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Investigation of thermodynamic and microstructural characteristics of NiTiCu shape memory alloys produced by arc-melting method

机译:弧形熔化法生产的NINGU形状记忆合金热力学和微观结构特性的研究

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摘要

Ni50-xTi50Cux (at.%) x=14,17,20) shape memory alloys were produced using the arc-melting technique. The replacing Cu element into Ti-rich NiTi alloy has been investigated through characterization techniques, including differential scanning calorimetry (DSC), X-ray diffraction (XRD), optical and SEM microscopy. Additionally, various phases and precipitations were determined using EDS measurement. The manufactured alloys showed a single-step austenite <-> martensite phase transformation (B2 <-> B19 ). The DSC results showed that the samples have comparable high-temperature hysteresis in the range of about (30-50 K). The main detected XRD peaks are the monoclinic martensite phase with cubic austenite phases, which their intensities were decreased by increasing copper addition into the alloy. The microhardness results revealed that the second phase of the alloys has higher hardness compared to the matrix phase. It was concluded that NiTiCu can be used in low-temperature shape memory alloys as they illustrate transformation temperature below 100 degrees C
机译:使用电弧熔化技术生产Ni50-Xti50cux(at。%)x = 14,17,20)形状记忆合金。通过表征技术研究了将Cu元素替代为富含Ti的NITI合金,包括差示扫描量热法(DSC),X射线衍射(XRD),光学和SEM显微镜。另外,使用EDS测量测定各种相和沉淀。制造的合金显示出单步奥氏体< - >马氏体相变(B2 < - > B19)。 DSC结果表明,样品在约(30-50k)的范围内具有相当的高温滞后。主要检测到的XRD峰是具有立方奥氏体阶段的单斜马氏体相,通过将铜添加到合金中,其强度降低。微硬度结果表明,与基质相相比,合金的第二阶段具有较高的硬度。得出结论,NINICU可以用于低温形状记忆合金,因为它们说明了低于100摄氏度的变换温度

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