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Application of polymeric quenchant in heat treatment of crack-sensitive steel mechanical parts: Modeling and experiments

机译:聚合物淬火剂在裂纹敏感钢机械零件热处理中的应用:建模和实验

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Success or failure of a quenching process is determined by selecting an appropriate quenchant. In this work, the quenching process of the automobile tie rods in different media including water, oil, and a polymeric solution was investigated. The microstructures and mechanical properties of the rods were predicted by a finite element simulation model. Several specimens were cut from the tie rods and heat treated by quenching in five different quenching media including water, oil, and PAG aqueous solutions with polymer concentrations of 10, 20, and 30%. The hardness tests and metallographic analyses were performed on the specimens. Considering the results of the simulations and the experiments, the optimum quenchant was selected and the tie rods were heat treated using this quenchant. The results showed that the use of Poly Alkylene Glycol (PAG) solution quenchants, with respect to its unique cooling mechanism, outperformed water and oil quenchants. The distortion and cracking was reduced compared to water quenching and, on the other hand, the mechanical properties which were not achievable by oil quenching were resulted using polymer-based quenching medium.
机译:淬火过程的成功与否取决于选择合适的淬火剂。在这项工作中,研究了汽车横拉杆在不同介质(包括水,油和聚合物溶液)中的淬火过程。通过有限元模拟模型预测了棒的微观结构和力学性能。从拉杆上切下几个样品,并通过在五种不同的淬灭介质(包括水,油和PAG水溶液)中进行淬火进行热处理,聚合物浓度分别为10%,20%和30%。在样品上进行了硬度测试和金相分析。考虑到模拟和实验的结果,选择了最佳的淬火剂,并使用该淬火剂对拉杆进行了热处理。结果表明,就其独特的冷却机理而言,使用聚亚烷基二醇(PAG)溶液淬火剂的性能优于水和油淬火剂。与水淬相比,变形和裂纹减少了,另一方面,使用基于聚合物的淬火介质可以实现油淬无法获得的机械性能。

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