Finite Element Analysis and Life Prediction of Pre-stressed Composed Dies in Cold Extrusion Process

IF 1 Q4 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS Journal of Multiscale Modelling Pub Date : 2021-09-08 DOI:10.1142/s1756973721420014
Zhen Zhang, Feng Yang, Xiawei Shao, J. Gu, G. Zha, Haoyun Tu, Bin Xie
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Abstract

Improving and stabilizing the life of the die has always been the key to increasing the output of cold precision forging products and reducing the production cost of forgings. The stress state in pre-stressed composed dies during cold extrusion process is investigated in this paper, it shows that the combined die can greatly reduce the tangential tensile stress of the inner wall of the die and reduce the strain energy density of the die, thereby improving the strength of the die and extending the life of the die. By increasing the number of pre-stressed rings, the amount of interference can be changed, which indirectly changes the pre-stress applied to the die. The relationship between the die fatigue life and the number of pre-stressed rings indicates that the design of the pre-stressed composed structure above the inflection point is an excess design, and the optimal design should be near the inflection point.
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预应力组合模冷挤压过程的有限元分析与寿命预测
提高和稳定模具寿命一直是提高冷精锻产品产量、降低锻件生产成本的关键。本文对预应力组合模在冷挤压过程中的应力状态进行了研究,结果表明,组合模可以大大降低模具内壁的切向拉应力,降低模具的应变能密度,从而提高模具强度,延长模具寿命。通过增加预应力环的数量,可以改变过盈量,从而间接改变施加在模具上的预应力。模具疲劳寿命与预应力环数量之间的关系表明,在拐点以上的预应力组合结构的设计是一种超额设计,最优设计应该在拐点附近。
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来源期刊
Journal of Multiscale Modelling
Journal of Multiscale Modelling MATHEMATICS, INTERDISCIPLINARY APPLICATIONS-
CiteScore
2.70
自引率
0.00%
发文量
9
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