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Effects of aging treatment on the microstructure and superelasticity of columnar-grained Cu71Al18Mn11 shape memory alloy

机译:时效处理对柱状Cu71Al18Mn11形状记忆合金组织和超弹性的影响

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摘要

The effect of aging treatment on the superelasticity and martensitic transformation critical stress in columnar-grained Cu71Al18Mn11 shape memory alloy (SMA) at the temperature ranging from 250A degrees C to 400A degrees C was investigated. The microstructure evolution during the aging treatment was characterized by optical microscopy, scanning electron microscopy, transmission electron microscopy, and X-ray diffraction. The results show that the plate-like bainite precipitates distribute homogeneously within austenitic grains and at grain boundaries. The volume fraction of bainite increases with the increase in aging temperature and aging time, which substantially improves the martensitic transformation critical stress of the alloy, whereas the bainite only slightly affects the superelasticity. This behavior is attributed to a coherent relationship between the bainite and the austenite, as well as to the bainite and the martensite exhibiting the same crystal structure. The variations of the martensitic transformation critical stress and the superelasticity of columnar-grained Cu71Al18Mn11 SMA with aging temperature and aging time are described by the Austin-Rickett equation, where the activation energy of bainite precipitation is 77.2 kJ center dot mol(-1). Finally, a columnar-grained Cu71Al18Mn11 SMA with both excellent superelasticity (5%-9%) and high martensitic transformation critical stress (443-677 MPa) is obtained through the application of the appropriate aging treatments.
机译:研究了时效处理对柱状晶粒Cu71Al18Mn11形状记忆合金(SMA)在250A至400A的温度范围内的超弹性和马氏体转变临界应力的影响。通过光学显微镜,扫描电子显微镜,透射电子显微镜和X射线衍射来表征时效处理期间的微观结构演变。结果表明,板状贝氏体沉淀物在奥氏体晶粒内和晶界均匀分布。贝氏体的体积分数随时效温度和时效时间的增加而增加,从而显着改善了合金的马氏体转变临界应力,而贝氏体仅略微影响了超弹性。这种行为归因于贝氏体和奥氏体之间的相干关系,以及表现出相同晶体结构的贝氏体和马氏体。用Austin-Rickett方程描述了马氏体转变临界应力和柱状晶粒Cu71Al18Mn11 SMA的超弹性随时效温度和时效的变化,贝氏体沉淀的活化能为77.2 kJ中心点mol(-1)。最后,通过进行适当的时效处理,获得了既具有出色的超弹性(5%-9%)又具有高马氏体转变临界应力(443-677 MPa)的圆柱状Cu71Al18Mn11 SMA。

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