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Corrosion behavior of AISI 316L stainless steel surface-modified with NiTi

机译:NiTi表面改性的AISI 316L不锈钢的腐蚀行为

摘要

AISI 316L stainless steel was surface-modified with NiTi using three different methods: (1) laser surface alloying using NiTi powder (LSA-NiTi-powder), (2) laser cladding using NiTi strips (LC-NiTi-strip), and (3) microwave-assisted brazing using NiTi plates (MB-NiTi-plate). These methods are capable of bringing significant improvement in the cavitation erosion resistance as reported elsewhere. The present work aims at studying the corrosion behaviors of these surface-modified stainless steel samples in 3.5% NaCl solution. Cyclic polarization tests reveal that the pitting potentials of the laser-treated samples are comparable to that of the AISI 316L substrate, but the protection potentials and the corrosion potentials are somewhat lower. On the other hand, the corrosion behavior of the brazed sample is similar to that of as-received NiTi, which does not show pitting up to potentials exceeding 1500 mV. Galvanic tests of couples with AISI 316L as one member and the surface-modified sample as the other member show only a small galvanic current density in all the three cases. The ratio of the average galvanic current density to the corrosion current density of the uncoupled anodic member is small (not exceeding 4 in all cases), indicating good compatibility when these techniques are used in local surface modification of AISI 316L substrate.
机译:AISI 316L不锈钢使用三种不同的方法用NiTi进行了表面改性:(1)使用NiTi粉末(LSA-NiTi-粉末)进行激光表面合金化,(2)使用NiTi条带(LC-NiTi-strip)进行激光熔覆,以及( 3)使用NiTi板(MB-NiTi板)进行微波辅助钎焊。如其他地方报道的那样,这些方法能够显着改善抗气蚀性。本工作旨在研究这些表面改性不锈钢样品在3.5%NaCl溶液中的腐蚀行为。循环极化测试表明,经激光处理的样品的点蚀电位与AISI 316L基板的点蚀电位相当,但保护电位和腐蚀电位略低。另一方面,钎焊样品的腐蚀行为与接收到的镍钛相似,在超过1500 mV的电势下不会出现点蚀。在这三种情况下,以AISI 316L作为一个成员而对表面改性的样品作为另一个成员的电偶测试表明,电流电流密度很小。未偶合阳极部件的平均电流电流密度与腐蚀电流密度之比很小(在所有情况下均不超过4),表明当这些技术用于AISI 316L基板的局部表面改性时,具有良好的兼容性。

著录项

  • 作者

    Chiu KY; Cheng FT; Man HC;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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