首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Mechanical and fatigue properties of Cu - Al - Mn shape memory alloys with influence of mechanical cycling on amplitude dependence of internal friction at room temperature
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Mechanical and fatigue properties of Cu - Al - Mn shape memory alloys with influence of mechanical cycling on amplitude dependence of internal friction at room temperature

机译:Cu-Al-Mn形状记忆合金的力学和疲劳性能,以及机械循环对室温内摩擦振幅依赖性的影响。

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摘要

The mechanical and fatigue properties of Cu - Al - Mn shape memory alloys with different phase fractions at room temperature were investigated. The specimens with different chemical compositions (Al: 8.9 - 12.5 wt. % and Mn: 3.3 - 9.3 wt. %) were tensile loaded with 10~(-3)s~(-1) tensile strain rate. Austenitic specimens have the highest tensile strength and fracture strain. Yield strength, tensile strength and elongation of martensitic alloys were lower compared with austenitic alloys. Fracture strain of martensitic alloys depend only little on the chemical composition. Specimens of martensitic, austenitic and three different multiple phase specimens were tested in the high cycle fatigue range at room temperature. The Woehler curves for multiple specimens depend on the phase fraction at testing temperatures. Different elements as Co, Ni, Fe and Si were alloyed to CuAl11.6Mn5. All decreased the ductility of the specimens, and their fatigue properties.Maxima could be detected in the strain amplitude dependence of damping for multiple phase specimen. These maximum are shifted to lower damping and to higher strains with increasing number of mechanical cycles, compared to the as cast condition for not cycled specimen. The strain amplitude dependence of damping in martensitic and austenitic Cu - Al - Mn shape memory alloys does not change much during mechanical cycling.
机译:研究了不同相分数的Cu-Al-Mn形状记忆合金在室温下的力学性能和疲劳性能。以10〜(-3)s〜(-1)的拉伸应变率对具有不同化学成分(Al:8.9-12.5 wt。%和Mn:3.3-9.3 wt。%)的样品进行拉伸加载。奥氏体试样具有最高的拉伸强度和断裂应变。与奥氏体合金相比,马氏体合金的屈服强度,拉伸强度和伸长率较低。马氏体合金的断裂应变仅取决于化学组成。在室温下的高循环疲劳范围内测试了马氏体,奥氏体和三个不同的多相试样。多个样品的Woehler曲线取决于测试温度下的相分数。 Co,Ni,Fe和Si等不同元素与CuAl11.6Mn5形成合金。所有这些都降低了试样的延展性,并降低了它们的疲劳性能。在多相试样的阻尼应变振幅相关性中可以检测到最大值。与未循环试样的铸造状态相比,随着机械循环次数的增加,这些最大值移至较低的阻尼和较高的应变。马氏体和奥氏体Cu-Al-Mn形状记忆合金中阻尼的应变幅度相关性在机械循环过程中变化不大。

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