Automatic mirror surface polishing device for jewelry production

By designing the automatic mirror grinding device for jewelry production, the safety risks and inadequate grinding of jewelry mirror grinding in the existing technology are solved, and the efficient and precise automatic grinding process is achieved, and the beauty and value of jewelry is improved.

CN222958239UActive Publication Date: 2025-06-10SHENZHEN JINYI HERITAGE JEWELRY CO LTD
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Patent Information

Application Number
CN202421571558.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-06-10
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

There are safety risks in the polishing process of existing jewelry mirrors, and the polishing accuracy is not uniform enough, which affects the beauty and value of jewelry.

Method used

Design a mirror automatic grinding device for jewelry production, including a support table, a processing table, a grinding member, a swing assembly and a vacuum cleaner assembly. Through automated control, precise control of the movement of the processing table and the rotation speed of the polishing members ensures uniform grinding of the jewelry surface and removes dust through the vacuuming assembly.

Benefits of technology

It significantly reduces the operator's direct contact with the high-speed rotating grinding wheel, improves the grinding accuracy and the overall quality of jewelry, reduces the need for manual adjustment, speeds up grinding speed, improves production efficiency, and maintains the cleanliness of the working environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an automatic mirror surface polishing device for jewelry production, in the using process, jewelry to be polished is firstly fixed on a processing table, and then a polishing component is started to polish the jewelry to be polished. And meanwhile, the swing assembly moves to drive the machining table to do reciprocating motion in the first direction, and it is ensured that each surface of the jewelry can be evenly polished. In the process, the dust suction assembly works to suck away generated dust, and the environment is kept clean. Due to the adoption of automatic control, direct contact between an operator and the polishing wheel rotating at a high speed is reduced, and the safety risk during working is remarkably reduced. By accurately controlling the movement of the machining table and the rotating speed of the polishing component, the surface of the jewelry can be uniformly polished, and the machining precision and the overall quality of the jewelry are improved. And the requirement for manual adjustment is reduced in the automatic machining process, so that the grinding speed is increased, and the production efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of jewelry production, in particular to an automatic mirror polishing device for jewelry production. Background Art

[0002] Mirror polishing in jewelry production is an important technological process, aiming to remove any defects on the surface of the jewelry, such as scratches or unevenness, so as to make the surface of the jewelry as smooth as a mirror and improve its aesthetics and value.

[0003] The existing method is to use a polishing machine for polishing. During the process of polishing the jewelry, first, the operator holds the jewelry by hand, and then brings the jewelry close to the polishing machine. The jewelry is polished by the high-speed rotating polishing machine, so that the surface of the jewelry reaches the mirror effect.

[0004] However, during the polishing process, since the jewelry needs to be held by hand, there will be risks during the polishing process. The high-speed rotating polishing disc may accidentally touch the operator's hand or finger, resulting in cuts or abrasions. Secondly, during the polishing process, the polishing needs to rely on the operator's experience, so the polishing accuracy is completely controlled by the operator, resulting in the processing accuracy not being able to reach a unified standard.

[0005] During the polishing process, there will be splashes of polishing materials, which may enter the operator's eyes or skin and cause harm. Secondly, part of the polishing powder will adhere to the surface of the jewelry, affecting the polishing accuracy. Summary of the Utility Model

[0006] The purpose of the utility model is to provide an automatic mirror polishing device for jewelry production to solve the above technical problems.

[0007] According to one aspect of the utility model, there is provided an automatic mirror polishing device for jewelry production, including:

[0008] A support table;

[0009] A processing table, which is arranged on the support table and is slidably connected to the support table;

[0010] A polishing member, which is arranged on the support table. A polishing space is formed between the polishing member and the processing table, and the polishing space is used to place the jewelry to be polished;

[0011] A swinging assembly, one end of which is fixedly connected to the support table and the other end is arranged on the processing table to drive the processing table to reciprocate relative to the support table along a first direction, and the first direction is perpendicular to the direction of rotation of the polishing member;

[0012] The dust suction assembly is arranged on the processing table, and the dust suction assembly is aligned with the grinding space to suck away the dust in the grinding space.

[0013] In at least one embodiment of the present application, the grinding member includes:

[0014] A driving motor is arranged on the support table;

[0015] A connecting assembly is arranged on the support table, and one end of the connecting assembly is in transmission connection with the output end of the driving motor;

[0016] A grinding wheel is arranged at one end of the connecting assembly away from the driving motor.

[0017] In at least one embodiment of the present application, the connecting assembly includes:

[0018] A connecting belt, one end of which is sleeved on the output end of the driving motor;

[0019] A rotating shaft is rotatably connected to the support table. One end of the connecting belt away from the driving motor is sleeved on one end of the rotating shaft, and the other end of the rotating shaft is fixedly connected to the grinding wheel.

[0020] In at least one embodiment of the present application, the swinging assembly includes:

[0021] A rotating motor is arranged on the support table;

[0022] An output shaft, one end of which is fixedly connected to the output end of the rotating motor;

[0023] An eccentric wheel is eccentrically arranged at one end of the output shaft away from the rotating motor;

[0024] The processing table is provided with a movable groove, and the eccentric wheel is located in the movable groove and abuts against the inner wall of the movable groove;

[0025] Wherein, the rotating motor moves to drive the output shaft to rotate, so that the eccentric wheel drives the processing table to reciprocate relative to the support table along the first direction.

[0026] In at least one embodiment of the present application, a slide rail part is arranged on one side of the processing table close to the swinging assembly, a chute is opened on the support table, the chute is arranged perpendicular to the opening direction of the movable groove, and the slide rail part is slidably connected to the chute.

[0027] In at least one embodiment of the present application, the dust suction assembly includes:

[0028] An installation shell is arranged on the processing table, and the installation shell is provided with a dust suction port;

[0029] The tangent direction of the grinding wheel in contact with the jewelry to be ground is the second direction, the second direction is perpendicularly arranged with respect to the first direction, and the dust suction port is opened along the second direction.

[0030] In at least one embodiment of the present application, the dust suction assembly further includes:

[0031] A first motor, which is arranged inside the installation shell, and a fan blade is provided at the output end of the first motor.

[0032] In at least one embodiment of the present application, the automatic mirror grinding device for jewelry production further includes:

[0033] An installation assembly, which is arranged on the processing table and is used for adsorbing the jewelry to be ground.

[0034] In at least one embodiment of the present application, the installation assembly includes:

[0035] A vacuum pump, which is arranged on the support table;

[0036] An adsorbing member, which is arranged on the processing table and is communicated with the vacuum pump.

[0037] In at least one embodiment of the present application, a flexible fitting portion is provided on one side of the adsorbing member close to the grinding wheel, and the flexible fitting portion is used for fitting with the jewelry to be ground.

[0038] Implementing the embodiments of the present utility model will have the following beneficial effects:

[0039] In the automatic mirror grinding device for jewelry production in this embodiment, during the use process, the jewelry to be ground is first fixed on the processing table, and then the grinding member is started to grind the jewelry to be ground. At the same time, the swinging assembly moves to drive the processing table to move reciprocally along the first direction, ensuring that each surface of the jewelry can be evenly ground. During this process, the dust suction assembly works to suck away the generated dust and keep the environment clean.

[0040] Due to the adoption of automatic control, the direct contact between the operator and the high-speed rotating grinding wheel is reduced, and the safety risk during work is significantly reduced.

[0041] By precisely controlling the movement of the processing table and the rotation speed of the grinding member, uniform grinding of the jewelry surface can be achieved, improving the processing accuracy and the overall quality of the jewelry.

[0042] The automatic processing process reduces the need for manual adjustment, thereby accelerating the grinding speed and improving the production efficiency.

[0043] The dust collection component effectively collects the dust generated during the grinding process, reduces the pollution of the operating environment, and provides a healthier working environment for the operator. Description of the Drawings

[0044] 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 the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0045] Figure 1 Structural schematic diagram of the automatic mirror grinding device for jewelry production according to an embodiment of the present invention;

[0046] Figure 2 For Figure 1 Exploded view of the automatic mirror grinding device for jewelry production in

[0047] Figure 3 For Figure 1 Another angle structural schematic diagram of the automatic mirror grinding device for jewelry production in

[0048] Figure 4 For Figure 2 Partial structural schematic diagram of the automatic mirror grinding device for jewelry production in

[0049] Figure 5 For Figure 2 Structural schematic diagram of the suction attachment in

[0050] Wherein: 100, automatic mirror grinding device for jewelry production;

[0051] 110, support table; 110a, chute;

[0052] 120, processing table; 120a, movable groove; 121, slide rail part;

[0053] 130, grinding member; 130a, grinding space; 131, drive motor; 132, connection component; 133, grinding wheel; 1321, connection belt; 1322, rotating shaft;

[0054] 140, swing component; 141, rotating motor; 142, output shaft; 143, eccentric wheel;

[0055] 150, dust collection component; 151, installation shell; 151a, dust suction port; 152, first motor;

[0056] 160. Mounting component; 161. Vacuum pump; 162. Suction accessory; 1621. Flexible fitting part;

[0057] A. First direction; B. Second direction. Detailed implementation mode

[0058] To facilitate the understanding of the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. Preferred embodiments of the present utility model are shown in the drawings. However, the present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided so that the understanding of the disclosure of the present utility model is more thorough and comprehensive.

[0059] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration.

[0060] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0061] Please refer to Figures 1-3 , an embodiment of the present utility model provides a mirror automatic grinding device 100 for jewelry production, including:

[0062] Support table 110;

[0063] Processing table 120, arranged on the support table 110 and slidably connected to the support table 110;

[0064] Grinding member 130, arranged on the support table 110, a grinding space 130a is formed between the grinding member 130 and the processing table 120, and the grinding space 130a is used to place the jewelry to be ground;

[0065] Swing assembly 140, one end is fixedly connected to the support table 110, and the other end is arranged on the processing table 120 to drive the processing table 120 to reciprocate relative to the support table 110 along the first direction A, and the first direction A is perpendicular to the rotation direction of the grinding member 130;

[0066] The dust suction assembly 150 is disposed on the processing table 120, and the dust suction assembly 150 is aligned with the grinding space 130a to suck away the dust in the grinding space 130a.

[0067] In this embodiment, during use, the jewelry to be ground is first fixed on the processing table 120, and then the grinding member 130 is activated to grind the jewelry to be ground. At the same time, the swinging assembly 140 moves to drive the processing table 120 to reciprocate in the first direction A to ensure that each surface of the jewelry can be evenly ground. During this process, the dust suction assembly 150 works to suck away the generated dust and keep the environment clean.

[0068] Due to the adoption of automated control, the direct contact between the operator and the high-speed rotating grinding wheel 133 is reduced, significantly reducing the safety risk during work.

[0069] By precisely controlling the movement of the processing table 120 and the rotation speed of the grinding member 130, uniform grinding of the jewelry surface can be achieved, improving the processing accuracy and the overall quality of the jewelry.

[0070] The automated processing process reduces the need for manual adjustment, thereby accelerating the grinding speed and improving production efficiency.

[0071] The dust suction assembly 150 effectively collects the dust generated during the grinding process, reduces the pollution of the operating environment, and provides a healthier working environment for the operator.

[0072] The support table 110 is the basic part of the entire device, providing a stable support platform for all other components.

[0073] The processing table 120 is a platform for placing the jewelry to be ground, located above the support table 110, and is connected to the support table 110 through a sliding mechanism. The processing table 120 is allowed to move in the first direction A, enabling precise position adjustment of the jewelry during the grinding process.

[0074] The grinding member 130 includes a driving motor 131, a connecting assembly 132 (such as a connecting belt 1321 and a rotating shaft 1322), and a grinding wheel 133. The driving motor 131 rotates to drive the grinding wheel 133 to grind the surface of the jewelry.

[0075] The swinging assembly 140 includes a rotating motor 141, an output shaft 142, and an eccentric wheel 143, and controls the reciprocating movement of the processing table 120 in the first direction A (i.e., the direction perpendicular to the rotation direction of the grinding member 130). It helps to achieve uniform grinding of the jewelry surface.

[0076] The dust collection component 150 is used to suck away the dust generated during the polishing process. This not only helps to keep the working environment clean but also prevents the dust from redepositing on the surface of the jewelry, thus affecting the polishing effect.

[0077] In at least one embodiment of the present application, the polishing member 130 includes:

[0078] A driving motor 131, disposed on the support table 110;

[0079] A connecting component 132, disposed on the support table 110, one end of the connecting component 132 is in transmission connection with the output end of the driving motor 131;

[0080] A polishing wheel 133, disposed at one end of the connecting component 132 away from the driving motor 131.

[0081] In at least one embodiment of the present application, the connecting component 132 includes:

[0082] A connecting belt 1321, one end of which is sleeved on the output end of the driving motor 131;

[0083] A rotating shaft 1322, rotatably connected to the support table 110, one end of the connecting belt 1321 away from the driving motor 131 is sleeved on one end of the rotating shaft 1322, and the other end of the rotating shaft 1322 is fixedly connected to the polishing wheel 133.

[0084] Please refer to Figures 1-5 , in this embodiment, when the driving motor 131 is started, its output end starts to rotate, and the rotational power is transmitted to the polishing wheel 133 through the connecting component 132 (i.e., the connecting belt 1321 and the rotating shaft 1322). The connecting belt 1321 ensures the smooth transmission of power, while the rotating shaft 1322 ensures that the polishing wheel 133 can rotate at the required speed and direction. The polishing wheel 133 then performs precise polishing operations on the jewelry placed on the processing table 120.

[0085] By precisely controlling the speed of the driving motor 131, the rotational speed of the polishing wheel 133 can be adjusted as needed, so as to adapt to different polishing requirements and improve the efficiency and quality of polishing.

[0086] The driving motor 131 located on the support table 110 is the power source of the polishing member 130, providing the required rotational power.

[0087] The function of the connecting component 132 is to transmit the power of the driving motor 131 to the polishing wheel 133. In this embodiment, it includes a connecting belt 1321 and a rotating shaft 1322, which can effectively convert and transmit the rotational power of the motor to the polishing wheel 133, and at the same time also allows a certain degree of flexibility and adjustment ability.

[0088] The grinding wheel 133 is installed at one end of the connecting component 132 away from the driving motor 131. The grinding wheel 133 is a component that directly contacts the jewelry for grinding. The grinding wheel 133 is a wool wheel.

[0089] In at least one embodiment of the present application, the swing assembly 140 includes:

[0090] A rotating motor 141, provided on the support table 110;

[0091] An output shaft 142, one end of which is fixedly connected to the output end of the rotating motor 141;

[0092] An eccentric wheel 143, eccentrically arranged at one end of the output shaft 142 away from the rotating motor 141;

[0093] The processing table 120 is provided with a movable groove 120a, and the eccentric wheel 143 is located in the movable groove 120a and abuts against the inner wall of the movable groove 120a;

[0094] Wherein, the rotating motor 141 moves to drive the output shaft 142 to rotate, so that the eccentric wheel 143 drives the processing table 120 to reciprocate relative to the support table 110 along the first direction A.

[0095] In at least one embodiment of the present application, a slide rail portion 121 is provided on one side of the processing table 120 close to the swing assembly 140. A chute 110a is formed on the support table 110. The chute 110a is perpendicular to the opening direction of the movable groove 120a, and the slide rail portion 121 is slidably connected to the chute 110a.

[0096] Please refer to Figures 1-5 , in this embodiment, when the rotating motor 141 is started, its output shaft 142 and the eccentric wheel 143 start to rotate. As a result, the eccentric wheel 143 moves left and right in the movable groove 120a, thereby pushing the processing table 120 to reciprocate along the first direction A. The slide rail portion 121 on the processing table 120 cooperates with the chute 110a on the support table 110 to ensure the smoothness and precision of this movement.

[0097] By precisely controlling the reciprocating movement of the processing table 120, it can be ensured that each part of the jewelry surface can be evenly polished, improving the product quality.

[0098] The automated reciprocating movement reduces the need for manual operation, making the grinding process faster and continuous, thereby improving production efficiency.

[0099] The operator only needs to place the jewelry and start the equipment, without manually adjusting the position of the jewelry, reducing the skill requirements for operation.

[0100] The rotating motor 141 is located on the support table 110 and is the power source of the swing assembly 140, responsible for providing power to drive the entire swing mechanism.

[0101] The output shaft 142 is fixedly connected to the output end of the rotating motor 141, converting the rotational power of the motor into the power output of the swing assembly 140.

[0102] The eccentric wheel 143 is installed at the distal end of the output shaft 142. Its eccentric setting means that it does not rotate on the center line of the output shaft 142, and can convert the rotational motion of the rotating motor 141 into a linear reciprocating motion.

[0103] The processing table 120 is connected to the output shaft 142 through the eccentric wheel 143 in the movable slot 120a, and the slide rail portion 121 on the processing table 120 is slidably connected to the chute 110a on the support table 110. This allows the processing table 120 to perform stable reciprocating movement along the first direction A (perpendicular to the rotation direction of the eccentric wheel 143).

[0104] In at least one embodiment of the present application, the dust collection assembly 150 includes:

[0105] The mounting shell 151 is provided on the processing table 120, and the mounting shell 151 is provided with a dust suction port 151a;

[0106] The tangential direction of the grinding wheel 133 in contact with the jewelry to be ground is the second direction B, the second direction B is perpendicular to the first direction A, and the dust suction port 151a is opened along the second direction B.

[0107] In at least one embodiment of the present application, the dust collection assembly 150 further includes:

[0108] The first motor 152 is provided in the mounting shell 151, and a fan blade is provided at the output end of the first motor 152.

[0109] Please refer to Figures 1-5 , in this embodiment, when the jewelry starts to be ground, the grinding wheel 133 contacts the jewelry to generate dust. At the same time, the first motor 152 starts, driving the fan blade to rotate, generating a strong suction force. Acting on the grinding area through the dust suction port 151a, the dust is sucked into the mounting shell 151. Since the dust suction port 151a is opened along the tangential direction of the contact point between the grinding wheel 133 and the jewelry (i.e., the main direction of dust scattering), this ensures that most of the dust can be effectively absorbed, reducing the diffusion of dust in the air.

[0110] By effectively absorbing the dust generated during the grinding process, the air pollution in the workplace is reduced, providing a cleaner and safer working environment for the operators.

[0111] Reduces the chance of dust redepositing on the surface of the jewelry, ensuring the uniformity and high-quality completion of the polishing effect.

[0112] The mounting shell 151 is arranged on the processing table 120 and has a dust suction port 151a, which is the main structure of the dust suction assembly 150. The dust suction port 151a is opened along the second direction B, maximizing the ability to capture the dust generated during the polishing process.

[0113] The mounting shell 151 internally houses a first motor 152, and a fan blade is installed at the output end of the motor. The first motor 152 is the power source of the dust suction assembly 150, responsible for generating sufficient suction to inhale and collect the dust generated during the polishing process through the dust suction port 151a.

[0114] In at least one embodiment of the present application, the automatic mirror polishing device 100 for jewelry production further includes:

[0115] A mounting assembly 160, arranged on the processing table 120 and used for adsorbing the jewelry to be polished.

[0116] In at least one embodiment of the present application, the mounting assembly 160 includes:

[0117] A vacuum pump 161, arranged on the support table 110;

[0118] An adsorbing member 162, arranged on the processing table 120 and communicated with the vacuum pump 161.

[0119] In at least one embodiment of the present application, a flexible fitting portion 1621 is provided on one side of the adsorbing member 162 close to the polishing wheel 133, and the flexible fitting portion 1621 is used for fitting with the jewelry to be polished.

[0120] Please refer to Figures 1-5 , in this embodiment, when the jewelry is placed at the adsorbing member 162 on the processing table 120, the operator will start the vacuum pump 161. The vacuum pump 161 generates negative pressure to adsorb the jewelry through the adsorbing member 162 and fix it on the processing table 120. The flexible fitting portion 1621 will make appropriate morphological adjustments according to the shape of the jewelry to ensure close contact between the jewelry and the adsorbing member 162, thereby achieving a stable adsorption effect.

[0121] By stably fixing the jewelry, it is ensured that the jewelry does not move during the automatic polishing process, thereby improving the polishing accuracy and product quality.

[0122] The flexible fitting portion 1621 enables the mounting assembly 160 to adapt to jewelry of different shapes and sizes, enhancing the scope of use of the device.

[0123] Compared with traditional clamping methods, the vacuum adsorption method is simpler and faster, greatly reducing the time for jewelry positioning and fixing and improving production efficiency.

[0124] The installation component 160 is a mechanical device provided on the processing table 120 for fixing jewelry, and its purpose is to ensure the stable position of the jewelry during the polishing process and avoid movement or dropping.

[0125] The installation component 160 adsorbs the jewelry to be polished through the negative pressure generated by the vacuum pump 161. The vacuum pump 161 is provided on the support table 110 and is connected to the adsorbing member 162 installed on the processing table 120. This enables the jewelry to be firmly fixed on the processing table 120 without relying on traditional clamping methods.

[0126] On one side of the adsorbing member 162 close to the polishing wheel 133, there is a flexible fitting portion 1621. The flexible fitting portion 1621 can be adjusted according to the specific shape of the jewelry to achieve a perfect fit with the surface of the jewelry, thereby enhancing the adsorption effect.

[0127] Before polishing, it is first necessary to thoroughly inspect the jewelry to identify the areas that need to be polished and any problems that may affect the polishing effect, such as cracks, loose gemstones, etc.

[0128] Use appropriate cleaning methods to remove dirt, grease, and residues on the jewelry to ensure that the surface stains will not affect the effect during the polishing process.

[0129] Utilize the vacuum pump 161 and the adsorbing member 162 to fix the jewelry on the processing table 120. The flexible fitting portion 1621 will be adjusted according to the shape of the jewelry to achieve a tight fit with the surface of the jewelry. The flexible fitting portion 1621 is made of silicone material.

[0130] Start the device to make the polishing wheel 133 start to rotate. Use the polishing wheel 133 and polishing paste to polish the jewelry to remove all tiny scratches and make the surface of the jewelry reach a mirror finish.

[0131] During the polishing process, the dust collection component 150 continuously works to suck away the generated dust. After the polishing is completed, thoroughly clean the working area around the jewelry.

[0132] During the entire polishing process, the swinging component 140 drives the processing table 120 to reciprocate along the first direction A through the cooperation of the rotating motor 141 and the eccentric wheel 143. The reciprocating movement ensures that every part of the surface of the jewelry can evenly contact the polishing wheel 133 and the polishing wheel, achieving a comprehensive and uniform polishing and finishing effect.

[0133] Thus, a mirror automatic polishing device 100 for jewelry production is provided, including:

[0134] A support table 110;

[0135] A processing table 120 is provided on the support table 110 and is slidably connected to the support table 110;

[0136] A grinding member 130 is provided on the support table 110. A grinding space 130a is formed between the grinding member 130 and the processing table 120, and the grinding space 130a is used to place the jewelry to be ground;

[0137] A swing assembly 140 has one end fixedly connected to the support table 110 and the other end provided on the processing table 120 to drive the processing table 120 to reciprocate relative to the support table 110 along a first direction A, and the first direction A is perpendicularly arranged to the rotation direction of the grinding member 130;

[0138] A dust suction assembly 150 is provided on the processing table 120. The dust suction assembly 150 is aligned with the grinding space 130a to suck away the dust in the grinding space 130a.

[0139] In this embodiment, during use, the jewelry to be ground is first fixed on the processing table 120, and then the grinding member 130 is started to grind the jewelry to be ground. At the same time, the swing assembly 140 moves to drive the processing table 120 to reciprocate along the first direction A to ensure that each surface of the jewelry can be evenly ground. During this process, the dust suction assembly 150 works to suck away the generated dust and keep the environment clean.

[0140] Due to the adoption of automatic control, the direct contact between the operator and the high-speed rotating grinding wheel 133 is reduced, and the safety risk during work is significantly reduced.

[0141] By precisely controlling the movement of the processing table 120 and the rotation speed of the grinding member 130, the uniform grinding of the jewelry surface can be achieved, improving the processing accuracy and the overall quality of the jewelry.

[0142] The automated processing process reduces the need for manual adjustment, thereby accelerating the grinding speed and improving the production efficiency.

[0143] The dust suction assembly 150 effectively collects the dust generated during the grinding process, reduces the pollution of the operating environment, and provides a healthier working environment for the operator.

[0144] The above-described embodiments merely represent several implementation manners of the present utility model. The description thereof is relatively specific and detailed, but it should not be construed as a limitation to the scope of the patent application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all fall within the protection scope of the present utility model. Therefore, the protection scope of the patent of the present utility model shall be subject to the appended claims.

Claims

1. An automatic mirror polishing device for jewelry production, characterized in that: include: Support table; A processing table, disposed on the support table and slidably connected to the support table; A polishing component is arranged on the supporting platform, and a polishing space is formed between the polishing component and the processing platform, and the polishing space is used to place the jewelry to be polished; A swing assembly, one end of which is fixedly connected to the support table and the other end of which is disposed on the processing table to drive the processing table to reciprocate relative to the support table along a first direction, wherein the first direction is perpendicular to the direction in which the grinding component rotates; A dust suction component is arranged on the processing table, and the dust suction component is aimed at the polishing space to suck away the dust in the polishing space.

2. The automatic mirror polishing device for jewelry production according to claim 1, characterized in that: The grinding component comprises: A driving motor is arranged on the supporting platform; A connecting component is arranged on the supporting platform, and one end of the connecting component is drivingly connected to the output end of the driving motor; The grinding wheel is arranged at one end of the connecting component away from the driving motor.

3. The automatic mirror polishing device for jewelry production according to claim 2, characterized in that: The connection component comprises: A connecting belt, one end of which is sleeved on the output end of the driving motor; The rotating shaft is rotatably connected to the support platform, one end of the connecting belt away from the driving motor is sleeved on one end of the rotating shaft, and the other end of the rotating shaft is fixedly connected to the grinding wheel.

4. The automatic mirror polishing device for jewelry production according to claim 1, characterized in that: The swing assembly comprises: A rotating motor is arranged on the supporting platform; An output shaft, one end of which is fixedly connected to the output end of the rotating motor; An eccentric wheel, eccentrically arranged at an end of the output shaft away from the rotating motor; The processing table is provided with a movable groove, the eccentric wheel is located in the movable groove and abuts against the inner wall of the movable groove; The rotating motor moves to drive the output shaft to rotate, so that the eccentric wheel drives the processing table to reciprocate along the first direction relative to the supporting table.

5. The automatic mirror polishing device for jewelry production according to claim 4, characterized in that: A slide rail is provided on one side of the processing table close to the swing assembly, a slide groove is provided on the support table, the slide groove is vertically arranged to the opening direction of the movable groove, and the slide rail is slidably connected to the slide groove.

6. The automatic mirror polishing device for jewelry production according to claim 2, characterized in that: The dust collection component comprises: A mounting shell, arranged on the processing table, wherein the mounting shell is provided with a dust suction port; The tangent direction of the grinding wheel in contact with the jewelry to be polished is the second direction, the second direction is perpendicular to the first direction, and the dust suction port is opened along the second direction.

7. The automatic mirror polishing device for jewelry production according to claim 6, characterized in that: The dust collection assembly also includes: The first motor is arranged in the installation shell, and the output end of the first motor is provided with a fan blade.

8. The automatic mirror polishing device for jewelry production according to claim 2, characterized in that: The automatic mirror polishing device for jewelry production also includes: The mounting assembly is arranged on the processing table and is used for absorbing the jewelry to be polished.

9. The automatic mirror polishing device for jewelry production according to claim 8, characterized in that: The installation assembly includes: A vacuum pump is arranged on the support platform; The adsorption component is arranged on the processing table and is connected with the vacuum pump.

10. The automatic mirror polishing device for jewelry production according to claim 9, characterized in that: A flexible fitting portion is provided on one side of the adsorption member close to the grinding wheel, and the flexible fitting portion is used to fit with the jewelry to be polished.