CN223876296U - A rotary marking device - Google Patents

A rotary marking device

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Publication number
CN223876296U
CN223876296U CN202520378195.7U CN202520378195U CN223876296U CN 223876296 U CN223876296 U CN 223876296U CN 202520378195 U CN202520378195 U CN 202520378195U CN 223876296 U CN223876296 U CN 223876296U
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CN
China
Prior art keywords
block
adjusting
moving
assembly
marking
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Active
Application number
CN202520378195.7U
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Chinese (zh)
Inventor
蒋燎燎
丁宠
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Suzhou Danv Tools Co ltd
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Suzhou Danv Tools Co ltd
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Application filed by Suzhou Danv Tools Co ltd filed Critical Suzhou Danv Tools Co ltd
Priority to CN202520378195.7U priority Critical patent/CN223876296U/en
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Publication of CN223876296U publication Critical patent/CN223876296U/en
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Abstract

本申请涉及一种牙轮旋转式打号装置,牙轮旋转式打号装置包括主体和打号机构,所述打号机构设置在所述主体上,还包括工件转动机构,所述工件转动机构包括转动块、抵紧组件和驱动组件,所述转动块转动设置在所述主体上,所述抵紧组件设置在所述转动块上;所述驱动组件设置在所述主体上且与所述转动块连接。本申请具有提高效率的效果。

This application relates to a rotary marking device, which includes a main body and a marking mechanism. The marking mechanism is disposed on the main body. It also includes a workpiece rotation mechanism, which comprises a rotating block, a clamping component, and a driving component. The rotating block is rotatably disposed on the main body, and the clamping component is disposed on the rotating block. The driving component is disposed on the main body and connected to the rotating block. This application has the effect of improving efficiency.

Description

Gear wheel rotation type marking device
Technical Field
The application relates to the technical field of cone machining, in particular to a cone rotary marking device.
Background
Cone is a common standard mechanical part. After the production of the roller cone is finished, all parameters of the roller cone are detected, marking or marking can be carried out after the detection is qualified, and the roller cone after marking or marking can be delivered for sale.
At present, china patent publication No. CN106735919A discloses a gear laser marking device, which comprises a workbench, a bracket arranged on the workbench and a laser head arranged on the bracket, wherein a gear tray seat is arranged on the workbench and used for loading the gear, a baffle plate is arranged below the laser head and between the laser head and the tray seat, a fixed die column used for fixing a gear and a plurality of movable modules which are arranged on the same circumference and can move along the radial direction of the fixed die column are arranged on the tray seat, the baffle plate is connected with one of the movable modules and moves along with the movement of the movable module, and a guide hole through which the laser head can pass is arranged on the baffle plate.
Because the position of the gear on the tray seat is motionless when marking, in order to ensure the effect of marking the gears in the same batch, a certain time is required before the gears are fixed, and the position of the gears is adjusted, so that the time is longer, and the efficiency is lower.
Disclosure of utility model
In order to improve efficiency, the application provides a rotary cone rotary marking device.
The application provides a rotary cone rotary marking device, which adopts the following technical scheme:
The rotary cone rotary marking device comprises a main body and a marking mechanism, wherein the marking mechanism is arranged on the main body, the rotary cone rotary marking device further comprises a workpiece rotating mechanism, the workpiece rotating mechanism comprises a rotating block, a propping assembly and a driving assembly, the rotating block is rotatably arranged on the main body, the propping assembly is arranged on the rotating block, and the driving assembly is arranged on the main body and is connected with the rotating block.
According to the technical scheme, the workpiece is limited on the rotating block through the abutting component, then the rotating component is started, the rotating component drives the rotating block to rotate, the abutting component on the rotating block drives the workpiece to rotate, so that the position of the workpiece is changed, the marking mechanism can mark the same position of the workpiece, the marking mechanism can mark the rotating workpiece, the workpiece rotating mechanism can rotate the workpiece, manual operation is reduced, and efficiency is improved.
Optionally, the driving assembly comprises a driving shaft and a driving motor, the driving shaft is rotatably arranged on the main body, the rotating block is connected with the driving shaft, and the driving motor is arranged on the main body and the output shaft is connected with the driving shaft.
By adopting the technical scheme, the driving motor is started, the output shaft of the driving motor drives the driving shaft to rotate, the driving shaft drives the rotating block to rotate, and the arranged driving assembly is simple in structure and convenient to operate.
Optionally, the tight subassembly of support includes connecting block and three-jaw chuck, the connecting block sets up on the rotor block, three-jaw chuck sets up on the connecting block.
Through adopting above-mentioned technical scheme, place the work piece on three-jaw chuck, when drive assembly drives the rotation piece and rotates, the rotation piece drives the connecting block and rotates, and three-jaw chuck on the connecting block will drive the work piece and rotate.
Optionally, the marking mechanism comprises an upright post, a supporting block, a marking head and an adjusting assembly, wherein the upright post is arranged on the main body, the supporting block is arranged on the upright post, and the marking head is arranged on the supporting block through the adjusting assembly.
Through adopting above-mentioned technical scheme, the adjustment subassembly changes the position of marking the head on the supporting shoe, makes the angle of marking the head relative main part change to improve the suitability.
Optionally, the main body is provided with a moving mechanism, the moving mechanism comprises a fixed block, a moving block and a moving assembly, the fixed block is arranged on the main body, the moving block is arranged on the fixed block in a sliding manner, the upright post is arranged on the moving block, and the moving assembly is arranged on the fixed block and connected with the moving block.
By adopting the technical scheme, the movable assembly is started, the movable assembly drives the movable block to move on the fixed block, the movable block drives the stand column to move, the stand column drives the supporting block to move, the adjusting assembly on the supporting block can drive the marking head to move, so that the position of the marking head relative to the main body is changed, and the application range of the movable mechanism can be improved.
Optionally, the moving assembly comprises a moving screw rod and a driving piece, the moving screw rod is rotatably arranged on the fixed block, the moving screw rod penetrates through the moving block and is in threaded connection with the moving block, and the driving piece is arranged on the fixed block and is connected with the moving screw rod.
By adopting the technical scheme, the driving piece drives the movable screw rod to rotate, the movable screw rod can drive the movable block to move on the fixed block, and the arranged movable assembly is simple in structure and convenient to operate.
Optionally, an adjusting mechanism is arranged on the upright, the adjusting mechanism comprises an adjusting block and an adjusting assembly, the adjusting block is slidably arranged on the upright through the adjusting assembly, and the supporting block is arranged on the adjusting block.
By adopting the technical scheme, the adjusting block is driven to move on the upright post through the adjusting component, the adjusting block drives the position of the supporting block relative to the upright post to change, the supporting block can drive the marking head to move, the position of the marking head relative to the main body is changed, and therefore the application range of the adjusting mechanism can be improved.
Optionally, the adjusting component comprises a lifting screw rod and an adjusting piece, wherein the lifting screw rod is rotatably arranged on the upright post, the lifting screw rod penetrates through the adjusting block and is in threaded connection with the adjusting block, and the adjusting piece is arranged on the upright post and is connected with the lifting screw rod.
By adopting the technical scheme, the lifting screw rod is driven to rotate through the adjusting piece, the lifting screw rod can drive the adjusting block to move corresponding to the upright post, and the arranged adjusting assembly is simple in structure and convenient to operate.
In summary, the present application includes at least one of the following beneficial technical effects:
1. The workpiece rotating mechanism can rotate the workpiece, so that manual operation is reduced, and efficiency is improved;
2. the application range of the moving mechanism can be improved;
3. the adjusting mechanism can improve the application range.
Drawings
FIG. 1 is a schematic diagram of a rotary cone rotary marking device according to an embodiment of the present application;
FIG. 2 is a schematic diagram of a rotation mechanism of a workpiece according to an embodiment of the application;
FIG. 3 is a schematic diagram of a moving mechanism according to an embodiment of the present application;
FIG. 4 is a schematic diagram of an adjusting assembly according to an embodiment of the present application;
Fig. 5 is a schematic structural view of a fastening mechanism according to an embodiment of the present application.
Reference numeral 1, a main body; 2, marking mechanism, 21, upright post, 22, supporting block, 23, marking head, 24, adjusting component, 241, first adjusting block, 242, second adjusting block, 243, first adjusting screw, 244, second adjusting screw, 245, first adjusting motor, 246, second adjusting motor, 3, workpiece rotating mechanism, 31, rotating block, 32, tightening component, 321, connecting block, 322, three-jaw chuck, 33, driving component, 331, driving shaft, 332, driving motor, 4, moving mechanism, 41, fixed block, 42, moving block, 43, moving component, 431, moving screw, 432, driving component, 44, guide rail, 45, sliding seat, 5, adjusting mechanism, 51, adjusting block, 52, adjusting component, 521, lifting screw, 522, adjusting component, 6, reinforcing mechanism, 61, reinforcing block, 62, adjusting shaft, 63, adjusting gear, 64, adjusting rack, 71, adjusting motor, 72, rotating shaft.
Detailed Description
The application is described in further detail below with reference to fig. 1-5.
The embodiment of the application discloses a rotary cone rotary marking device.
Referring to fig. 1, a rotary marking device for a roller cone comprises a main body 1, wherein a marking mechanism 2 and a workpiece rotating mechanism 3 are arranged on the main body 1. The workpiece is placed on the workpiece rotating mechanism 3, then the workpiece rotating mechanism 3 drives the workpiece to rotate, and finally the marking mechanism 2 marks or marks the workpiece.
Referring to fig. 1 and 2, the workpiece rotating mechanism 3 includes a rotating block 31 rotatably connected to a main body 1, a driving assembly 33 is provided on the main body 1, the driving assembly 33 includes a driving motor 332 fixedly connected to the main body 1, and a driving shaft 331 is connected to an output shaft of the driving motor 332, and the driving shaft 331 is connected to the rotating block 31. The rotating block 31 is provided with a tightening assembly 32, the tightening assembly 32 comprises a connecting block 321 fixedly connected with the rotating block 31, and the connecting block 321 is connected with a three-jaw chuck 322.
The three-jaw chuck 322 is used for fixing a workpiece, then the driving motor 332 is started, the driving shaft 331 is driven by the output shaft of the driving motor 332 to rotate, the rotating block 31 is driven by the driving shaft 331 to rotate, the connecting block 321 is driven by the rotating block 31 to rotate, the three-jaw chuck 322 is driven by the connecting block 321 to rotate, and the workpiece is driven by the three-jaw chuck 322 to rotate.
Referring to fig. 1 and 3, a moving mechanism 4 is provided on a main body 1, the moving mechanism 4 includes a fixed block 41 fixedly connected to the main body 1, the fixed block 41 is located at one side of a rotating block 31, two guide rails 44 are fixedly connected to the fixed block 41, a sliding seat 45 is slidingly connected to each guide rail 44, and the two sliding seats 45 are commonly connected to a moving block 42. The fixed block 41 is provided with a moving assembly 43, the moving assembly 43 comprises a moving screw rod 431 rotatably connected to the fixed block 41, the moving screw rod 431 penetrates through the moving block 42 and is in threaded connection with the moving block 42, the fixed block 41 is provided with a driving piece 432, the driving piece 432 is connected with one end of the moving screw rod 431, and the driving piece 432 can be a hand wheel or a motor in the embodiment, so long as the driving piece 432 can drive the moving screw rod 431 to rotate.
The driving member 432 drives the moving screw 431 to rotate, and the moving screw 431 drives the moving block 42 to move, so that the sliding seat 45 on the moving block 42 moves on the guide rail 44.
Referring to fig. 3 and 4, the marking mechanism 2 comprises a stand column 21 fixedly connected to the moving block 42, a first chute is formed in the stand column 21, an adjusting mechanism 5 is arranged on the stand column 21, the adjusting mechanism 5 comprises an adjusting block 51 slidingly connected in the first chute, an adjusting assembly 52 is arranged on the stand column 21, the adjusting assembly 52 comprises a lifting screw 521 rotatably connected to the stand column 21, the lifting screw 521 penetrates through the adjusting block 51 and is in threaded connection with the adjusting block 51, an adjusting piece 522 is arranged at one end, far away from the moving block 42, of the stand column 21, the adjusting piece 522 is an adjusting wheel in the embodiment, the adjusting wheel is rotatably arranged on the stand column 21, and the adjusting wheel is fixedly connected with one end, far away from the moving block 42, of the lifting screw 521.
The adjusting wheel is rotated, the adjusting wheel drives the lifting screw rod 521 to rotate, and the lifting screw rod 521 drives the adjusting block 51 to slide in the first sliding groove.
Referring to fig. 3 and 5, the adjusting block 51 is provided with a reinforcing mechanism 6, the reinforcing mechanism 6 comprises a reinforcing block 61 slidingly connected to the adjusting block 51, the upright 21 is provided with a plurality of reinforcing grooves communicated with the first sliding grooves, the reinforcing block 61 can be clamped with the reinforcing grooves, the adjusting block 51 is rotatably connected with an adjusting shaft 62, the adjusting shaft 62 is connected with an adjusting gear 63 in a key manner, and the reinforcing block 61 is integrally provided with an adjusting rack 64 meshed with the adjusting gear 63.
After the position of the adjusting block 51 relative to the upright post 21 is determined, the adjusting shaft 62 is rotated, the adjusting shaft 62 drives the adjusting gear 63 to rotate, the adjusting gear 63 drives the adjusting rack 64 to move, the adjusting rack 64 moves the reinforcing block 61, and the reinforcing block 61 is clamped with the reinforcing groove on the upright post 21, so that the stability of the adjusting block 51 on the upright post 21 is improved.
Referring to fig. 3 and 4, an adjusting motor 71 is fixedly connected to the adjusting block 51, a rotating shaft 72 is connected to an output shaft of the adjusting motor 71, and a supporting block 22 is fixedly connected to the rotating shaft 72.
The support block 22 is provided with a mounting cavity, the bottom wall of the mounting cavity is provided with a second sliding groove, the support block 22 is provided with an adjusting assembly 24, the adjusting assembly 24 comprises a first adjusting block 241 which is connected in the second sliding groove in a sliding mode, a first adjusting screw rod 243 is connected in the second sliding groove in a rotating mode, the first adjusting screw rod 243 penetrates through the first adjusting block 241 and is in threaded connection with the first adjusting block 241, the support block 22 is fixedly connected with a first adjusting motor 245, and an output shaft of the first adjusting motor 245 is connected with one end of the first adjusting screw rod 243. The first adjusting block 241 is provided with a third sliding groove, the axis of the third sliding groove is perpendicular to the axis of the second sliding groove, a second adjusting block 242 is connected in the third sliding groove in a sliding manner, a second adjusting screw rod 244 is connected in the third sliding groove in a rotating manner, the second adjusting screw rod 244 penetrates through the second adjusting block 242 and is in threaded connection with the second adjusting block 242, the first adjusting block 241 is fixedly connected with a second adjusting motor 246, and an output shaft of the second adjusting motor 246 is connected with one end of the second adjusting screw rod 244. The second adjusting block 242 is fixedly connected with a marking head 23, and in this embodiment, the marking head 23 is a laser marking head.
The method comprises the steps of starting an adjusting motor 71, starting a first adjusting motor 245, starting a second adjusting motor 246, driving a second adjusting screw 244 to rotate by an output shaft of the second adjusting motor 246, driving the second adjusting screw 242 to slide in a third sliding groove of the first adjusting block 241 by the second adjusting screw 244, and finally realizing the position change of the marking head 23, wherein an output shaft of the adjusting motor 71 drives the rotating shaft 72 to rotate, the rotating shaft 72 drives the supporting block 22 to rotate, the output shaft of the first adjusting motor 245 drives the first adjusting screw 243 to rotate, and the first adjusting screw 243 drives the first adjusting screw 241 to slide in a second sliding groove of the supporting block 22, and the second adjusting screw 244 drives the second adjusting screw 242 to slide in a third sliding groove of the first adjusting block 241.
The implementation principle of the rotary cone rotary marking device of the embodiment of the application is that when a workpiece is required to be marked or marked, a driving piece 432 is started firstly to enable a moving block 42 to move to a proper position on a fixed block 41, then an adjusting wheel is rotated to enable an adjusting block 51 to move to a proper position on a stand column 21, an adjusting shaft 62 is rotated to enable a reinforcing block 61 to be clamped with a fixed groove on the stand column 21, and then an adjusting motor 71, a first adjusting motor 245 and a second adjusting motor 246 are started to adjust the position of a marking head 23.
The workpiece is placed in the box on the three-jaw chuck 322, and then the driving motor 332 is started to rotate the rotating block 31, thereby effecting the rotation of the workpiece. The marking head 23 performs marking or marking processing on the workpiece positioned on the three-jaw chuck 322.
The above embodiments are not intended to limit the scope of the application, so that the equivalent changes of the structure, shape and principle of the application are covered by the scope of the application.

Claims (8)

1. The utility model provides a gear wheel rotation type marking device, includes main part (1) and marking mechanism (2), marking mechanism (2) set up on main part (1), its characterized in that still includes work piece slewing mechanism (3), work piece slewing mechanism (3) include turning block (31), support tight subassembly (32) and drive assembly (33), turning block (31) rotate and set up on main part (1), support tight subassembly (32) set up on turning block (31), drive assembly (33) set up on main part (1) and with turning block (31) are connected.
2. The rotary cone rotary marking device according to claim 1, characterized in that the driving assembly (33) comprises a driving shaft (331) and a driving motor (332), the driving shaft (331) is rotatably arranged on the main body (1), the rotating block (31) is connected with the driving shaft (331), and the driving motor (332) is arranged on the main body (1) and the output shaft is connected with the driving shaft (331).
3. The cone rotary marking device of claim 1 wherein said abutment assembly (32) comprises a connection block (321) and a three-jaw chuck (322), said connection block (321) being disposed on said rotatable block (31), said three-jaw chuck (322) being disposed on said connection block (321).
4. The rotary cone rotary marking device according to claim 1, wherein the marking mechanism (2) comprises a stand column (21), a supporting block (22), a marking head (23) and an adjusting assembly (24), the stand column (21) is arranged on the main body (1), the supporting block (22) is arranged on the stand column (21), and the marking head (23) is arranged on the supporting block (22) through the adjusting assembly (24).
5. The rotary cone marking device according to claim 4, characterized in that the main body (1) is provided with a moving mechanism (4), the moving mechanism (4) comprises a fixed block (41), a moving block (42) and a moving assembly (43), the fixed block (41) is arranged on the main body (1), the moving block (42) is slidingly arranged on the fixed block (41), the upright post (21) is arranged on the moving block (42), and the moving assembly (43) is arranged on the fixed block (41) and is connected with the moving block (42).
6. The rotary cone marking device according to claim 5, characterized in that the moving assembly (43) comprises a moving screw (431) and a driving member (432), the moving screw (431) is rotatably arranged on the fixed block (41), the moving screw (431) penetrates through the moving block (42) and is in threaded connection with the moving block (42), and the driving member (432) is arranged on the fixed block (41) and is connected with the moving screw (431).
7. The rotary cone rotary marking device according to claim 4, characterized in that the upright (21) is provided with an adjusting mechanism (5), the adjusting mechanism (5) comprises an adjusting block (51) and an adjusting assembly (52), the adjusting block (51) is slidably arranged on the upright (21) through the adjusting assembly (52), and the supporting block (22) is arranged on the adjusting block (51).
8. The rotary cone rotary marking device according to claim 7, characterized in that the adjusting assembly (52) comprises a lifting screw (521) and an adjusting piece (522), the lifting screw (521) is rotatably arranged on the upright (21), the lifting screw (521) penetrates through the adjusting block (51) and is in threaded connection with the adjusting block (51), and the adjusting piece (522) is arranged on the upright (21) and is connected with the lifting screw (521).
CN202520378195.7U 2025-03-05 2025-03-05 A rotary marking device Active CN223876296U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520378195.7U CN223876296U (en) 2025-03-05 2025-03-05 A rotary marking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520378195.7U CN223876296U (en) 2025-03-05 2025-03-05 A rotary marking device

Publications (1)

Publication Number Publication Date
CN223876296U true CN223876296U (en) 2026-02-06

Family

ID=98642455

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520378195.7U Active CN223876296U (en) 2025-03-05 2025-03-05 A rotary marking device

Country Status (1)

Country Link
CN (1) CN223876296U (en)

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