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Friction-stir processing of AISI 440C high-carbon martensitic stainless steel for improving hardness and corrosion resistance

机译:AISI 440C高碳马氏体不锈钢的摩擦搅拌加工,用于提高硬度和耐腐蚀性

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Friction-stir processing (FSP) has been attempted to harden the surface of a high-carbon martensitic stainless steel (AISI 440C) and to improve its corrosion resistance. Owing to high input of heat, the penetration depth of the FSPed zone increases in the range from 1.5 to 2 mm when the translational speed decreases. As the trans-lational speed increases, higher content of retained austenite in the advancing side and center of the processed zone are obtained due to higher cooling rate. The maximum hardness of the FSPed 440C is up to 779 HV_1 and higher than that of the conventionally hardened sample austenitized at 1200 °C (618 HV_1). The pitting corrosion resistance of the sample processed at 300 mm min~(-1) in 3.5 wt% sodium chloride solution is the lowest among the FSPed samples. It is mainly attributed to the heterogeneous microstructures at the retreating side (martensite and carbides) and advancing side and center (with martensite and retained austenite) leading to selective attack occurred at the more active region, i.e. the retreating side.
机译:已经尝试摩擦搅拌加工(FSP)硬化高碳马氏体不锈钢(AISI 440C)的表面并改善其耐腐蚀性。由于高热量,当平移速度降低时,FSPED区的穿透深度从1.5到2 mm的增加。随着跨理性速度的增加,由于更高的冷却速率,获得了加工区的前进侧和中央的保留奥氏体的较高含量。 FSPED 440C的最大硬度高达779 HV_1,高于1200℃(618 HV_1)的常见的常规硬化样品的硬度。在3.5wt%氯化钠溶液中,在300mm min〜(-1)下加工的样品的点腐蚀性是FSPED样品中最低的。它主要归因于退回侧(马氏体和碳化物)的异质微结构,并且前进的侧和中心(用马氏体和保留奥氏体),导致在更活跃的区域中发生选择性攻击,即退缩侧。

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