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首页> 外文期刊>Acta metallurgica Sinica >Numerical Simulation of Temperature Field on Flash Butt Welding for High Manganese Steels
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Numerical Simulation of Temperature Field on Flash Butt Welding for High Manganese Steels

机译:高锰钢对接焊温度场的数值模拟

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摘要

An axial symmetry finite element model coupled with electricity-thermal effect was developed to study the temperature field distribution in process of the flash butt welding (FBW) of frog high-manganese steel. The influence of temperature dependent material properties and the contact resistance were taken into account in FEM simulation. Meanwhile, the lost materials due to splutter was resolved by using birth and death element. The result of analyzing data shows that the model in the FBW flashing is reasonable and feasible, and can exactly simulate the temperature field distribution. The modeling provides reference for analysis of welding technologies on the temperature field of high-manganese steel in FBW.
机译:建立了轴向对称的有限元模型,结合电热效应,研究了青蛙高锰钢的快速对接焊过程中的温度场分布。在有限元模拟中考虑了温度依赖性材料特性和接触电阻的影响。同时,通过使用生死元素解决了由于飞溅而造成的材料损失。数据分析结果表明,FBW闪蒸中的模型是合理可行的,可以准确模拟温度场分布。该模型为分析FBW中高锰钢温度场的焊接技术提供参考。

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