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Temperature fields in workpieces during grinding-hardening with dry air and liquid nitrogen as the cooling media

机译:用干燥空气和液氮作为冷却介质的研磨硬化过程中工件中的温度场

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This paper presents a temperature-dependent finite element heat transfer model, incorporating a triangular moving heat source and various cooling conditions, to predict the three-dimensional temperature field in plunge surface grinding. The model was applied to analyse the grinding-hardening of quenchable steel 1045 using dry air and liquid nitrogen as the cooling media. The temperature field variation under such grinding conditions was also measured experimentally. It was found that the temperature history predicted by the model agrees well with the measured results. The model provides a fundamental study as a first step in optimisation and control of the hardened layer thickness and its compositions in grinding-hardening technology.
机译:本文介绍了一种温度依赖性有限元传热模型,包括三角移动热源和各种冷却条件,以预测流动表面研磨中的三维温度场。应用模型以利用干燥空气和液氮作为冷却介质来分析淬火钢1045的研磨硬化。还在实验上测量这种研磨条件下的温度场变化。发现模型预测的温度历史与测量结果吻合良好。该模型提供了一种基本研究,作为优化和控制硬化层厚度及其在研磨硬化技术中的组合物中的第一步。

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