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Application of ductile fracture criteria in spin-forming and tube-bending processes

机译:韧性断裂准则在旋压成型和弯管工艺中的应用

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摘要

As one of the principal failures that occur in metal spin-forming and tube-bending processes, ductile fracturing restricts the process of metal forming. It is difficult to predict the rupture and forming limit for the complex processes of spin forming and tube bending. Thus, in this paper we aim to choose reasonable ductile fracture criteria to accurately predict the time, position and distribution of the damage that occurs in these processes. By embedding the Lemaitre and Cockcroft–Latham (C&L) criteria into VUMAT (user material subroutine of the ABAQUS/explicit finite element method (FEM) code), finite element models are built and validated for predicting rupture failure and forming limit in the shear spin-forming, splitting spin-forming and tube-bending processes. The results show that the Lemaitre criterion is better than the C&L criterion at accurately predicting the position at which damage will occur and its distribution for both spin forming and tube bending. The maximum feed ratio varies within a small range with the splitting angle of the roller. There is an obvious difference between the distribution, variation and level of the damage that can occur for a normal bending radius without rupturing, and that for a very small bending radius, where there is a greater risk of rupturing. For tube bending using a very small bending radius and without a mandrel in the tube, the pressure die velocity increases, so the flattening of the bending area increases to some extent, which makes it opposite of normal tube bending.
机译:作为在金属旋压成形和弯管过程中发生的主要故障之一,延性断裂限制了金属成形的过程。对于旋压成形和管弯曲的复杂过程,很难预测破裂和成形极限。因此,在本文中,我们旨在选择合理的韧性断裂准则,以准确预测在这些过程中发生的损伤的时间,位置和分布。通过将Lemaitre和Cockcroft-Latham(C&L)标准嵌入到VUMAT(ABAQUS /显式有限元方法(FEM)代码的用户材料子例程)中,建立并验证了有限元模型,以预测剪切破坏中的断裂破坏和成形极限成型,分裂旋压成型和弯管工艺。结果表明,Lemaitre准则比C&L准则更好地准确预测了将发生损坏的位置及其在旋压成形和弯管时的分布。最大进给比会在小范围内随辊的分裂角度而变化。对于正常的弯曲半径而不破裂,可能会发生的损坏的分布,变化和程度之间存在明显的差异,而对于很小的弯曲半径,则存在较大的破裂风险,这之间存在明显的差异。对于使用非常小的弯曲半径且在管中没有心轴的管弯曲,压力模头速度会增加,因此弯曲区域的平坦度会在一定程度上增加,这与正常的管弯曲相反。

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