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Influence of quenching methods on martensitic transformation and mechanical properties of P/M processed Cu-Al-Ni-Ti shape memory alloys

机译:淬火方法对P / M加工Cu-Al-Ni-Ti形状记忆合金马氏体转化和力学性能的影响

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摘要

The effect of quenching conditions on phase transformation characteristics and microstructural features of Cu-Al-Ni-Ti shape memory alloys (SMAs) have been studied. The alloys were synthesised via conventional powder metallurgy process using elemental metal powders. Four different quenching techniques, such as (a) two-step quenching, first to 100 degrees C and then to 0 degrees C; (b) two-step quenching, initially to 40 degrees C and later to 0 degrees C; (c) direct quenching to 40 degrees C and (d) direct quenching to 0 degrees C, were used. The microstructural features and phase transformations that the alloys had undergone were studied using FE-SEM and XRD techniques. The martensitic phase transformation analyses were carried out by differential scanning calorimeter while the mechanical properties were studied by microhardness and flexural bending tests. The results obtained clearly indicate that the quenching routes followed have a remarkable influence on the properties of Cu-based SMAs.
机译:研究了淬火条件对Cu-Al-Ni-Ti形状记忆合金(SMA)的相变特性和微观结构特征的影响。通过使用元素金属粉末通过常规粉末冶金工艺合成合金。四种不同的淬火技术,例如(a)两步淬火,首先至100℃,然后为0℃; (b)两步淬火,最初至40℃,后来至0℃; (c)使用直接淬火至40℃和(d)直接淬火至0℃。使用Fe-SEM和XRD技术研究了合金经过的微观结构特征和相变。马氏体相变分析通过差示扫描量热计进行,同时通过微硬度和弯曲弯曲试验研究了机械性能。明确获得的结果表明淬火途径随访,对基于Cu的SMA的性质具有显着影响。

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