Investigation Experimental and Finite Element Method of Mechanical Properties of Hot Forging on Ti6Al4V Alloy

H. Tagimalek, M. R. Maraki, M. Mahmoodi, P. Zadeh
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引用次数: 4

Abstract

Forging is one of the oldest and the most important processes of metal forming. The process occurs due to the waxy deformation of metal. In the forging process, the die walls control the material flow and the mechanical properties of the workpiece are significantly improved. Today's world industries, financing costs play a leading role in production. These categories have entered the industry to create a variety of simulation and numerical modeling methods to eliminate this problem. Simulation and experimental test, mechanical properties in the hot forging process in high-cost materials are of great interest to researchers. In this paper, the mechanical properties of hot forging in Ti6Al4V alloy are investigated. According to the obtained results, it can be found that a very close agreement has been made on experiments reported in literature and the simulation. Depending on the results, the strain rate Z-axis showed the shear bands appeared exactly on the 45-degree plates and in the sample center. In fact, the intersection of the band's sample center is the max strain applied to the die. This area has been created with an effective strain and stress at all depths of the workpiece and gradually expands.
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Ti6Al4V合金热锻力学性能的试验与有限元研究
锻造是最古老、最重要的金属成形工艺之一。这一过程是由于金属的蜡状变形而发生的。在锻造过程中,模具壁控制着材料的流动,工件的力学性能得到了显著改善。当今世界各行业,融资成本在生产中起着主导作用。这些类别已经进入行业创造了各种模拟和数值建模方法来消除这一问题。高成本材料热锻过程力学性能的模拟和实验测试一直是研究人员非常感兴趣的问题。本文研究了Ti6Al4V合金热锻的力学性能。根据所得结果,可以发现文献报道的实验结果与模拟结果非常吻合。根据结果,应变率z轴显示剪切带恰好出现在45度板上和样品中心。事实上,带的样品中心的交叉点是施加到模具上的最大应变。该区域在工件的所有深度都具有有效的应变和应力,并逐渐扩大。
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