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Verification of Inverse Quench-Hardening Phenomena in Bearing Steel Specimens by Experiment and Computer Simulation

机译:试验和计算机模拟验证轴承钢标本中轴承钢状淬火现象的验证

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The appearance of lower hardness at the surface than at the core after through-hardening of steels is known as "inverse quench-hardening." Pioneering work was performed in the 1970s by establishing a simple test procedure where cylindrical specimens were cooled by air and brine sequentially to produce the effect. This phenomenon was described in relation to the polymer quenching and its effect to the improvement in the fatigue strength of the steel in the 1990s. The hardening mechanism in the same specimens as the pioneering work was recently examined using a finite element simulation method. However, this work has not been completed for lack of experimental quenching cooling curves for the comparisons. In this study, the same experiments using 20mm diameter cylindrical specimens as those of the pioneering work were conducted to obtain cooling curves and hardness distributions for comparing simulated results. Experimental cooling curves showed a temperature recovery as predicted by the simulation. Also the inverse quench-hardening phenomena were found in the measured and simulated hardness distributions of the specimens.
机译:在钢通过硬化之后,表面的表面低硬度的外观被称为“逆淬火硬化”。通过建立一个简单的测试程序,在20世纪70年代进行了开拓工作,其中圆柱形样品被空气和盐水依次冷却以产生效果。该现象是关于聚合物猝灭及其对20世纪90年代钢疲劳强度的改善的影响。最近使用有​​限元仿真方法检查与开创性工作相同的样本中的硬化机制。然而,对于缺乏对比较的实验淬火冷却曲线缺乏实验淬火冷却曲线,尚未完成这项工作。在该研究中,进行了使用20mm直径圆柱形样品的相同实验,作为先进的工作的实验,以获得用于比较模拟结果的冷却曲线和硬度分布。实验冷却曲线显示通过模拟预测的温度恢复。此外,在标本的测量和模拟硬度分布中发现了逆淬火硬化现象。

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