CN223749072U - Processing equipment - Google Patents
Processing equipmentInfo
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- CN223749072U CN223749072U CN202423273951.4U CN202423273951U CN223749072U CN 223749072 U CN223749072 U CN 223749072U CN 202423273951 U CN202423273951 U CN 202423273951U CN 223749072 U CN223749072 U CN 223749072U
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Abstract
The application provides a processing device which is used for improving processing efficiency and comprises a clamping assembly, a driving assembly and a processing assembly, wherein the clamping assembly is used for clamping a workpiece to be processed, 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 adjusting piece is sleeved on the fixing piece and is rotationally connected with the fixing piece, the adjusting piece is connected with the clamping assembly, 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 along the radial direction of the adjusting piece and is abutted to the periphery of the fixing piece so as to limit the adjusted adjusting piece, the driving assembly is used for driving the fixing piece to drive the adjusted adjusting piece and the workpiece to synchronously move, and the processing assembly comprises a processing main shaft and a workpiece, the processing main shaft is arranged above the clamping assembly and is connected with the workpiece, and the processing main shaft is used for driving the workpiece to move along the direction of the clamping assembly to point to the driving assembly so that the workpiece is matched with the driving assembly to process the workpiece.
Description
Technical Field
The utility model relates to the technical field of machine tools, in particular to a processing device.
Background
At present, when a machine tool processes a workpiece, based on the processing requirement of the workpiece, an operator firstly removes a bearing assembly clamped with the workpiece from a bearing platform, then uses angle correction equipment to adjust the bearing assembly to a preset angle, then determines the perpendicularity and straightness of the bearing assembly, and finally locks the bearing assembly to the bearing platform, so that a processing main shaft of the machine tool is convenient to produce and drive a cutter to process the workpiece. However, the angle adjustment process of the workpiece is complicated, and the machining efficiency is lowered.
Disclosure of utility model
In view of the above, it is necessary to provide a processing apparatus to improve processing efficiency.
The embodiment of the application provides a processing device, which comprises:
The clamping assembly is used for clamping a workpiece to be processed;
The driving assembly is arranged below the clamping assembly;
The adjusting component comprises a fixing piece, an adjusting piece and a locking piece, wherein the fixing piece is connected with the driving component, the adjusting piece is sleeved at one end, far away from the driving component, of the fixing piece and is rotationally connected with the fixing piece, the adjusting piece is connected with the clamping component and is used for driving the clamping component and the workpiece to rotate for a preset angle relative to the fixing piece so as to adjust the preset orientation of the workpiece, and the locking piece movably penetrates through the adjusting piece along the radial direction of the adjusting piece and is abutted to the circumference side of the fixing piece so as to limit the adjusting piece after adjustment, and the driving component is used for driving the fixing piece to drive the adjusting piece and the workpiece after adjustment to synchronously move;
The machining assembly comprises a machining main shaft and a workpiece, wherein the machining main shaft is arranged above the clamping assembly and is connected with the workpiece, and the machining main shaft is used for driving the workpiece to move along the direction of the clamping assembly, which points to the driving assembly, so that the workpiece is matched with the driving assembly to machine the workpiece.
When the machining device is in actual use, the workpiece is clamped by the clamping assembly, then the adjusting piece drives the clamping assembly and the clamped workpiece to rotate by the 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 along the radial direction of the adjusting piece and abuts against the adjusting piece after limiting adjustment on the periphery of the fixing piece, 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 are not required to be determined again, the angle adjustment procedure of the workpiece is simplified, the machining efficiency is improved, the machining main shaft drives the workpiece to descend to the preset height near the clamping assembly, and the driving assembly drives the clamping assembly to drive the workpiece to synchronously move so that the workpiece can be machined, the machining operation of the workpiece is completed rapidly, and the machining efficiency is further improved.
In some embodiments, the clamping assembly comprises:
The supporting piece is connected with the adjusting piece;
a reference member arranged on one side of the support member facing away from the adjustment member, the reference member being used for positioning the workpiece, and
The movable piece is arranged on the supporting piece in a sliding manner and is arranged on the supporting piece at intervals with the reference piece, and the movable piece is used for moving close to the reference piece so as to clamp the workpiece to the reference piece.
In some embodiments, the reference member and the moveable member each comprise:
The connecting body of the reference piece is fixedly connected with the supporting piece, and the connecting body of the movable piece is in sliding connection with the supporting piece;
the rotating body is arranged on one side, facing the other connecting body, of the corresponding connecting body and is in rotating connection with the corresponding connecting body, and the rotating body is used for rotating relative to the connecting body to abut against a preset area of the workpiece when clamping the workpiece.
In some embodiments, the rotating body includes a rotating portion and a rolling portion, the rotating portion is rotationally connected with the connecting body, the rolling portion is disposed on a side of the rotating portion away from the connecting body and is rotationally connected with the rotating portion, and the rolling portion is used for rolling contact with the workpiece.
In some embodiments, the support comprises:
The support body is arranged on one side of the adjusting piece, which is away from the fixing piece, and is connected with the clamping assembly, and a storage groove is formed in the side wall of the support body;
The support body is connected with the adjusting piece, and the other end of the support body stretches into the storage groove and supports the support body to the adjusting piece, so that the support piece is detachably connected with the adjusting piece.
In some embodiments, the fixing member includes a fixing body, a positioning body and a supporting body, the fixing body is connected with the driving assembly, the positioning body is convexly arranged on 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, the supporting body surrounds the positioning body and is arranged on the fixing body at intervals with the positioning body, and the supporting body is inserted into the adjusting member and is rotationally connected with the adjusting member, and is used for supporting the adjusting member.
In some embodiments, the adjustment member comprises:
The linkage body is inserted between the bearing body and the positioning body, and is provided with a positioning groove which is used for accommodating the positioning body so as to position the linkage body;
The adjusting body, one side of adjusting body with clamping subassembly is connected, the opposite side of adjusting body is equipped with the accommodation groove, the accommodation groove centers on the aggregate body sets up, the accommodation groove is accomodate the bearing body, the adjusting body is used for driving clamping subassembly with work piece synchronous rotation.
In some embodiments, a first scale line is arranged on one side of the fixed body facing the adjusting body, and a second scale line is arranged on the peripheral side of the adjusting body.
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, the first driving member is configured to drive the clamping assembly and the workpiece to move along a first direction, and the second driving member is configured to drive the clamping assembly and the workpiece to move along a second direction perpendicular to the first direction.
In some embodiments, the tooling assembly further comprises:
The detection piece is connected with the processing main shaft and is electrically connected with the processing main shaft and the driving assembly, and the detection piece is used for detecting the processing information of the processed workpiece.
Drawings
Fig. 1 is a schematic perspective view of a processing device according to an embodiment of the present application.
Fig. 2 is a schematic perspective view of a reference member in the processing apparatus shown in fig. 1.
Fig. 3 is an exploded view of the adjusting assembly of the processing apparatus shown in fig. 1.
The main reference numerals indicate that the machining device 100, the clamping unit 10, the supporting unit 11, the supporting unit 111, the receiving groove 1111, the pressing unit 112, the reference unit 12, the connecting unit 121, the rotating unit 122, the rotating unit 1221, the rolling unit 1222, the moving unit 13, the driving unit 20, the first driving unit 21, the second driving unit 22, the adjusting unit 30, the fixing unit 31, the fixing unit 311, the first scale line 3111, the positioning unit 312, the supporting unit 313, the adjusting unit 32, the linking unit 321, the positioning groove 3211, the adjusting unit 322, the receiving groove 3221, the second scale line 3222, the locking unit 33, the machining unit 40, the machining spindle 41, the machined part 42, and the detecting unit 43.
Detailed Description
Embodiments of the present application are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals refer to 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 explaining the present application and are not to be construed as limiting the present application.
In the description of the present application, it should be understood that the terms "orientation" or "positional relationship" as used herein are merely for convenience of description and to simplify the description of the present application, and do not denote or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present application. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include one or more of the described features. In the description of the present application, it is to be noted that the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
In the description of the present application, unless explicitly stated and limited otherwise, the term "connected" shall be interpreted as broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, or communicable with each other, directly connected, indirectly connected through an intermediary, or connected internally of two elements or the interaction relationship of two elements. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art according to the specific circumstances.
Some embodiments of the present application will be described in detail below with reference to the accompanying drawings.
Referring to fig. 1, an embodiment of the present application provides a processing apparatus 100, which includes a clamping assembly 10, a driving assembly 20, an adjusting assembly 30, and a processing assembly 40, wherein the processing apparatus 100 is used for processing a workpiece.
For convenience of understanding and explanation, a three-dimensional coordinate system is established in a part of the drawings, wherein the first direction is the X-axis direction shown in fig. 1, the second direction is the Y-axis direction shown in fig. 1, the third direction is the Z-axis direction shown in fig. 1, and the first direction, the second direction and the third direction are perpendicular to each other.
Referring to fig. 1, a clamping assembly 10 is used for clamping a workpiece to be machined, and a driving assembly 20 is disposed below the clamping assembly 10. The adjusting assembly 30 comprises a fixing piece 31, an adjusting piece 32 and a locking piece 33, the fixing piece 31 is connected with the driving assembly 20, the adjusting piece 32 is sleeved at one end, far away from the driving assembly 20, of the fixing piece 31 and is rotationally connected with the fixing piece 31, the adjusting piece 32 is connected with the clamping assembly 10, the adjusting piece 32 is used for driving the clamping assembly 10 and a workpiece to rotate by a preset angle relative to the fixing piece 31 so as to adjust the preset direction of the workpiece, the locking piece 33 movably penetrates the adjusting piece 32 along the radial direction of the adjusting piece 32 and is abutted to the periphery of the fixing piece 31 so as to limit the adjusted adjusting piece 32, and the driving assembly 20 is used for driving the fixing piece 31 to drive the adjusted adjusting piece 32 and the workpiece to synchronously move. The processing assembly 40 comprises a processing main shaft 41 and a workpiece 42, wherein the processing main shaft 41 is arranged above the clamping assembly 10 and connected with the workpiece 42, and the processing main shaft 41 is used for driving the workpiece 42 to move along the direction of the clamping assembly 10 pointing to the driving assembly 20 so that the workpiece 42 is matched with the driving assembly 20 to process a workpiece. Illustratively, the lock 33 may be a bolt, the machining spindle 41 may be a table spindle, and the workpiece 42 may be a tool capable of machining a workpiece, such as a milling cutter.
When the machining device 100 is in actual use, the workpiece is clamped by the clamping assembly 10, then the adjusting piece 32 drives the clamping assembly 10 and the clamped workpiece to rotate by a preset angle relative to the fixing piece 31, so as to adjust the preset orientation of the workpiece, the locking piece 33 movably penetrates through the adjusting piece 32 along the radial direction of the adjusting piece 32 and abuts against the periphery of the fixing piece 31 to limit the adjusted adjusting piece 32, the clamping assembly 10 is always connected with the adjusting piece 32 before and after angle adjustment, the perpendicularity and straightness of the clamping assembly 10 and the workpiece do not need to be determined again, the angle adjustment procedure of the workpiece is simplified, the machining efficiency is improved, finally the machining main shaft 41 drives the workpiece 42 to descend to the preset height close to the clamping assembly 10, and the driving assembly 20 drives the clamping assembly 10 to drive the workpiece to synchronously move, so that the workpiece 42 can be machined, the machining operation of the workpiece is completed quickly, and the machining efficiency is further improved.
Referring to fig. 1, in some embodiments, a clamping assembly 10 includes a support member 11, a reference member 12, and a movable member 13. The support 11 is connected with the adjusting member 32, the reference member 12 is arranged on one side of the support 11 away from the adjusting member 32, the reference member 12 is used for positioning a workpiece, the movable member 13 is slidably arranged on the support 11 and is arranged on the support 11 at intervals from the reference member 12, and the movable member 13 is used for moving close to the reference member 12 so as to clamp the workpiece to the reference member 12. Illustratively, the movable member 13 may be any movable portion, movable block, and the like capable of clamping a workpiece to the reference member 12, such as a movable body connected to a cylinder.
Thus, by providing the specific structure of the clamping assembly 10, the reference member 12 abuts against 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, so that the clamping assembly 10 stably clamps the workpiece, and the workpiece 42 is ensured to be stably machined.
Referring to fig. 2, in some embodiments, the reference member 12 and the movable member 13 each include a connecting body 121 and a rotating body 122. The connecting body 121 of the reference piece 12 is fixedly connected with the supporting piece 11, the connecting body 121 of the movable piece 13 is slidably connected with the supporting piece 11, the rotating body 122 is arranged on one side of the corresponding connecting body 121 facing the other connecting body 121 and is rotationally connected with the corresponding connecting body 121, and the rotating body 122 is used for rotating relative to the connecting body 121 to be abutted to a preset area of a workpiece when the workpiece is clamped.
In this way, by setting the specific structures of the reference member 12 and the movable member 13, the rotating body 122 rotates relative to the connecting body 121 to be abutted 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 with different shapes and sizes, the reference member 12 and the movable member 13 are ensured to stably clamp workpieces with different shapes and sizes, and the clamping suitability of the clamping assembly 10 is improved.
With continued reference to fig. 2, in some embodiments, the rotating body 122 includes a rotating portion 1221 and a rolling portion 1222, the rotating portion 1221 is rotatably connected to the connecting body 121, the rolling portion 1222 is disposed on a side of the rotating portion 1221 facing away from the connecting body 121 and is rotatably connected to the rotating portion 1221, and the rolling portion 1222 is configured to rollingly contact a workpiece.
In this way, by setting the specific structure of the rotor 122, the rotor 122 forms rolling contact with the workpiece through the rolling portion 1222, so as to reduce friction between the workpiece and the rotor 122, protect the workpiece from damage, and facilitate improving the clamping quality of the clamping assembly 10.
Referring to fig. 1, in some embodiments, the supporting member 11 includes a supporting body 111 and a pressing body 112. The supporting body 111 is arranged on one side of the adjusting piece 32, which is away from the fixing piece 31, and is connected with the clamping assembly 10, and the side wall of the supporting body 111 is provided with a containing groove 1111. One end of the pressing body 112 is connected to the adjusting member 32, and the other end of the pressing body 112 extends into the accommodating groove 1111 and presses the supporting body 111 to the adjusting member 32, so that the supporting member 11 is detachably connected to the adjusting member 32.
So, through setting up above-mentioned concrete structure of support piece 11, support body 111 is supported to the pressure body 112 to regulating part 32 and be connected with regulating part 32 for support piece 11 detachably connects in regulating part 32, is convenient for change not unidimensional clamping assembly 10 according to the processing demand of work piece, avoids changing the overall structure of regulating assembly 30 and clamping assembly 10, has reduced use cost.
Referring to fig. 1 and 3, in some embodiments, the fixing member 31 includes a fixing body 311, a positioning body 312 and a supporting body 313, the fixing body 311 is connected to the driving assembly 20, the positioning body 312 is convexly disposed on a side of the fixing body 311 facing the adjusting member 32, the positioning body 312 is configured to be inserted into the adjusting member 32 to position the adjusting member 32 to the fixing body 311, the supporting body 313 surrounds the positioning body 312 and is disposed on the fixing body 311 at intervals with the positioning body 312, the supporting body 313 is inserted into the adjusting member 32 and is rotatably connected to the adjusting member 32, and the supporting body 313 is configured to support the adjusting member 32.
So, through setting up the specific structure of above-mentioned mounting 31, locating body 312 inserts and locates regulating member 32 in order to fix a position regulating member 32 to fixed body 311, and bearing body 313 inserts and locates regulating member 32 and rotate with regulating member 32 and be connected in order to bear regulating member 32 for mounting 31 steadily holds regulating member 32, is favorable to regulating member 32 to drive clamping assembly 10 smoothly relative to mounting 31 rotation, has guaranteed the angle modulation stability of work piece.
Referring to fig. 3, in some embodiments, the adjusting member 32 includes a linkage 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, and the positioning groove 3211 accommodates 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 containing groove 3221, the containing groove 3221 is arranged around the linkage body 321, the containing groove 3221 contains the bearing body 313, and the adjusting body 322 is used for driving the clamping assembly 10 and the workpiece to synchronously rotate.
So, through setting up above-mentioned specific structure of regulating part 32, the aggregate 321 inserts and locates between support 313 and the locating body 312 and accomodates the locating body 312 through constant head tank 3211, and support 313 is accomodate through accommodation groove 3221 to the regulating body 322, guarantees that regulating part 32 is rotated steadily and is connected in mounting 31, is favorable to regulating part 32 to drive clamping subassembly 10 relative to the rotation of mounting 31.
Referring to fig. 3, in some embodiments, a first scale line 3111 is disposed on a side of the fixing body 311 facing the adjusting body 322, and a second scale line 3222 is disposed on a peripheral side of the adjusting body 322, where the second scale line 3222 is used for corresponding to a scale of the first scale line 3111 after the adjusting body 322 is adjusted.
Thus, 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 of the scales of the first scale line 3111, and the operator determines the rotation angle of the workpiece based on the scale correspondence between the second scale line 3222 and the first scale line 3111, so as to determine that the workpiece has rotated to the preset angle, thereby improving the angle adjustment precision of the workpiece.
Referring to fig. 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 to the fixing member 31 and the second driving member 22, the first driving member 21 is used for driving the clamping assembly 10 and the workpiece to move along a first direction, and the second driving member 22 is used for driving the clamping assembly 10 and the workpiece to move along a second direction. The first driving member 21 and the second driving member 22 may be any driving portion, driving block or similar driving body capable of driving the clamping assembly 10 and the workpiece to move synchronously, such as a cylinder, a servo sliding table, a ball screw mechanism, etc.
Because the processing spindle 41 can only drive the workpiece 42 to move along 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 along the first direction and the second direction respectively, so as to match the workpiece 42 to process the workpiece, thereby improving the processing range and the processing flexibility of the processing device 100.
With continued reference to fig. 1, in some embodiments, the processing assembly 40 further includes a detecting member 43, where the detecting member 43 is connected to the processing spindle 41 and electrically connected to the processing spindle 41 and the driving assembly 20, and the detecting member 43 is configured to detect processing information of the processed workpiece. Illustratively, the detector 43 may be a detection probe, an industrial camera, or the like. It is to be understood that the machining information described above refers to size information, shape information, and the like of the workpiece after machining.
Thus, by providing the detecting member 43, the detecting member 43 detects the processing information of the processed workpiece, and after determining that the workpiece meets the processing standard, the detecting member 43 sends an electrical signal to the processing spindle 41 and the driving assembly 20, the processing spindle 41 drives the workpiece 42 to move away from the adjusting member 32, and the first driving member 21 and the second driving member 22 stop running, so that the operator can take away the processed workpiece.
The working process of the processing device 100 is as follows:
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;
then, the adjusting piece 32 drives the clamping assembly 10 and the clamped workpiece to rotate by a preset angle relative to the fixing piece 31 so as to adjust the preset orientation of the workpiece, the locking piece 33 movably penetrates through the adjusting piece 32 along the radial direction of the adjusting piece 32 and is abutted to the periphery of the fixing piece 31 so as to limit the adjusting piece 32 after adjustment, and the clamping assembly 10 is always connected with the adjusting piece 32 before and after angle adjustment, so that the perpendicularity and straightness of the clamping assembly 10 and the workpiece do not need to be determined again, the angle adjustment procedure of the workpiece is simplified, and the machining efficiency is improved;
Finally, the machining spindle 41 drives the workpiece 42 to descend to a preset height near the clamping assembly 10, and the first driving piece 21 and the second driving piece 22 respectively drive the workpiece to move along the first direction and the second direction, so that the workpiece 42 can be machined, the machining operation of the workpiece can be completed rapidly, and the machining efficiency is further improved.
Finally, it should be noted that the above-mentioned embodiments are merely for illustrating the technical solution of the present application and not for limiting the same, and 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 modifications and equivalents may be made to the technical solution of the present application without departing from the spirit and scope of the technical solution of the present application.
Claims (10)
1. A processing apparatus, comprising:
The clamping assembly is used for clamping a workpiece to be processed;
The driving assembly is arranged below the clamping assembly;
The adjusting component comprises a fixing piece, an adjusting piece and a locking piece, wherein the fixing piece is connected with the driving component, the adjusting piece is sleeved at one end, far away from the driving component, of the fixing piece and is rotationally connected with the fixing piece, the adjusting piece is connected with the clamping component and is used for driving the clamping component and the workpiece to rotate for a preset angle relative to the fixing piece so as to adjust the preset orientation of the workpiece, and the locking piece movably penetrates through the adjusting piece along the radial direction of the adjusting piece and is abutted to the circumference side of the fixing piece so as to limit the adjusting piece after adjustment, and the driving component is used for driving the fixing piece to drive the adjusting piece and the workpiece after adjustment to synchronously move;
The machining assembly comprises a machining main shaft and a workpiece, wherein the machining main shaft is arranged above the clamping assembly and is connected with the workpiece, and the machining main shaft is used for driving the workpiece to move along the direction of the clamping assembly, which points to the driving assembly, so that the workpiece is matched with the driving assembly to machine the workpiece.
2. The processing apparatus of claim 1, wherein the clamping assembly comprises:
The supporting piece is connected with the adjusting piece;
a reference member arranged on one side of the support member facing away from the adjustment member, the reference member being used for positioning the workpiece, and
The movable piece is arranged on the supporting piece in a sliding manner and is arranged on the supporting piece at intervals with the reference piece, and the movable piece is used for moving close to the reference piece so as to clamp the workpiece to the reference piece.
3. The processing apparatus of claim 2, wherein the reference member and the movable member each comprise:
The connecting body of the reference piece is fixedly connected with the supporting piece, and the connecting body of the movable piece is in sliding connection with the supporting piece;
the rotating body is arranged on one side, facing the other connecting body, of the corresponding connecting body and is in rotating connection with the corresponding connecting body, and the rotating body is used for rotating relative to the connecting body to abut against a preset area of the workpiece when clamping the workpiece.
4. A machining apparatus according to claim 3, wherein the rotating body includes a rotating portion rotatably connected to the connecting body, and a rolling portion provided on a side of the rotating portion facing away from the connecting body and rotatably connected to the rotating portion, the rolling portion being adapted to be in rolling contact with the workpiece.
5. The processing apparatus of claim 2, wherein the support comprises:
The support body is arranged on one side of the adjusting piece, which is away from the fixing piece, and is connected with the clamping assembly, and a storage groove is formed in the side wall of the support body;
The support body is connected with the adjusting piece, and the other end of the support body stretches into the storage groove and supports the support body to the adjusting piece, so that the support piece is detachably connected with the adjusting piece.
6. The processing device of claim 1, wherein the fixing member comprises a fixing body, a positioning body and a supporting body, the fixing body is connected with the driving assembly, the positioning body is convexly arranged on one side of the fixing body, which faces the adjusting member, the positioning body is used for being inserted into the adjusting member to position the adjusting member to the fixing body, the supporting body surrounds the positioning body and is arranged on the fixing body at intervals with the positioning body, the supporting body is inserted into the adjusting member and is rotatably connected with the adjusting member, and the supporting body is used for supporting the adjusting member.
7. The processing apparatus of claim 6, wherein the adjustment member comprises:
The linkage body is inserted between the bearing body and the positioning body, and is provided with a positioning groove which is used for accommodating the positioning body so as to position the linkage body;
The adjusting body, one side of adjusting body with clamping subassembly is connected, the opposite side of adjusting body is equipped with the accommodation groove, the accommodation groove centers on the aggregate body sets up, the accommodation groove is accomodate the bearing body, the adjusting body is used for driving clamping subassembly with work piece synchronous rotation.
8. The processing device according to claim 7, wherein a first scale line is provided on a side of the fixed body facing the adjusting body, and a second scale line is provided on a peripheral side of the adjusting body.
9. The processing apparatus of claim 1, wherein the drive assembly comprises a first drive member and a second drive member, the first drive member and the fixing member are respectively connected to the second drive member, the first drive member is configured to drive the clamping assembly and the workpiece to move in a first direction, and the second drive member is configured to drive 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 processing assembly further comprises:
The detection piece is connected with the processing main shaft and is electrically connected with the processing main shaft and the driving assembly, and the detection piece is used for detecting the processing information of the processed workpiece.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423273951.4U CN223749072U (en) | 2024-12-28 | 2024-12-28 | Processing equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423273951.4U CN223749072U (en) | 2024-12-28 | 2024-12-28 | Processing equipment |
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| CN223749072U true CN223749072U (en) | 2026-01-02 |
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| CN202423273951.4U Active CN223749072U (en) | 2024-12-28 | 2024-12-28 | Processing equipment |
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