Hardening and corrosion behaviour of copper added SUS 304H austenitic steels subjected to thermal cycling

K. Alaneme, U. Ramamurty, O. Bello
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Abstract

This research was aimed at determining optimum Cu content for the alloy design of SUS 30411 austenitic steels having enhanced heat and corrosion resistance. Samples of the steel containing 1, 3, and 5 wt.% Cu were subjected to repeated heating and cooling to a temperature of 760 degrees C and to a maximum of 15 cycles. Hardness measurement and the corrosion behaviour in 1M NaCl solution were evaluated. The hardness increases with an increase in the number of heating cycles for the three compositions. The hardening response to the thermal cycles is however higher for the 1 wt.% Cu composition and decreases with an increase in the Cu wt.%. The SUS 30411 steel containing 3 wt.% Cu exhibited the least susceptibility to corrosion in the 1M NaCl solution irrespective of the number of heating cycles. The SUS 30411 steel containing 1 wt.% Cu was found to exhibit the highest susceptibility to corrosion for all heating cycles compared.
加入铜的sus304h奥氏体钢在热循环下的硬化和腐蚀行为
本研究旨在确定SUS 30411奥氏体钢的最佳Cu含量,以提高其耐热性和耐腐蚀性。将含有1、3和5 wt.% Cu的钢样品反复加热和冷却至760摄氏度,最多15次循环。测定了合金的硬度,并对其在1M NaCl溶液中的腐蚀行为进行了评价。硬度随三种组合物加热循环次数的增加而增加。然而,当Cu含量为1 wt.%时,对热循环的硬化响应较高,随着Cu含量的增加而降低。含3 wt.% Cu的SUS 30411钢在1M NaCl溶液中表现出最小的腐蚀敏感性,与加热循环次数无关。相比之下,含有1 wt.% Cu的SUS 30411钢在所有加热循环中都表现出最高的腐蚀敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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