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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation of punch shape design in tube hydro-piercing processes
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Investigation of punch shape design in tube hydro-piercing processes

机译:管式水刺穿过程中冲床设计的研究

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摘要

This study is focused on punch shape design in tube hydro-piercing processes of SPFC590Y carbon steel tubes. The flow stresses of the carbon steel tubes obtained by tensile tests are used in the finite element simulations of tube hydro-piercing process with software "Deform 3D." The ductile fracture criterion of Normalized Cockcroft and Latham is used during the FE simulations. The critical damage value for NCL fracture criterion is obtained by comparing simulation results and tensile test results. The effects of various parameters such as punch strokes, internal pressures, etc. on tube deformation and fracture mechanism in hydro-piercing processes are investigated. Hydro-piercing experiments are conducted. The characteristics of the experimentally pierced hole sections are compared with the simulation results to validate the analytical models. The effects of various parameters on the characteristics of pierced hole sections after hydro-piercing processes are discussed numerically and experimentally.
机译:本研究专注于SPFC590Y碳钢管的管式水枢刺工艺中的冲压形设计。通过拉伸试验获得的碳钢管的流量应在管式水刺穿过程的有限元模拟中,软件“变形3D”。在FE模拟期间使用标准化Cockcroft和Latham的延性骨折标准。通过比较模拟结果和拉伸试验结果来获得NCL裂缝标准的临界损伤值。研究了各种参数,如冲头冲程,内部压力等的效果。在管变形和骨压机构中的液压刺穿过程中的效果。进行水刺穿实验。将实验刺穿孔部分的特性与模拟结果进行比较,以验证分析模型。各种参数对水刺穿过程后穿孔孔部分特性的影响在数字和实验上讨论。

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