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Application of Rational Approximate Method in Numerical Simulation of Temperature Field of 9SiCr Alloy Steel with Non-linear Surface Heat-Transfer Coefficients During Gas Quenching

机译:合理近似方法在气体淬火期间具有非线性表面传热系数的9SICR合金钢温度场数值模拟中的应用

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The gas quenching is a modern, effective processing technology. On the basis of non-linear surface heat-transfer coefficient obtained by Ref. during the gas quenching, the temperature field of 9SiCr alloy steel with non-linear surface heat-transfer during gas quenching was simulated by means of finite element method. In the numerical calculation, the thermal physical properties were treated as the non-linear functions of temperature. The obtained results show that the non-linear effect should be considered in numerical simulation during gas quenching. In order to avoid effectual the "oscillation"in the numerical solutions, the Norsette rational approximate method was used.
机译:气体淬火是一种现代,有效的加工技术。基于由REF获得的非线性表面传热系数。在气体淬火期间,通过有限元方法模拟气体淬火期间具有非线性表面传热的9SICR合金钢的温度场。在数值计算中,热物理性质被视为温度的非线性函数。所得结果表明,在气体淬火期间应在数值模拟中考虑非线性效果。为了避免在数值溶液中有效的“振荡”,使用了多孔理性近似方法。

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