Lifting appliance for forging gearbox gear

By introducing adjustment components and locking parts into the gear processing lifting fixture, the problem of equipment versatility caused by the fixed size of the support groove was solved, enabling adaptive processing of gears of various sizes and improving the versatility of the equipment.

CN223534677UActive Publication Date: 2025-11-11重庆集信机械有限公司
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Patent Information

Application Number
CN202422852917.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-11
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The support groove size of existing gear processing lifting tools is fixed and cannot be freely adjusted, which means that only gears of the same size can be processed, reducing the versatility of the equipment.

Method used

A lifting tool for forging gearbox gears has been designed, comprising a lifting mechanism, a support body, an adjustment assembly, and a locking component. The adjustment assembly, through the cooperation of a resisting plate, an adjusting block, a lead screw, and a driving component, enables the adjustability of the support groove to meet the installation requirements of gears of different sizes.

Benefits of technology

The adjustable support slot of the lifting device is realized, which improves the versatility of the equipment and enables it to adapt to the processing needs of gears of various sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of gear machining, in particular to a lifting appliance for forging a gearbox gear, which comprises an abutting plate, an adjusting block, a lead screw and a driving component, when the lifting appliance is used, the lead screw is driven to rotate through the driving component, the lead screw rotates to drive the adjusting block to move in a moving groove, and the adjusting block moves to drive the abutting plate to move. And the abutting plate moves to adjust the position in the supporting groove, so that the installation requirements of different machined parts are met, and the problem that in the using process of an existing device, due to the fact that the size of the supporting groove is fixed and cannot be freely adjusted, only machined parts of the same size can be machined, and the equipment universality is reduced is solved.
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Description

Technical Field

[0001] This utility model relates to the field of gear processing technology, and in particular to a lifting tool for forging gearbox gears. Background Technology

[0002] A gear is a mechanical component that transmits motion and power through continuous meshing of gears on its rim. It is one of the commonly used parts in various mechanical equipment.

[0003] The existing patent CN213505551U discloses a gear processing lifting tool, including a first fixed body, a second fixed body located below the first fixed body, a limiting body disposed between the first and second fixed bodies, and a drive rod rotatably connected to the first and second fixed bodies. The second fixed body is rotatably connected to a driven rod. A drive gear is disposed on the drive rod, and a driven gear meshing with the drive gear is disposed on the driven rod. A support body is disposed at the bottom end of the driven rod, and a lifting ring is disposed at the top end of the first fixed body. The projections of the second fixed body, the limiting body, the drive rod, the driven rod, the drive gear, and the driven gear in the vertical direction are all located within the inner diameter of a gear blank. Through a series of interconnected arrangements of the drive rod, the driven rod, the drive gear, and the driven gear, the gear processing lifting tool of this application can simultaneously transport multiple gear blanks placed vertically, resulting in high transport efficiency.

[0004] Using the above method, it was found that the fixed size of the support groove could not be freely adjusted, resulting in the equipment only being able to process parts of the same size, thus reducing its versatility. Utility Model Content

[0005] The purpose of this utility model is to provide a lifting tool for forging gearbox gears, which solves the problem found in the use of existing devices that the support groove size is fixed and cannot be freely adjusted, resulting in the only processing of workpieces of the same size, thereby reducing the versatility of the equipment.

[0006] To achieve the above objectives, this utility model provides a lifting tool for forging gearbox gears, including a lifting mechanism and a support body, wherein the support body is disposed on the lifting mechanism.

[0007] The system also includes an adjustment assembly, which comprises a resisting plate, an adjusting block, a lead screw, and a driving component. The support body has a moving groove. The adjusting block is slidably mounted on the support body and located within the moving groove. The resisting plate is fixedly mounted on the adjusting block. The lead screw is mounted on the support body via a bearing and is partially located within the moving groove. The lead screw is threadedly connected to the adjusting block. The driving component is disposed on the lead screw.

[0008] The driving component includes a driving block, a handle, and a guide component. The lead screw has a driving groove, the driving block is matched with the driving block, the handle is fixedly installed on the driving block, and the guide component is disposed on the support body.

[0009] The guide component is disposed on the guide block, the guide rod and the protective element. The guide block is fixedly connected to the resisting plate, the guide rod is slidably connected to the guide block, the guide rod is fixedly installed on the support body, and the protective element is disposed on the resisting plate.

[0010] The protective element includes a protective pad and a protective net. The protective pad is fixedly installed on the side of the resisting plate near the lifting mechanism, and the two ends of the protective net are fixedly connected to the adjusting block and the support body, respectively.

[0011] The adjustment assembly further includes a locking component, which includes a locking block and a locking bolt. The locking block is fixedly connected to the resisting plate, the locking bolt abuts against the locking block, and the locking bolt is threadedly connected to the support body.

[0012] This utility model discloses a lifting tool for forging gearbox gears. In use, the drive block is first inserted into the drive groove. The handle drives the drive block to rotate, which in turn drives the lead screw to rotate. The lead screw then moves the adjusting block within the moving groove, which in turn moves the resisting plate. This movement of the resisting plate adjusts its position within the support groove to meet the installation requirements of different workpieces. Simultaneously, the movement of the resisting plate causes the guide block to slide on the guide rod, thus guiding and positioning the resisting plate. This solves the problem found in existing devices where the support groove size is fixed and cannot be freely adjusted, limiting processing to workpieces of the same size and reducing equipment versatility. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0014] Figure 1 This is a schematic diagram of the lifting tool for forging gearbox gears according to the first embodiment of this utility model.

[0015] Figure 2 yes Figure 1 Enlarged view of point A.

[0016] Figure 3 This is a schematic diagram of the lifting tool for forging gearbox gears according to the first embodiment of this utility model.

[0017] Figure 4 This is a schematic diagram of the drive component of the lifting tool for forging gearbox gears according to the first embodiment of this utility model.

[0018] Figure 5 This is a schematic diagram of the lifting tool for forging gearbox gears according to the second embodiment of this utility model.

[0019] In the diagram: 101-Lifting mechanism, 102-Support body, 103-Resisting plate, 104-Moving groove, 105-Adjusting block, 106-Screw rod, 107-Drive groove, 109-Drive block, 110-Handle, 111-Guide block, 112-Guide rod, 113-Protective pad, 114-Protective net, 201-Locking block, 202-Locking bolt. Detailed Implementation

[0020] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0021] The first embodiment of this application is as follows:

[0022] Please see Figures 1-4 , Figure 1 This is a schematic diagram of the lifting tool for forging gearbox gears according to the first embodiment of this utility model. Figure 2 yes Figure 1 Enlarged view of point A, Figure 3 This is a schematic diagram of the lifting tool for forging gearbox gears according to the first embodiment of this utility model. Figure 4 This is a schematic diagram of the drive component of the lifting tool for forging gearbox gears according to the first embodiment of this utility model.

[0023] This embodiment provides a lifting tool for forging gearbox gears, including a lifting mechanism 101, a support body 102, and an adjustment assembly. The adjustment assembly includes a resisting plate 103, an adjusting block 105, a lead screw 106, and a driving component. The driving component includes a driving block 109, a handle 110, and a guide component. The guide component is disposed on the guide block 111, the guide rod 112, and the protective element. The protective element includes a protective pad 113 and a protective net 114. The aforementioned solution solves the problem found in the use of existing devices where the support groove size is fixed and cannot be freely adjusted, resulting in the ability to process only workpieces of the same size, thus reducing the equipment's versatility. It is understood that the aforementioned solution can be used in the future of lifting tools for forging gearbox gears, and can also be used to solve locking problems.

[0024] In this embodiment, the support body 102 is disposed on the lifting mechanism 101, and the position of the resisting plate 103 is adjusted by moving the resisting plate 103 to meet the installation requirements of different processed parts.

[0025] The support body 102 has a movable groove 104. An adjusting block 105 is slidably mounted on the support body 102 and located within the movable groove 104. A resisting plate 103 is fixedly mounted on the adjusting block 105. A lead screw 106 is mounted on the support body 102 via a bearing and partially located within the movable groove 104. The lead screw 106 is threadedly connected to the adjusting block 105. A driving component is disposed on the lead screw 106. The movable groove communicates with the support groove. The resisting plate 103 is located within the support groove. The adjusting block 105 has a connection with the lead screw 106. The matching threaded hole and the resisting plate 103 are made of metal. In use, the drive component drives the lead screw 106 to rotate. The rotation of the lead screw 106 drives the adjusting block 105 to move within the moving groove 104. The movement of the adjusting block 105 drives the resisting plate 103 to move. The movement of the resisting plate 103 adjusts its position within the support groove, thus meeting the installation requirements of different processed parts. This solves the problem found in the existing device that the support groove size is fixed and cannot be freely adjusted, resulting in the ability to process only processed parts of the same size, thereby reducing the equipment's versatility.

[0026] Secondly, the lead screw 106 has a drive groove 107, the drive block 109 is matched with the drive block 109, the handle 110 is fixedly installed on the drive block 109, and the guide component is disposed on the support body 102. First, the drive block 109 is inserted into the drive groove 107, the handle 110 drives the drive block 109 to rotate, and the rotation of the drive block 109 drives the lead screw 106 to rotate.

[0027] Furthermore, the guide block 111 is fixedly connected to the resisting plate 103, the guide rod 112 is slidably connected to the guide block 111, the guide rod 112 is fixedly installed on the support body 102, the protective element is disposed on the resisting plate 103, the guide block 111 has a guide hole that matches the guide rod 112, the support body 102 has a guide groove, the guide block 111 and the guide rod 112 are located in the guide groove, and the guide block 111 slides on the guide rod 112 by moving the resisting plate 103, thereby guiding and positioning the resisting plate 103.

[0028] Meanwhile, the protective pad 113 is fixedly installed on the side of the resisting plate 103 near the lifting mechanism 101, and the two ends of the protective net 114 are fixedly connected to the adjusting block 105 and the support body 102 respectively. The protective pad 113 prevents the resisting plate 103 from directly contacting the workpiece, and the protective net 114 prevents impurities from entering the moving groove 104.

[0029] When using the gearbox gear forging lifting fixture described in this embodiment, the drive block 109 is first inserted into the drive groove 107. The handle 110 drives the drive block 109 to rotate, which in turn drives the lead screw 106 to rotate. The lead screw 106 then drives the adjusting block 105 to move within the moving groove 104. The movement of the adjusting block 105 causes the resisting plate 103 to move, thus adjusting its position within the support groove to meet the installation requirements of different workpieces. Simultaneously, the movement of the resisting plate 103 causes the guide block 111 to slide on the guide rod 112, thereby guiding and positioning the resisting plate 103. This solves the problem found in existing devices where the support groove size is fixed and cannot be freely adjusted, resulting in the ability to process only workpieces of the same size, thus reducing the equipment's versatility.

[0030] The second embodiment of this application is as follows:

[0031] Please see Figure 5 , Figure 5 This is a schematic diagram of the lifting tool for forging gearbox gears according to the second embodiment of this utility model.

[0032] Based on the first embodiment, the adjustment component in this embodiment further includes a locking component, which includes a locking block 201 and a locking bolt 202.

[0033] The locking block 201 is fixedly connected to the resisting plate 103, the locking bolt 202 abuts against the locking block 201, and the locking bolt 202 is threadedly connected to the support body 102. There are multiple locking bolts 202, which are evenly distributed on the support body 102. The support body 102 has threaded holes that match the locking bolts 202. The distance between two bolt holes is smaller than the size of the locking block 201. After the position is adjusted, the locking bolt 202 is rotated to contact the locking block 201, thereby resisting and fixing the locking block 201 while improving the stability of the resisting plate 103.

[0034] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A lifting tool for forging gearbox gears, comprising a lifting mechanism and a support body, wherein the support body is disposed on the lifting mechanism, characterized in that, It also includes adjustment components; The adjustment assembly includes a resisting plate, an adjusting block, a lead screw, and a driving component. The support body has a moving groove. The adjusting block is slidably mounted on the support body and located within the moving groove. The resisting plate is fixedly mounted on the adjusting block. The lead screw is mounted on the support body via a bearing and is partially located within the moving groove. The lead screw is threadedly connected to the adjusting block. The driving component is disposed on the lead screw.

2. The lifting tool for forging gearbox gears as described in claim 1, characterized in that, The driving component includes a driving block, a handle, and a guide component. The lead screw has a driving groove, the driving block is matched with the driving block, the handle is fixedly installed on the driving block, and the guide component is disposed on the support body.

3. The lifting tool for forging gearbox gears as described in claim 2, characterized in that, The guiding component includes a guide block, a guide rod, and a protective element. The guide block is fixedly connected to the resisting plate, the guide rod is slidably connected to the guide block, the guide rod is fixedly installed on the support body, and the protective element is disposed on the resisting plate.

4. The lifting tool for forging gearbox gears as described in claim 3, characterized in that, The protective element includes a protective pad and a protective net. The protective pad is fixedly installed on the side of the resisting plate near the lifting mechanism, and the two ends of the protective net are fixedly connected to the adjusting block and the support body, respectively.

5. The lifting tool for forging gearbox gears as described in claim 1, characterized in that, The adjustment assembly further includes a locking component, which includes a locking block and a locking bolt. The locking block is fixedly connected to the resisting plate, the locking bolt abuts against the locking block, and the locking bolt is threadedly connected to the support body.

Citation Information

Patent Citations

  • Lifting appliance for gear machining

    CN213505551U