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Investigation of the Geometry of Metal Tube Walls after Necking in Uniaxial Tension

机译:单向拉伸颈缩后金属管壁的几何形状研究

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Abstract: In order to characterize the deformation and true stress–strain relation of metal tubes, the geometry of tube walls after necking in uniaxial tension need to be determined. The paper investigated the necking process of metal tube. A large number of tensile tests and finite element analysis of 1Cr18Ni9Ti tubes with different sizes were conducted. It was found that the geometry of outer tube wall in the necking region can be described using a logistic regression model. The final geometry of the tube is determined by original tube diameter and wall thickness. The offset of tube walls are affected by two competing factors: volume constancy and necking. The offset distances of outer and inner walls are mainly affected by original wall thickness. The length of the necking zone is more influenced by original tube diameter. Tube elongation at fracture increases slightly as tube diameter gets larger, while the wall thickness has almost no impact on the elongation.
机译:摘要:为了表征金属管的变形和真实的应力-应变关系,需要确定在单轴拉伸时颈缩后的管壁几何形状。本文研究了金属管的颈缩过程。对不同尺寸的1Cr18Ni9Ti管进行了大量的拉伸试验和有限元分析。已经发现,可以使用逻辑回归模型来描述颈缩区域中的外管壁的几何形状。管的最终几何形状由原始管直径和壁厚决定。管壁的偏移受两个竞争因素的影响:体积恒定和颈缩。外壁和内壁的偏移距离主要受原始壁厚的影响。颈缩区的长度更多地受原始管直径的影响。随着管直径变大,断裂处的管伸长率略有增加,而壁厚几乎对伸长率没有影响。

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