such as setting the rotation speed of the polishing wheel member 23, the conveying speed of the conveying member 32, and the working pressure, etc., to ensure efficient and high-quality polishing work, meet diverse processing and refurbishment requirements, and achieve an ideal polishing effect on the sphere 6 to be polished.
[0072] The electric control member 52 is used to provide power. In this embodiment, the electric control member 52 is specifically an electric control box. The power supply can be selected from 220V mains electricity, rechargeable lithium batteries, external power discharge of new energy vehicles, generators, etc., thereby improving the portability of the device. Since traditional polishing equipment usually uses a three-phase 380V power supply, it needs to be fixedly placed at a certain position and use 380V voltage and cannot be moved arbitrarily. However, the overall size of the embodiment of the present application becomes smaller, and 220V mains electricity is used, enabling on-site processing and refurbishment of the sphere to be polished, thus improving the portability of the portable sphere processing and refurbishment polishing equipment in the embodiment of the present application.
[0073] Furthermore, the specific implementation steps of the portable sphere processing and refurbishment polishing equipment in the embodiment of the present application are as follows:
[0074] 1. When using this polishing equipment for polishing, first select a polishing wheel 232 made of a suitable material or a new one according to the material, size and specific polishing requirements of the sphere 6 to be polished. When replacing the polishing wheel 232, remove the two pedestal bearings 25 from the first base 21. At the same time, take out the first transmission belt 24 connecting the pedestal bearing 25 and the first driving member 22, and then remove the pedestal bearing 25 connected with the first transmission belt 24 from the polishing wheel shaft 231. Loosen the round nut 26 at one end of the polishing wheel 232 close to the removed pedestal bearing 25, and then the polishing wheel 232 can be pulled out from the polishing wheel shaft 231 to replace with other polishing wheels 232.
[0075] 2. Adjust the working pressure. The adjusting member 41 drives the conveying assembly 3 to move back and forth, realizing the adjustment of the gap between the worm rod member 31 and the polishing wheel 232, thereby changing the pressure of the polishing wheel 232 on the sphere 6 to be polished. For spheres that are prone to deformation, the pressure of the polishing wheel 232 on the sphere 6 to be polished should be appropriately reduced to prevent the sphere 6 to be polished from deforming during the polishing process; for spheres 6 to be polished with higher hardness, the pressure of the polishing wheel 232 on the sphere 6 to be polished can be appropriately increased to improve the polishing effect. When adjusting the working pressure, it is also necessary to make appropriate fine-tuning according to the actual polishing effect to ensure an ideal polishing effect without damaging the sphere 6 to be polished.
[0076] 3. Apply polishing wax. Start the first driving member 22. The first driving member 22 rotates and drives the polishing wheel 232 to rotate through the first transmission belt 24. Hold the strip-shaped polishing wax by hand, insert it into the waxing port 114 and press against the rotating polishing wheel 232 to move back and forth in the left-right direction. The polishing wax is evenly coated on the surface of the polishing wheel 232. At this time, the polishing equipment is ready.
[0077] 4. Start the polishing equipment. Set various parameters on the display screen on the machine shell 11, and then start. The first driving member 22 rotates and drives the polishing wheel 232 to rotate through the first transmission belt 24. The second driving member 34 rotates and drives the worm rod member 31 to rotate through the second transmission belt 37. The third driving member 35 rotates to drive the conveying member 32 to move. At this time, the user puts one or more spheres 6 to be polished into the first slide 111. Under the action of gravity, the spheres 6 to be polished roll to the end of the first slide 111. The electric member 112 will push the spheres 6 to be polished into the gap between the worm rod member 31 and the polishing wheel 232 in sequence according to the set interval time. Subsequently, the guiding member 12 guides the spheres 6 to be polished to the expected position. The working polishing wheel 232, worm rod member 31 and conveyor belt can keep the spheres 6 to be polished rotating and moving stably and evenly in the gap between the worm rod member 31 and the polishing wheel 232, so as to achieve uniform polishing of all aspects of the sphere surface and improve the polishing effect.
[0078] 5. Unloading. When polishing is completed, the polished sphere 7 will be taken out by the conveyor 32, and then pass through the second slide 115 and the third slide 116 in sequence. Under the action of gravity, the polished sphere 7 rolls to the end of the third slide 116 and stops. Finally, the user will observe the polished sphere 7. If the polishing effect is found to be poor or other problems occur, the polishing machine can be stopped at any time, and the rotation speed of the polishing wheel 232 and the worm member 31, the linear speed or working pressure of the conveyor 32 and other parameters can be readjusted to continue polishing until the polishing effect is OK.
[0079] The present invention provides a portable polishing device for ball processing and renovation, comprising a device main body, wherein the length dimension of the device main body is in the range of 650mm-750mm, the width dimension is in the range of 400mm-500mm, and the height dimension is in the range of 300mm-500mm; the device main body comprises: a casing; a polishing wheel assembly, which is arranged in the casing and can rotate relative to the casing to polish the ball to be polished; a conveying assembly, which is arranged in the casing and is spaced relative to the polishing wheel assembly, and the conveying assembly can rotate and reciprocate relative to the casing to drive the ball to be polished to rotate forward and backward and left and right; and a control assembly, which is arranged on the casing and is used to control whether the polishing wheel assembly and the conveying assembly are working. The polishing equipment provided by the present invention is much smaller in length, width and height than conventional polishing machines, and the internal structure is more compact and the weight of the whole machine is lighter, which reduces the manufacturing cost and is more conducive to marketization. It also has lower energy consumption and is convenient to carry in a vehicle, and can process and refurbish the sphere to be polished anytime and anywhere, making door-to-door services such as B2C and C2C possible, changing the business model and reducing the operating costs of merchants. The polishing wheel assembly can realize the polishing of the sphere to be polished, and the conveying assembly can also realize the forward and backward and left and right movement of the sphere to be polished, thereby compounding into a rotation in the opposite direction of the tilt, so that the sphere to be polished can be uniformly polished in all directions without dead ends, thereby achieving an ideal polishing effect.
[0080] It should be noted that the various embodiments in the present invention are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same and similar parts between the various embodiments can be referenced to each other.
[0081] It should also be noted that in the present disclosure of the invention, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, such that a process, method, article or apparatus that comprises a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or apparatus. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or apparatus that comprises the element.
[0082] The foregoing description of the disclosed embodiments enables those skilled in the art to implement or use the present disclosure of the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined in the present disclosure of the invention may be implemented in other embodiments without departing from the spirit or scope of the present disclosure of the invention. Therefore, the present disclosure of the invention will not be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed in the present disclosure of the invention.
Claims
1. A portable polishing device for ball processing and refurbishment, characterized in that: The device comprises a main body, the length of which is in the range of 650 mm to 750 mm, the width of which is in the range of 400 mm to 500 mm, and the height of which is in the range of 300 mm to 500 mm; the main body comprises: chassis; A polishing wheel assembly is disposed in the housing and can rotate relative to the housing to polish the ball to be polished; A conveying assembly is arranged in the housing and is spaced apart from the polishing wheel assembly. The conveying assembly can rotate and reciprocate relative to the housing to drive the ball to be polished to rotate forward and backward and left and right; A control component is arranged on the housing and is used to control whether the polishing wheel component and the conveying component are working.
2. The portable ball processing and refurbishing polishing device according to claim 1, characterized in that: A first slide is arranged on the top of the casing, one end of the first slide is arranged on the casing, and the other end is arranged above the gap between the polishing wheel assembly and one end of the conveying assembly. A guide member is also arranged between the gap between the polishing wheel assembly and the conveying assembly and at a position close to one end of the first slide.
3. The portable ball processing and refurbishing polishing device according to claim 2, characterized in that: An electric component is also arranged in the first slide. One side of one end of the first slide is close to the gap between the polishing wheel assembly and the conveying assembly, and the electric component is arranged on the other side.
4. The portable ball processing and refurbishing polishing device according to claim 2, characterized in that: The top of the casing is also provided with an opening and a waxing port, the opening is correspondingly arranged above the gap between the polishing wheel assembly and the conveying assembly, and the opening is connected to one end of the first slide arranged above the gap between the polishing wheel assembly and one end of the conveying assembly; the waxing port is correspondingly arranged above the polishing wheel assembly.
5. The portable ball processing and refurbishing polishing device according to claim 3, characterized in that: A second slide and a third slide connected to each other are also provided on the side of the casing, one end of the second slide is arranged corresponding to the gap between the polishing wheel assembly and the conveying assembly away from one end of the first slide, the other end of the second slide is connected to one end of the third slide, and the other end of the third slide is provided with a baffle.
6. The portable ball processing and refurbishing polishing device according to claim 1, characterized in that: The polishing wheel assembly includes a first base, a first driving member and a polishing wheel member. The first driving member and the polishing wheel member are respectively connected to the two sides of the first base. The first driving member can drive the polishing wheel member to rotate relative to the casing through a first transmission belt to polish the ball to be polished.
7. The portable ball processing and refurbishing polishing device according to claim 6, characterized in that: The polishing wheel component comprises a polishing wheel shaft and a polishing wheel. The polishing wheel shaft is detachably sleeved with the polishing wheel. The polishing wheel shaft is connected to the first driving member via the first transmission belt. The diameter of the polishing wheel shaft ranges from 180mm to 200mm.
8. The portable ball processing and refurbishing polishing device according to claim 6, characterized in that: The conveying assembly includes a worm member, a conveying member, a tensioning member, a second driving member, a third driving member and a second base. The worm member and the second driving member are connected to the second base, and the second driving member can drive the worm member to rotate relative to the housing through a second transmission belt to drive the ball to be polished to rotate back and forth; the conveying member is arranged between the worm member and the polishing wheel member, and the tensioning member and the third driving member are respectively arranged at both ends of the conveying belt, and the tensioning member and the third driving member are connected to the second base. The third driving member can drive the conveying member to reciprocate relative to the housing to drive the ball to be polished to rotate left and right.
9. The portable ball processing and refurbishing polishing device according to claim 8, characterized in that: The second base is slidably connected to the first base through a linear guide rail. An adjusting component is also connected between the first base and the second base. The adjusting component includes an adjusting member connected to the first base and a pushing member connected to the second base. The adjusting member can drive the pushing member to approach or move away from the polishing wheel member, so that the pushing member can link the second base to move closer to or away from the polishing wheel member on the first base through the linear guide rail, so that the worm member can approach or move away from the polishing wheel member.
10. The portable ball processing and refurbishing polishing device according to claim 9, characterized in that: The control assembly includes an electrically connected control member and an electric control member, wherein the control member is arranged on the housing, the electric control member is arranged in the housing and is electrically connected to the first drive member, the second drive member and the third drive member, and the electric control member adopts a 220V voltage.
Citation Information
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