Non-standard workpiece grinding equipment

By designing the feeding assembly and feeding wheel structure of the non-standard workpiece grinding equipment, the problem of uneven material feeding was solved, achieving stable transmission and efficient processing of the grinding parts, which is suitable for automated production lines and precision machining.

CN223558075UActive Publication Date: 2025-11-18ZHAOQING HONGCHUANG PRECISION TECH CO LTD
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Patent Information

Application Number
CN202423033648.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-18
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Existing grinding equipment relies on manual or inaccurate automatic feeding systems, resulting in uneven material feeding and affecting the processing quality and efficiency of the ground parts.

Method used

Design a non-standard workpiece grinding equipment, including a feeding assembly and a feeding wheel, which generates rotational force by connecting with a drive component to ensure stable transmission of the workpiece to be ground. The equipment adopts structures such as anti-slip parts, abutment parts and clamping components to enhance stability and precision.

Benefits of technology

It achieves a stable supply of grinding parts, improves the efficiency and precision of the grinding process, reduces manual intervention, and is suitable for automated production lines and precision machining.

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Abstract

The utility model provides non-standard workpiece grinding equipment which is fixed to a machine table and connected with a driving part, the non-standard workpiece grinding equipment comprises a feeding assembly which is fixedly connected to the machine table and connected with the driving part to generate rotating force so as to transmit driving force, and the feeding assembly further comprises a discharging part which is fixedly connected with the machine table and connected with the driving part to generate rotating force so as to transmit the driving force. And a grinding piece is placed in the placing piece. The feeding wheel is fixed to the machine table, connected with the driving part to generate rotating force and located above the discharging part, and the grinding part is located between the discharging part and the feeding wheel; and the feeding wheel rotates and conveys the grinding piece clamped by the discharging piece and the feeding wheel. By means of the structure, stable feeding of grinding pieces is guaranteed.
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Description

Technical Field

[0001] This application relates to the field of grinding, and more particularly to a grinding device for non-standard workpieces. Background Technology

[0002] Currently, grinding equipment occupies an important position in industrial manufacturing and is widely used in fields such as automobiles, aviation, electronics, and mold manufacturing.

[0003] Grinding equipment often relies on manual or imprecise automatic feeding systems, which have some inherent drawbacks. First, manual feeding is prone to uneven feeding, which in turn affects the machining quality of the workpiece. For example, manual operation may lead to unstable feeding speed, resulting in changes in grinding pressure during the grinding process, thus affecting grinding efficiency and surface quality.

[0004] Therefore, there is a need for a non-standard workpiece grinding equipment that provides a stable supply of grinding parts. Utility Model Content

[0005] In view of this, it is necessary to provide a non-standard workpiece grinding equipment that provides a stable supply of grinding parts to solve the above problems.

[0006] Embodiments of this application provide a non-standard workpiece grinding device, fixed to a machine base and connected to a drive component, comprising:

[0007] A feeding assembly, fixedly connected to the machine base and connected to the drive component to generate rotational force to transmit driving force, the feeding assembly comprising:

[0008] The feeding component is fixedly connected to the machine base, and the grinding part is placed inside the feeding component;

[0009] The feeding wheel is fixed to the machine base and connected to the drive component to generate rotational force, and is located above the unloading component. The grinding component is located between the unloading component and the feeding wheel.

[0010] The feeding wheel rotates and conveys the unloading component and the grinding component held by the feeding wheel.

[0011] In at least one embodiment of this application, the feeding assembly further includes:

[0012] A fixing component is fixedly connected to the machine base and fits against the feeding wheel. The fixing component includes:

[0013] A fixed base is fixedly connected to the machine base, and the two fixed bases are respectively located at both ends of the feeding component;

[0014] The connecting part is fitted and connected to the feeding component, and a fixing seat is fixedly connected to each end of the connecting part.

[0015] In at least one embodiment of the present application, the feeding piece comprises:

[0016] The anti-skid part is connected with the feeding piece at one end and with the feeding wheel at the other end.

[0017] The abutting part is integrally formed with the anti-skid part.

[0018] In at least one embodiment of the present application, the feeding piece comprises:

[0019] The extension part is located at one end of the feeding piece and abuts against the abutting part and is connected with the fixed seat.

[0020] In at least one embodiment of the present application, the connecting part is in the shape of a circular arc, and the connecting part is arranged opposite to the feeding wheel.

[0021] In at least one embodiment of the present application, the feeding assembly further comprises:

[0022] The rubber ring is sleeved on the feeding wheel and is located between the rubber ring and the anti-skid part.

[0023] In at least one embodiment of the present application, the non-standard workpiece grinding device comprises:

[0024] The clamping assembly is arranged adjacent to the feeding assembly and is fixedly connected with the machine table and is close to or away from the feeding assembly.

[0025] In at least one embodiment of the present application, the clamping assembly comprises:

[0026] The clamping piece is connected with the feeding wheel and the feeding piece.

[0027] The sliding piece is fixedly connected with the machine table and is slidingly connected with the clamping piece.

[0028] In at least one embodiment of the present application, the clamping assembly comprises:

[0029] The adjusting rod is connected with the clamping piece and pushes the clamping piece to slide away from or close to the feeding assembly under the action of the sliding piece.

[0030] The non-standard workpiece grinding device provided above is connected with the driving piece through the feeding assembly, generates a rotating force, transmits the driving force to the feeding wheel, and drives the feeding wheel to rotate. The rotating action of the feeding wheel is to clamp and convey the grinding piece from the feeding piece to the next processing stage. This process ensures the stable supply of the grinding piece, so that the grinding process can be efficiently and continuously carried out, avoiding the instability caused by manual operation. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 isometric assembly view of the non-standard workpiece grinding device of the present application;

[0032] Figure 2 top assembly view of the non-standard workpiece grinding device of the present application;

[0033] Figure 3 front assembly view of the non-standard workpiece grinding device of the present application;

[0034] Figure 4 isometric assembly view of the non-standard workpiece grinding device of the present application without the machine table and the driving member;

[0035] Figure 5 front assembly view of the non-standard workpiece grinding device of the present application without the machine table and the driving member;

[0036] Figure 6 isometric assembly view of the non-standard workpiece grinding device of the present application; Figure 5 enlarged view of part A;

[0037] Explanation of main component symbols

[0038] 100, non-standard workpiece grinding device; 10, feeding assembly; 11, feeding member; 111, anti-skid part; 112, abutting part; 113, extension part; 12, grinding member; 13, feeding wheel; 131, rubber ring; 14, fixing member; 141, fixing seat; 142, connecting part; 20, clamping assembly; 21, clamping member; 22, sliding member; 23, adjusting rod; 210, machine table; 220, driving member. DETAILED DESCRIPTION

[0039] The embodiments of the present application will be described below in conjunction with the drawings of the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all of the embodiments of the present application.

[0040] It should be noted that when one component is considered to be “connected” to another component, it can be directly connected to the other component or a middle component can exist at the same time. When one component is considered to be “provided on” another component, it can be directly provided on the other component or a middle component can exist at the same time. The terms “top”, “bottom”, “upper”, “lower”, “left”, “right”, “front”, “back”, and the like used herein are for illustrative purposes only.

[0041] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.

[0042] Please refer to Figures 1-6The embodiment of the present application provides a non-standard workpiece grinding device 100 fixed to a machine table 210 and connected with a driving member 220, the non-standard workpiece grinding device 100 comprising: a feeding assembly 10. The feeding assembly 10 is fixedly connected to the machine table 210, and the feeding assembly 10 is connected with the driving member 220 to generate a rotating force, so as to transmit a driving force. The feeding assembly 10 comprises: a feeding member 11 and a feeding wheel 13. The feeding member 11 is fixedly connected to the machine table 210, and a grinding member 12 is placed in the feeding member 11. The feeding wheel 13 is fixed to the machine table 210, the feeding wheel 13 is connected with the driving member 220 to generate a rotating force, and the feeding wheel 13 is located above the feeding member 11, and the grinding member 12 is located between the feeding member 11 and the feeding wheel 13. Wherein, the feeding wheel 13 rotates and conveys the grinding member 12 clamped by the feeding member 11 and the feeding wheel 13.

[0043] Specifically, the feeding assembly 10 is fixedly connected to the machine table 210 and connected with the driving member 220 to generate a rotating force, and the feeding assembly 10 is responsible for transmitting the driving force.

[0044] The feeding member 11 is fixedly connected to the machine table 210, and the grinding member 12 is placed in the feeding member 11. The feeding member 11 provides a stable support platform to ensure that the grinding member 12 does not deviate during the feeding process.

[0045] The feeding wheel 13 is fixed to the machine table 210 and connected with the driving member 220 to generate a rotating force, and located above the feeding member 11, and the feeding wheel 13 clamps and conveys the grinding member 12.

[0046] The feeding assembly 10 acts as the core power transmission device of the whole system. Through the connection with the driving member 220, the feeding assembly 10 can effectively transmit the rotating force and ensure the smooth conveying of the grinding member 12 in the feeding member 11. The stability and stability of the feeding assembly 10 are crucial to the efficient operation of the whole feeding system. The feeding assembly 10 can maximize the energy loss in the transmission process, improve the system efficiency, and ensure the smooth transmission of power.

[0047] The feeding member 11 firmly supports the grinding member 12 on the machine table 210 to prevent deviation during transportation. Since the feeding member 11 is fixedly connected to the machine table 210, the feeding member 11 can effectively resist friction and vibration to ensure that the grinding member 12 is stable during conveying. The feeding member 11 is very important for controlling the stability and precision machining of the grinding member 12, especially in high-precision machining and assembly, the stability of the feeding member 11 can effectively ensure the accuracy of the workpiece during the whole feeding process.

[0048] The feeding wheel 13 is responsible for transferring the grinding piece 12 from the feeding piece 11 to the next process. The feeding wheel 13 is connected with the driving piece 220, which can continuously generate rotational force to push the grinding piece 12 to move along the predetermined path. The feeding wheel 13 is located above the feeding piece 11 and can clamp the grinding piece 12 to ensure stable transmission. The feeding wheel 13 avoids excessive friction damage to the grinding piece 12 and ensures the accuracy and smoothness of the transmission process.

[0049] When the driving piece 220 is started, the rotational force of the driving piece 220 is transmitted to the feeding wheel 13 through the feeding assembly 10, and the feeding assembly 10 and the feeding wheel 13 cooperate to generate continuous rotational motion. The feeding wheel 13 clamps and transmits the grinding piece 12 during rotation and takes it away from the feeding piece 11. The feeding piece 11 is fixed to the machine table 210 to ensure that the grinding piece 12 can be stably transmitted by the feeding wheel 13, avoid the grinding piece 12 from deviating, and maintain the accuracy and smoothness of the transmission process.

[0050] The non-standard workpiece grinding device 100 is suitable for applications such as automated production lines, grinding devices, precision machining, and mechanical assembly. In these scenarios, it is necessary to accurately control the transmission of materials and avoid deviation or wear of materials. Application examples include material feeding in mechanical processing, assembly line feeding of electronic components, and automated production processes that require precise handling and transmission. The efficiency and stability of the non-standard workpiece grinding device 100 make it a key technology for improving automation, reducing manual intervention, and improving production efficiency in industrial production

[0051] In a specific embodiment, the feeding assembly 10 further comprises a fixed piece 14, a fixed seat 141, and a connecting part 142.

[0052] The fixed piece 14 is fixedly connected with the machine table 210, and the fixed piece 14 is connected with the feeding wheel 13. The fixed piece 14 comprises a fixed seat 141 and a connecting part 142. The fixed seat 141 is fixedly connected with the machine table 210, and two fixed seats 141 are respectively located at both ends of the feeding piece 11. The connecting part 142 is connected with the feeding piece 11, and both ends of the connecting part 142 are respectively fixedly connected with a fixed seat 141.

[0053] Specifically, the function of the fixed piece 14 is to enhance the stability of the feeding assembly 10 and ensure good cooperation between the feeding wheel 13 and other components.

[0054] The fixed seat 141 provides a stable support point to ensure that the entire feeding assembly 10 does not deviate or vibrate unnecessarily during operation.

[0055] The connecting part 142 in this structure plays a role in ensuring the firm connection of the feeding part 11 with the machine table 210 and effectively transmitting pressure and power, ensuring the stable supply of the grinding part 12.

[0056] The fixing part 14 plays a role in increasing the overall stability of the feeding assembly 10. In the entire feeding system, the fixing part 14 plays a role in constraint and support, ensuring the precise fit between the feeding wheel 13, the feeding assembly 10 and other parts. Especially in the environment of high-speed transmission, the fixing part 14 can avoid loosening of the system due to vibration or external force, thereby improving the reliability and precision of the non-standard workpiece grinding equipment 100.

[0057] The fixed seat 141 plays a role in combining the support of the feeding assembly 10 with the machine table 210, which fixes the entire feeding assembly 10 in the designated position and avoids displacement due to equipment operation. The fixed seat 141 is designed considering load distribution and stability, and its two ends are located at the two ends of the feeding part 11, thereby ensuring the balance and strength of the entire system. During high-speed operation, the fixed seat 141 effectively avoids vibration, ensuring the continuous and stable operation of the feeding system.

[0058] The connecting part 142 in this structure plays a role in connecting the feeding part 11 and the fixed seat 141, ensuring that the grinding part 12 can be stably fixed to the machine table 210 through the feeding part 11.

[0059] In a specific embodiment, the feeding part 11 comprises an anti-skid part 111 and an abutting part 112. One end of the anti-skid part 111 is connected with the feeding part 11, and the other end of the anti-skid part 111 is connected with the feeding wheel 13. The abutting part 112 is integrally formed with the anti-skid part 111.

[0060] Specifically, the connection between the anti-skid part 111 and the feeding part 11 and the feeding wheel 13 plays a role in preventing the grinding part 12 from slipping or jamming. Specifically, one end of the anti-skid part 111 is connected with the feeding part 11, and the other end is connected with the feeding wheel 13, ensuring stable transmission of the grinding part 12 during transportation and preventing uneven feeding or jamming due to unstable sliding.

[0061] The abutting part 112 is integrally formed with the anti-skid part 111 and located at the other end of the anti-skid part 111, and is connected with the fixed seat 141 or other related parts. The abutting part 112 is designed to enhance the connection strength with the feeding part 11, avoid loosening of the parts due to long-term load and friction, and thereby increase the stability of the feeding system.

[0062] The anti-skid part 111 increases the gripping force between the feeding part 11 and the feeding wheel 13 during feeding by friction, preventing uneven sliding of the grinding part 12. When the feeding wheel 13 is connected to the feeding part 11, the anti-skid part 111 reduces sliding and prevents the grinding part 12 from deviating from the track, ensuring that the grinding part 12 can be smoothly and stably transmitted to the next process, avoiding the grinding part 12 from being stuck or damaged due to improper sliding. This design ensures smooth feeding and improves the stability and precision of the entire feeding system.

[0063] The abutting part 112 is integrally formed with the anti-skid part 111, enhancing the structural strength of the entire feeding part 11. In long-term operation, the abutting part 112 bears a large pressure, especially in high-speed operation or high-load conditions, the abutting part 112 can provide additional support, reducing wear and deformation. This structural design enhances the stability between the connecting parts 142, enabling the entire non-standard workpiece grinding device 100 to maintain a longer service life under intense working conditions, and maintain high precision and stability.

[0064] The connection of the anti-skid part 111 with the feeding part 11 and the feeding wheel 13 ensures the stability of the grinding part 12 during transportation. The anti-skid part 111 avoids uneven sliding or sticking by increasing friction, improving feeding efficiency and reducing system failure. The close connection between the anti-skid part 111 and the feeding wheel 13 enhances the gripping force of the feeding wheel 13 on the grinding part 12, improving the stability of the grinding part 12 during transportation.

[0065] The abutting part 112 is integrally formed with the anti-skid part 111, forming a more compact overall structure, so that the entire feeding part 11 remains stable during transportation and is not easily deformed or loose. This integrated design reduces the difficulty of component manufacturing, while enhancing durability and work efficiency.

[0066] In a specific embodiment, the feeding part 11 includes an extension part 113 located at one end of the grinding part 12, the extension part 113 abuts the abutting part 112, and the extension part 113 is in close connection with the fixed seat 141.

[0067] Specifically, the extension part 113 is located at one end of the grinding part 12, abuts the abutting part 112, and is in close connection with the fixed seat 141. The design of the extension part 113 mainly extends the contact part of the feeding part 11, thereby providing more stable support and guidance for the grinding part 12. The extension part 113 is designed to extend its structure, allowing the grinding part 12 to flow smoothly from the feeding part 11 and avoiding obstacles or uneven feeding during the process.

[0068] The main function of the extension part 113 is to ensure the smooth flow of the grinding piece 12 through the non-standard workpiece grinding equipment 100 and maintain stability during the flow process. It abuts against the abutting part 112 and can provide sufficient guiding force when the grinding piece 12 is output, preventing the grinding piece 12 from deviating from the track or causing jamming. The extension part 113 is connected with the fixed seat 141 to ensure the stability of the structure, making the entire discharge piece 11 more solid and stable during work, thereby improving the accuracy and reliability of the feeding process.

[0069] The design of the extension part 113 makes the grinding piece 12 more stable during discharge, without causing adverse consequences due to sudden interference or uneven friction. The connection of the extension part 113 with the fixed seat 141 provides strong support force, preventing the discharge piece 11 from deforming or loosening during operation, improving the durability and work efficiency of the equipment.

[0070] In a specific embodiment, the connecting part 142 is in a circular arc shape, and the circular arc-shaped connecting part 142 is arranged opposite to the feeding wheel 13.

[0071] Specifically, the connecting part 142 is designed in a circular arc shape, which is usually to improve its cooperation with the feeding wheel 13. The circular arc shape can make the connecting part 142 produce smoother and more uniform contact with the feeding wheel 13 during rotation, thereby reducing friction and wear, ensuring the stability and durability of the non-standard workpiece grinding equipment 100 during long-term work. The circular arc shape also provides a better contact angle, ensuring that the feeding wheel 13 can more smoothly push the discharge piece 11 and the grinding piece 12 during power transmission.

[0072] The circular arc-shaped connecting part 142 provides a smoother transmission path for the non-standard workpiece grinding equipment 100. Since the curvature of the circular arc is moderate, when the feeding wheel 13 in the non-standard workpiece grinding equipment 100 contacts the connecting part 142, it can not only effectively disperse the contact pressure, but also make the transmitted force more uniform. This design helps to reduce the impact force during transmission, thereby reducing the wear of mechanical parts and improving the service life of the entire equipment.

[0073] By arranging the connecting part 142 opposite to the feeding wheel 13, the problem of too large or too small angle during rotation is avoided, thereby ensuring more stable rotation of the feeding wheel 13. The circular arc-shaped connecting part 142 can effectively avoid excessive friction resistance between the feeding wheel 13 and the parts it contacts, reduce energy loss, and improve work efficiency. This design significantly improves the smooth operation of the non-standard workpiece grinding equipment 100, making the feeding process of the grinding piece 12 more uniform and smooth, thereby improving the accuracy and quality of the entire machining process.

[0074] The arc shape of the connecting portion 142 and the relative arrangement between the feeding wheel 13 embody the high combination of structure optimization and precision control. The arc-shaped connecting portion 142 design effectively increases the contact area between the feeding wheel 13 and the connecting portion 142, improves the distribution of contact force, and makes the friction more uniform. In addition, the shape of the arc-shaped connecting portion 142 has an important influence on the operation of the feeding wheel 13, which helps the feeding wheel 13 to drive the grinding piece 12 more smoothly during rotation, thereby avoiding the problems of jumping, jamming or uneven feeding during the feeding process.

[0075] In a specific embodiment, the feeding assembly 10 further comprises a rubber ring 131. The rubber ring 131 is sleeved on the feeding wheel 13, and the rubber ring 131 is located between the rubber ring 131 and the anti-skid portion 111.

[0076] Specifically, the connection between the rubber ring 131 and the feeding wheel 13 is very close, and the rubber ring 131 is sleeved on the outside of the feeding wheel 13, which means that it has a larger contact area with the feeding wheel 13. This design ensures that the feeding wheel 13 can continuously generate sufficient friction during operation, thereby ensuring that the grinding piece 12 and the feeding piece 11 can be stably conveyed to the target position, preventing uneven feeding due to insufficient friction. By sleeving the rubber ring 131 on the feeding wheel 13, the rapid wear of the feeding wheel 13 can be effectively avoided, the service life of the feeding wheel 13 is improved, and the heat generated by excessive friction is reduced.

[0077] The relative arrangement of the rubber ring 131 and the anti-skid portion 111 can ensure that the non-standard workpiece grinding equipment 100 can always maintain stable friction and positioning under different working conditions. The rubber ring 131 enhances the driving ability of the feeding wheel 13 by enhancing the friction, while the anti-skid portion 111 effectively prevents the feeding wheel 13 from slipping. In actual application, this design can avoid the situation that the feeding wheel 13 deviates or loses control due to lack of sufficient friction or improper operation, thereby ensuring long-term efficient operation of the equipment.

[0078] In a specific embodiment, the non-standard workpiece grinding equipment 100 comprises a clamping assembly 20. The clamping assembly 20 is arranged adjacent to the feeding assembly 10, the clamping assembly 20 is fixedly connected with the machine table 210, and the clamping assembly 20 is close to or away from the feeding assembly 10.

[0079] Specifically, the adjacent arrangement of the clamping assembly 20 and the feeding assembly 10 ensures that the material can be clamped and guided in real time during the feeding process. The feeding assembly 10 conveys the material to the clamping assembly 20 during the feeding process, and the clamping assembly 20 ensures that the material does not slip or deviate during the subsequent processing or conveying process. Due to the action of the clamping assembly 20, the position of the material during the feeding process is kept stable, thereby ensuring the smooth progress of the subsequent processing.

[0080] The clamping assembly 20 can adjust the distance from the feeding assembly 10 as needed, which makes the non-standard workpiece grinding device 100 more flexible. By adjusting the distance between the clamping assembly 20 and the feeding assembly 10, different sizes, shapes, and weights of materials can be accommodated. For example, when dealing with smaller and lighter materials, the clamping assembly 20 can be appropriately close to the feeding assembly 10 to enhance the clamping force; when dealing with larger and heavier materials, the clamping assembly 20 can be appropriately far away from the feeding assembly 10 to avoid clamping too tightly and causing material damage or feeding difficulty.

[0081] In a specific embodiment, the clamping assembly 20 includes a clamping piece 21 and a sliding piece 22. The clamping piece 21 is attached to the feeding wheel 13 and the discharging piece 11, respectively. The sliding piece 22 is fixedly connected to the machine table 210 and is in sliding connection with the clamping piece 21.

[0082] Specifically, the clamping piece 21 is designed to be attached to the feeding wheel 13 and the discharging piece 11, ensuring that the material can be stably clamped when passing between the feeding wheel 13 and the discharging piece 11, avoiding material slipping or disengaging during transportation. This attachment ensures the accuracy and stability of the feeding process, effectively improving the reliability of material transportation.

[0083] By closely attaching to the feeding wheel 13 and the discharging piece 11, the clamping piece 21 can always maintain the clamping state of the material when it passes through the feeding path, not only ensuring that the material does not deviate during transportation, but also avoiding material blockage or supply interruption caused by insecure clamping, especially in high-speed production lines, stability is particularly important.

[0084] The sliding piece 22 is fixedly connected to the machine table 210, ensuring the position stability of the entire clamping assembly 20, and preventing displacement due to vibration or pressure changes during operation.

[0085] The sliding connection between the sliding piece 22 and the clamping piece 21 allows the clamping piece 21 to flexibly adjust the clamping force and position according to the changes in material and the requirements of the transportation path. The sliding connection provides flexibility, allowing the clamping piece 21 to adjust with the movement of the sliding piece 22 to adapt to different material specifications and transportation speeds.

[0086] The sliding connection between the sliding piece 22 and the clamping piece 21 makes the clamping assembly 20 highly adaptable, allowing accurate adjustment of the relative position of the clamping piece 21 according to actual production needs. This design can cope with changes in material size, shape, weight, etc. during production, avoiding feeding problems caused by uneven or unstable materials, and improving the flexibility and accuracy of the equipment.

[0087] In a specific embodiment, the clamping assembly 20 includes an adjusting rod 23. The adjusting rod 23 is connected with the clamping piece 21 and, under the action of the sliding piece 22, pushes the clamping piece 21 to slide away from or close to the feeding assembly 10.

[0088] Specifically, the adjusting rod 23 can directly affect the position of the clamping piece 21 through the connection with the clamping piece 21. When the adjusting rod 23 acts, the distance between the clamping piece 21 and the feeding wheel 13 and the discharging piece 11 can be adjusted by pushing the sliding of the clamping piece 21, thereby adjusting the clamping force. The purpose of this design is to provide a flexible adjustment function when the material type, size or production demand changes.

[0089] Through the action of the adjusting rod 23, the clamping piece 21 can adjust its position according to the needs of different materials during production. If the material is large, the clamping piece 21 can move away from the feeding assembly 10 to provide a larger clamping space; if the material is small, the clamping piece 21 can move close to the feeding assembly 10 to clamp the material more accurately.

[0090] The adjusting rod 23 enables the non-standard workpiece grinding equipment 100 to flexibly adjust the clamping force according to the material characteristics. This design can reduce the clamping instability caused by inconsistent material specifications, thereby improving the accuracy and reliability of material conveying. In addition, the adjusting function provided by the adjusting rod 23 also optimizes the material conveying effect in the production process, reduces material waste, and improves production efficiency.

[0091] The sliding piece 22, as a supporting component, is in sliding connection between the adjusting rod 23 and the clamping piece 21, ensuring that the pushing of the adjusting rod 23 can accurately and smoothly change the position of the clamping piece 21. The sliding piece 22 transmits the force of the adjusting rod 23 to the clamping piece 21 through sliding motion, thereby adjusting the relative position of the clamping piece 21.

[0092] The sliding piece 22 provides a smooth adjustment mechanism, avoiding the problem of jamming or incoordination during the adjustment of the clamping piece 21, ensuring the smooth progress of the feeding process. The stability and durability of the sliding piece 22 can improve the overall working efficiency of the system, avoiding problems such as material jamming, stagnation or uneven feeding caused by improper adjustment.

[0093] A non-standard workpiece grinding equipment 100 includes the structure of any of the non-standard workpiece grinding equipment 100, and therefore will not be described again.

[0094] Therefore, the non-standard workpiece grinding device 100 is connected with the driving member 220 through the feeding assembly 10, a rotating force is generated, the driving force is transmitted to the feeding wheel 13, and the feeding wheel 13 is driven to rotate. The rotating action of the feeding wheel 13 is to clamp and convey the grinding piece 12 from the feeding piece 11 to the next processing stage. This process ensures the stable supply of the grinding piece 12, so that the grinding process can be carried out efficiently and continuously, and the instability caused by manual operation is avoided.

[0095] The above only describes the embodiments of the present application, and it should be pointed out that those skilled in the art can make improvements without departing from the creative concept of the present application, and these improvements are within the protection scope of the present application.

Claims

1. A non-standard workpiece grinding device, fixed to a machine table and connected to a drive member, characterized in that, The application relates to a grinding device. The grinding device comprises: a feeding assembly fixedly connected to the machine table and connected to a driving member to generate a rotating force to transmit a driving force, wherein the feeding assembly comprises: a feeding member fixedly connected to the machine table, and a grinding member placed in the feeding member; a feeding wheel fixed to the machine table and connected to the driving member to generate a rotating force, and located above the feeding member, wherein the grinding member is located between the feeding member and the feeding wheel; 2. The non-standard workpiece grinding apparatus of claim 1, wherein, wherein the feeding wheel rotates and conveys the grinding member clamped by the feeding member and the feeding wheel. The feeding assembly further comprises: a fixing member fixedly connected to the machine table and connected to the feeding wheel, wherein the fixing member comprises: a fixing base fixedly connected to the machine table, and two fixing bases respectively located at two ends of the feeding member; 3. The non-standard workpiece grinding apparatus of claim 2, wherein, a connecting part integrally connected to the feeding member, and two ends of the connecting part are respectively fixedly connected to a fixing base. The feeding member comprises: an anti-skid part integrally connected to one end of the feeding member and integrally connected to the other end of the feeding wheel; 4. The non-standard workpiece grinding apparatus of claim 3, wherein, an abutting part integrally formed with the anti-skid part. The feeding member comprises:

5. The non-standard workpiece grinding apparatus of claim 2, wherein, an extension part located at one end of the grinding member and abutting against the abutting part and integrally connected to the fixing base.

6. The non-standard workpiece grinding apparatus of claim 3, wherein, The connecting part is in the shape of an arc, and the connecting part is oppositely arranged to the feeding wheel. The feeding assembly further comprises:

7. The non-standard workpiece grinding apparatus of claim 1, wherein, a rubber ring sleeved on the feeding wheel and located between the rubber ring and the anti-skid part. The grinding device comprises:

8. The non-standard workpiece grinding apparatus of claim 7, wherein, a clamping assembly arranged adjacent to the feeding assembly and fixedly connected to the machine table, and close to or away from the feeding assembly. The clamping assembly comprises: a clamping member integrally connected to the feeding wheel and the feeding member; 9. The non-standard workpiece grinding apparatus of claim 8, wherein, a sliding member fixedly connected to the machine table and slidingly connected to the clamping member. The clamping assembly comprises: an adjusting rod connected to the clamping member, and under the action of the sliding member, the adjusting rod pushes the clamping member to slide away from or close to the feeding assembly.