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Effect of nano Al2O3 addition on mechanical properties and wear behavior of NiTi intermetallic SCIE SCOPUS

Title
Effect of nano Al2O3 addition on mechanical properties and wear behavior of NiTi intermetallic
Authors
Farvizi, MEbadzadeh, TVaezi, MRKim, HSSimchi, A
Date Issued
2013-10
Publisher
ELSEVIER SCI LTD
Abstract
It has been found that the high wear resistance of NiTi alloy is mainly attributed to its pseudoelasticity which is only effective within a small temperature range. It is believed that pseudoelasticity becomes ineffective by applying high-load wear condition which yields plastic deformation and temperature increment during wear test. Therefore, the enhanced wear resistance can be obtained from the improvement of mechanical property of the alloy without much reduction of pseudoelasticity. In this study, a low weight percentage of hard Al2O3 nanoparticles were added to NiTi atomized powders. The resultant powder mixture was homogenized by ball milling and sintered in a vacuum furnace in order to improve the wear property of the composite in comparison with the NiTi alloy. The results demonstrated that the addition of nanoparticles increased the stability of martensite phase. Nanoindentation test results showed that both hardness and elastic modulus were considerably increased in the composite samples in comparison with pure NiTi, while the pseudoelasticity was not significantly reduced. The worn surfaces were investigated using a scanning electron microscope equipped with energy dispersive X-ray. The wear test results confirmed the improved wear performance of NiTi matrix after the addition of nanoparticles under both low and high loads can be mainly attributed to superior mechanical properties combined with pseudoelasticity effect of the composite samples. (c) 2013 Elsevier Ltd. All rights reserved.
Keywords
NiTi; Nano Al2O3; Phase stability; Nanoindentation; Wear; PSEUDOELASTIC TINI ALLOY; RESISTANT MATERIAL; COMPOSITES; TRANSFORMATION
URI
https://oasis.postech.ac.kr/handle/2014.oak/14565
DOI
10.1016/J.MATDES.2013.03.099
ISSN
0261-3069
Article Type
Article
Citation
MATERIALS & DESIGN, vol. 51, page. 375 - 382, 2013-10
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김형섭KIM, HYOUNG SEOP
Ferrous & Eco Materials Technology
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