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Phase Transformation, Microstructure and Hardness of Electrodeposited Fe-based Amorphous Coatings

机译:电沉积铁基非晶涂层的相变,组织和硬度

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Fe-based amorphous coatings have many excellent performances, such as good corrosion resistance, high hardness, satisfactory magnetism, etc. In this paper, Fe-P amorphous coatings were prepared by electrodeposition method, and the phase transformation, microstructure, and hardness of the coatings heated at different heat-treatment temperature were investigated. The results show that Fe-P amorphous coatings begin to crystallize when heated at 300 °C, the a-Fe(P) solid solution appears when heated at 330°C, and Fe_xP(X=l,2,3) compounds separate out from the solid solution when heat-treatment temperature is up to 370°C. During the process of heat-treatment, hardness of the Fe-P coating increases as the reinforcement result of solid solution and dispersed phase in the coatings, and the hardness reaches the maximum 1100 HV at 370°C. When heat-treatment temperature is higher than 460°C, dispersed phase in the coatings will grow up, which is called Ostwald Coarsening Phenomenon, and hardness of the coating decreases quickly.
机译:铁基非晶态涂层具有许多优良的性能,如良好的耐蚀性,高硬度,令人满意的磁性等。本文采用电沉积法制备了铁磷非晶态涂层,并对其相变,显微组织和硬度进行了研究。研究了在不同热处理温度下加热的涂层。结果表明,Fe-P非晶态涂层在300°C加热时开始结晶,在330°C加热时出现a-Fe(P)固溶体,Fe_xP(X = 1、2,3)化合物分离出来当热处理温度高达370°C时会从固溶体中析出。在热处理过程中,Fe-P涂层的硬度随着固溶体和分散相在涂层中的增强而增加,在370°C时达到最高1100 HV。当热处理温度高于460℃时,涂层中的分散相将长大,这称为Ostwald粗化现象,并且涂层的硬度迅速降低。

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