CN216027849U - Gearbox gear forges fixing device - Google Patents

Gearbox gear forges fixing device Download PDF

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Publication number
CN216027849U
CN216027849U CN202122085330.3U CN202122085330U CN216027849U CN 216027849 U CN216027849 U CN 216027849U CN 202122085330 U CN202122085330 U CN 202122085330U CN 216027849 U CN216027849 U CN 216027849U
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China
Prior art keywords
clamping frame
guide rail
vertical support
fixedly connected
sliding block
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CN202122085330.3U
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Chinese (zh)
Inventor
雷海峰
黄杰
王波
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Chongqing Jixin Machinery Co ltd
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Chongqing Jixin Machinery Co ltd
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Abstract

The utility model relates to the technical field of forging, in particular to a gearbox gear forging fixing device, a workpiece to be forged is clamped and fixed through a clamping frame so as to be processed, a connecting rod is driven to rotate through the rotation of a motor so as to drive the clamping frame to rotate, a guide rail is welded on a vertical support, a sliding block is connected with the guide rail in a sliding mode, the sliding block can move up and down in the guide rail along the length direction of the guide rail, the motor is welded on the sliding block, the vertical movement of the motor is driven through the vertical movement of the sliding block on the guide rail, the clamping frame is lifted through the vertical movement of the motor, the clamping frame is rotated through the rotation of the motor, the workpiece is lifted and rotated after being clamped and fixed, and the labor intensity of operators is greatly reduced.

Description

Gearbox gear forges fixing device
Technical Field
The utility model relates to the technical field of forging, in particular to a gearbox gear forging fixing device.
Background
The existing common speed-changing gears are commonly called as gearbox gears, the gearbox gears are usually made of forged steel, the forging process is a combination of forging and stamping, external pressure is applied to a metal blank by using a forging and pressing machine during forging to enable the metal blank to generate plastic deformation so as to obtain a forged piece with a certain shape and size, a streamline of metal can be completely preserved through forging, and a workpiece needs to be turned and lifted in the process of forging the workpiece, so that the purpose of forging is achieved, but the workpiece needs to be turned and lifted for a long time, so that the labor intensity of operators is increased.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a gearbox gear forging fixing device, and aims to solve the technical problems that in the prior art, a streamline capable of completely storing metal through forging needs to be turned and lifted in a workpiece forging process, so that the purpose of forging is achieved, but the labor intensity of operators is increased due to the fact that the workpieces are turned and lifted for a long time.
In order to achieve the purpose, the utility model adopts a gearbox gear forging fixing device which comprises a vertical support, a clamping frame and a transmission assembly;
the clamping frame and the vertical support rotate through the transmission assembly and are positioned on one side of the vertical support;
the transmission assembly comprises a guide rail, a sliding block, a motor, a connecting rod and a hydraulic component, the guide rail is fixedly connected with the vertical support and is located at one side of the clamping frame, the vertical support is close to one side of the clamping frame, the sliding block is connected with the guide rail in a sliding mode and is located at one side of the clamping frame, the motor is fixedly connected with the sliding block and is located at one side of the clamping frame, one end of the connecting rod is fixedly connected with the motor, the other end of the connecting rod is fixedly connected with the clamping frame, the connecting rod is located between the motor and the clamping frame, and the hydraulic component is fixedly connected with the vertical support.
The clamping frame is rotatably connected with the vertical support through the transmission assembly, a workpiece needing to be forged is clamped and fixed through the clamping frame so as to be machined, the guide rail is welded on the vertical support, the slider is slidably connected with the guide rail, the slider can move up and down in the guide rail along the length direction of the guide rail, the motor is welded on the slider, the vertical movement of the slider on the guide rail is driven to drive the vertical movement of the motor, one end of the connecting rod is connected with the output end of the motor, when the motor is started to rotate, the connecting rod is driven to rotate, the other end of the connecting rod is fixedly connected with the clamping frame, when the connecting rod rotates, the clamping frame is driven to rotate, and the hydraulic component is welded on the vertical support, the vertical movement of the sliding block is provided with a corresponding power source, the clamping frame is used for clamping and fixing a workpiece to be forged, so that the workpiece is machined, the rotation of the connecting rod is driven by the rotation of the motor to drive the rotation of the clamping frame, the guide rail is welded on the vertical support, the sliding block is connected with the guide rail in a sliding manner, the sliding block can move up and down along the long direction of the guide rail in the guide rail, the motor is welded on the sliding block, the vertical movement of the sliding block on the guide rail drives the vertical movement of the motor, the vertical movement of the motor drives the lifting of the clamping frame, the rotation of the motor enables the clamping frame to rotate, and the lifting and the rotation after the workpiece is clamped and fixed are achieved, greatly reducing the labor intensity of operators.
The hydraulic component comprises a hydraulic cylinder and a hydraulic rod, the hydraulic cylinder is fixedly connected with the vertical support and is positioned on one side of the vertical support, which is close to the guide rail; one end of the hydraulic rod is connected with the hydraulic cylinder, the other end of the hydraulic rod is fixedly connected with the sliding block, and the hydraulic rod is located between the hydraulic cylinder and the sliding block.
The hydraulic cylinder is welded on the guide rail, the hydraulic cylinder provides power for stretching the hydraulic rod in the stretching process, one end of the hydraulic rod is connected with the output end of the hydraulic cylinder, the other end of the hydraulic rod is connected with the sliding block, the hydraulic rod is arranged between the hydraulic cylinder and the sliding block, and the sliding block is moved along the long direction of the guide rail by stretching the hydraulic rod through the output power provided by the hydraulic cylinder.
Wherein the guide rail has a vertical sliding groove, and a notch of the vertical sliding groove faces one side of the clamping frame.
The guide rail is provided with the vertical sliding groove, and the sliding block can vertically move in the guide rail along the long direction of the vertical sliding groove, so that the motor is driven to move up and down.
The transmission assembly further comprises a base, and the base is fixedly connected with the vertical support and located on the outer side of the vertical support.
The base welding is in the bottom of vertical support, through the base has increased bottom lifting surface, reduces the burden of the external force that the device bore when forging the work piece, increases the stability when the device forges.
The transmission assembly further comprises a second vertical support, and the second vertical support is fixedly connected with the base and is positioned on one side, close to the clamping frame, of the base.
The second vertical support is welded on the right side of the base, and the other side of the clamping frame is fixed through the second vertical support, so that a workpiece can be better machined during forging.
The transmission assembly further comprises a second guide rail and a connecting component, the guide rail is fixedly connected with the second vertical support and is positioned on one side, close to the clamping frame, of the second vertical support; the connecting member is connected with the second guide rail in a sliding mode and is fixedly connected with the clamping frame.
The second guide rail is welded on the second vertical support, the other side of the fixed frame is connected to the second guide rail through the connecting member, and the clamping frame is lifted through the cooperation of the second guide rail and the lifting of the sliding block.
The connecting component comprises a second sliding block and a second connecting rod, the second sliding block is connected with the second guide rail in a sliding mode and is positioned on one side, close to the clamping frame, of the second guide rail; one end of the second connecting rod is rotatably connected with the second sliding block, the other end of the second connecting rod is fixedly connected with the clamping frame, and the second connecting rod is located between the second sliding block and the clamping frame.
The second slider is connected on the second guide rail in a sliding mode, one end of the second connecting rod is connected with the second slider in a rotating mode, the other end of the second connecting rod is fixedly connected with the clamping frame, and the clamping frame is connected and fixed on the second vertical support through rotation of the clamping frame.
The transmission assembly further comprises a rubber pad, and the rubber pad is fixedly connected with the clamping frame and is positioned on one side of the clamping frame.
The rubber pad is arranged in the clamping frame to increase the friction force for clamping the workpiece, and the clamped workpiece can be better attached to achieve a better fixing effect.
The utility model discloses a gearbox gear forging fixing device, which clamps and fixes a workpiece to be forged through a clamping frame, thereby processing the clamping frame, driving the connecting rod to rotate through the rotation of the motor so as to drive the clamping frame to rotate, the guide rail is welded on the vertical bracket, the sliding block is connected with the guide rail in a sliding way, the sliding block can move up and down along the long direction of the guide rail in the guide rail, the motor is welded on the sliding block, and the sliding block moves vertically on the guide rail, thereby driving the vertical movement of the motor, lifting the clamping frame through the vertical movement of the motor, rotating the clamping frame through the rotation of the motor, therefore, the lifting and the rotation after the workpiece is clamped and fixed are achieved, and the labor intensity of operators is greatly reduced.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic diagram of a transmission gear forging fixture according to the present invention.
Fig. 2 is a schematic view of the connection of a second vertical support of the present invention to a rail.
Fig. 3 is a schematic view of the connection of the motor of the present invention with the slider and the connecting rod.
FIG. 4 is a schematic diagram of the structure of the hydraulic component of the present invention.
Fig. 5 is a schematic structural view of the connection member of the present invention.
In the figure: 1-vertical support, 2-clamping frame, 3-transmission assembly, 31-guide rail, 32-sliding block, 33-motor, 34-connecting rod, 35-hydraulic component, 36-base, 37-second vertical support, 38-second guide rail, 39-connecting component, 40-rubber pad, 311-vertical sliding chute, 351-hydraulic cylinder, 352-hydraulic rod, 391-second sliding block and 392-second connecting rod.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are illustrative and intended to be illustrative of the utility model and are not to be construed as limiting the utility model.
In the description of the present invention, it is to be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships illustrated in the drawings, and are used merely for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, are not to be construed as limiting the present invention. Further, in the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
Referring to fig. 1 to 5, the utility model provides a gearbox gear forging fixing device, which is characterized by comprising a vertical bracket 1, a clamping frame 2 and a transmission assembly 3; the clamping frame 2 and the vertical support 1 rotate through the transmission assembly 3 and are positioned on one side of the vertical support 1; the transmission assembly 3 comprises a guide rail 31, a slider 32, a motor 33, a connecting rod 34 and a hydraulic component 35, the guide rail 31 is fixedly connected with the vertical support 1 and is positioned at one side of the clamping frame 2, the slider 32 is slidably connected with the guide rail 31 and is positioned at one side of the clamping frame 2, the motor 33 is fixedly connected with the slider 32 and is positioned at one side of the clamping frame 2, one end of the connecting rod 34 is fixedly connected with the motor 33, the other end of the connecting rod 34 is fixedly connected with the clamping frame 2, the connecting rod is positioned between the motor 33 and the clamping frame 2, and the hydraulic component 35 is fixedly connected with the vertical support 1.
In this embodiment, the clamping frame 2 is rotatably connected to the vertical support 1 through the transmission assembly 3, the clamping frame 2 is used for clamping and fixing a workpiece to be forged, so as to forge the workpiece, the guide rail 31 is welded to the vertical support 1, the slider 32 is slidably connected to the guide rail 31, the slider 32 is arranged in the guide rail 31 and can move up and down along the long direction of the guide rail 31, the motor 33 is welded to the slider 32, the slider 32 is vertically moved on the guide rail 31 to drive the vertical movement of the motor 33, one end of the connecting rod 34 is connected to the output end of the motor 33, when the motor 33 is started to rotate, the connecting rod 34 is driven to rotate, and the other end of the connecting rod 34 is fixedly connected to the clamping frame 2, when the connecting rod 34 rotates, the clamping frame 2 is driven to rotate, the hydraulic component 35 is welded on the vertical support 1, a corresponding power source is provided for the vertical movement of the sliding block 32, the clamping frame 2 is used for clamping and fixing a workpiece to be forged, the workpiece is processed, the connecting rod 34 is driven to rotate through the rotation of the motor 33, the clamping frame 2 is driven to rotate, the guide rail 31 is welded on the vertical support 1, the sliding block 32 is connected with the guide rail 31 in a sliding manner, the sliding block 32 can move up and down in the guide rail 31 along the length direction of the guide rail 31, the motor 33 is welded on the sliding block 32, the sliding block 32 is moved on the guide rail 31 in a vertical manner, the vertical movement of the motor 33 is driven, and the vertical movement of the motor 33 is driven through the vertical movement of the motor 33, the clamping frame 2 is lifted, and the clamping frame 2 is rotated through the rotation of the motor 33, so that the workpiece is lifted and rotated after being clamped and fixed, and the labor intensity of operators is greatly reduced.
Further, referring to fig. 4, the hydraulic component 35 includes a hydraulic cylinder 351 and a hydraulic rod 352, the hydraulic cylinder 351 is fixedly connected to the vertical bracket 1 and is located on one side of the vertical bracket 1 close to the guide rail 31; one end of the hydraulic rod 352 is connected to the hydraulic cylinder 351, the other end of the hydraulic rod 352 is fixedly connected to the slider 32, and the hydraulic rod 352 is located between the hydraulic cylinder 351 and the slider 32.
In this embodiment, the hydraulic cylinder 351 is welded to the guide rail 31, the hydraulic cylinder 351 supplies power for extending and contracting the hydraulic rod 352 during extension and contraction, one end of the hydraulic rod 352 is connected to an output end of the hydraulic cylinder 351, the other end of the hydraulic rod 352 is connected to the slider 32, the hydraulic rod 352 is arranged between the hydraulic cylinder 351 and the slider 32, and the slider 32 is moved in the longitudinal direction of the guide rail 31 by extending and contracting the hydraulic rod 352 by the output power supplied from the hydraulic cylinder 351.
Further, referring to fig. 1, the guide rail 31 has a vertical sliding slot 311, and a notch of the vertical sliding slot 311 faces one side of the clamping frame 2.
In this embodiment, the guide rail 31 has the vertical sliding slot 311, the notch of the vertical sliding slot 311 faces the direction of the clamping frame 2, and the slider 32 can vertically move in the guide rail 31 along the long direction of the vertical sliding slot 311, so as to drive the up-and-down movement of the motor 33.
Further, referring to fig. 1, the transmission assembly 3 further includes a base 36, and the base 36 is fixedly connected to the vertical bracket 1 and is located at an outer side of the vertical bracket 1.
In the embodiment, the base 36 is welded at the bottom of the vertical support 1, and the force-bearing area of the bottom is increased through the base 36, so that the load of external force borne by the device when a workpiece is forged is reduced, and the stability of the device when the workpiece is forged is improved.
Further, referring to fig. 2, the transmission assembly 3 further includes a second vertical support 37, and the second vertical support 37 is fixedly connected to the base 36 and is located on a side of the base 36 close to the clamping frame 2.
In this embodiment, the second vertical bracket 37 is welded to the right side of the base 36, and the other side of the clamping frame 2 is fixed by the second vertical bracket 37 and is matched with the left vertical bracket 1 to achieve better processing of a workpiece during forging.
Further, referring to fig. 1, the transmission assembly 3 further includes a second guide rail 38 and a connecting member 39, the guide rail 31 is fixedly connected to the second vertical bracket 37 and is located at a side of the second vertical bracket 37 close to the clamping frame 2; the connecting member 39 is slidably connected to the second guide rail 38 and is fixedly connected to the clamping frame 2.
In this embodiment, the second guide rail 38 is welded to the second vertical bracket 37, the other side of the fixed frame is connected to the second guide rail 38 through the connecting member 39, and the second guide rail 38 is matched with the lifting of the slide block 32 to lift the clamping frame 2, so that the stability of lifting of the device is increased.
Further, referring to fig. 2 and 5, the connecting member 39 includes a second slider 391 and a second connecting rod 392, the second slider 391 is slidably connected to the second guide rail 38 and is located on a side of the second guide rail 38 close to the clamping frame 2; one end of the second connecting rod 392 is rotatably connected to the second slider 391, the other end of the second connecting rod 392 is fixedly connected to the clamping frame 2, and the second connecting rod 392 is located between the second slider 391 and the clamping frame 2.
In this embodiment, the second slider 391 is slidably connected to the second guide rail 38, and is rotatably connected to the second slider 391 through one end of the second connecting rod 392, and the other end of the second connecting rod 392 is fixedly connected to the clamping frame 2, so that the clamping frame 2 is fixedly connected to the second vertical bracket 37 when rotating on the second vertical bracket 37 by driving the second connecting rod 392 to rotate on the second slider 391.
Further, referring to fig. 1, the transmission assembly 3 further includes a rubber pad 40, and the rubber pad 40 is fixedly connected to the clamping frame 2 and is located at one side of the clamping frame 2.
In the present embodiment, the rubber pad 40 is disposed in the clamping frame 2 to increase the friction force for clamping the workpiece, and the clamped workpiece can be better attached and protected to achieve a better fixing effect.
While the utility model has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and detail may be made therein without departing from the spirit and scope of the utility model.

Claims (8)

1. A gearbox gear forging fixing device is characterized by comprising a vertical support, a clamping frame and a transmission assembly;
the clamping frame and the vertical support rotate through the transmission assembly and are positioned on one side of the vertical support;
the transmission assembly comprises a guide rail, a sliding block, a motor, a connecting rod and a hydraulic component, the guide rail is fixedly connected with the vertical support and is located at one side of the clamping frame, the vertical support is close to one side of the clamping frame, the sliding block is connected with the guide rail in a sliding mode and is located at one side of the clamping frame, the motor is fixedly connected with the sliding block and is located at one side of the clamping frame, one end of the connecting rod is fixedly connected with the motor, the other end of the connecting rod is fixedly connected with the clamping frame, the connecting rod is located between the motor and the clamping frame, and the hydraulic component is fixedly connected with the vertical support.
2. The transmission gear forging fixture of claim 1,
the hydraulic component comprises a hydraulic cylinder and a hydraulic rod, the hydraulic cylinder is fixedly connected with the vertical support and is positioned on one side of the vertical support, which is close to the guide rail; one end of the hydraulic rod is connected with the hydraulic cylinder, the other end of the hydraulic rod is fixedly connected with the sliding block, and the hydraulic rod is located between the hydraulic cylinder and the sliding block.
3. The transmission gear forging fixture of claim 1,
the guide rail is provided with a vertical sliding groove, and a notch of the vertical sliding groove faces one side of the clamping frame.
4. The transmission gear forging fixture of claim 1,
the transmission assembly further comprises a base, and the base is fixedly connected with the vertical support and is located on the outer side of the vertical support.
5. The transmission gear forging fixture of claim 4,
the transmission assembly further comprises a second vertical support, and the second vertical support is fixedly connected with the base and is positioned on one side, close to the clamping frame, of the base.
6. The transmission gear forging fixture of claim 5,
the transmission assembly further comprises a second guide rail and a connecting component, the guide rail is fixedly connected with the second vertical support and is positioned on one side, close to the clamping frame, of the second vertical support; the connecting member is connected with the second guide rail in a sliding mode and is fixedly connected with the clamping frame.
7. The transmission gear forging fixture of claim 6,
the connecting component comprises a second sliding block and a second connecting rod, the second sliding block is connected with the second guide rail in a sliding mode and is positioned on one side, close to the clamping frame, of the second guide rail; one end of the second connecting rod is rotatably connected with the second sliding block, the other end of the second connecting rod is fixedly connected with the clamping frame, and the second connecting rod is located between the second sliding block and the clamping frame.
8. The transmission gear forging fixture of claim 1,
the transmission assembly further comprises a rubber pad, and the rubber pad is fixedly connected with the clamping frame and is positioned on one side of the clamping frame.
CN202122085330.3U 2021-08-31 2021-08-31 Gearbox gear forges fixing device Active CN216027849U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122085330.3U CN216027849U (en) 2021-08-31 2021-08-31 Gearbox gear forges fixing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122085330.3U CN216027849U (en) 2021-08-31 2021-08-31 Gearbox gear forges fixing device

Publications (1)

Publication Number Publication Date
CN216027849U true CN216027849U (en) 2022-03-15

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ID=80623341

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122085330.3U Active CN216027849U (en) 2021-08-31 2021-08-31 Gearbox gear forges fixing device

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CN (1) CN216027849U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118558931A (en) * 2024-08-02 2024-08-30 洛阳美航汽车零部件有限公司 Forging device for gear production and forging process thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118558931A (en) * 2024-08-02 2024-08-30 洛阳美航汽车零部件有限公司 Forging device for gear production and forging process thereof

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