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Effect of heat treatment of preform on the mechanical properties of flow formed AISI 4130 Steel Tubes—a theoretical and experimental assessment

机译:预成型坯的热处理对流动成型AISI 4130钢管力学性能的影响-理论和实验评估

摘要

Flow forming is an advanced eco-friendly chipless metal forming process, which employs an incremental rotary point deformation technique. Flow forming offers a remarkable increase in tensile properties due to strain hardening and provides excellent dimensional accuracy and surface finish for the formed part. This paper presents the results of a study on the effect of heat treatment of preform material on the mechanical properties of the flow formed part and the validity of using empirical relations in predicting the properties of the flow formed components. The strength coefficient K and strain hardening exponent n of equation σ=Kεn are determined from stress–strain curves under different heat treatment conditions for AISI 4130 steel. The effect of cold work on mechanical properties of flow formed part for a given reduction in area (RA) is predicted using empirical relations published in literature. In order to validate the hypothesis of prediction of cold worked material properties after flow forming, a few flow forming experiments are carried out. The preform dimensions are worked out based on constant volume principle. A three pass flow forming sequence was followed and the properties are measured for about 88–90% thickness reduction. Comparison of the experimental results and the properties of the flow formed tubes predicted using empirical relations shows that empirical relations can be used for predicting the properties of flow formed tubes with reasonable accuracy. Preforms processed through hardening and tempering route give better performance. These results are used for design of performs for manufacturing of large number of high strength pressure vessels successfully.
机译:流动成型是一种先进的环保无屑金属成型工艺,它采用增量旋转点变形技术。流动成型可通过应变硬化显着提高拉伸性能,并为成型零件提供出色的尺寸精度和表面光洁度。本文介绍了对预成型材料进行热处理对流动成型零件的机械性能的影响以及使用经验关系预测流动成型零件的性能的有效性的研究结果。由AISI 4130钢在不同热处理条件下的应力-应变曲线可确定方程σ=Kεn的强度系数K和应变硬化指数n。使用文献中公开的经验关系,可以预测在给定的面积(RA)下,冷作对流动成形零件的机械性能的影响。为了验证流动成形后预测冷加工材料性能的假设,进行了一些流动成形实验。瓶坯尺寸根据恒定体积原理确定。遵循三遍流程形成顺序,并测量了约88–90%的厚度减小的性能。实验结果和经验关系预测的流动管材性能的比较表明,经验关系可以用于以合理的精度预测流动管材的性能。通过淬火和回火处理的预成型坯具有更好的性能。这些结果被用于成功地制造大量高强度压力容器的工具的设计。

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