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Explanation of the origin of quench distortion and residual stress in specimens using computer simulation

机译:使用计算机模拟解释样品中淬火变形和残余应力的起源

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摘要

Measurements of distortion and internal residual stresses after quenehing in specimens (e.g., cylinders, disks, rings) have been performed for many years. As a result, patterns of distortion and stress distribution have been identified in the typical shapes, steels and cooling conditions. These experimental data were examined by pioneers of the heat treatment simulation for verifying their computer programs in the 1970s and 1980s. However, early researchers did not fully explain the mechanism of distortion and residual stress generation based on their simulated results. A way to explain the generation mechanism using simulated results, especially distributions of allrntypes of strains, has been recently developed and successfully applied to some experimental works by the authors of this paper. Its concept is described briefly, and its applications for some specimens are summarised.
机译:对样品(例如圆柱体,圆盘,环)进行淬火后的变形和内部残余应力的测量已经进行了很多年。结果,在典型的形状,钢和冷却条件下已经确定了变形和应力分布的模式。热处理模拟的先驱者对这些实验数据进行了检验,以验证其在1970年代和1980年代的计算机程序。但是,早期的研究人员并未根据他们的模拟结果完全解释变形和残余应力产生的机理。最近已经开发出了一种利用模拟结果来解释生成机理的方法,尤其是菌株同种型的分布,并已成功地应用于本文作者的一些实验工作。简要介绍了其概念,并总结了其在某些标本中的应用。

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