Artistic vase polishing equipment
By designing a polishing device with an automatic vase rotation function, and utilizing a vacuum suction plate and a right-angle gear system driven by a servo motor, the problems of low efficiency and inflexible fixing devices in traditional equipment have been solved, achieving efficient and uniform polishing of artistic vases.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional equipment requires frequent manual rotation of the vase to ensure that all parts are polished, which is inefficient and makes it difficult to guarantee the uniformity of polishing. The fixing device of the existing equipment lacks flexibility and is difficult to adjust quickly to fit vases of different sizes and shapes.
Design a polishing device with automatic vase rotation function. The automatic rotation of the vase is achieved through a vacuum adsorption plate and a right-angle gear system driven by a servo motor. The device can also adapt to the fixing of different vases through a movable fixing block and limit block structure, so as to flexibly fix different shapes and sizes.
It improves polishing efficiency, reduces manual operation steps, ensures the uniformity and adaptability of polishing, reduces labor costs, and meets the diverse polishing needs of artistic vases.
Smart Images

Figure CN224059491U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vase processing technology, and in particular to an art vase polishing device. Background Technology
[0002] Art vase polishing equipment plays a crucial role in modern craft manufacturing as a key tool for improving the surface quality and artistic effect of vases. Its working principle involves using the friction between the polishing tool and the vase surface to remove imperfections and unevenness, enhancing its smoothness and texture. In actual operation, art vase polishing equipment typically includes the following key structures:
[0003] 1. Grinding power unit: Provides the power for the rotation or reciprocating motion of the grinding tool, ensuring the efficient operation of the grinding work. The stability of its power output directly affects the uniformity of the grinding effect.
[0004] 2. Grinding tool mounting base: Used to fix various grinding tools, such as grinding wheels and sandpaper discs, so as to facilitate quick tool changes according to different grinding needs and realize the process switching from coarse grinding to fine grinding.
[0005] 3. Support frame: Supports all components of the grinding equipment, ensuring the stability of the equipment during operation and preventing a decrease in grinding accuracy due to vibration.
[0006] 4. Control console: Operators can use this control console to control key parameters of the grinding equipment, such as start-up, stop, and speed adjustment, to achieve precise control of the grinding process.
[0007] Currently, manufacturers employ various equipment and methods to achieve efficient and high-quality vase polishing. Some manufacturers use traditional manual polishing equipment, relying mainly on manual operation of polishing tools. This method offers high flexibility but requires extremely high worker skills and is inefficient, making it difficult to guarantee consistent polishing results. Other manufacturers use semi-automatic polishing equipment, which automates the operation of polishing tools, such as the automatic rotation of the polishing wheel. However, significant manual intervention is still required for fixing and rotating the vase, making it difficult to achieve precise polishing for vases with complex shapes. Some manufacturers have introduced more advanced automated polishing equipment that polishes vases through preset programs, but it has certain limitations in adapting to vases of different shapes and sizes.
[0008] However, the above-described implementation still has the following problems. Regarding vase rotation, traditional equipment requires frequent manual rotation to ensure all parts are polished. This is not only inefficient but also makes it difficult to guarantee uniform polishing, failing to meet the polishing needs of vases with complex shapes. Furthermore, the fixing devices of existing equipment often lack flexibility in adapting to different vases, making it difficult to quickly adjust to fit vases of different sizes and shapes. This results in a significant amount of time being spent adjusting the equipment when changing vase types for polishing, severely impacting production efficiency. This application addresses this problem by proposing a solution: designing a polishing device with automatic vase rotation that can flexibly adapt to different vases. This device can greatly improve polishing efficiency and quality, reduce labor costs, and meet the diverse polishing needs of artistic vases. Utility Model Content
[0009] To address the shortcomings of existing technologies, this utility model provides an art vase polishing device that solves the problem that traditional equipment requires frequent manual rotation of the vase to ensure that all parts are polished. This is not only inefficient but also makes it difficult to guarantee the uniformity of polishing. Furthermore, the fixing devices of existing equipment often lack flexibility and are difficult to adjust quickly to fit vases of different sizes and shapes.
[0010] To achieve the above objectives, this utility model provides the following technical solution:
[0011] An art vase polishing device includes a control console and an electric polisher. A vacuum adsorption plate for fixing the vase is provided above the control console. Fixing plates are provided on both the left and right sides of the vacuum adsorption plate. A right-angle gear is rotatably connected to the right fixing plate. Fixing blocks are fixedly connected to the lower surfaces of both fixing plates. A connecting strip is fixedly connected to the rear surface of the control console. Limiting blocks for limiting movement are movably engaged in both fixing blocks. Return springs are fixedly connected to the rear surfaces of both limiting blocks. The two return springs are respectively fixedly connected to the two fixing blocks.
[0012] Preferably, both of the fixing blocks are movably connected to the connecting strip, and a set of limiting grooves is provided on the inner wall of the connecting strip. The set of limiting grooves are respectively movably engaged with the two limiting blocks, and a pressing plate is fixedly connected to the front surface of the two limiting blocks.
[0013] Preferably, a servo motor is fixedly installed on the upper surface of the right-hand fixed plate of the two fixed plates. The output shaft of the servo motor is fixedly connected to a right-angle gear. A connecting plate is fixedly connected between the two fixed plates. The connecting plate is rotatably connected to the vacuum adsorption disk. A set of slots is opened on the annular side of the vacuum adsorption disk. All of the slots are movably engaged with the right-angle gear.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] 1. The servo motor is started via the control console. The output shaft of the servo motor drives a fixed right-angle gear to rotate. During the rotation of the right-angle gear, the vacuum suction plate that is engaged with it will also rotate. When the vacuum suction plate rotates, the vase fixed on it will also rotate. With the vase rotating automatically, the operator does not need to frequently adjust the position of the vase manually. He / she only needs to focus on controlling the force and angle of the electric grinder, which reduces the number of operation steps, saves time and labor costs, and improves the overall grinding efficiency.
[0016] 2. During the polishing process, for ease of operation, pressing the pressing plate moves the two fixed limit blocks together, compressing the two return springs. At this time, the limit between the limit blocks and the connecting strip opens, allowing the two fixed blocks to move. During the movement of the two fixed blocks, the vacuum adsorption plate and the vase fixed on the vacuum adsorption plate will move together, allowing for left and right position adjustment. Different artistic vases vary in diameter, height, and shape. By moving the fixed blocks left and right, the fixed position can be adjusted according to the specific size of the vase, ensuring that vases of different sizes can be stably fixed in the optimal polishing position, thus improving the applicability of the polishing equipment to various vases. Attached Figure Description
[0017] The above description is only an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the preferred embodiments of this utility model are described in detail below with reference to the accompanying drawings.
[0018] Figure 1 This is an overall structural diagram of the present invention;
[0019] Figure 2 This is a structural diagram of the fixing plate of this utility model;
[0020] Figure 3 This is a structural diagram of the vacuum adsorption disk of this utility model;
[0021] Figure 4 This is a structural diagram of the limiting block of this utility model.
[0022] Legend: 1. Control console; 2. Electric grinder; 3. Vacuum suction plate; 4. Fixing plate; 5. Connecting strip; 6. Fixing block; 7. Servo motor; 8. Right angle gear; 9. Slot; 10. Connecting plate; 11. Limiting slot; 12. Pressing plate; 13. Limiting block; 14. Return spring. Detailed Implementation
[0023] This application provides an art vase polishing device that effectively solves the problem that traditional equipment requires frequent manual rotation of the vase to ensure that all parts are polished. This is not only inefficient but also makes it difficult to guarantee the uniformity of polishing. The fixing devices of existing equipment often lack flexibility and are difficult to adjust quickly to adapt to vases of different sizes and shapes. This application designs a polishing device with automatic vase rotation function that can flexibly adapt to different vases. This device can greatly improve polishing efficiency and quality, reduce labor costs, and meet the diverse polishing needs of art vases.
[0024] Example
[0025] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the technical solution in this application embodiment effectively solves the problem that traditional equipment requires frequent manual rotation of the vase to ensure that all parts are polished. This is not only inefficient, but also makes it difficult to guarantee the uniformity of polishing. The fixing devices of existing equipment often lack flexibility and are difficult to adjust quickly to adapt to vases of different sizes and shapes. The overall idea is as follows:
[0026] To address the problems existing in the prior art, this utility model provides an art vase polishing device, including a control console 1 and an electric polisher 2. A vacuum adsorption plate 3 for fixing the vase is arranged above the control console 1. Fixing plates 4 are arranged on both sides of the vacuum adsorption plate 3. A right-angle gear 8 is rotatably connected inside the right-side fixing plate 4. Fixing blocks 6 are fixedly connected to the lower surfaces of both fixing plates 4. A connecting strip 5 is fixedly connected to the rear surface of the control console 1. Limiting blocks 13 for limiting movement are movably engaged inside each of the two fixing blocks 6. Return springs 14 are fixedly connected to the rear surfaces of both limiting blocks 13. The two return springs 14 are respectively fixedly connected to the two fixing blocks 6. During use, the vase is placed on the vacuum adsorption plate 3. The vacuum suction plate 3, located on the lower surface of the vacuum suction plate 3, is activated via the control console 1. The vacuum suction plate 3 generates suction to fix the vase in place. The electric polisher 2 is then removed for polishing. The servo motor 7 is activated via the control console 1. Its output shaft drives a fixed right-angle gear 8 to rotate. This rotation of the right-angle gear 8 causes the vacuum suction plate 3 to rotate as well, and consequently, the vase fixed to it rotates automatically. This automatic rotation of the vase eliminates the need for frequent manual adjustments to its position; the operator can focus on controlling the force and angle of the electric polisher 2, reducing operational steps, saving time and labor costs, and improving overall polishing efficiency.
[0027] Both fixed blocks 6 are movably connected to the connecting strip 5. A set of limiting grooves 11 are provided on the inner wall of the connecting strip 5. These limiting grooves 11 are respectively engaged with the two limiting blocks 13. A pressing plate 12 is fixedly connected to the front surface of the two limiting blocks 13. A servo motor 7 is fixedly installed on the upper surface of the right-hand fixed plate 4. The output shaft of the servo motor 7 is fixedly connected to a right-angle gear 8. A connecting plate 10 is fixedly connected between the two fixed plates 4. The connecting plate 10 is rotatably connected to the vacuum adsorption disk 3. A set of slots 9 are provided on the annular side of the vacuum adsorption disk 3. These slots 9 are all engaged with the right-angle gear 8. During the grinding process, for ease of operation, [the following is unclear and likely refers to a specific operation method]. By pressing the pressing plate 12, the two fixed limiting blocks 13 move together, compressing the two return springs 14. At this time, the limiting block 13 and the connecting strip 5 are opened, and the two fixed blocks 6 can move. During the movement of the two fixed blocks 6, the vacuum adsorption plate 3 and the vase fixed on the vacuum adsorption plate 3 will move together to adjust the left and right position. Different artistic vases have differences in diameter, height and shape. By moving and fixing them left and right, the fixing position can be adjusted according to the specific size of the vase, ensuring that vases of different sizes can be stably fixed in the best polishing position, thus improving the applicability of the polishing equipment to a variety of vases.
[0028] Among them, console 1 is the control center of the equipment, used to control the operation of components such as vacuum adsorber and servo motor 7, and realize the start, stop and parameter adjustment of the vase polishing process;
[0029] Electric polisher 2: As a polishing tool, it is used to polish the vase fixed on the vacuum adsorption plate 3, remove surface imperfections of the vase and improve its smoothness;
[0030] Vacuum suction plate 3: It uses the vacuum suction device below to generate suction force to firmly fix the vase, and rotates under the drive of right angle gear 8, causing the vase to rotate together;
[0031] Fixing plate 4: Installed on both sides of vacuum adsorption plate 3, it supports and fixes components such as right angle gear 8 and servo motor 7, ensuring the stability of the equipment structure;
[0032] Connecting bar 5: Fixed to the rear surface of the control panel 1, providing a moving track for the fixed block 6, and cooperating with the limiting block 13 and the limiting groove 11 to realize the limiting and moving guidance of the fixed block 6;
[0033] Fixing block 6: Connected to fixing plate 4, movable on connecting strip 5, moving to drive vacuum adsorption plate 3 and vase to move left and right to adapt to the fixing needs of different vases;
[0034] Servo motor 7: provides rotational power to right-angle gear 8, and its output shaft drives right-angle gear 8 to rotate, thereby enabling vacuum adsorption plate 3 and vase to rotate automatically;
[0035] Right angle gear 8: Rotates under the drive of servo motor 7 and engages with slot 9 of vacuum adsorption disk 3, transmitting the power of servo motor 7 to vacuum adsorption disk 3 and driving it to rotate;
[0036] Slot 9: Located on the annular side of the vacuum adsorption disk 3, it is movably engaged with the right angle gear 8 and is the key connection structure for enabling the right angle gear 8 to drive the vacuum adsorption disk 3 to rotate.
[0037] Connecting plate 10: Connects two fixed plates 4 and is rotatably connected to the vacuum adsorption disk 3, providing support for the rotation of the vacuum adsorption disk 3 while ensuring structural stability;
[0038] Limiting groove 11: Located on the inner wall of connecting strip 5, it is movably engaged with limiting block 13 to limit the movement range of fixed block 6 and ensure its accuracy and stability of movement;
[0039] Press plate 12: Fixed on the front surface of the limit block 13, making it convenient for operators to press. By pressing it, the limit block 13 can be moved to unlock and move the fixed block 6.
[0040] Limiting block 13: The movable latch is connected inside the fixed block 6 and cooperates with the limiting groove 11 of the connecting strip 5. Under normal conditions, it restricts the movement of the fixed block 6. The limiting can be released when the pressing plate 12 is pressed.
[0041] Reset spring 14: connects limit block 13 and fixing block 6. When the pressing plate 12 is released, it resets limit block 13 and repositions fixing block 6.
[0042] Working principle:
[0043] During use, the vase is placed on the vacuum adsorption plate 3. The vacuum adsorption unit on the lower surface of the vacuum adsorption plate 3 is activated via the control console 1. The vacuum adsorption plate 3 generates suction to fix the vase in place. At this point, the electric grinder 2 is removed for polishing. The servo motor 7 is activated via the control console 1. The output shaft of the servo motor 7 drives the fixed right-angle gear 8 to rotate. The rotation of the right-angle gear 8 causes the vacuum adsorption plate 3 to rotate as well. The rotation of the vacuum adsorption plate 3 causes the vase fixed on it to rotate as well. With the vase rotating automatically, the operator does not need to frequently manually adjust the vase's position; they only need to focus on controlling the force and angle of the electric grinder 2, reducing operating steps and saving time. This reduces labor costs and improves overall polishing efficiency. During the polishing process, for ease of operation, pressing the pressing plate 12 moves the two fixed limit blocks 13 together, compressing the two return springs 14. At this time, the limit between the limit block 13 and the connecting strip 5 opens, allowing the two fixed blocks 6 to move. During the movement of the two fixed blocks 6, the vacuum adsorption plate 3 and the vase fixed on the vacuum adsorption plate 3 will move together, allowing for left and right position adjustment. Different artistic vases vary in diameter, height, and shape. By moving and fixing them left and right, the fixing position can be adjusted according to the specific size of the vase, ensuring that vases of different sizes can be stably fixed in the optimal polishing position, thus improving the applicability of the polishing equipment to various vases.
[0044] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. An artistic vase polishing apparatus comprising a console (1) and an electric polisher (2), characterized in that, The control console (1) is provided with a vacuum adsorption disc (3) for fixing a vase above, both sides of the vacuum adsorption disc (3) are provided with a fixed plate (4), a right fixed plate (4) of the two fixed plates (4) is rotatably connected with a right-angle gear (8) in the fixed plate (4); Wherein, the lower surface of the two fixed plates (4) is fixedly connected with a fixed block (6), the rear surface of the control console (1) is fixedly connected with a connecting strip (5), the two fixed blocks (6) are movably connected with a limiting block (13) for limiting in the fixed blocks (6), the rear surface of the two limiting blocks (13) is fixedly connected with a reset spring (14).
2. An artistic vase polishing apparatus as claimed in claim 1, wherein: Two reset springs (14) are respectively fixedly connected with two fixed blocks (6).
3. An artistic vase polishing apparatus as claimed in claim 1, wherein: Two fixed blocks (6) are movably connected with the connecting strip (5).
4. An artistic vase polishing apparatus as claimed in claim 1, wherein: The inner wall of the connecting strip (5) is provided with a group of limiting grooves (11); Wherein, a group of limiting grooves (11) are movably connected with two limiting blocks (13) respectively.
5. An artistic vase polishing apparatus as claimed in claim 1, wherein: The front surface of the two limiting blocks (13) is fixedly connected with a pressing plate (12).
6. An artistic vase polishing apparatus as claimed in claim 1, wherein: The upper surface of the right fixed plate (4) of the two fixed plates (4) is fixedly connected with a servo motor (7). Wherein, the output shaft of the servo motor (7) is fixedly connected with the right-angle gear (8).
7. An artistic vase polishing apparatus as claimed in claim 1, wherein: The two fixed plates (4) are fixedly connected with a connecting plate (10) between them; Wherein, the connecting plate (10) is rotatably connected with the vacuum adsorption disc (3).
8. An artistic vase polishing apparatus as claimed in claim 1, wherein: The annular side of the vacuum adsorption disc (3) is provided with a group of clamping grooves (9); Wherein, a group of clamping grooves (9) are movably connected with the right-angle gear (8).