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Hydrogen effect on the cavitation erosion resistance of AISI 316L stainless steel laser surface-modified with NiTi

机译:氢对NiTi表面改性的AISI 316L不锈钢激光的抗空蚀性的影响

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摘要

AISI 316L stainless steel was laser surface-modified with NiTi for improving cavitation erosion resistance as reported in a previous study. The present study aimed at investigating the effect of hydrogen charging on the cavitation erosion resistance of the NiTi-modified layer, in comparison with 316L substrate and bulk NiTi plate. To compare the hydrogen effect, the three types of samples were subjected to the same electrolytic charging intensity. The change in surface morphology and in the phases present was studied by scanning-electron microscopy and X-ray diffractometry. The indentation properties were studied using Vickers microhardness test and nanoindentation test. Cavitation erosion test indicated that hydrogenation resulted in different degrees of decrease in erosion resistance in all the three types of samples, which could be attributed to different mechanisms. For 316L, the hydrogen effect was mild, congruent with the small change in indentation properties. For NiTi-modified 316L, the decrease in resistance was due to a drop in hardness and elasticity, while for bulk NiTi, the decrease was mainly attributable to the formation of hydrides leading to the presence of surface cracks.
机译:如先前研究中所述,AISI 316L不锈钢经NiTi激光表面改性,以提高抗气蚀性。本研究旨在研究与316L衬底和块状NiTi板相比,充氢对NiTi改性层抗气蚀性的影响。为了比较氢效应,对三种类型的样品施加相同的电解充电强度。通过扫描电子显微镜和X射线衍射法研究了表面形态和相的变化。使用维氏显微硬度测试和纳米压痕测试研究压痕性质。空化腐蚀试验表明,氢化导致三种类型样品的耐蚀性都有不同程度的下降,这可能归因于不同的机理。对于316L,氢效应是温和的,与压痕特性的微小变化一致。对于NiTi改性316L,电阻降低是由于硬度和弹性下降,而对于整体NiTi,该下降主要归因于氢化物的形成导致表面裂纹的存在。

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