Clutch guide block precision forming device
By employing a mechanical design featuring a ring structure and stepless adjustment control, combined with laser engraving technology, the problem of poor machining effect on the arc surface of the clutch guide block was solved, achieving efficient and precise material forming and improving the stability and reliability of the device.
Patent Information
- Application Number
- CN202423183231.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing technologies have poor machining effects on the arc-shaped surface of clutch guide blocks, which affects machining efficiency and accuracy.
The mechanical structure employs a ring structure and stepless adjustment control, combined with laser engraving technology. Through the coordinated work of the surrounding moving block, rotating gear ring, lifting structure, longitudinal movement structure, and translational movement structure, the laser engraving machine achieves precise three-dimensional position adjustment, ensuring the precision forming of the clutch guide block.
It improves the processing efficiency and precision of curved surfaces, enables precise material forming, and enhances the stability and reliability of the device.
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Figure CN223588540U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a clutch guide block precision forming device belongs to part machining technical field. BACKGROUND
[0002] The main function of the clutch is to realize the power connection and cut-off between the engine and the gearbox, so as to perform the operation of gear shifting and parking. It is usually composed of multiple components, including clutch disc, clutch shell, clutch pressure plate, clutch spring, etc. In the structure of the clutch, there may be some parts for guiding or supporting the movement of other components, some of which play a similar role of "guide block". The clutch plays a crucial role in the automobile transmission system. It not only realizes the power connection and cut-off between the engine and the gearbox, but also protects the machine from damage. At the same time, the correct use and maintenance of the clutch is of great significance to prolong the service life of the car and improve the driving safety.
[0003] The existing application number for a kind of precision grinding device for automobile part machining CN202321729496.7, including polishing box, the inside fixed sleeve of polishing box is equipped with water tank, the inside fixed sleeve of water tank is equipped with limit cover. The utility model provides a kind of precision grinding device for automobile part machining, which is provided with filter block. When polishing automobile parts, start water pump, so that water pump can extract the water flow inside water tank through delivery pipe, and spray to the top of fixed seat through drain pipe, promote the water flow to wash the metal dust on the top of fixed seat, so that the water flow on the top of fixed seat can flow into the inside of limit cover with metal dust, at this time, filter block can adsorb and filter the metal dust in water flow, so that the filtered water flow can be recycled in water tank, thereby improving the utilization rate of water flow when polishing automobile parts.
[0004] The above device improves the polishing efficiency of automobile parts and the utilization effect of water flow, but the transverse processing effect on the surface of raw materials is good, and the arc surface processing effect on the material is poor. Utility model content
[0005] The utility model aims at solving the above problems and provides a clutch guide block precision forming device, which can improve the processing effect of the device on the arc surface of the side edge of raw materials.
[0006] The utility model discloses a kind of clutch guide block precision forming devices, including operation round table, the outside of the operation round table is equipped with annular mounting slot, the inside fixed mounting of annular mounting slot has positioning gear ring, the inside sliding joint of annular mounting slot has ring around moving block, the inside fixed of ring around moving block has ring around wheel hub motor, the outside fixed sleeve of ring around wheel hub motor has rotary gear ring, the rotary gear ring and the positioning gear ring are mutually engaged, the outside of ring around moving block is provided with lifting structure, the upper end of lifting structure is installed with longitudinal structure, the inside of longitudinal structure is designed with translation structure, one end of translation structure is fixedly welded with laser engraver.
[0007] Preferably, in order to improve the stability of the device operation, the two sides of the annular mounting slot are designed with tight sliding groove, the two sides of one end of the ring around moving block are designed with connecting sliding block, the connecting sliding block and the tight sliding groove are mutually slidingly connected, one end of the ring around moving block is provided with ring shift adapter slot, and the ring around wheel hub motor is installed in the inside of the ring shift adapter slot.
[0008] Preferably, in order to make the lifting structure run stably, the lifting structure includes lifting limiting frame, the two sides of the ring around moving block are designed with vertical clamping groove, the lifting limiting frame is slidingly connected in the inside of the vertical clamping groove, and the lower end of the lifting limiting frame is fixedly installed with lifting motor.
[0009] Preferably, in order to promote the lifting structure to move up and down, the output end of the lifting motor is fixedly installed with lifting screw rod, the inside of the ring around moving block is provided with lifting screw hole, and the lifting screw hole and the lifting screw rod are mutually screwed.
[0010] Preferably, in order to increase the convenience of the device, the longitudinal structure includes longitudinal sliding rail, longitudinal motor, longitudinal screw rod and longitudinal mounting block, the longitudinal sliding rail is fixedly welded to the upper end of the lifting limiting frame, the longitudinal motor is arranged at one end of the longitudinal sliding rail, the longitudinal screw rod is installed in the inside of the longitudinal sliding rail, and the longitudinal mounting block is clamped in the inside of the longitudinal sliding rail.
[0011] Preferably, in order to promote the longitudinal movement of the translation structure, the two ends of the longitudinal sliding rail are provided with rotating connection holes, the longitudinal screw rod is rotatably connected in the inside of the rotating connection hole, the longitudinal screw rod and the output end of the longitudinal motor are mutually fixedly connected, the longitudinal mounting block and the longitudinal sliding rail are mutually slidingly connected, the lower end of the longitudinal mounting block is provided with longitudinal screw hole, and the longitudinal screw hole and the longitudinal screw rod are mutually screwed.
[0012] Preferably, in order to adjust the rotating radius of the laser engraver, the translation structure comprises a translation hub motor, a translation driving gear ring and a translation gear rack, the translation hub motor is arranged in the interior of the longitudinal moving mounting block, the translation driving gear ring is sleeved on the outer side of the translation hub motor, and the translation gear rack is installed on one side of the translation driving gear ring.
[0013] Preferably, in order to improve the stability of the translation structure, the upper end of the longitudinal moving mounting block is internally provided with a translation driving groove, the translation hub motor is fixedly installed in the interior of the translation driving groove, the translation driving gear ring and the translation hub motor are fixedly connected with each other, and the translation gear rack is slidingly connected in the interior of the translation driving groove, and the translation driving gear ring and the translation gear rack are meshed with each other.
[0014] The device has the advantages that: the annular structure is adopted, the machining efficiency of the arc surface is improved, the structure used in the device is a stepless adjustment control structure, the machining size can be accurately controlled through electronic intelligent control, and the forming effect of material machining is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a side sectional view structure schematic diagram of the utility model.
[0016] Figure 2 It is a whole structure schematic diagram of the utility model.
[0017] Figure 3 It is a partial structure schematic diagram of the utility model.
[0018] Figure 4 It is a structure schematic diagram of the translation structure part in the utility model.
[0019] In the drawing: 1, operation circular table; 2, positioning gear ring; 3, encircling moving block; 4, encircling hub motor; 5, rotating gear ring; 6, lifting structure; 601, lifting limiting frame; 602, lifting motor; 603, lifting screw rod; 7, longitudinal moving structure; 701, longitudinal moving slide rail; 702, longitudinal moving motor; 703, longitudinal moving screw rod; 704, longitudinal moving mounting block; 8, translation structure; 801, translation hub motor; 802, translation driving gear ring; 803, translation gear rack; 9, laser engraver. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0021] Please refer to Figures 1-4 As shown in the figure, a clutch guide block precision forming device, including operation round table 1, the outer side of operation round table 1 is provided with annular mounting groove, the inside fixed mounting of annular mounting groove has positioning gear ring 2, the inside sliding joint of annular mounting groove has around moving block 3, the inside fixed of around moving block 3 has around wheel hub motor 4, the outside fixed sleeve of around wheel hub motor 4 has rotary gear ring 5, rotary gear ring 5 and positioning gear ring 2 are mutually engaged, the outside of around moving block 3 is provided with lifting structure 6, the upper end of lifting structure 6 is installed with longitudinal displacement structure 7, the inside of longitudinal displacement structure 7 is designed with translation structure 8, one end of translation structure 8 is fixedly welded with laser engraving machine 9, the device can accurately position laser engraving machine 9 at any position on annular path through the mutual cooperation of around moving block 3, rotary gear ring 5 and positioning gear ring 2, through the collaborative work of lifting structure 6, longitudinal displacement structure 7 and translation structure 8, laser engraving machine 9 can further accurately adjust its three-dimensional position, so as to realize the precision forming of clutch guide block, the design of this device makes full use of the rotation, sliding and lifting movement mode in mechanical structure, combined with the precise laser engraving technology, realizes the efficient and accurate forming of clutch guide block.
[0022] The two sides of annular mounting groove are designed with tight sliding grooves, the two sides of one end of around moving block 3 are designed with connecting sliding blocks, the connecting sliding blocks and the tight sliding grooves are mutually slidingly connected, one end of around moving block 3 is provided with ring shift adapter groove, around wheel hub motor 4 is installed in the inside of ring shift adapter groove, through the mutual cooperation of tight sliding groove and connecting sliding block, around moving block 3 can stably move along annular mounting groove, and will not deviate from the track or shake, the design of ring shift adapter groove allows around wheel hub motor 4 to be compactly and effectively installed on around moving block 3, provides necessary driving force for the whole device, this design not only improves the stability and accuracy of the device, but also ensures its reliability and durability in long-time operation.
[0023] The lifting structure 6 comprises a lifting limiting frame 601, vertical clamping grooves are designed around the two sides of the moving block 3, the lifting limiting frame 601 is slidingly clamped in the vertical clamping grooves, the lower end of the lifting limiting frame 601 is fixedly installed with a lifting motor 602, the output end of the lifting motor 602 is fixedly installed with a lifting screw rod 603, a lifting threaded hole is formed around the inside of the moving block 3, and the lifting threaded hole and the lifting screw rod 603 are threadedly connected with each other; when the lifting motor 602 is started, it drives the lifting screw rod 603 to rotate. Since the lifting screw rod 603 and the lifting threaded hole are threadedly connected with each other, when the screw rod rotates, it moves up and down along the threaded hole, and the lifting limiting frame 601 is slidingly clamped in the vertical clamping grooves, so that the stability and accuracy of the lifting process are ensured. At the same time, the lifting limiting frame 601 also provides a frame for supporting and fixing the lifting motor 602 and all the structures thereon, and through this design, the lifting structure 6 can accurately adjust the vertical position of all the structures thereon, so as to meet the needs of precision forming of the clutch guide block.
[0024] The longitudinal movement structure 7 comprises a longitudinal movement sliding rail 701, a longitudinal movement motor 702, a longitudinal movement screw rod 703 and a longitudinal movement mounting block 704, the longitudinal movement sliding rail 701 is fixedly welded to the upper end of the lifting limiting frame 601, the longitudinal movement motor 702 is arranged at one end of the longitudinal movement sliding rail, the longitudinal movement screw rod 703 is installed in the inside of the longitudinal movement sliding rail 701, the longitudinal movement mounting block 704 is clamped in the inside of the longitudinal movement sliding rail 701, both ends of the longitudinal movement sliding rail 701 are provided with rotating connection holes, the longitudinal movement screw rod 703 is rotatingly clamped in the inside of the rotating connection holes, the longitudinal movement screw rod 703 and the output end of the longitudinal movement motor 702 are fixedly connected with each other, the longitudinal movement mounting block 704 and the longitudinal movement sliding rail 701 are slidingly clamped with each other, the lower end of the longitudinal movement mounting block 704 is provided with a longitudinal movement threaded hole, and the longitudinal movement threaded hole and the longitudinal movement screw rod 703 are threadedly connected with each other; when the longitudinal movement motor 702 is started, it drives the longitudinal movement screw rod 703 to rotate, and since the screw rod and the longitudinal movement threaded hole are threadedly connected with each other, when the screw rod rotates, it moves longitudinally along the threaded hole, and the longitudinal movement mounting block 704 is slidingly clamped in the inside of the longitudinal movement sliding rail 701, so that the stability and accuracy of the longitudinal movement process are ensured. At the same time, the longitudinal movement mounting block 704 also provides a platform for supporting and fixing the translation structure 8 and all the structures thereon, and through this design, the longitudinal movement structure 7 can accurately adjust the longitudinal position of all the structures thereon, so as to meet the needs of precision forming of the clutch guide block.
[0025] The translation structure 8 comprises a translation hub motor 801, a translation driving gear ring 802 and a translation gear rack 803, the translation hub motor 801 is arranged in the interior of the longitudinal movement mounting block 704, the translation driving gear ring 802 is sleeved on the outer side of the translation hub motor 801, the translation gear rack 803 is mounted on one side of the translation driving gear ring 802, the upper end of the longitudinal movement mounting block 704 is internally provided with a translation driving groove, the translation hub motor 801 is fixedly installed in the interior of the translation driving groove, the translation driving gear ring 802 and the translation hub motor 801 are fixedly connected with each other, the translation gear rack 803 is slidingly connected in the interior of the translation driving groove, the translation driving gear ring 802 and the translation gear rack 803 are meshed with each other, when the translation hub motor 801 is started, it drives the translation driving gear ring 802 to rotate, since the translation driving gear ring 802 and the translation gear rack 803 are meshed with each other, therefore, when the gear ring rotates, it drives the gear rack to move horizontally, the translation gear rack 803 is slidingly connected in the interior of the translation driving groove, which ensures the stability and accuracy of the translation process, through this design, the translation structure 8 can accurately adjust the horizontal position of the laser engraving machine 9, so as to meet the needs of precision molding of the clutch guide block.
[0026] It is apparent for those skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and it is intended to encompass all changes falling within the meaning and scope of the equivalent elements of the claims. Any reference signs in the claims should not be considered as limiting the claims involved.
[0027] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A clutch pilot block precision molding apparatus, characterized by: The utility model provides an operating round table (1), the outside of operating round table (1) is equipped with annular installation slot, the inside fixed mounting of annular installation slot has the positioning gear ring (2), the inside sliding joint of annular installation slot has the encircle mobile block (3), the inside fixed of encircle mobile block (3) has encircle wheel hub motor (4), the outside fixed sleeve of encircle wheel hub motor (4) has rotary gear ring (5), rotary gear ring (5) and positioning gear ring (2) between each other mesh, the outside of encircle mobile block (3) is provided with lifting structure (6), the upper end of lifting structure (6) is installed and moves structure (7), the inside design of longitudinal movement structure (7) has the translation structure (8), one end fixed welding of translation structure (8) has laser engraver (9).
2. The clutch pilot precision molding apparatus according to claim 1, characterized by: The two sides of the annular installation slot are designed with tight sliding grooves, the two sides of one end of the encircle mobile block (3) are designed with connecting sliding blocks, the connecting sliding blocks and the tight sliding grooves are slidably connected, one end of the encircle mobile block (3) is provided with a ring shift adapter slot, and the encircle wheel hub motor (4) is installed in the ring shift adapter slot.
3. The clutch pilot precision molding apparatus of claim 1, wherein: The lifting structure (6) comprises a lifting limiting frame (601), the two sides of the encircle mobile block (3) are designed with vertical clamping grooves, the lifting limiting frame (601) is slidably connected in the vertical clamping grooves, and the lower end of the lifting limiting frame (601) is fixedly installed with a lifting motor (602).
4. The clutch pilot precision molding apparatus of claim 3, wherein: The output end of the lifting motor (602) is fixedly installed with a lifting screw rod (603), the inside of the encircle mobile block (3) is provided with a lifting screw hole, and the lifting screw hole and the lifting screw rod (603) are threadedly connected.
5. The clutch pilot precision molding apparatus of claim 3, wherein: The longitudinal movement structure (7) comprises a longitudinal movement sliding rail (701), a longitudinal movement motor (702), a longitudinal movement screw rod (703) and a longitudinal movement mounting block (704), the longitudinal movement sliding rail (701) is fixedly welded to the upper end of the lifting limiting frame (601), the longitudinal movement motor (702) is arranged at one end of the longitudinal movement sliding rail, the longitudinal movement screw rod (703) is installed in the longitudinal movement sliding rail (701), and the longitudinal movement mounting block (704) is clamped in the longitudinal movement sliding rail (701).
6. The clutch pilot precision molding apparatus of claim 5, wherein: The two ends of the longitudinal movement sliding rail (701) are provided with rotating connection holes, the longitudinal movement screw rod (703) is rotatably connected in the rotating connection holes, the longitudinal movement screw rod (703) and the output end of the longitudinal movement motor (702) are fixedly connected, the longitudinal movement mounting block (704) and the longitudinal movement sliding rail (701) are slidably connected, the lower end of the longitudinal movement mounting block (704) is provided with a longitudinal movement screw hole, and the longitudinal movement screw hole and the longitudinal movement screw rod (703) are threadedly connected.
7. The clutch pilot precision molding apparatus of claim 5, wherein: The translation structure (8) includes a translation hub motor (801), a translation drive gear ring (802) and a translation rack (803), the translation hub motor (801) is arranged in the inside of the longitudinal moving mounting block (704), the translation drive gear ring (802) is sleeved on the outside of the translation hub motor (801), and the translation rack (803) is installed on one side of the translation drive gear ring (802).
8. The clutch pilot precision molding apparatus of claim 7, wherein: The inside of the upper end of the longitudinal moving mounting block (704) is provided with a translation drive groove, the translation hub motor (801) is fixedly installed in the inside of the translation drive groove, the translation drive gear ring (802) and the translation hub motor (801) are fixedly connected with each other, the translation rack (803) is slidably connected in the inside of the translation drive groove, and the translation drive gear ring (802) and the translation rack (803) are engaged with each other.
Citation Information
Patent Citations
Precise grinding device for automobile part machining
CN220718699U