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Accelerated Carbon Atoms Diffusion in Bearing Steel Using Electropulsing to Reduce Spheroidization Processing Time and Improve Microstructure Uniformity

机译:使用振动将轴承钢扩散的加速碳原子扩散以减少球形处理时间并提高微观结构均匀性

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Herein, the thermodynamic and kinetic limitations of carbide dissolution behavior during the traditional heat treatment process are broken through the external field treatment. The difference in electrical conductivity between the matrix and the carbide affects the electric current distribution, which ultimately results in electric field distortion. The numerical calculation results show that under the coupled field of heat and pulsed electric current, the distribution of the current density around the particles is related to the size of the particles. The selective distribution of current caused the energy difference to eventually promote the preferential dissolution of coarse network carbides at grain boundaries. The redistribution of carbon atoms between the grain boundaries and the grain interior provides a good initial structure for the subsequent precipitation process, and finally, uniform precipitation of cementite is achieved in the matrix. Meanwhile, the electromigration of carbon atoms under pulsed electric current increases the diffusion rate of carbon atom and shortens the processing time (traditional heat treatment is about 20 h, and the electropulse-based method in this study is about 4 h).
机译:这里,通过外部场处理破裂在传统热处理过程中的碳化物溶解行为的热力学和动力学限制。基质和碳化物之间的电导率差异影响电流分布,最终导致电场失真。数值计算结果表明,在热和脉冲电流的耦合场下,颗粒周围的电流密度的分布与颗粒的尺寸有关。电流的选择性分布引起能量差,最终促进粗网络碳化物在晶界的优先溶解。晶界和晶粒内部之间的碳原子的再分配为随后的沉淀过程提供了良好的初始结构,最后,在基质中达到渗碳石均匀沉淀。同时,碳原子在脉冲电流下的电迁移增加了碳原子的扩散速率,并缩短了加工时间(传统热处理约20小时,并且本研究中的电宽的基于电解的方法约为4小时)。

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