首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >An improved process design for the hot backward extrusion of Ti-6Al-4V tubes using a finite element method and continuum instability criterion
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An improved process design for the hot backward extrusion of Ti-6Al-4V tubes using a finite element method and continuum instability criterion

机译:Ti-6Al-4V管的热后向挤压的改进工艺设计,采用有限元方法和连续性不稳定性准则

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摘要

The hot backward extrusion process of Ti-6Al-4V tubes was designed by finite element (FE) simulation and experimental validations. In the hot backward extrusion of Ti-6Al-4V alloy, the main problems to emerge were surface cracks and sticking between the punch and the workpiece. The punch designs and back draft angles were investigated with a common hot backward extrusion condition. Then, based on a relatively good die design, the optimum process conditions were suggested. The design criteria were to achieve uniform distributions of strain and temperature and to produce a defect-free final product. As a model for predicting the forming defects, the continuum instability criterion developed by Ziegler was coupled to the internal variables generated from FEM simulation. Experimental observations were carried out on the extruded Ti-6Al-4V tubes to validate the model for predicting the forming defects. The die-chilling and friction greatly influenced the deformation mode of the tube and the formation of surface cracks. The formation of defects in the extruded tube was attributed to the non-uniform distribution of strain, strain rate, and temperature in the extruded tubes at the given experiment conditions.
机译:通过有限元(FE)模拟和实验验证设计了Ti-6Al-4V管的热向后挤压工艺。在Ti-6Al-4V合金的热向后挤压过程中,出现的主要问题是表面裂纹和冲头与工件之间的粘连。在常见的热向后挤压条件下研究了冲头设计和后拔角。然后,基于相对较好的模具设计,提出了最佳工艺条件。设计标准是要实现应变和温度的均匀分布,并生产出无缺陷的最终产品。作为预测成形缺陷的模型,齐格勒提出的连续性不稳定性判据与有限元模拟生成的内部变量耦合。对挤压的Ti-6Al-4V管进行了实验观察,以验​​证用于预测成形缺陷的模型。模具冷却和摩擦极大地影响了管的变形方式和表面裂纹的形成。在给定的实验条件下,挤压管中缺陷的形成归因于挤压管中的应变,应变率和温度的不均匀分布。

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