A new energy wind power gear box gear shaping tool clamp
By designing a tooling fixture for gear shaping in new energy wind turbine gearboxes, and utilizing the synergistic effect of multiple components, the problem of the inability to adjust the clamping device in the existing technology was solved, achieving stable clamping and angle adaptation of the gears, and improving processing efficiency.
Patent Information
- Application Number
- CN202510472888.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2045-04-16
AI Technical Summary
In the current gear machining process, the clamping device cannot be adjusted according to the machining position, which requires the replacement of clamping components and results in low work efficiency.
A tooling fixture for gear shaping in a new energy wind turbine gearbox was designed. Through the coordinated action of multiple components, it achieves stable clamping and angle adjustment of the gear. The fixture includes components such as a base, support block, rotating block, telescopic rod, swing plate, and clamping plate, which can adapt to the needs of different processing positions.
It improves the efficiency of gear processing, achieves stable clamping and angle adaptation of gears, reduces the frequency of clamping component replacement, and improves processing flexibility and efficiency.
Smart Images

Figure CN120115762B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of gear shaping, in particular to a tool clamp for new energy wind power gear box gear shaping. BACKGROUND
[0002] Gear shaping is a method of processing the tooth surface of internal and external gears or racks by using a gear shaping cutter on a gear shaping machine. The processing process of gear shaping is equivalent to the meshing of a pair of straight tooth cylindrical gears in principle.
[0003] In the prior art, a gear shaping device with publication number CN220591780U is disclosed. The device includes a machine base, a machine frame on one side of the top of the machine base, a gear shaping cutter assembly on the machine frame, a workbench on the top of the machine base, a gear on the top of the workbench, a shroud fixed around the edge of the top of the workbench, a support plate fixed to the upper end of the side wall of the shroud, a rectangular frame fixed to the top of the support plate, a sliding block slidingly connected in the rectangular frame, a cleaning brush on the side wall of the sliding block for cleaning gear shaping debris, a cleaning strip on the cleaning brush for cleaning gear shaping debris on the top of the workbench, a spray head for water flushing of the gear shaping debris on the top of the workbench, and a scrap collecting drawer for collecting the gear shaping debris. The gear shaping debris inside the drawer can be easily poured out without the need for manual cleaning by workers, which is more efficient and saves time and effort, reduces the workload of workers, and improves cleaning efficiency.
[0004] However, the existing gear shaping device includes internal tooth processing and external tooth processing. Since the clamping device for the gear cannot be adjusted according to the processing position, it is necessary to replace the clamping assembly to clamp the gear again, which results in low work efficiency. SUMMARY
[0005] The present application aims to provide a tool clamp for new energy wind power gear box gear shaping to solve the problems in the background art.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical solution: a tool clamp for new energy wind power gear box gear shaping, comprising:
[0007] A base, a supporting block fixed to the surface of the base, a cover plate groove, a first circular groove and a second circular groove formed in the surface of the supporting block, a first rotating block and a rotating ring arranged in the second circular groove, a second rotating block arranged in the first circular groove, an extension rod arranged on the surface of the second rotating block, an oscillating plate arranged at the end of the extension rod, a clamping plate arranged at the end of the oscillating plate, an extension plate arranged on the surface of the clamping plate, and a moving block arranged on the surface of the extension plate.
[0008] Preferably, the cover plate groove is provided with a cover plate, the surface of the cover plate is fixedly provided with a fixing ring, the surface of the cover plate is provided with a groove, the surface of the supporting block is provided with a fixing groove, the fixing ring is located in the fixing groove, the fixing ring is fixed in the fixing groove through a screw rod, the first rotating block can rotate in the second circular groove, the bottom of the first rotating block is connected with a driving device, the driving device drives the first rotating block to rotate, and the surface of the first rotating block is fixedly provided with a first supporting plate.
[0009] Preferably, the surface of the first rotating block is fixedly provided with a plug-in plate, the surface of the rotating ring is provided with a plug-in groove, the plug-in plate is plugged in the plug-in groove, the rotating ring rotates along with the first rotating block, the surface of the rotating ring is fixedly provided with a second supporting plate, the second supporting plate is provided in two groups, the first supporting plate is located in the two groups of second supporting plates, the first supporting plate rotates along with the first rotating block, the first supporting plate can move in the second supporting plate, and the first spring is connected between the first supporting plate and the second supporting plate.
[0010] Preferably, the first supporting plate and the second supporting plate are provided with rubber blocks, the rubber blocks are supported on the surfaces of the first supporting plate and the second supporting plate, the teeth on the surface of the second rotating block are engaged with the teeth on the surface of the rotating ring, the second rotating block rotates along with the rotating ring, the surface of the second rotating block is provided with an expansion groove, an expansion rod is plugged in the expansion groove, the expansion rod can move in the expansion groove in an expansion and contraction mode, and the second rotating block can rotate in the first circular groove.
[0011] Preferably, the top of the expansion rod is provided with a notch, the notch is provided with a rotating shaft, the surface of the rotating shaft is connected with an oscillating plate, the oscillating plate is rotatably connected in the notch through the rotating shaft, the oscillating plate can oscillate along the rotating shaft, the surface of the second rotating block is fixedly provided with a limiting plate, the limiting plate is located on one side of the expansion rod, the oscillating plate is supported on the top of the limiting plate after oscillating along the rotating shaft, the top of the oscillating plate is fixedly provided with a clamping plate, the surface of the clamping plate is connected with an elastic cord, the other end of the elastic cord is connected with the surface of the limiting plate, and the elastic cord has a pulling force on the clamping plate.
[0012] Preferably, the surface of the oscillating plate is fixedly provided with a supporting block, the surface of the clamping plate is fixedly provided with an adjusting rod, the end of the adjusting rod is plugged in the inside of the extension plate, the adjusting rod can move in the inside of the extension plate, the surface of the extension plate is provided with a second through groove, a moving block is plugged in the second through groove, the moving block can move in the second through groove, the surface of the moving block is fixedly provided with a stress plate, the stress plate is located in the inside of the extension plate, the stress plate moves along with the moving block, the bottom of the stress plate is connected with a second spring, the other end of the second spring is connected with the inside of the extension plate, and the second spring has a pushing force on the stress plate.
[0013] Preferably, the surface of the moving block is fixed with a stabilizing plate which moves along with the moving block, the surface of the adjusting rod is provided with a first through slot, the stabilizing plate is inserted into the first through slot, the top of the stabilizing plate is provided with a limiting strip, the top of the first through slot is provided with a limiting strip, and the limiting strip on the surface of the stabilizing plate is clamped in the limiting strip on the surface of the first through slot when the stabilizing plate is held on the top of the first through slot.
[0014] Preferably, the surface of the supporting block is provided with a gear which is located between the plurality of swing plates and the telescopic rods, the telescopic rods and the telescopic grooves are inclined, and the swing plates move when the telescopic rods are inserted into the telescopic grooves so that the extension plates press down on the top of the gear.
[0015] Preferably, the recess is located on the top of the first circular groove, the telescopic rods and the swing plates rotate along with the second rotating block when the second rotating block rotates in the first circular groove, the telescopic rods and the swing plates are located in the interior of the gear after rotating, and the plurality of telescopic rods and swing plates are located in the interior of the gear.
[0016] Preferably, the extension plates press down on the top of the gear, the surface of the moving block is in contact with the surface of the gear so that the moving block is subjected to an upward pushing force, the moving block moves upward in the second through slot, the stabilizing plate on the surface of the moving block is held on the top of the first through slot so that the end of the adjusting rod is kept stable in the interior of the extension plate.
[0017] Compared with the prior art, the present application has the following beneficial effects:
[0018] The force plate on the surface of the moving block presses down the second spring, the stabilizing plate moves downward in the first through slot, the adjusting rod moves relatively in the interior of the extension plate, the position of the extension plate is adjusted, the moving block is in contact with the surface of the gear when the extension plate presses down on the surface of the gear, the gear applies an upward pushing force to the moving block so that the stabilizing plate is held on the top of the first through slot, the surface of the stabilizing plate is provided with a limiting strip so that the position of the extension plate is stable, the first rotating block is inserted into the insertion slot through the insertion plate after rotating so as to drive the rotating ring to rotate, the teeth on the surface of the rotating ring are engaged with the teeth on the surface of the second rotating block, the rotating ring can drive the second rotating block to rotate, the telescopic rods and the swing plates rotate into the interior of the gear after the second rotating block rotates, and the gear can be clamped in the interior. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a structural schematic view of the present application.
[0020] Figure 2 It is a structural schematic view of the supporting block of the present application.
[0021] Figure 3 It is a structural schematic view of the cover plate of the present application.
[0022] Figure 4This is a schematic diagram of the internal structure of the support block of the present invention.
[0023] Figure 5 This is a schematic diagram of the rotating ring structure of the present invention.
[0024] Figure 6 for Figure 5 Enlarged schematic diagram of the structure at point A in the middle.
[0025] Figure 7 This is a schematic diagram of the second rotating block structure of the present invention.
[0026] Figure 8 This is a schematic diagram of the swing plate structure of the present invention.
[0027] Figure 9 This is a schematic diagram of the internal structure of the extension plate of the present invention.
[0028] Figure 10 This is a bottom view of the extension plate structure of the present invention.
[0029] In the diagram: Base 1, Support Block 2, Gear 3, Cover Plate 4, Groove 5, Fixing Ring 6, Fixing Slot 7, Cover Plate Slot 8, First Circular Slot 9, Second Circular Slot 10, Rotating Ring 11, First Rotating Block 12, Insertion Slot 13, Insertion Plate 14, First Spring 15, First Top Holding Plate 16, Second Top Holding Plate 17, Rubber Block 18, Second Rotating Block 19, Telescopic Rod 20, Telescopic Slot 21, Extension Plate 22, Clamping Plate 23, Top Holding Block 24, Swing Plate 25, Elastic Rope 26, Rotating Shaft 27, Limiting Plate 28, Notch 29, Moving Block 30, Force Plate 31, Second Spring 32, Stabilizing Plate 33, First Through Slot 34, Adjusting Rod 35, Second Through Slot 36. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of the present invention clear and complete, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of the present invention, and are merely illustrative of the embodiments of the present invention. They are not intended to limit the embodiments of the present invention. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0031] Please see Figures 1 to 10 The present invention provides a technical solution:
[0032] Example 1: A tooling fixture for gear shaping in a new energy wind turbine gearbox, comprising:
[0033] The base 1 has a support block 2 fixed on its surface. The support block 2 has a cover plate groove 8, a first circular groove 9, and a second circular groove 10 on its surface. A first rotating block 12 and a rotating ring 11 are arranged in the second circular groove 10. A second rotating block 19 is arranged in the first circular groove 9. A telescopic rod 20 is arranged on the surface of the second rotating block 19. A swing plate 25 is arranged at the end of the telescopic rod 20. A clamping plate 23 is arranged at the end of the swing plate 25. An extension plate 22 is arranged on the surface of the clamping plate 23. A moving block 30 is arranged on the surface of the extension plate 22. When the extension plate 22 is pressed down on the surface of the gear 3, the moving block 30 contacts the surface of the gear 3. The gear 3 applies an upward thrust to the moving block 30, so that the stabilizing plate 33 is held against the top of the first through groove 34.
[0034] Example 2: Based on Example 1, a cover plate 4 is placed in the cover plate groove 8. A fixing ring 6 is fixed to the surface of the cover plate 4. A groove 5 is formed on the surface of the cover plate 4. A fixing groove 7 is formed on the surface of the support block 2. The fixing ring 6 is located in the fixing groove 7 and is fixed in the fixing groove 7 by a screw. The first rotating block 12 can rotate in the second circular groove 10. The bottom of the first rotating block 12 is connected to a driving device, which drives the first rotating block 12 to rotate. A first top plate 16 is fixed to the surface of the first rotating block 12. A gear 3 is placed on the surface of the support block 2. The gear 3 is located between multiple sets of swing plates 25 and telescopic rods 20. The telescopic rods 20 and the telescopic grooves 21 are inclined. When the telescopic rods 20 are inserted into the telescopic grooves 21, the swing plates 25 move, causing the extension plates 22 to press down on the top of the gear 3. The groove 5 is located in the second circular groove 10. At the top of the first circular groove 9, when the second rotating block 19 rotates in the first circular groove 9, the telescopic rod 20 and the swing plate 25 rotate with the second rotating block 19. After rotating, the telescopic rod 20 and the swing plate 25 are located inside the gear 3. Multiple sets of telescopic rods 20 and swing plates 25 are located inside the gear 3. When the extension plate 22 presses down on the top of the gear 3, the moving block 30 contacts the surface of the gear 3, so that the moving block 30 is pushed upward, causing the moving block 30 to move upward in the second through groove 36. The stabilizing plate 33 on the surface of the moving block 30 presses against the top of the first through groove 34, so that the end of the adjusting rod 35 remains stable inside the extension plate 22. The swing plate 25 drives the clamping plate 23 to move. The clamping plate 23 drives the extension plate 22 to move through the adjusting rod 35. The extension plate 22 presses down on the top of the gear 3 to clamp and fix the gear 3.
[0035] A connector plate 14 is fixed to the surface of the first rotating block 12. A connector groove 13 is formed on the surface of the rotating ring 11. The connector plate 14 is inserted into the connector groove 13. The rotating ring 11 rotates with the first rotating block 12. A second top holding plate 17 is fixed to the surface of the rotating ring 11. Two sets of second top holding plates 17 are provided. A first top holding plate 16 is located in the two sets of second top holding plates 17. The first top holding plate 16 rotates with the first rotating block 12. The first top holding plate 16 can move within the second top holding plate 17. A first spring 15 is connected between the top plate 16 and the second top plate 17. The first spring 15 exerts a thrust on the first top plate 16 and the second top plate 17. The first top plate 16 on the surface of the first rotating block 12 is inserted between the two sets of second top plates 17 on the surface of the rotating ring 11. The first spring 15 and the rubber block 18 are provided between the first top plate 16 and the second top plate 17, so that after the first rotating block 12 is fixed, the rotating ring 11 can be slightly adjusted in angle, so that the second rotating block 19 can be adjusted in angle.
[0036] A rubber block 18 is disposed between the first supporting plate 16 and the second supporting plate 17, and the rubber block 18 abuts against the surfaces of the first supporting plate 16 and the second supporting plate 17. The teeth on the surface of the second rotating block 19 mesh with the teeth on the surface of the rotating ring 11, and the second rotating block 19 rotates with the rotating ring 11. A telescopic groove 21 is formed on the surface of the second rotating block 19, and a telescopic rod 20 is inserted into the telescopic groove 21. The telescopic rod 20 can telescopically move in the telescopic groove 21, and the second rotating block 19 can rotate in the first circular groove 9. A notch 29 is formed at the top of the telescopic rod 20, and the notch 29 contains... A rotating shaft 27 is provided, and a swing plate 25 is connected to the surface of the rotating shaft 27. The swing plate 25 is rotatably connected to the notch 29 via the rotating shaft 27, and the swing plate 25 can swing along the rotating shaft 27. A limit plate 28 is fixed to the surface of the second rotating block 19. The limit plate 28 is located on one side of the telescopic rod 20. After the swing plate 25 swings with the rotating shaft 27, it is held against the top of the limit plate 28. A clamping plate 23 is fixed to the top of the swing plate 25. An elastic rope 26 is connected to the surface of the clamping plate 23, and the other end of the elastic rope 26 is connected to the surface of the limit plate 28. The elastic rope 26 supports the clamping plate 23. The device has a tensile force. A top holding block 24 is fixed to the surface of the swing plate 25, and an adjusting rod 35 is fixed to the surface of the clamping plate 23. The end of the adjusting rod 35 is inserted into the interior of the extension plate 22, allowing it to move within the extension plate 22. A second through slot 36 is formed on the surface of the extension plate 22, into which a moving block 30 is inserted. The moving block 30 can move within the second through slot 36. A force-bearing plate 31 is fixed to the surface of the moving block 30, located inside the extension plate 22. The force-bearing plate 31 moves with the moving block 30, and its bottom is connected to... The second spring 32 has its other end connected to the interior of the extension plate 22. The second spring 32 exerts a thrust on the force plate 31. A stabilizing plate 33 is fixed on the surface of the moving block 30. The stabilizing plate 33 moves with the moving block 30. A first through groove 34 is opened on the surface of the adjusting rod 35. The stabilizing plate 33 is inserted into the first through groove 34. A limit strip is provided on the top of the stabilizing plate 33. A limit strip is provided on the top of the first through groove 34. When the stabilizing plate 33 is held against the top of the first through groove 34, the limit strip on the surface of the stabilizing plate 33 is stuck in the limit strip on the surface of the first through groove 34.
[0037] A cover plate 4 is fixed to the cover plate groove 8 on the surface of the support block 2 by a screw. The cover plate 4 prevents debris from falling. The gear 3 is placed on the surface of the support block 2 and the cover plate 4. A second rotating block 19 is set in the first circular groove 9. Due to the pulling of the elastic rope 26, the swing plate 25 swings around the rotating shaft 27. The swing plate 25 is held against the surface of the limiting plate 28. Since the telescopic rod 20 and the swing plate 25 are inclined, the gear 3 is placed between multiple sets of telescopic rods 20. The telescopic rods 20 are inserted into the telescopic groove 21. The telescopic rods 20 are connected to the pulling device. The pulling device pulls the telescopic rods 20, so that the telescopic rods 20 are inserted into the telescopic groove 21. The movable plate 25 moves with the telescopic rod 20. Due to the limitation of the limiting plate 28, the swing plate 25 swings around the rotating shaft 27, causing the top holding block 24 on the surface of the swing plate 25 to press against the surface of the gear 3, so that the gear 3 is centered among the multiple sets of telescopic rods 20. The swing plate 25 drives the clamping plate 23 to move, and the clamping plate 23 drives the extension plate 22 to move through the adjusting rod 35. The extension plate 22 presses down on the top of the gear 3 to clamp and fix the gear 3, and presses down the moving block 30. The moving block 30 moves down in the second through groove 36, and the force plate 31 on the surface of the moving block 30 presses down the second spring 32, so that the stabilizing plate 33 is in the first The extension plate 22 moves downward in the through groove 34, causing the adjusting rod 35 to move relative to the extension plate 22 inside, adjusting the position of the extension plate 22. When the extension plate 22 presses down on the surface of the gear 3, the moving block 30 contacts the surface of the gear 3, and the gear 3 applies an upward thrust to the moving block 30, causing the stabilizing plate 33 to abut against the top of the first through groove 34. The surface of the stabilizing plate 33 is provided with a limit strip to stabilize the position of the extension plate 22. After the first rotating block 12 rotates, it is inserted into the insertion groove 13 through the insertion plate 14, driving the rotating ring 11 to rotate. The teeth on the surface of the rotating ring 11 mesh with the teeth on the surface of the second rotating block 19, and the rotating ring 11 can drive the second rotating block 19 to rotate. The second rotating block 19 rotates, causing the telescopic rod 20 and the swing plate 25 to rotate into the interior of the gear 3, where the gear 3 can be clamped. The first top plate 16 on the surface of the first rotating block 12 is inserted between two sets of second top plates 17 on the surface of the rotating ring 11. A first spring 15 and a rubber block 18 are provided between the first top plate 16 and the second top plate 17, so that after the first rotating block 12 is fixed, the rotating ring 11 can slightly adjust its angle, allowing the second rotating block 19 to adjust its angle. This makes it easy for the telescopic rod 20 and the swing plate 25 to adjust their angles to fit the surface of the gear 3 when clamping the gear 3.
[0038] Although the illustrative specific embodiments of this application have been described above to enable those skilled in the art to understand this application, this application is not limited to the scope of the specific embodiments. For those skilled in the art, all applications utilizing the concept of this application are protected as long as various variations are within the spirit and scope of this application as defined and determined by the appended claims.
Claims
1. A tooling fixture for gear shaping in a new energy wind turbine gearbox, characterized in that: include: A base (1) has a support block (2) fixed on its surface. The support block (2) has a cover plate groove (8), a first circular groove (9), and a second circular groove (10) on its surface. A first rotating block (12) and a rotating ring (11) are arranged in the second circular groove (10). A second rotating block (19) is arranged in the first circular groove (9). A telescopic rod (20) is arranged on the surface of the second rotating block (19). A swing plate (25) is arranged at the end of the telescopic rod (20). A clamping plate (23) is arranged at the end of the swing plate (25). An extension plate (22) is arranged on the surface of the clamping plate (23). A moving block (30) is arranged on the surface of the extension plate (22). The cover plate groove (8) A cover plate (4) is placed in the middle. A fixing ring (6) is fixed on the surface of the cover plate (4). A groove (5) is opened on the surface of the cover plate (4). A fixing groove (7) is opened on the surface of the support block (2). The fixing ring (6) is located in the fixing groove (7). The fixing ring (6) is fixed in the fixing groove (7) by a screw. The first rotating block (12) can rotate in the second circular groove (10). The bottom of the first rotating block (12) is connected to a driving device. The driving device drives the first rotating block (12) to rotate. A first top plate (16) is fixed on the surface of the first rotating block (12). A plug plate (14) is fixed on the surface of the first rotating block (12). The rotating ring ( 11) has a slot (13) on its surface. The slot (14) is inserted into the slot (13). The rotating ring (11) rotates with the first rotating block (12). The surface of the rotating ring (11) is fixed with a second top plate (17). There are two sets of second top plates (17). The first top plate (16) is located in the two sets of second top plates (17). The first top plate (16) rotates with the first rotating block (12). The first top plate (16) can move in the second top plate (17). A first spring (15) is connected between the first top plate (16) and the second top plate (17). The first spring (15) exerts force on the first top plate (16). The first top plate (16) and the second top plate (17) have thrust. A rubber block (18) is provided between the first top plate (16) and the second top plate (17). The rubber block (18) abuts against the surface of the first top plate (16) and the second top plate (17). The teeth on the surface of the second rotating block (19) mesh with the teeth on the surface of the rotating ring (11). The second rotating block (19) rotates with the rotating ring (11). A telescopic groove (21) is provided on the surface of the second rotating block (19). A telescopic rod (20) is inserted into the telescopic groove (21). The telescopic rod (20) can move in and out of the telescopic groove (21). The second rotating block (19) can rotate in the first circular groove (9).
2. The tooling fixture for gear shaping in a new energy wind turbine gearbox according to claim 1, characterized in that: The top of the telescopic rod (20) has a notch (29), in which a rotating shaft (27) is provided. The surface of the rotating shaft (27) is connected to a swing plate (25). The swing plate (25) is rotatably connected to the notch (29) through the rotating shaft (27). The swing plate (25) can swing along the rotating shaft (27). The surface of the second rotating block (19) is fixed with a limit plate (28). The limit plate (28) is located on one side of the telescopic rod (20). After the swing plate (25) swings with the rotating shaft (27), it is held against the top of the limit plate (28). The top of the swing plate (25) is fixed with a clamping plate (23). The surface of the clamping plate (23) is connected with an elastic rope (26). The other end of the elastic rope (26) is connected to the surface of the limit plate (28). The elastic rope (26) has a pulling force on the clamping plate (23).
3. The tooling fixture for gear shaping in a new energy wind turbine gearbox according to claim 2, characterized in that: The surface of the swing plate (25) is fixed with a top holding block (24), and the surface of the clamping plate (23) is fixed with an adjusting rod (35). The end of the adjusting rod (35) is inserted into the interior of the extension plate (22). The adjusting rod (35) can move inside the extension plate (22). The surface of the extension plate (22) is provided with a second through groove (36). A moving block (30) is inserted into the second through groove (36). The moving block (30) can move in the second through groove (36). The surface of the moving block (30) is fixed with a force plate (31). The force plate (31) is located inside the extension plate (22). The force plate (31) moves with the moving block (30). The bottom of the force plate (31) is connected to a second spring (32). The other end of the second spring (32) is connected to the interior of the extension plate (22). The second spring (32) has a pushing force on the force plate (31).
4. The tooling fixture for gear shaping in a new energy wind turbine gearbox according to claim 3, characterized in that: A stabilizing plate (33) is fixed to the surface of the moving block (30). The stabilizing plate (33) moves with the moving block (30). A first through groove (34) is opened on the surface of the adjusting rod (35). The stabilizing plate (33) is inserted into the first through groove (34). A limit strip is provided on the top of the stabilizing plate (33). A limit strip is provided on the top of the first through groove (34). When the stabilizing plate (33) is held against the top of the first through groove (34), the limit strip on the surface of the stabilizing plate (33) is stuck in the limit strip on the surface of the first through groove (34).
5. A tooling fixture for gear shaping in a new energy wind turbine gearbox according to claim 4, characterized in that: Gears (3) are placed on the surface of the support block (2). The gears (3) are located between multiple sets of swing plates (25) and telescopic rods (20). The telescopic rods (20) and telescopic grooves (21) are inclined. When the telescopic rods (20) are inserted into the telescopic grooves (21), the swing plates (25) move, causing the extension plates (22) to press down on the top of the gears (3).
6. The tooling fixture for gear shaping in a new energy wind turbine gearbox according to claim 5, characterized in that: The groove (5) is located at the top of the first circular groove (9). When the second rotating block (19) rotates in the first circular groove (9), the telescopic rod (20) and the swing plate (25) rotate with the second rotating block (19). After the telescopic rod (20) and the swing plate (25) rotate, they are located inside the gear (3). Multiple sets of telescopic rods (20) and swing plates (25) are located inside the gear (3).
7. A tooling fixture for gear shaping in a new energy wind turbine gearbox according to claim 6, characterized in that: When the extension plate (22) presses down on the top of the gear (3), the moving block (30) contacts the surface of the gear (3), causing the moving block (30) to be pushed upward, causing the moving block (30) to move upward in the second through slot (36), and the stabilizing plate (33) on the surface of the moving block (30) abuts against the top of the first through slot (34), so that the end of the adjusting rod (35) remains stable inside the extension plate (22).
Citation Information
Patent Citations
Gear shaping device
CN220591780U
Clamping jig for machining mechanical parts of numerical control machine tool
CN117961586A
Multifunctional clamping device for gear forge piece
CN220480452U