Processing device

By simplifying the workpiece angle adjustment processing device and utilizing the combination of adjusting and locking components, the problem of complex workpiece angle adjustment in the prior art is solved, and efficient workpiece processing is achieved.

CN223749072UActive Publication Date: 2026-01-02HENAN YUZHAN PRECISION TECH CO LTD
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Patent Information

Application Number
CN202423273951.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-28
Publication Date
2026-01-02
Estimated Expiration
2034-12-28

AI Technical Summary

Technical Problem

The current machine tools have a complex process for adjusting the angle of the workpiece during processing, which leads to low processing efficiency.

Method used

A processing apparatus is provided, including a clamping assembly, a driving assembly, an adjusting assembly, and a processing assembly. The adjusting assembly drives the clamping assembly and the workpiece to rotate by a preset angle, simplifying the angle adjustment of the workpiece. The locking component limits the adjusting component, avoiding the need to re-determine the perpendicularity and straightness. Combined with the driving assembly, the workpiece is driven to move synchronously to achieve rapid processing.

Benefits of technology

The workpiece angle adjustment process has been simplified, processing efficiency has been improved, rapid workpiece processing has been achieved, and overall processing efficiency has been further improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a machining device, which aims at improving the machining efficiency and comprises a clamping assembly, a clamping assembly and a clamping assembly, the driving assembly is arranged below the clamping assembly; the adjusting assembly comprises a fixing piece, an adjusting piece and a locking piece, the fixing piece is connected with the driving assembly, the fixing piece is sleeved with the adjusting piece, the adjusting piece is rotationally connected with the fixing piece, the adjusting piece is connected with the clamping assembly, and the adjusting piece is used for driving the clamping assembly and the workpiece to rotate by a preset angle relative to the fixing piece so as to adjust the preset orientation of the workpiece; the locking piece movably penetrates through the adjusting piece in the radial direction of the adjusting piece and abuts against the peripheral side of the fixing piece so as to limit the adjusted adjusting piece, and the driving assembly is used for driving the fixing piece to drive the adjusted adjusting piece and the workpiece to move synchronously. And the machining assembly comprises a machining main shaft and a machined part, the machining main shaft is arranged above the clamping assembly and connected with the machined part, and the machining main shaft is used for driving the machined part to move in the direction, pointing to the driving assembly, of the clamping assembly so that the machined part can be matched with the driving assembly to machine the workpiece.
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Description

TECHNICAL FIELD

[0001] The utility model relates to lathe technical field especially relates to a processing device. BACKGROUND

[0002] Now, lathe is in the processing work piece, based on the processing demand of work piece, the operator first clamps the work piece from the bearing assembly on the bearing platform, adjusts the bearing assembly to the preset angle using the angle correction equipment, then determines the perpendicularity and straightness of the bearing assembly, finally locks the bearing assembly to the bearing platform, which is convenient for the processing spindle of production lathe to drive the cutter to process the work piece. However, the angle adjustment process of work piece is complex, which reduces the processing efficiency. SUMMARY

[0003] In view of the above situation, it is necessary to provide a processing device to improve the processing efficiency.

[0004] The embodiment of the application provides a processing device, which comprises:

[0005] The clamping assembly is used for clamping the work piece to be processed.

[0006] The driving assembly is arranged below the clamping assembly.

[0007] The adjusting assembly comprises a fixing member, an adjusting member and a locking member. The fixing member is connected with the driving assembly. The adjusting member is sleeved on one end of the fixing member away from the driving assembly and is rotationally connected with the fixing member. The adjusting member is connected with the clamping assembly. The adjusting member is used for driving the clamping assembly and the work piece to rotate a preset angle relative to the fixing member, so as to adjust the preset orientation of the work piece. The locking member is movably arranged in the adjusting member along the radial direction of the adjusting member and abuts against the circumferential side of the fixing member to limit the adjusted adjusting member. The driving assembly is used for driving the fixing member to drive the adjusted adjusting member and the work piece to move synchronously.

[0008] The processing assembly comprises a processing spindle and a processing piece. The processing spindle is arranged above the clamping assembly and is connected with the processing piece. The processing spindle is used for driving the processing piece to move along the direction of the clamping assembly pointing to the driving assembly, so that the processing piece cooperates with the driving assembly to process the work piece.

[0009] The machining device has the advantages that during actual use, first, the clamping assembly clamps the workpiece, then the adjusting piece drives the clamping assembly and the clamped workpiece to rotate by a preset angle relative to the fixing piece, so as to adjust the preset orientation of the workpiece, the locking piece is movably arranged on the adjusting piece in the radial direction of the adjusting piece and abuts against the circumferential side of the fixing piece to limit the adjusted adjusting piece, since the clamping assembly is always connected with the adjusting piece before and after angle adjustment, the perpendicularity and straightness of the clamping assembly and the workpiece do not need to be determined again, the angle adjustment process of the workpiece is simplified, and the machining efficiency is improved, finally, the machining spindle drives the machining piece to approach the clamping assembly and to be lowered to a preset height, and the driving assembly drives the clamping assembly to drive the workpiece to move synchronously, so that the machining piece machines the workpiece, the machining operation of the workpiece is quickly completed, and the machining efficiency is further improved.

[0010] In some embodiments, the clamping assembly comprises:

[0011] a support piece connected with the adjusting piece;

[0012] a reference piece arranged on the side of the support piece away from the adjusting piece, the reference piece being used for positioning the workpiece; and

[0013] a movable piece slidably arranged on the support piece and spaced apart from the reference piece on the support piece, the movable piece being used for moving close to the reference piece to clamp the workpiece to the reference piece.

[0014] In some embodiments, the reference piece and the movable piece both comprise:

[0015] a connecting body, the connecting body of the reference piece being fixedly connected with the support piece, and the connecting body of the movable piece being slidably connected with the support piece;

[0016] a rotating body arranged on the side of the corresponding connecting body facing the other connecting body and rotatably connected with the corresponding connecting body, the rotating body being used for rotating relative to the connecting body to abut against a preset region of the workpiece when clamping the workpiece.

[0017] In some embodiments, the rotating body comprises a rotating part and a rolling part, the rotating part is rotatably connected with the connecting body, the rolling part is arranged on the side of the rotating part away from the connecting body and rotatably connected with the rotating part, and the rolling part is used for rolling contact with the workpiece.

[0018] In some embodiments, the support piece comprises:

[0019] a support body arranged on the side of the adjusting piece away from the fixing piece and connected with the clamping assembly, and a side wall of the support body being provided with a receiving groove;

[0020] A pressing body is connected to one end of the adjusting member, and the other end of the pressing body extends into the receiving groove and presses the support body against the adjusting member, so that the support member is detachably connected to the adjusting member.

[0021] In some embodiments, the fixing member includes a fixing body, a positioning body and a supporting body. The fixing body is connected to the driving assembly. The positioning body is protruded from one side of the fixing body towards the adjusting member. The positioning body is used to be inserted into the adjusting member to position the adjusting member to the fixing body. The supporting body is arranged around the positioning body and is spaced apart from the positioning body on the fixing body. The supporting body is inserted into the adjusting member and is rotationally connected to the adjusting member. The supporting body is used to support the adjusting member.

[0022] In some embodiments, the adjusting member includes:

[0023] A linkage body is inserted between the supporting body and the positioning body. The linkage body is provided with a positioning groove. The positioning groove receives the positioning body to position the linkage body.

[0024] An adjusting body is connected to one side of the clamping assembly. The other side of the adjusting body is provided with a receiving groove. The receiving groove is arranged around the linkage body. The receiving groove receives the supporting body. The adjusting body is used to drive the clamping assembly and the workpiece to rotate synchronously.

[0025] In some embodiments, one side of the fixing body towards the adjusting body is provided with a first scale line. The circumferential side of the adjusting body is provided with a second scale line.

[0026] In some embodiments, the driving assembly includes a first driving member and a second driving member. The first driving member is connected to the fixing member and the second driving member respectively. The first driving member is used to drive the clamping assembly and the workpiece to move in a first direction. The second driving member is used to drive the clamping assembly and the workpiece to move in a second direction perpendicular to the first direction.

[0027] In some embodiments, the machining assembly further includes:

[0028] A detection member is connected to the machining spindle and is electrically connected to the machining spindle and the driving assembly. The detection member is used to detect the machining information of the machined workpiece. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 A perspective structural schematic view of a machining device provided by the embodiments of the present application is shown.

[0030] Figure 2 A perspective structural schematic view of a machining device provided by the embodiments of the present application is shown. Figure 1 A perspective structural schematic view of a reference member in the machining device shown.

[0031] Figure 3 For Figure 1 The exploded view of the adjusting assembly in the processing device shown.

[0032] Main element symbol explanation: processing device 100, clamping assembly 10, support 11, support body 111, receiving groove 1111, pressing body 112, reference element 12, connecting body 121, rotating body 122, rotating part 1221, rolling part 1222, movable element 13, driving assembly 20, first driving element 21, second driving element 22, adjusting assembly 30, fixing element 31, fixed body 311, first scale line 3111, positioning body 312, supporting body 313, adjusting element 32, linkage body 321, positioning groove 3211, adjusting body 322, accommodating groove 3221, second scale line 3222, locking element 33, processing assembly 40, processing spindle 41, processing element 42, detection element 43. DETAILED DESCRIPTION

[0033] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary only, for the purpose of explaining the present application, and should not be understood as a limitation to the present application.

[0034] In the description of the present application, it should be understood that the terms indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be understood as a limitation to the present application. In addition, the terms "first", "second" are only for the purpose of description, and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, it should be noted that the meaning of "a plurality of" is two or more, unless otherwise explicitly specified and limited.

[0035] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the term "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection or can communicate with each other, it can be direct connection, or indirect connection through intermediate medium, it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above-mentioned term in the present application can be understood according to the specific circumstances.

[0036] Some embodiments of the present application will be described in detail with reference to the drawings.

[0037] Referring to Figure 1 The embodiments of the present application provide a machining device 100, which comprises a clamping assembly 10, a driving assembly 20, an adjusting assembly 30 and a machining assembly 40, and is used for machining a workpiece.

[0038] For the convenience of understanding and description, a three-dimensional coordinate system is established in some of the drawings, a first direction is an X-axis direction as shown in the drawings, a second direction is a Y-axis direction as shown in the drawings, and a third direction is a Z-axis direction as shown in the drawings. Figure 1 The first direction, the second direction and the third direction are perpendicular to each other. Figure 1 Figure 1

[0039] Referring to Figure 1 The clamping assembly 10 is used for clamping the workpiece to be machined, and the driving assembly 20 is arranged below the clamping assembly 10. The adjusting assembly 30 comprises a fixing member 31, an adjusting member 32 and a locking member 33. The fixing member 31 is connected with the driving assembly 20. The adjusting member 32 is sleeved on an end of the fixing member 31 away from the driving assembly 20 and is rotationally connected with the fixing member 31. The adjusting member 32 is connected with the clamping assembly 10. The adjusting member 32 is used for driving the clamping assembly 10 and the workpiece to rotate a preset angle relative to the fixing member 31, so as to adjust a preset orientation of the workpiece. The locking member 33 is movably arranged in the adjusting member 32 along a radial direction of the adjusting member 32 and abuts against a circumferential side of the fixing member 31 to limit the adjusted adjusting member 32. The driving assembly 20 is used for driving the fixing member 31 to drive the adjusted adjusting member 32 and the workpiece to move synchronously. The machining assembly 40 comprises a machining spindle 41 and a machining member 42. The machining spindle 41 is arranged above the clamping assembly 10 and is connected with the machining member 42. The machining spindle 41 is used for driving the machining member 42 to move in a direction in which the clamping assembly 10 points to the driving assembly 20, so that the machining member 42 cooperates with the driving assembly 20 to machine the workpiece. Exemplarily, the locking member 33 can be a bolt. The machining spindle 41 can be a machine table spindle. The machining member 42 can be a tool capable of machining the workpiece, for example, a milling cutter.

[0040] ​​The machining device 100 in actual use first clamps the workpiece by the clamping assembly 10, then drives the clamping assembly 10 and the clamped workpiece to rotate a preset angle relative to the fixed part 31 by the adjusting part 32 to adjust the preset orientation of the workpiece, and the locking part 33 is movably arranged in the adjusting part 32 along the radial direction of the adjusting part 32 and abuts against the circumferential side of the fixed part 31 to limit the adjusted adjusting part 32. Since the clamping assembly 10 is always connected with the adjusting part 32 before and after angle adjustment, it is not necessary to determine the perpendicularity and straightness of the clamping assembly 10 and the workpiece again, which simplifies the angle adjustment process of the workpiece and improves the machining efficiency. Finally, the machining spindle 41 drives the machining part 42 to approach the clamping assembly 10 and descend to a preset height, and the driving assembly 20 drives the clamping assembly 10 to drive the workpiece to move synchronously, so that the machining part 42 machines the workpiece, realizes the rapid completion of the machining work of the workpiece, and further improves the machining efficiency.

[0041] Referring to Figure 1 In some embodiments, the clamping assembly 10 comprises a supporting part 11, a reference part 12 and a movable part 13. The supporting part 11 is connected with the adjusting part 32, the reference part 12 is arranged on the side of the supporting part 11 away from the adjusting part 32, and the reference part 12 is used for positioning the workpiece. The movable part 13 is slidably arranged on the supporting part 11 and is spaced apart from the reference part 12 on the supporting part 11, and the movable part 13 is used for moving close to the reference part 12 to clamp the workpiece to the reference part 12. For example, the movable part 13 can be any movable part, movable block and similar movable plate capable of clamping the workpiece to the reference part 12, such as a movable body connected with a pneumatic cylinder.

[0042] In this way, by setting the specific structure of the clamping assembly 10, the reference part 12 abuts and positions the workpiece, and the movable part 13 moves close to the reference part 12 to clamp the workpiece to the reference part 12, so that the clamping assembly 10 stably clamps the workpiece and ensures that the machining part 42 stably machines the workpiece.

[0043] Referring to Figure 2 In some embodiments, the reference part 12 and the movable part 13 each comprise a connecting body 121 and a rotating body 122. The connecting body 121 of the reference part 12 is fixedly connected with the supporting part 11, the connecting body 121 of the movable part 13 is slidably connected with the supporting part 11, and the rotating body 122 is arranged on the side of the corresponding connecting body 121 facing the other connecting body 121 and is rotatably connected with the corresponding connecting body 121. The rotating body 122 is used for rotating relative to the connecting body 121 to abut against a preset area of the workpiece when clamping the workpiece.

[0044] Therefore, by setting the specific structure of the reference member 12 and the movable member 13, the rotating body 122 is rotated relative to the connecting body 121 to abut against the preset area of the workpiece when clamping the workpiece, so that the reference member 12 and the movable member 13 are adapted to workpieces of different shapes and sizes, and the reference member 12 and the movable member 13 stably clamp workpieces of different shapes and sizes, thereby improving the clamping adaptability of the clamping assembly 10.

[0045] For further reference Figure 2 In some embodiments, the rotating body 122 comprises a rotating part 1221 and a rolling part 1222. The rotating part 1221 is rotationally connected with the connecting body 121. The rolling part 1222 is arranged on the side of the rotating part 1221 away from the connecting body 121 and is rotationally connected with the rotating part 1221. The rolling part 1222 is used for rolling contact with the workpiece.

[0046] Therefore, by setting the specific structure of the rotating body 122, the rotating body 122 forms rolling contact with the workpiece through the rolling part 1222, thereby reducing the friction between the workpiece and the rotating body 122, protecting the workpiece from damage, and improving the clamping quality of the clamping assembly 10.

[0047] For further reference Figure 1 In some embodiments, the supporting member 11 comprises a supporting body 111 and a pressing body 112. The supporting body 111 is arranged on the side of the adjusting member 32 away from the fixing member 31 and is connected with the clamping assembly 10. The side wall of the supporting body 111 is provided with a receiving groove 1111. One end of the pressing body 112 is connected with the adjusting member 32, and the other end of the pressing body 112 extends into the receiving groove 1111 and presses the supporting body 111 to the adjusting member 32, so that the supporting member 11 is detachably connected with the adjusting member 32.

[0048] Therefore, by setting the specific structure of the supporting member 11, the pressing body 112 presses the supporting body 111 to the adjusting member 32 and is connected with the adjusting member 32, so that the supporting member 11 is detachably connected with the adjusting member 32. It is convenient to replace the clamping assembly 10 of different sizes according to the processing needs of the workpiece, avoids replacing the overall structure of the adjusting assembly 30 and the clamping assembly 10, and reduces the use cost.

[0049] For further reference Figure 1 and Figure 3In some embodiments, the fixing member 31 comprises a fixing body 311, a positioning body 312 and a supporting body 313. The fixing body 311 is connected with the driving assembly 20. The positioning body 312 is protruded from one side of the fixing body 311 towards the adjusting member 32. The positioning body 312 is used to be inserted into the adjusting member 32 to position the adjusting member 32 to the fixing body 311. The supporting body 313 is arranged around the positioning body 312 and is spaced apart from the positioning body 312 on the fixing body 311. The supporting body 313 is inserted into the adjusting member 32 and is rotatably connected with the adjusting member 32. The supporting body 313 is used to support the adjusting member 32.

[0050] In this way, by setting the specific structure of the fixing member 31, the positioning body 312 is inserted into the adjusting member 32 to position the adjusting member 32 to the fixing body 311. The supporting body 313 is inserted into the adjusting member 32 and is rotatably connected with the adjusting member 32 to support the adjusting member 32. The fixing member 31 stably supports the adjusting member 32, which is conducive to the smooth rotation of the clamping assembly 10 relative to the fixing member 31 driven by the adjusting member 32, and ensures the stability of the angle adjustment of the workpiece.

[0051] Please refer to Figure 3 In some embodiments, the adjusting member 32 comprises a linkage body 321 and an adjusting body 322. The linkage body 321 is inserted between the supporting body 313 and the positioning body 312. The linkage body 321 is provided with a positioning groove 3211 which receives the positioning body 312 to position the linkage body 321. One side of the adjusting body 322 is connected with the clamping assembly 10. The other side of the adjusting body 322 is provided with a receiving groove 3221 which is arranged around the linkage body 321. The receiving groove 3221 receives the supporting body 313. The adjusting body 322 is used to drive the clamping assembly 10 and the workpiece to rotate synchronously.

[0052] In this way, by setting the specific structure of the adjusting member 32, the linkage body 321 is inserted between the supporting body 313 and the positioning body 312 and receives the positioning body 312 through the positioning groove 3211. The adjusting body 322 receives the supporting body 313 through the receiving groove 3221. The adjusting member 32 is stably rotatably connected with the fixing member 31, which is conducive to the rotation of the clamping assembly 10 relative to the fixing member 31 driven by the adjusting member 32.

[0053] Please refer to Figure 3 In some embodiments, one side of the fixing body 311 towards the adjusting body 322 is provided with a first scale line 3111. The circumferential side of the adjusting body 322 is provided with a second scale line 3222. The second scale line 3222 is used to correspond to the scale of the first scale line 3111 after the adjusting body 322 is adjusted.

[0054] Therefore, by setting the first scale line 3111 and the second scale line 3222, when the adjusting body 322 drives the clamping assembly 10 to rotate by a preset angle, the zero scale of the second scale line 3222 corresponds to one scale of the first scale line 3111, and the operator determines the rotation angle of the workpiece based on the scale correspondence relationship between the second scale line 3222 and the first scale line 3111, and then determines that the workpiece has been rotated to the preset angle, thereby improving the angle adjustment accuracy of the workpiece.

[0055] Please refer to Figure 2 In some embodiments, the driving assembly 20 includes a first driving member 21 and a second driving member 22, the first driving member 21 is connected with the fixed member 31 and the second driving member 22 respectively, the first driving member 21 is used to drive the clamping assembly 10 and the workpiece to move in the first direction, and the second driving member 22 is used to drive the clamping assembly 10 and the workpiece to move in the second direction. For example, the first driving member 21 and the second driving member 22 can be any driving part, driving block or similar driving body that can drive the clamping assembly 10 and the workpiece to move synchronously, such as a pneumatic cylinder, a servo slide, a ball screw mechanism, etc.

[0056] Since the machining spindle 41 can only drive the machining piece 42 to move in the third direction, by setting the specific structure of the driving assembly 20, the first driving member 21 and the second driving member 22 drive the clamping assembly 10 to drive the workpiece to move in the first direction and the second direction respectively, so as to cooperate with the machining piece 42 to process the workpiece, thereby improving the machining range and machining flexibility of the machining device 100.

[0057] Please continue to refer to Figure 1 In some embodiments, the machining assembly 40 further includes a detection member 43, the detection member 43 is connected with the machining spindle 41 and electrically connected to the machining spindle 41 and the driving assembly 20, and the detection member 43 is used to detect the machining information of the machined workpiece. For example, the detection member 43 can be a detection probe, an industrial camera, etc. It can be understood that the above-mentioned machining information refers to the size information, shape information, etc. of the machined workpiece.

[0058] Therefore, by setting the detection member 43, the detection member 43 detects the machining information of the machined workpiece, and after determining that the workpiece meets the machining standard, the detection member 43 sends an electrical signal to the machining spindle 41 and the driving assembly 20, the machining spindle 41 drives the machining piece 42 to move away from the adjusting member 32, and the first driving member 21 and the second driving member 22 stop running, so as to facilitate the operator to take away the machined workpiece.

[0059] The working process of the above-mentioned machining device 100 is as follows:

[0060] First, the reference member 12 abuts and positions the workpiece, and the movable member 13 moves close to the reference member 12 to clamp the workpiece to the reference member 12;

[0061] Then, the adjusting member 32 drives the clamping assembly 10 and the clamped workpiece to rotate a preset angle relative to the fixing member 31 to adjust the preset orientation of the workpiece, and the locking member 33 is movably arranged in the adjusting member 32 along the radial direction of the adjusting member 32 and abuts against the circumferential side of the fixing member 31 to limit the adjusted adjusting member 32. Since the clamping assembly 10 is always connected with the adjusting member 32 before and after the angle adjustment, it is not necessary to determine the perpendicularity and straightness of the clamping assembly 10 and the workpiece again, which simplifies the angle adjustment process of the workpiece and improves the machining efficiency.

[0062] Finally, the final machining spindle 41 drives the machining member 42 to descend to a preset height close to the clamping assembly 10, and the first driving member 21 and the second driving member 22 respectively drive the workpiece to move along the first direction and the second direction to make the machining member 42 process the workpiece, so that the machining operation of the workpiece is quickly completed, and the machining efficiency is further improved.

[0063] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application.

Claims

1. A processing apparatus characterized by comprising: The application relates to a machining device for machining a workpiece. The machining device comprises a clamping assembly for clamping the workpiece to be machined, a driving assembly arranged below the clamping assembly, an adjusting assembly comprising a fixing member, an adjusting member and a locking member, the fixing member is connected with the driving assembly, the adjusting member is sleeved on one end of the fixing member away from the driving assembly and is rotationally connected with the fixing member, the adjusting member is connected with the clamping assembly, the adjusting member is used for driving the clamping assembly and the workpiece to rotate a preset angle relative to the fixing member so as to adjust a preset orientation of the workpiece, the locking member is movably arranged in the adjusting member along the radial direction of the adjusting member and abuts against the circumferential side of the fixing member to limit the adjusted adjusting member, and the driving assembly is used for driving the fixing member to drive the adjusted adjusting member and the workpiece to move synchronously. The machining device further comprises a machining assembly comprising a machining spindle and a machining member, the machining spindle is arranged above the clamping assembly and is connected with the machining member, and the machining spindle is used for driving the machining member to move along the direction in which the clamping assembly points to the driving assembly so that the machining member cooperates with the driving assembly to machine the workpiece. The clamping assembly comprises a supporting member connected with the adjusting member, a reference member arranged on one side of the supporting member away from the adjusting member and used for positioning the workpiece, and a movable member slidably arranged on the supporting member and spaced apart from the reference member on the supporting member, the movable member is used for moving close to the reference member to clamp the workpiece to the reference member. The reference member and the movable member each comprise a connecting body, the connecting body of the reference member is fixedly connected with the supporting member, and the connecting body of the movable member is slidably connected with the supporting member, a rotating body arranged on one side of the corresponding connecting body facing the other connecting body and rotationally connected with the corresponding connecting body, and the rotating body is used for rotating relative to the connecting body to abut against a preset region of the workpiece when the workpiece is clamped.

2. The processing apparatus of claim 1, wherein The rotating body comprises a rotating part and a rolling part, the rotating part is rotationally connected with the connecting body, the rolling part is arranged on one side of the rotating part away from the connecting body and is rotationally connected with the rotating part, and the rolling part is used for rolling contact with the workpiece. The supporting member comprises a supporting body arranged on one side of the adjusting member away from the fixing member and connected with the clamping assembly, a receiving groove is formed in the side wall of the supporting body, and a pressing body, one end of the pressing body is connected with the adjusting member, the other end of the pressing body extends into the receiving groove and presses the supporting body to the adjusting member, so that the supporting member is detachably connected with the adjusting member. The fixing member comprises a fixing body connected with the driving assembly, a positioning body protruding from one side of the fixing body facing the adjusting member, the positioning body is used for being inserted into the adjusting member to position the adjusting member to the fixing body, and a supporting body surrounding the positioning body and spaced apart from the positioning body on the fixing body, the supporting body is inserted into the adjusting member and is rotationally connected with the adjusting member, and the supporting body is used for supporting the adjusting member. The adjusting member comprises 3. The processing apparatus of claim 2, wherein ​ ​ ​ 4. The processing apparatus of claim 3, wherein ​ 5. The processing apparatus of claim 2, wherein ​ ​ ​ 6. The processing apparatus of claim 1, wherein ​ 7. The processing apparatus of claim 6, wherein ​ A linkage body is arranged between the supporting body and the positioning body, and is provided with a positioning groove for receiving the positioning body to position the linkage body; An adjusting body is connected to the clamping assembly on one side, and is provided with a receiving groove on the other side, the receiving groove is arranged around the linkage body, and the receiving groove is used for receiving the supporting body, the adjusting body is used for driving the clamping assembly and the workpiece to rotate synchronously.

8. The processing apparatus of claim 7, wherein The side of the fixing body facing the adjusting body is provided with a first scale line, and the circumferential side of the adjusting body is provided with a second scale line.

9. The processing apparatus of claim 1, wherein The driving assembly comprises a first driving member and a second driving member, the first driving member and the second driving member are respectively connected to the second driving member, the first driving member is used for driving the clamping assembly and the workpiece to move in a first direction, and the second driving member is used for driving the clamping assembly and the workpiece to move in a second direction perpendicular to the first direction.

10. The processing apparatus of claim 1, wherein The machining assembly further comprises: A detection member is connected to the machining spindle and is electrically connected to the machining spindle and the driving assembly, and is used for detecting the machining information of the machined workpiece.