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首页> 外文期刊>Lasers in Manufacturing and Materials Processing >Effects of Composition and Post Heat Treatment on Shape Memory Characteristics and Mechanical Properties for Laser Direct Deposited Nitinol
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Effects of Composition and Post Heat Treatment on Shape Memory Characteristics and Mechanical Properties for Laser Direct Deposited Nitinol

机译:成分和后热处理对激光直接沉积镍钛诺的形状记忆特性和力学性能的影响

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摘要

Nitinol structures were synthesized in a fully dense form using a laser direct deposition method. The pure elemental metal powders of nickel and titanium were used and powder ratios were controlled to arrive at the prescribed final chemical compositions of Nitinol. The transformation temperatures of synthesized Nitinol samples with different chemical composition and post heat treatment conditions were systematically analyzed and compared with those of conventional Nitinol. Compared to Nitinol parts produced by other techniques, the laser engineered net shaping (LENS) created the least amount of secondary phase, indicating the possibility of high corrosion resistance. Two step post processing of solution heat treatment and aging heat treatment was carried out to improve the homogeneity of the microstructure and to investigate its effects on phase transformation temperatures. The resultant phase transformation temperatures could be controlled by the heat treatment parameters. Compression test results showed mechanical properties of synthesized Nitinol samples are largely affected by its post heat treatment history while the effect of initial chemical composition was negligible.
机译:使用激光直接沉积法以完全致密的形式合成了镍钛诺结构。使用镍和钛的纯元素金属粉末,并控制粉末比例以达到规定的镍钛诺最终化学组成。系统分析了不同化学成分和后热处理条件的合成镍钛诺样品的转变温度,并与常规镍钛诺进行了比较。与其他技术生产的镍钛诺零件相比,激光工程网成形(LENS)产生的次级相数量最少,这表明可能具有较高的耐腐蚀性。进行了固溶热处理和时效热处理的两步后处理,以改善微观结构的均匀性并研究其对相变温度的影响。最终的相变温度可以通过热处理参数来控制。压缩测试结果表明,合成镍钛诺样品的机械性能在很大程度上受其后热处理历史的影响,而初始化学成分的影响可忽略不计。

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