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Hot forging production line

A production line and hot forging technology, applied in forging presses, forging presses, forging/pressing/hammer devices, etc., can solve the problems of low production efficiency, large space occupation and high use cost, reduce equipment cost and use space, improve The effect of production efficiency

Active Publication Date: 2012-07-25
ANHUI SAFE ELECTRONICS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The presses used in the prior art are all single-station models. When applied to forging, especially hot forging, which requires multi-station continuous processing, multiple processing procedures must be completed by multiple machines. There are many disadvantages, such as large number of sets, high cost of use, large space occupation, and low production efficiency, and it is also not conducive to the use of feeding manipulators to realize automated production

Method used

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  • Hot forging production line
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Examples

Experimental program
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Embodiment 1

[0026] Such as figure 1 A hot forging production line shown includes a press 1 and a feeding manipulator 2 matched therewith.

[0027] Such as figure 2 , image 3 , Figure 4 The shown press 1 for implementing hot forging includes a frame 101 on which a motor 107, a flywheel 105, a clutch brake 104, a transmission shaft 111, a crankshaft 112, a slider A102, a slider B103, a slider Block C110, wherein the transmission shaft 111 and the crankshaft 112 are respectively rotated and arranged on the wall panels on both sides of the frame 1, a flywheel 105 and a clutch brake 104 are installed at one end of the transmission shaft 111, and the flywheel 105 is connected to the motor 107 in transmission, and the other end of the transmission shaft 111 The pinion gear 109 is connected to the large gear 108 installed at one end of the crankshaft 112. The slider A102 is vertically slidably arranged between the wall panels on both sides of the frame 101 and is driven by the connecting ro...

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PUM

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Abstract

The invention discloses a hot forging production line, comprising a press and a feeding manipulator. A rack of the press is set with a motor, a flywheel, a clutch brake, a transmission shaft, a crankshaft, a slide block A, a slide block B and a slide block C. The transmission shaft and the crankshaft are rotatably set on the rack respectively. On end of the transmission shaft is set with the flywheel and the clutch brake. The flywheel and the motor are in transmission connection. The other end of the transmission shaft is in transmission connection with the crankshaft. The slide block A is vertically and glidingly set between two side wall plates of the rack and in transmission connection with the crankshaft through a connecting rod A and an eccentric wheel A. The slide block B is vertically and glidingly set outside the left wall plate of the rack and in transmission connection with the crankshaft through a connecting rod B and an eccentric wheel B. The slide block C is vertically and glidingly set outside the right wall plate of the rack and in transmission connection with the crankshaft through a connecting rod C and eccentric wheel C. The rack is set with a corresponding work table. The technical scheme is used for realizing multi-process multi-station processing of hot forging technology and capable of lowering the device cost and use space, and improving productivity.

Description

technical field [0001] The invention belongs to the field of mechanical processing equipment, in particular to a hot forging production line using a press for hot forging. Background technique [0002] Hot forging is a forging forming process carried out after heating the forging billet to a certain temperature, including free forging, tire die forging and die forging. Die forging is a forging method that uses the striking force or pressure of forging equipment (generally a press) to deform the blank in the cavity of the forging die to obtain forgings. It is the most important process in forging processing. The forgings have high precision. High production efficiency, suitable for mass forging production, high die forging forming quality, can improve metal streamline distribution, eliminate or improve banded microstructure, refine grains, high die forging forming precision, high production efficiency. [0003] The presses used in the prior art are all single-station models....

Claims

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Application Information

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IPC IPC(8): B21J9/00B21J9/18
Inventor 高尔荣吴敏沈华强
Owner ANHUI SAFE ELECTRONICS
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