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Modelling Material Properties Leading to the Prediction of Distortion during Heat Treatment of Steels

机译:建模材料特性,导致钢材热处理期间失真预测

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Distortion induced by heat treatment is a major industrial problem because it critically affects the dimensional accuracy of precision components. Prediction of distortion is difficult because it requires detailed knowledge of the material properties which are normally lacking and difficult to evaluate, especially at high temperatures. The present work describes the development of a computer model for prediction of the material properties required for distortion prediction in steels. The success of the model is based on accurate description of all the major phase transformations taking place, as well as an accurate calculation of the properties of different phases formed during heat treatment. The model calculates a wide range of physical, thermophysical and mechanical properties, all as a function of time/temperature/cooling rate. Jominy hardenability prediction was also performed and shows excellent agreement with experimental data. All the present calculations can be carried out via a user friendly graphical interface.
机译:热处理引起的畸变是一个主要的工业问题,因为它批判性地影响精密部件的尺寸精度。失真预测是困难的,因为它需要详细了解通常缺乏且难以评估的材料特性,特别是在高温下。本工作描述了用于预测钢中失真预测所需的材料特性的计算机模型的开发。该模型的成功基于所发生的所有主要相变的准确描述,以及准确计算热处理期间形成的不同阶段的性质。该模型计算各种物理,热物理和机械性能,全部作为时间/温度/冷却速率的函数。还进行了Jominy淬透性预测,并与实验数据进行了良好的一致性。所有本计算可以通过用户友好的图形界面进行。

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