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The influence of loading during cold shape formation on the amount of shape recovery in NiTi alloys

机译:NiTi合金冷成形过程中的载荷对形状恢复量的影响

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The long-term stability of the shape memory effect is critical for ensuring repeatability in shape memory alloy (SMA) based actuation devices. It is well known that the degradation in shape recoverability originates mainly from the generation of a permanent strain and its accumulation over repeated cyclical operations. Such strains should be minimized and the recoverable strain maximized. This requires a detailed understanding of the deformation behaviour of SMAs under loading, heating and cooling. This study investigates how the application of loading under different representative heating and cooling paths between martensite and austenite ( loading paths) influences the deformation behaviour and the amount of shape memory achievable in a NiTi SMA. The deformation behaviour differs, depending on the magnitude of the applied load and especially the material phase of SMA under which the external load is applied. During the formation of martensite upon cooling, deformation occurs with great ease and much larger recoverable strains at the same level of external loading are achieved than in full martensite and austenite, while during the heating process for reverse transformation, even a small deformation arising from the formation of stress induced martensite is liable to introduce a permanent strain. A detailed analysis and an interpretation of these phenomena are presented.
机译:形状记忆效应的长期稳定性对于确保基于形状记忆合金(SMA)的驱动装置的可重复性至关重要。众所周知,形状恢复性的降低主要源于永久应变的产生及其在重复循环操作中的积累。这种应变应最小化,可恢复应变应最大化。这需要详细了解SMA在负载,加热和冷却下的变形行为。本研究调查了在马氏体和奥氏体之间不同的代表性加热和冷却路径(加载路径)下施加的载荷如何影响NiTi SMA中的变形行为和可达到的形状记忆量。变形行为会有所不同,具体取决于所施加载荷的大小,尤其是在施加外部载​​荷的SMA的材料相中。在冷却过程中形成马氏体的过程中,变形很容易发生,并且在相同的外部载荷水平下,与完全马氏体和奥氏体相比,获得了更大的可恢复应变,而在进行逆相变的加热过程中,即使是马氏体和奥氏体,也产生了很小的变形。应力诱发马氏体的形成易于引入永久应变。提供了对这些现象的详细分析和解释。

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