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Input physical properties in mathematical model of steel quenching

机译:钢淬火数学模型中的输入物理性质

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Purpose: Developing of new methods for input data of mathematical model is established.Design/methodology/approach: Temperature dependency of both, heat transfer for quenchant with Grossmannseverity of quenching H=0.35, which are adequate for oil and heat conductivity coefficients has been calibratedon the base of Crafts-Lamont diagrams.Findings: Evaluation of physical properties such as specific heat capacity, c, heat conductivity coefficient, X,density, p, heat transfer coefficient, a involved in mathematical model of transient temperature field was doneby the inversion method, or by calibrations.Research limitations/implications: In the future this investigation should be broaden on investigation of more quechants.Practical implications: By proper input data of mathematical model of steel quenching, correct computersimulation can be performed.Originality/value: New inverse method of input data such as specific heat capacity, c, heat conductivitycoefficient, X, density, p, heat transfer coefficient, a, which is based just on achieved distributions of mechanicalproperties in Crafts-Lamont diagrams.
机译:目的:建立开发数学模型输入数据的新方法设计/方法/方法:校准了两者的温度依赖性,已校准了淬火剂的总传递,淬火强度为H = 0.35,足以满足油和导热系数研究结果:通过反演方法对比热容,c,导热系数,X,密度,p,传热系数等物理性质进行了评估,并参与了瞬态温度场的数学模型的研究。研究的局限性/含意:未来的研究应扩大到更多的淬灭剂的研究中实际意义:通过适当的钢淬火数学模型的输入数据,可以进行正确的计算机模拟原始性/价值:新的逆输入数据的方法,例如比热容,c,导热系数,X,密度,p,热传递Fer系数a,仅基于在Crafts-Lamont图中获得的力学性能分布。

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