Polishing device for nonmetallic mineral product processing

By designing an automated grinding device for non-metallic mineral products, and utilizing electric push rods, drive mechanisms, and rotation mechanisms, automated grinding and position adjustment of non-metallic mineral products have been achieved. This solves the problem that existing devices cannot quickly adjust and fix irregularly shaped products, and improves grinding efficiency and applicability.

CN224158206UActive Publication Date: 2026-04-24NANYANG YIXIN NEW MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANYANG YIXIN NEW MATERIALS CO LTD
Filing Date
2024-12-12
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing non-metallic mineral product grinding equipment cannot achieve automated grinding, and it is difficult to quickly adjust the position and fix irregularly shaped non-metallic mineral products.

Method used

A grinding device comprising an operating table, clamping plate, clamping component, grinding machine, and adjustment mechanism is designed. It realizes automated grinding and position adjustment of non-metallic mineral products through electric push rod, drive mechanism, and rotation mechanism. The clamping component is suitable for non-metallic mineral products with regular and irregular shapes.

Benefits of technology

It improves the grinding efficiency and applicability of non-metallic mineral products, and realizes the rapid clamping, fixing and position adjustment of non-metallic mineral products, replacing manual hand-grinding.

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Abstract

The utility model discloses a non-metallic mineral product processing polishing device which comprises an operation table, the top of the operation table is connected with a placing table through a rotating mechanism, the top of the placing table is connected with two sets of clamping plates through a driving mechanism, the tops of the two sets of clamping plates are provided with clamping pieces, and the upper portion of the placing table is connected with an electric push rod through an adjusting mechanism. The grinding machine can be driven by the electric push rod to move downwards and conduct grinding operation, the positions of the non-metallic mineral products and the grinding machine can be adjusted through the rotating mechanism and the adjusting mechanism, and the grinding machine is driven by the driving mechanism, the two sets of clamping plates and the clamping pieces to conduct grinding operation. The non-metallic mineral product polishing device is simple in structure and convenient to use, can be suitable for rapidly clamping, fixing and loosening non-metallic mineral products of different rules, can replace manual handheld polishing through arrangement, greatly improves the polishing efficiency, meanwhile, improves the applicability of the device, and facilitates rapid adjustment of the position state of the clamped and fixed non-metallic mineral products.
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Description

Technical Field

[0001] This utility model relates to the field of non-metallic mineral product processing technology, specifically a grinding device for processing non-metallic mineral products. Background Technology

[0002] Non-metallic minerals refer to minerals that do not have a metallic or submetallic luster, are colorless or have various light colors, are transparent or translucent under a thin sheet of 0.03 mm, and have poor electrical and thermal conductivity. They include most oxygen-containing salt minerals as well as some oxide and halide minerals. Most of them are rock-forming minerals, while some are ore minerals that constitute various non-metallic, light metal, rare metal and rare earth metal deposits.

[0003] Articles made from non-metallic minerals are called non-metallic mineral products. Non-metallic mineral products need to be polished during the production process. Most existing polishing devices are hand-held, which not only cannot effectively automate the polishing process, but also make it inconvenient to quickly adjust the position of non-metallic mineral products and cannot effectively clamp and fix irregularly shaped non-metallic mineral products.

[0004] Therefore, a grinding device for processing non-metallic mineral products is needed to solve the problems mentioned in the background art. Utility Model Content

[0005] To address the above problems, this utility model provides a grinding device for processing non-metallic mineral products.

[0006] This utility model provides the following technical solution: a grinding device for processing non-metallic mineral products, including an operating table, a placement platform above the operating table, the bottom of the placement platform being connected to the operating table via a rotating mechanism for easy rotation, a transmission chamber on the inner side of the placement platform, and inspection ports on both sides of the transmission chamber, two sets of clamping plates for clamping and fixing regularly shaped non-metallic mineral products being slidably connected to the top of the placement platform, a driving mechanism for the two sets of clamping plates to move in opposite directions being provided inside the transmission chamber, clamping members for clamping and fixing irregularly shaped non-metallic mineral products being provided on the top of the two sets of clamping plates, a grinding machine above the placement platform, the grinding machine being installed at the bottom of a mounting base, one end of the mounting base being connected to one end of an electric push rod, and the electric push rod being connected to a vertical plate on one side of the top of the operating table via an adjustment mechanism for easy position adjustment.

[0007] In a further technical solution, the driving mechanism includes an electric telescopic rod. The top of the placement platform has two sets of movable slots. The inner side of the transmission chamber has two sets of sliding rods. The bottom of each of the two sets of clamping plates has a movable seat near both ends. One end of each of the two sets of movable seats passes through the inner side of the two sets of movable slots and is slidably connected to the two sets of sliding rods. One side of each of the two diagonally opposite sets of movable seats has a rack plate. Both sets of rack plates mesh with a spur gear. A rotating shaft passes through the interior of the spur gear and is rotatably connected to the inner side of the transmission chamber. The bottom of one set of movable seats has a connecting plate. One side of the connecting plate is connected to one end of the electric telescopic rod. The electric telescopic rod is installed at the bottom inner side of the transmission chamber.

[0008] In a further technical solution, the clamping component includes clamping rollers, and two sets of clamping rollers are installed on the top of each of the two sets of clamping plates. Multiple sets of threaded grooves are opened on the top of each of the two sets of clamping plates, and the bottom ends of the two sets of clamping rollers are adapted to the multiple sets of threaded grooves.

[0009] In a further technical solution, the rotating mechanism includes a drive motor, a groove is provided on the top of the operating table, a rotating cylinder is rotatably connected to the center of the inner side of the groove, one end of the rotating cylinder is connected to the bottom of the placement platform, a worm gear is fixedly sleeved on the outer ring of the rotating cylinder, the worm gear meshes with a worm rotatably connected to the inner side of the groove, and one end of the worm is connected to the output end of the drive motor installed on one side of the operating table.

[0010] In a further technical solution, the adjustment mechanism includes a first handwheel and a second handwheel. Two sets of first support rods are slidably connected to a first adjustment seat on one side of the upright plate near the top. The other ends of the two sets of first support rods are connected via a fixed plate. A first screw is threadedly connected to the first adjustment seat. One end of the first screw is rotatably connected to one side of the upright plate, and the other end of the first screw extends to the outside of the fixed plate and is connected to the first handwheel. A connecting frame is provided at the bottom of the first adjustment seat. Two sets of second support rods are slidably connected to a second adjustment seat on the inner side of the bottom of the connecting frame. An electric push rod is installed at the bottom of the second adjustment seat. A second screw is threadedly connected to the second adjustment seat. The second screw is rotatably connected to the inner side of the connecting frame, and one end of the second screw extends to the outside of the connecting frame and is connected to the second handwheel.

[0011] In a further technical solution, locking bolts are installed on one side of both the first adjusting seat and the second adjusting seat.

[0012] The beneficial effects of this utility model are:

[0013] 1. This utility model uses an electric push rod to move the grinder downward to the working surface and grind non-metallic mineral products. The rotation mechanism can adjust the orientation of the clamped non-metallic mineral products, and the adjustment mechanism can flexibly adjust the position of the grinder. Thus, the above structure can replace manual hand-held grinding, greatly improving the grinding efficiency of non-metallic mineral products.

[0014] 2. This utility model, by activating the electric telescopic rod, can move the connecting plate to one side. The connecting plate can then move a set of clamping plates and two sets of moving seats along two sets of sliding rods to one side, thereby moving a set of rack plates to one side. The rack plates, through meshing with the sprocket, can drive the sprocket to rotate. The sprocket, through meshing with another set of rack plates, can drive the other set of rack plates to move in the opposite direction. The other set of rack plates can then drive the other set of clamping plates to move in the opposite direction. Thus, when the two sets of clamping plates are close to each other, the placed non-metallic mineral products can be quickly clamped and fixed. When the two sets of clamping plates are far apart, the non-metallic mineral products can be easily and quickly released. Therefore, this design facilitates the rapid adjustment of the position of the clamped and fixed non-metallic mineral products.

[0015] 3. This utility model, with its four sets of clamping rollers, can be used to clamp and fix irregular non-metallic mineral products. The multiple sets of threaded grooves allow for easy adjustment of the distance between the corresponding two sets of clamping rollers, facilitating the clamping and fixing of irregular non-metallic mineral products of different sizes. Thus, the applicability of the device is greatly improved. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0017] Figure 2 This is a bottom view of the present invention;

[0018] Figure 3 This is a side view and a top view of the present invention;

[0019] Figure 4 This is a side sectional view of the present invention;

[0020] Figure 5 This is a sectional view of the side of the placement platform.

[0021] Figure 6 for Figure 2 Enlarged view of part A in the image;

[0022] Figure 7 for Figure 5 Enlarged view of part B in the image.

[0023] In the diagram: 1. Operating table, 2. Groove, 3. Rotary drum, 4. Placement platform, 5. Worm gear, 6. Worm shaft, 7. Drive motor, 8. Transmission chamber, 9. Inspection port, 10. Movable groove, 11. Slide rod, 12. Clamping plate, 13. Moving seat, 14. Rack plate, 15. Circular gear, 16. Rotating shaft, 17. Connecting plate, 18. Electric telescopic rod, 19. Clamping roller, 20. Threaded groove, 21. Vertical plate, 22. First support rod, 23. Fixed plate, 24. First adjusting seat, 25. First screw, 26. First handwheel, 27. Connecting frame, 28. Second support rod, 29. Second adjusting seat, 30. Second screw, 31. Second handwheel, 32. Locking bolt, 33. Electric push rod, 34. Mounting seat, 35. Grinding machine. Detailed Implementation

[0024] The embodiments of this utility model will be further described below with reference to the accompanying drawings.

[0025] Example: Refer to Figures 1-7 A grinding device for processing non-metallic mineral products includes an operating table 1, a placement platform 4 above the operating table 1, the bottom of the placement platform 4 being connected to the operating table 1 via a rotating mechanism for easy rotation, a transmission chamber 8 being provided on the inner side of the placement platform 4, and inspection ports 9 being provided on both sides of the transmission chamber 8, two sets of clamping plates 12 being slidably connected to the top of the placement platform 4 for clamping and fixing non-metallic mineral products of regular shape, a driving mechanism being provided on the inner side of the transmission chamber 8 for easy reverse movement of the two sets of clamping plates 12, and clamping components being provided on the top of the two sets of clamping plates 12 for easy clamping and fixing non-metallic mineral products of irregular shape, a grinding machine 35 being provided above the placement platform 4, the grinding machine 35 being installed at the bottom of a mounting base 34, one end of the mounting base 34 being connected to one end of an electric push rod 33, and the electric push rod 33 being connected to a vertical plate 21 located on one side of the top of the operating table 1 via an adjustment mechanism for easy position adjustment.

[0026] Specifically, the operating table 1 provides a stable working platform for the processing and grinding of non-metallic mineral products. The drive mechanism enables two sets of clamping plates 12 to quickly clamp and release regular non-metallic mineral products. The clamping components are suitable for clamping and fixing irregular non-metallic mineral products. The electric push rod 33 moves the grinding machine 35 downward to the working surface to grind the non-metallic mineral products. The rotation mechanism allows for the orientation adjustment of the clamped non-metallic mineral products. The adjustment mechanism allows for flexible adjustment of the position of the grinding machine 35. Thus, the above structure can replace manual hand-held grinding, greatly improving the grinding efficiency of non-metallic mineral products. At the same time, it improves the applicability of the device and facilitates the rapid adjustment of the position of the clamped non-metallic mineral products.

[0027] The drive mechanism includes an electric telescopic rod 18. Two sets of movable slots 10 are provided on the top of the placement platform 4. Two sets of sliding rods 11 are provided inside the transmission chamber 8. Movable seats 13 are provided near the ends of the bottom of the two sets of clamping plates 12. One end of each set of movable seats 13 passes through the inner side of the two sets of movable slots 10 and is slidably connected to the two sets of sliding rods 11. Each of the two diagonally opposite sets of movable seats 13 has a rack plate 14 on one side, which meshes with a spur gear 15. A rotating shaft 16 passes through the interior of the spur gear 15 and is rotatably connected to the inner side of the transmission chamber 8. A connecting plate 17 is provided at the bottom of one set of movable seats 13, and one side of the connecting plate 17 is connected to one end of the electric telescopic rod 18. The electric telescopic rod 18 is installed at the bottom inner side of the transmission chamber 8. By activating the electric telescopic rod 18, the rod extends electrically. The telescopic rod 18 can drive the connecting plate 17 to move to one side. The connecting plate 17 can drive a set of clamping plates 12 and two sets of moving seats 13 to move to one side along the two sets of sliding rods 11, thereby driving a set of rack plates 14 to move to one side. The rack plates 14 can drive the sprocket 15 to rotate through meshing with the sprocket 15. The sprocket 15 can drive the other set of rack plates 14 to move in the opposite direction through meshing with the other set of rack plates 14. The other set of rack plates 14 can drive the other set of clamping plates 12 to move in the opposite direction. Thus, when the two sets of clamping plates 12 are close to each other, the non-metallic mineral products can be quickly clamped and fixed. When the two sets of clamping plates 12 are far apart, the non-metallic mineral products can be easily and quickly released. Thus, by setting up, it is convenient to quickly adjust the position of the clamped and fixed non-metallic mineral products.

[0028] The clamping components include clamping rollers 19. Two sets of clamping rollers 19 are installed on the top of each of the two sets of clamping plates 12. Multiple sets of threaded grooves 20 are opened on the top of each of the two sets of clamping plates 12. The bottom ends of the two sets of clamping rollers 19 are adapted to the multiple sets of threaded grooves 20. The four sets of clamping rollers 19 can be used to clamp and fix irregular non-metallic mineral products. The multiple sets of threaded grooves 20 can be used to easily adjust the distance between the two sets of clamping rollers 19, so as to clamp and fix irregular non-metallic mineral products of different sizes. Thus, the applicability of the device is greatly improved.

[0029] The rotating mechanism includes a drive motor 7. A groove 2 is provided on the top of the operating table 1. A rotating cylinder 3 is rotatably connected to the center of the inner side of the groove 2. One end of the rotating cylinder 3 is connected to the bottom of the placement platform 4. A worm wheel 5 is fixedly sleeved on the outer ring of the rotating cylinder 3. The worm wheel 5 meshes with a worm 6 rotatably connected to the inner side of the groove 2. One end of the worm 6 is connected to the output end of the drive motor 7 installed on one side of the operating table 1. By starting the drive motor 7, the drive motor 7 can drive the worm 6 to rotate. The worm 6, through its meshing with the worm wheel 5, can drive the rotating cylinder 3 to rotate. The rotating cylinder 3 can drive the placement platform 4 to rotate, thereby driving the non-metallic mineral product on the top of the placement platform 4 to rotate, so as to facilitate the orientation adjustment of the clamped non-metallic mineral product.

[0030] The adjustment mechanism includes a first handwheel 26 and a second handwheel 31. Two sets of first support rods 22 are slidably connected to a first adjustment seat 24 near the top of one side of the upright plate 21. The other ends of the two sets of first support rods 22 are connected via a fixing plate 23. A first screw 25 is threadedly connected to the first adjustment seat 24. One end of the first screw 25 is rotatably connected to one side of the upright plate 21, and the other end extends to the outside of the fixing plate 23 and is connected to the first handwheel 26. A connecting frame 27 is provided at the bottom of the first adjustment seat 24. Two sets of second support rods 28 are slidably connected to a second adjustment seat 29 on the inner side of the bottom of the connecting frame 27. An electric push rod 33 is installed at the bottom of the second adjustment seat 29. A second screw 30 is threadedly connected to the second adjustment seat 29. The second screw 30 is rotatably connected to the inner side of the connecting frame 27, and one end of the second screw 30 extends to the connecting frame 24. A second handwheel 31 is connected to the outer side of the bracket 27. By rotating the first handwheel 26, the first handwheel 26 can drive the first screw 25 to rotate. The first screw 25, through its threaded connection with the first adjusting seat 24 and with the limiting action of the two sets of first support rods 22, can drive the first adjusting seat 24 to adjust its lateral position, thus facilitating the adjustment of the lateral position of the grinder 35. By rotating the second handwheel 31, the second handwheel 31 can drive the second screw 30 to rotate. The second screw 30, through its threaded connection with the second adjusting seat 29 and with the limiting action of the two sets of second support rods 28, can drive the second adjusting seat 29 to adjust its longitudinal position, thus facilitating the adjustment of the longitudinal position of the grinder 35. Therefore, this design facilitates omnidirectional grinding operations on non-metallic mineral products.

[0031] Among them, locking bolts 32 are installed on one side of the first adjusting seat 24 and the second adjusting seat 29. The position of the adjusted grinding machine 35 can be locked and fixed by the locking bolts 32.

[0032] Working principle: First, the non-metallic mineral product is placed on the top of the placement platform 4. By activating the electric telescopic rod 18, the electric telescopic rod 18 can drive the connecting plate 17 to move to one side. The connecting plate 17 can drive a set of clamping plates 12 and two sets of moving seats 13 to move to one side, thereby driving a set of rack plates 14 to move to one side. The set of rack plates 14 can drive the spur gear 15 to rotate. The spur gear 15 can drive another set of rack plates 14 to move in the opposite direction. The other set of rack plates 14 can drive another set of clamping plates 12 to move in the opposite direction. Thus, when the two sets of clamping plates 12 approach each other, the placed non-metallic mineral product can be quickly clamped and fixed. The four sets of clamping rollers 19 can be used to clamp and fix irregular non-metallic mineral products. Then, the electric push rod 33 can drive the grinder 35 to move down to the working surface and perform grinding operations on the non-metallic mineral product.

[0033] When the orientation of the non-metallic mineral product needs to be adjusted, the drive motor 7 is started. The drive motor 7 drives the worm gear 6 to rotate, the worm gear 6 drives the rotating drum 3 to rotate, and the rotating drum 3 drives the placement platform 4 to rotate, thereby rotating the non-metallic mineral product on the top of the placement platform 4 to the designated orientation. When the position of the grinder needs to be adjusted, the first handwheel 26 is turned. The first handwheel 26 drives the first screw 25 to rotate, and the first screw 25 drives the first adjusting seat 24 to adjust its lateral position, thereby facilitating the adjustment of the lateral position of the grinder 35. The second handwheel 31 is turned. The second handwheel 31 drives the second screw 30 to rotate, and the second screw 30 drives the second adjusting seat 29 to adjust its longitudinal position, thereby facilitating the adjustment of the longitudinal position of the grinder 35, thus completing the entire operation process.

[0034] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0035] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A grinding device for processing non-metallic mineral products, comprising an operating table, characterized in that: A placement platform is provided above the operating table. The bottom of the placement platform is connected to the operating table via a rotating mechanism that facilitates its rotation. A transmission chamber is provided on the inner side of the placement platform, and inspection ports are provided on both sides of the transmission chamber. Two sets of clamping plates for clamping and fixing regularly shaped non-metallic mineral products are slidably connected to the top of the placement platform. A drive mechanism for the two sets of clamping plates to move in opposite directions is provided inside the transmission chamber. Clamping components for clamping and fixing irregularly shaped non-metallic mineral products are provided on the top of the two sets of clamping plates. A grinding machine is provided above the placement platform. The grinding machine is installed at the bottom of the mounting base. One end of the mounting base is connected to one end of an electric push rod. The electric push rod is connected to a vertical plate located on one side of the top of the operating table via an adjustment mechanism that facilitates its position adjustment.

2. The grinding device for processing non-metallic mineral products according to claim 1, characterized in that: The driving mechanism includes an electric telescopic rod. The top of the placement platform has two sets of movable slots. The inner side of the transmission chamber has two sets of sliding rods. The bottom of the two sets of clamps is provided with movable seats near both ends. One end of each set of movable seats passes through the inner side of the two sets of movable slots and is slidably connected to the two sets of sliding rods. One side of each of the two sets of movable seats arranged diagonally has a rack plate. Both sets of rack plates mesh with a spur gear. A rotating shaft passes through the inside of the spur gear and is rotatably connected to the inner side of the transmission chamber. The bottom of one set of movable seats has a connecting plate. One side of the connecting plate is connected to one end of the electric telescopic rod. The electric telescopic rod is installed at the bottom inner side of the transmission chamber.

3. The grinding device for processing non-metallic mineral products according to claim 2, characterized in that: The clamping component includes clamping rollers. Two sets of clamping rollers are installed on the top of each of the two sets of clamping plates. Multiple sets of threaded grooves are opened on the top of each of the two sets of clamping plates, and the bottom ends of the two sets of clamping rollers are adapted to the multiple sets of threaded grooves.

4. A grinding device for processing non-metallic mineral products according to claim 2, characterized in that: The rotating mechanism includes a drive motor. A groove is provided on the top of the operating table. A rotating cylinder is rotatably connected to the center of the inner side of the groove. One end of the rotating cylinder is connected to the bottom of the placement platform. A worm gear is fixedly sleeved on the outer ring of the rotating cylinder. The worm gear meshes with a worm rotatably connected to the inner side of the groove. One end of the worm is connected to the output end of the drive motor installed on one side of the operating table.

5. A grinding device for processing non-metallic mineral products according to claim 1, characterized in that: The adjustment mechanism includes a first handwheel and a second handwheel. Two sets of first support rods are provided on one side of the upright plate near the top and are slidably connected to a first adjustment seat. The other ends of the two sets of first support rods are connected through a fixed plate. The first adjustment seat is threadedly connected to a first screw. One end of the first screw is rotatably connected to one side of the upright plate, and the other end of the first screw extends to the outside of the fixed plate and is connected to the first handwheel. A connecting frame is provided at the bottom of the first adjustment seat. Two sets of second support rods are provided on the inner side of the bottom of the connecting frame and are slidably connected to a second adjustment seat. The electric push rod is installed at the bottom of the second adjustment seat. The second adjustment seat is threadedly connected to a second screw. The second screw is rotatably connected to the inner side of the connecting frame, and one end of the second screw extends to the outside of the connecting frame and is connected to the second handwheel.

6. A grinding device for processing non-metallic mineral products according to claim 5, characterized in that: Both the first adjusting seat and the second adjusting seat have locking bolts installed on one side.