Ceramic rough blank polishing platform

By designing the rotary support assembly of the ceramic rough grinding platform and the sliding and flipped grinding assembly, the problems of small grinding angle range and fixed layout of the existing equipment are solved, and the grinding efficiency is improved.

CN222831461UActive Publication Date: 2025-05-06HEBEI QUYANG CHEN DING KILN PORCELAIN CO LTD
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Patent Information

Application Number
CN202421767403.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-05-06
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

The grinding angle range of existing ceramic rough-billed grinding equipment is relatively small, and the rough-blank is usually arranged in a fixed manner, resulting in frequent manual adjustments and low efficiency.

Method used

A ceramic rough grinding platform is designed, including a rotary support assembly and a sliding and flipped grinding assembly to realize the multi-angle grinding operation of ceramic rough grinding.

Benefits of technology

Through the design of rotary support assembly and grinding assembly, multi-angle grinding of ceramic rough embryos is realized, which improves grinding efficiency and solves the problems of small angle range of existing equipment and fixed layout of rough embryos.

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Abstract

The utility model relates to the technical field of grinding platforms, in particular to a ceramic rough blank grinding platform. The utility model provides a ceramic rough blank grinding platform which comprises a rack used for playing a foundation supporting role, a bearing assembly for bearing a ceramic rough blank in a rotating mode is arranged on one side of the upper portion of the rack, and a grinding assembly for grinding the ceramic rough blank in a sliding and overturning mode is arranged on the other side of the upper portion of the rack. Due to the fact that the bearing assembly and the grinding assembly are designed on the grinding platform, rotary bearing operation of the ceramic rough blank can be achieved through the bearing assembly, multi-angle grinding operation of the ceramic rough blank can be achieved through the grinding assembly, and the problems that in the prior art, the grinding angle range of grinding equipment is too small, the rough blank is usually fixedly arranged, and the grinding efficiency is high are solved. And as a result, grinding equipment for the rough blank needs to be frequently and manually adjusted, and the grinding efficiency is low.
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Description

Technical Field

[0001] The present application relates to the technical field of grinding platforms, and in particular to a ceramic rough grinding platform. Background Art

[0002] In the production process of ceramic products, the polishing of the rough blank is an important link, and its quality directly affects the appearance and performance of the final product.

[0003] Existing ceramic rough blank grinding equipment has certain limitations in control structure and support method, resulting in limited grinding angles, and the supported rough blank usually cannot be rotated, which brings many inconveniences to production. Utility Model Content

[0004] The problem to be solved by the present application is that the grinding angle range of the existing grinding equipment is relatively small, and the rough blank is usually fixedly arranged, which results in the need to frequently manually adjust the rough blank grinding equipment, resulting in a relatively low grinding efficiency.

[0005] In order to solve the above-mentioned technical problems, the present application provides a ceramic rough blank grinding platform, including a frame for serving as a basic support, a supporting component for supporting the ceramic rough blank in a rotating manner is arranged on one side of the upper part of the frame, and a grinding component for grinding the ceramic rough blank in a sliding and flipping manner is arranged on the other side of the upper part of the frame.

[0006] Since the grinding platform of the present application is designed with a supporting assembly and a grinding assembly, the supporting assembly can realize the rotational supporting operation of the ceramic rough blank, and the grinding assembly can realize the multi-angle grinding operation of the ceramic rough blank, which solves the problem that the grinding angle range of the grinding equipment in the prior art is relatively small and the rough blank is usually fixedly arranged, resulting in the need to frequently manually adjust the grinding equipment of the rough blank, resulting in relatively low grinding efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] Figure 1 It is a schematic diagram of the three-dimensional structure of an embodiment.

[0008] Figure 2 It is a side structural schematic diagram of an embodiment.

[0009] Figure 3 It is a schematic diagram of the structure of the supporting component.

[0010] Figure 4 It is a structural schematic diagram of the transverse moving part.

[0011] Figure 5 It is a structural diagram of the auxiliary flip part.

[0012] Figure 6 It is a schematic diagram of the structure of the driving component.

[0013] Figure 7 Schematic diagram of the structure of the main flip.

[0014] In the figure: 1. main flip part; 2. transverse moving part; 3. frame; 4. auxiliary flip part; 5. driving part; 6. supporting assembly; 7. clamping block; 8. tray; 9. gasket; 10. first motor; 11. first slide rail; 12. first slider; 13. frame; 14. first screw rod; 15. first screw sleeve; 16. second motor; 17. crossbeam; 18. second driving cylinder; 19. support plate; 20. support plate; 21. third motor; 22. grinding wheel; 23. third motor; 24. plate seat; 25. second slider; 26. second slide rail; 27. second screw rod; 28. second screw sleeve; 29. ​​slide plate. DETAILED DESCRIPTION

[0015] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application. Example

[0016] The present application relates to a ceramic rough grinding platform, such as Figure 1-7 As shown, the grinding platform includes a frame 3 for serving as a basic support, a supporting assembly 6 for supporting the rough ceramic blank in a rotating manner is arranged on one side of the upper portion of the frame 3, and a grinding assembly for grinding the rough ceramic blank in a sliding and flipping manner is arranged on the other side of the upper portion of the frame 3.

[0017] The supporting assembly 6 includes a first motor 10, a tray 8, a clamping block 7, and a gasket 9. The tray 8 is arranged on the upper part of the frame 3 and connected thereto through a bearing seat, and the first motor 10 connected to the tray 8 through a belt to drive the rotation is arranged inside the frame 3, and a plurality of clamping blocks 7 with adjustable positions are evenly arranged in the circumferential direction on the upper part of the tray 8 to support the ceramic rough embryo, and in order to reduce the friction loss between the clamping block 7 and the ceramic rough embryo, gaskets 9 for abutting the ceramic rough embryo are added on the upper part of the tray 8 and the clamping block 7.

[0018] The grinding assembly includes a transverse member 2, a flip member and a driving member 5. The transverse member 2 is arranged on the upper part of the frame 3 and can perform horizontal linear reciprocating motion along the surface of the frame 3. The driving member 5 is arranged on the upper part of the transverse member 2 for grinding the ceramic rough blank. In order to increase the grinding angle range of the ceramic rough blank, a flip member is added to the upper part of the transverse member 2 to realize the angle adjustment operation of the driving member 5.

[0019] The transverse moving member 2 includes a frame 13, a first slider 12, a first slide rail 11, a second motor 16, a first screw 14, and a first nut 15. The frame 13 is arranged on the upper part of the frame 3 and can perform horizontal linear reciprocating movement along its surface. The lower part of the frame 13 is respectively provided with first sliders 12 connected thereto, and the upper part of the frame 3 is symmetrically arranged with first slide rails 11 slidingly connected to the first slider 12, so that the frame 13 can perform stable linear reciprocating sliding operation along the surface of the first slide rail 11 with the help of the first slider 12, and the inside of the frame 3 is arranged with a second motor 16 capable of driving the frame 13 to reciprocate, one end of the second motor 16 is arranged with a first screw 14 driven by it and connected to the frame 3 through a bearing seat, and the bottom of the frame 13 is arranged with a first nut 15 threadedly connected to the first screw 14, so that the first screw 14 is driven to rotate by the second motor 16, so that the first nut 15 of the frame 13 performs linear reciprocating movement along the axial direction of the first screw 14.

[0020] The flipping member is divided into a main flipping member 1 and an auxiliary flipping member 4 according to the different arrangement positions. The main flipping member 1 is used to control the flipping member to perform a small range (0-60°) angle adjustment operation on the upper part of the frame 13. The auxiliary flipping member 4 is arranged at one end of the main flipping member 1 to control the driving member 5 to perform a large range (0-150°) angle adjustment operation, so that the driving member 5 can effectively grind the ceramic rough blank in space.

[0021] The main flip member 1 includes a cross beam 17, a third motor 23, a plate seat 24, a second slider 25, a second slide rail 26, a second screw 27, a second screw sleeve 28, and a slide plate 29. The cross beam 17 is arranged on the upper part of the frame 13 and one end thereof can rotate around it. In order to drive the cross beam 17 to rotate around the frame 13, a plate seat 24 that can rotate around it is arranged on one side of the frame 13, and the third motor 23 and the second screw 27 driven to rotate are arranged in sequence on the upper part of the plate seat 24, and a slide plate 29 connected to the second screw 27 through the second screw sleeve 28 is arranged on the upper part of the second screw 27, and one end of the slide plate 29 It is connected to the cross beam 17, so that the cross beam 17 is driven to flip and lift through the slide plate 29. In order to improve the stability of the slide plate 29 when it is lifted or lowered, a second slide rail 26 connected to it is further provided on the upper part of the plate seat 24. The upper part of the second slide rail 26 is slidably connected with a second slider 25 connected to the slide plate 29. Then, the second screw 27 is driven to rotate by the third motor 23, and the second screw 27 drives the second screw sleeve 28 to drive the slide plate 29 to perform a linear lifting operation along the surface of the plate seat 24. The second slider 25 slides along the surface of the second slide rail 26 to improve the stability of the lifting of the cross beam 17.

[0022] The auxiliary flipping member 4 includes a second driving cylinder 18 and a support plate 19. The support plate 19 is symmetrically arranged on both sides of one end of the beam 17 and can rotate around it. A second driving cylinder 18 connected to the support plate 19 is arranged on the upper part of the beam 17 to drive it to flip. The driving member 5 is arranged at the end of the support plate 19. The second driving cylinder 18 drives the support plate 19 to rotate in space, which can drive the driving member 5 to perform synchronous spatial grinding angle adjustment operation.

[0023] The driving member 5 includes a support plate 20, a fourth motor 21, and a grinding wheel 22. The support plate 20 is arranged at one end of the support plate 19 and the extension distance is adjustable. A grinding wheel 22 for grinding the ceramic rough blank is arranged at one end of the support plate 20, and a fourth motor 21 for driving the grinding wheel 22 to operate is arranged on one side of the support plate 20, so that the surface of the ceramic rough blank is ground through the contact between the grinding wheel 22 and the rough blank. If the outer surface is ground, the rough ceramic blank and the clamping block 7 can be turned over and arranged on the upper part of the tray 8, so that the clamping block 7 can support and limit the inner surface of the rough blank.

[0024] When in use, the ceramic rough blank to be polished is first fixed and arranged between the clamping blocks 7 on the upper part of the tray 8, and then the tray 8 is driven by the first motor 10 to drive the ceramic rough blank to rotate. At the same time, according to the position of the ceramic rough blank, the first screw 14 is first driven to rotate by the second motor 16, so that the frame 13 slides along the surface of the first slide rail 11 under the action of the first screw sleeve 15 and with the help of the first slider 12, so that the frame 13 can move to a suitable position on the upper part of the frame 3, and then the third motor 23 drives the second screw 27 to rotate on the upper part of the plate seat 24, so that the slide plate 29 slides along the surface of the second slide rail 26 under the action of the second screw sleeve 28 and with the help of the second slider 25, thereby performing the lifting and lowering adjustment operation of the crossbeam 17, and then the second driving cylinder 18 drives the support plate 19 to perform a spatial flipping operation around the crossbeam 17, so that the grinding wheel 22 at its end can abut against the ceramic rough blank, and then the fourth motor 21 drives the grinding wheel 22 on the upper part of the support plate 20 to rotate to perform the grinding operation.

[0025] In general, terms should be understood, at least in part, by the context in which they are used. For example, the term "one or more" as used herein may be used to describe any feature, structure, or characteristic in a singular sense, or may be used to describe a combination of features, structures, or characteristics in a plural sense, depending, at least in part, on the context. Similarly, terms such as "a," "an," or "the" may also be understood to convey singular usage or to convey plural usage, depending, at least in part, on the context.

[0026] It should be easily understood that “on,” “above,” and “over” in the present disclosure should be interpreted in the broadest manner, so that “on” not only means “directly on something,” but also includes the meaning of “on something” with intervening features or layers therebetween, and “above” or “over” not only includes the meaning of “above” or “over,” but also may include the meaning of “above” or “over something” with no intervening features or layers therebetween (i.e., directly on something).

[0027] In addition, spatially relative terms, such as "below," "below," "beneath," "above," "above," etc., may be used herein for ease of description to describe the relationship of one element or feature relative to other elements or features as shown in the figures. Spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation shown in the figures. The device may have other orientations (rotated 90 degrees or at other orientations), and the spatially relative descriptors used herein may likewise be interpreted accordingly.

[0028] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit it. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A ceramic rough grinding platform, comprising a frame for basic support, characterized in that: A supporting assembly for supporting the rough ceramic embryo in a rotating manner is arranged on one side of the upper part of the frame, and a grinding assembly for grinding the rough ceramic embryo in a sliding and flipping manner is arranged on the other side of the upper part of the frame; the supporting assembly includes a first motor, a tray, a clamping block and a gasket. The tray is arranged on the upper part of the frame and is connected to the frame through a bearing seat. A first motor connected to the tray through a belt and driving the tray to rotate is arranged inside the frame. A plurality of clamping blocks with adjustable positions are evenly arranged in the circumferential direction on the upper part of the tray to support the rough ceramic embryo. Washers for abutting the rough ceramic embryo are arranged on the upper part of the tray and the clamping block; the grinding assembly includes a transverse member, a flipping member and a driving member. The transverse member is arranged on the upper part of the frame and can perform a transverse linear reciprocating motion along the surface of the frame. The driving member is arranged on the upper part of the transverse member for grinding the rough ceramic embryo. A flipping member for realizing the angle adjustment operation of the driving member is also arranged on the upper part of the transverse member.

2. A ceramic rough blank grinding platform according to claim 1, characterized in that: The transverse moving member includes a frame, a first slider, a first slide rail, a second motor, a first screw and a first nut. The frame is arranged on the upper part of the frame and can perform horizontal linear reciprocating movement along its surface. The lower part of the frame is respectively provided with first sliders connected to it, and the upper part of the frame is symmetrically arranged with first slide rails slidably connected to the first slider. The inside of the frame is arranged with a second motor capable of driving the frame to reciprocate, one end of the second motor is arranged with a first screw driven by the second motor and connected to the frame through a bearing seat, and the bottom of the frame is arranged with a first nut threadedly connected to the first screw.

3. A ceramic rough blank grinding platform according to claim 2, characterized in that: The flipping member is divided into a main flipping member and an auxiliary flipping member according to the different arrangement positions. The main flipping member is used to control the flipping member to perform angle adjustment operation on the upper part of the frame, and the auxiliary flipping member is arranged at one end of the main flipping member to control the driving member to perform angle adjustment operation.

4. A ceramic rough blank grinding platform according to claim 3, characterized in that: The main flip part includes a crossbeam, a third motor, a plate seat, a second slider, a second slide rail, a second screw, a second nut and a slide plate. The crossbeam is arranged on the upper part of the frame and one end of the crossbeam can rotate around it. A plate seat that can rotate around it is arranged on one side of the frame. The third motor and the second screw driven to rotate are arranged on the upper part of the plate seat in sequence. A slide plate connected to the second screw through the second nut is arranged on the upper part of the second screw. One end of the slide plate is connected to the crossbeam. A second slide rail connected to the plate seat is also provided on the upper part of the plate seat. The second slider connected to the slide plate is slidably connected to the upper part of the second slide rail.

5. The ceramic rough blank grinding platform according to claim 3, characterized in that: The auxiliary flipping member includes a second driving cylinder and a support plate. The support plate is symmetrically arranged on both sides of one end of the beam and can rotate around it. A second driving cylinder connected to the support plate for driving it to perform a flipping operation is arranged on the upper part of the beam, and a driving member is arranged at the end of the support plate.

6. A ceramic rough blank grinding platform according to claim 5, characterized in that: The driving component includes a support plate, a third motor and a grinding wheel. The support plate is arranged at one end of the support plate and the extension distance is adjustable. A grinding wheel for grinding the ceramic rough blank is arranged at one end of the support plate, and a third motor for driving the grinding wheel to operate is arranged on one side of the support plate.