Structural and thermodynamical study of Cu-Zn-Al shape memory alloys with new compositions produced by hot isostatic press (HIP)

O. Karaduman, C. Canbay, N. Ünlü, İ. Özkul
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引用次数: 2

Abstract

Hot isostatic press (HIP) is an advanced kind of powder metallurgy production technique which prevents vaporization loss of alloying elements with low melting points during melting. In this work, ternary Cu-Zn-Al shape memory alloys (SMAs) withnew chemical compositions were fabricated by using hot isostatic pressing technique,then the obtained alloys were homogenized at 900 °C and quenched in iced-brine water to surpass the formation of hypo-eutectoid precipitations and lead to the formation of β’1 martensite phase in the alloy. Then the small specimens of the alloy were undergone through thermal and structural measurements. The thermograms obtained from differential thermal analysis measurements of the alloy by DTA instrument demonstrated the characteristic hysteresis curves and peaks of martensitic phase transformations which indicated the shape memory effect (SME) property exists in the alloy. The start and finish temperatures of phase transitions and some other thermodynamical parameters were determined by using the data of these thermal measurements. The structural XRD analysis made in room conditions showed the patterns of martensitic structures. The average crystallite size of the alloys were computed by using XRD data. The valence electron concentration (VEC) value of the alloys were also calculated, since it is a pre-conditional and hypothetical sign of having SME property. Furthermore, the effect of HIP production technique on these new Cu-Zn-Al SMAs was discussed.Hot isostatic press (HIP) is an advanced kind of powder metallurgy production technique which prevents vaporization loss of alloying elements with low melting points during melting. In this work, ternary Cu-Zn-Al shape memory alloys (SMAs) withnew chemical compositions were fabricated by using hot isostatic pressing technique,then the obtained alloys were homogenized at 900 °C and quenched in iced-brine water to surpass the formation of hypo-eutectoid precipitations and lead to the formation of β’1 martensite phase in the alloy. Then the small specimens of the alloy were undergone through thermal and structural measurements. The thermograms obtained from differential thermal analysis measurements of the alloy by DTA instrument demonstrated the characteristic hysteresis curves and peaks of martensitic phase transformations which indicated the shape memory effect (SME) property exists in the alloy. The start and finish temperatures of phase transitions and some other thermodynamical parameters were determin...
热等静压新成分Cu-Zn-Al形状记忆合金的结构与热力学研究
热等静压(HIP)是一种先进的粉末冶金生产技术,可以防止低熔点合金元素在熔化过程中蒸发损失。本文采用热等静压技术制备了具有新化学成分的Cu-Zn-Al三元形状记忆合金(SMAs),然后在900℃下均质,在冰盐水中淬火,使合金中不形成亚共析析出,形成β′1马氏体相。然后对合金的小试样进行了热学和结构测量。差热分析仪测得的热像图显示出马氏体相变的特征迟滞曲线和峰,表明合金具有形状记忆效应。利用这些热测量数据确定了相变的开始温度和结束温度以及其他一些热力学参数。在室温条件下进行的结构XRD分析显示其为马氏体结构。利用XRD数据计算了合金的平均晶粒尺寸。计算了合金的价电子浓度(VEC)值,因为它是合金具有SME性质的先决条件和假设标志。进一步讨论了HIP生产工艺对新型Cu-Zn-Al sma的影响。热等静压(HIP)是一种先进的粉末冶金生产技术,可以防止低熔点合金元素在熔化过程中蒸发损失。本文采用热等静压技术制备了具有新化学成分的Cu-Zn-Al三元形状记忆合金(SMAs),然后在900℃下均质,在冰盐水中淬火,使合金中不形成亚共析析出,形成β′1马氏体相。然后对合金的小试样进行了热学和结构测量。差热分析仪测得的热像图显示出马氏体相变的特征迟滞曲线和峰,表明合金具有形状记忆效应。测定了相变的起始温度和结束温度及其它热力学参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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