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Sheet forming die and method of helical cylinder gear

A technology of helical cylindrical gears and forming molds, applied in the directions of gears, forming tools, household appliances, etc., can solve the problems of short gear life, low material utilization, difficult corner filling, etc., to avoid large forming force and reduce production. cost, the effect of improving end face quality

Inactive Publication Date: 2014-08-27
WUHAN UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The cutting method has disadvantages such as low material utilization rate, low production efficiency, and short gear life; the precision forging forming method has problems such as corner filling difficulties, strict requirements for mold design and manufacturing accuracy, etc.
As a high-quality, high-efficiency, low-consumption precision forming technology, strong blanking fine blanking cannot be applied to the forming of helical cylindrical gears with a certain helix angle due to the linear motion of the mold, which limits the application of fine blanking technology scope

Method used

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  • Sheet forming die and method of helical cylinder gear
  • Sheet forming die and method of helical cylinder gear
  • Sheet forming die and method of helical cylinder gear

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Embodiment Construction

[0033] The present invention will be further described below in conjunction with the accompanying drawings and examples, but of course the following examples should not be construed as limiting the present invention.

[0034] Such as Figure 1 to Figure 8 As shown, it is a sheet metal forming die for a helical spur gear provided in an embodiment of the present invention. The sheet material forming die of the helical cylindrical gear includes a sheet material cold precision die assembly and a rotary blanking die assembly. The plate cold precision mold assembly includes a first punch 1 , a first die 4 , a V-ring blank holder 2 , and an anti-top plate 5 . The rotary blanking die assembly includes a second punch 6 and a second die 8 . The first punch 1 is a smooth cylinder, and the inner wall of the V-ring blank holder 2 matches the outer wall of the first punch 1 . The inner wall of the first die 4 and the outer wall of the anti-top plate 5 are provided with helical teeth. Th...

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Abstract

The invention discloses a sheet forming die and method of a helical cylinder gear. The method comprises the following two major steps: 1) cold and precision forming of a sheet, namely, feeding a metal sheet to be processed between a first concave die and a first convex die, pressing a V-shaped ring blank holder into the metal sheet to be processed, pressing the first convex die into the metal sheet to be processed, keeping the first convex die and a reverse ejecting plate rotating at the same rate and in the same direction until the first convex die is in a certain distance from the first concave die so as to realize the cold and precision forming of the sheet; 2) rotating blanking, namely, blanking to remove the residues together with coating of the metal sheet subjected to the cold and precision forming, so as to obtain the helical cylinder gear. With the adoption of the sheet forming die and method, the cold and precision forming of the helical cylinder gear is realized, the corner collapse is reduced, the highlight zone is expanded, the part quality is improved, and the production cost is decreased.

Description

technical field [0001] The invention belongs to the field of helical cylindrical gear processing, and in particular relates to a sheet metal forming die and method for helical cylindrical gears. Background technique [0002] As an important transmission device, the helical spur gear is widely used in mechanical transmission and other fields. Compared with spur gears, helical gears have better transmission performance, and its compact center distance can be used for high-speed and heavy loads, and it has the characteristics of smooth meshing, low impact and low noise. At present, the most common processing method is cutting, followed by precision forging. The cutting method has disadvantages such as low material utilization rate, low production efficiency, and short gear life; the precision forging method has problems such as corner filling difficulties and strict requirements for mold design and manufacturing accuracy. As a high-quality, high-efficiency, low-consumption pr...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B21D37/10B21D28/14B21D53/28B21D22/02B21D28/02
Inventor 毛华杰华林夏文婷刘艳雄
Owner WUHAN UNIV OF TECH
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