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首页> 外文期刊>The Physics of Metals and Metallography >Structure and phase transformations in copper-alloyed rapidly melt-quenched Ni50Ti32Hf18-based alloys with high-temperature shape memory effect
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Structure and phase transformations in copper-alloyed rapidly melt-quenched Ni50Ti32Hf18-based alloys with high-temperature shape memory effect

机译:具有高温形状记忆效应的铜合金型快速熔融淬火的Ni50Ti32HF18基合金的结构和相变

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摘要

Methods of transmission and scanning electron microscopy, chemical microanalysis, electron diffraction, and X-ray diffraction have been used to carry out the comparative study of the structure and chemical and phase composition of thin ribbons of four quasi-binary alloys (Ni50Ti32Hf18, Ni45Ti32Hf18Cu5, Ni35Ti32Hf18Cu15, and Ni25Ti32Hf18Cu25) obtained in the amorphous state by rapid quenching from the melt by jet spinning. The critical temperatures of the devitrification and B2 a <-> B19' martensitic transformation of the alloys have been determined based on the data of temperature dependences of the electrical resistivity. The specific features of the formation of the ultrafine-grained structure upon the devitrification and of the phase transformations have been studied depending on the heat-treatment regimes and chemical composition of the alloys (concentration of copper atoms).
机译:传输和扫描电子显微镜,化学微分析,电子衍射和X射线衍射的方法用于进行四种准二元合金的薄带的结构和化学和相组成的比较研究(Ni50Ti32HF18,Ni45Ti32HF18Cu5, Ni35Ti32HF18Cu15和Ni25Ti32HF18Cu25通过喷射纺丝从熔体快速淬火获得的非晶态。 基于电阻率的温度依赖性的数据确定了透透和B2的临界温度和B2 A < - > B19'马氏体转化。 根据合金的热处理制度和化学组成(铜原子浓度),研究了在缺失和相变的透透和相变的特定特征。

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