Numerical and experimental investigation on the influence of main motor rotational frequency in fine-cropping

Author:

Zhong Bin1,Zhao Shengdun1,Zhao Renfeng1,Liao Jiean2

Affiliation:

1. School of Mechanical Engineering, Xi’an Jiaotong University, Xi’an, Shaanxi, PR China

2. Institute of Mechanical Electrification Engineering, Tarim University, Alar, Sinkiang, PR China

Abstract

The bar fine-cropping, the first and one of the most important metal-forming procedure, separates the work-piece into accurate products and billets. The aim of this article is to investigate the influence of different main motor rotational frequencies on a new fine-cropping system. Five different rotational frequencies are applied to both the numerical simulations and the fine-cropping experiments. The numerical and experimental results show that good agreement is achieved by combining the average stress triaxiality under different stress states: the equivalent plastic strain, the fatigue-crack propagation path analysis and the micrograph fractography observation. Additionally, the cross-section quality of cropped billets and the final cropping time is also investigated. The results show that the cross-section quality and the final cropping time of the new fine-cropping are greatly influenced by the main motor rotational frequency, especially the frequency close to 33 Hz.

Publisher

SAGE Publications

Subject

Mechanical Engineering

Reference27 articles.

1. Gu HC, He JW. Saving metal materials handbook, Beijing: China Machine Press, 1995, pp. 120–147.

2. Plastic precision cropping of metal materials

3. Experimental study on the shearing behaviour of fine-blanking versus bar cropping

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