首页> 外文会议>Materials Science amp; Technology 2003 Conference; Nov 9-12, 2003; Chicago, Illinois, USA >Computer Simulation of Temperature and Thermal Stress Fields Generated During Heat Treating of JIS 415 H Steel Parts
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Computer Simulation of Temperature and Thermal Stress Fields Generated During Heat Treating of JIS 415 H Steel Parts

机译:JIS 415 H钢零件热处理过程中产生的温度和热应力场的计算机模拟

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This paper describes the computer simulation of thermal stress fields generated in the quenching of the JIS 415 H Steel automotive parts (Valve Lifters), running the ANSYS Multiphysics software of finite element (FEM). Simulation was performed introducing residual stress measurements on specific values areas, like internal pressure condition in the material. The stress condition effect in the material and the properties as temperature function data, were introduced to the FEM software. The thermal stress simulation was made on the 2D system. The parts were austenized to 850 - 900℃ and then oil quenched, tempered at 150 -200℃, and air cooled. The X-Ray diffraction technique was made to take measurements from residual stresses on valve lifters surfaces. The results analysis showed the ideal stress condition necessary in raw material to reduce the scrap percent in grind operations after hardening heat treating process.
机译:本文描述了运行有限元软件(FEM)的JIS 415 H钢制汽车零件(气门挺杆)淬火时产生的热应力场的计算机模拟。进行了模拟,将残余应力测量值引入了特定值区域,例如材料中的内部压力条件。将材料中的应力条件效应和作为温度函数数据的特性引入到FEM软件中。在2D系统上进行了热应力仿真。将零件奥氏体化到850-900℃,然后油淬,在150 -200℃回火,然后空冷。进行了X射线衍射技术以测量气门挺杆表面上的残余应力。结果分析表明,在硬化热处理过程后,原材料所需的理想应力条件可降低研磨操作中的废品率。

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