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首页> 外文期刊>European Journal of Dentistry >Effect of dry cryogenic treatment on Vickers hardness and wear resistance of new martensitic shape memory nickel-titanium alloy
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Effect of dry cryogenic treatment on Vickers hardness and wear resistance of new martensitic shape memory nickel-titanium alloy

机译:干式低温处理对新型马氏体形状记忆镍钛合金的维氏硬度和耐磨性的影响

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Objectives: The aim of this study is to investigate the role of dry cryogenic treatment (CT) temperature and time on the Vickers hardness and wear resistance of new martensitic shape memory (SM) nickel-titanium (NiTi) alloy. The null hypothesis tested was that there is no difference in Vickers hardness and wear resistance between SM NiTi alloys following CT under two soaking temperatures and times. Materials and Methods: The composition and the phase transformation behavior of the alloy were examined by X-ray energy dispersive spectroscopy and differential scanning calorimetry, respectively. Fifteen cylindrical specimens and 50 sheet specimens were subjected to different CT conditions: Deep cryogenic treatment (DCT) 24 group: ?185°C, 24 h; DCT six group: ?185°C, 6 h; shallow cryogenic treatment (SCT) 24 group: ?80°C, 24 h; SCT six group: ?80°C, 6 h; and control group. Wear resistance was assessed from weight loss before and after reciprocatory wet sliding wear. Results: The as-received SM NiTi alloy contained 50.8 wt% nickel and possessed austenite finish temperature (Af) of 45.76°C. Reduction in Vickers hardness of specimens in DCT 24 group was highly significant (P P Conclusion: Deep dry CT with 24 h soaking period significantly reduces the hardness and wear resistance of SM NiTi alloy.
机译:目的:本研究的目的是研究干式低温处理(CT)温度和时间对新型马氏体形状记忆(SM)镍钛(NiTi)合金的维氏硬度和耐磨性的作用。检验的原假设是,在两个均热温度和时间下,CT后SM NiTi合金之间的维氏硬度和耐磨性没有差异。材料和方法:分别通过X射线能量色散光谱法和差示扫描量热法检查了合金的组成和相变行为。 15个圆柱状样品和50个片状样品经受了不同的CT条件:深低温处理(DCT)24组:?185°C,24 h; DCT六组:185°C,6 h;浅低温处理(SCT)24组:?80°C,24 h; SCT六组:≥80°C,6 h;和对照组。通过往复式湿滑磨损前后的重量减轻来评估耐磨性。结果:所接收的SM NiTi合金含有50.8 wt%的镍,奥氏体终点温度(A )为45.76℃。 DCT 24组的试样维氏硬度降低非常显着(P P结论:浸泡24 h的深干CT显着降低了SM NiTi合金的硬度和耐磨性。

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