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Recovery stress formation in FeMnSi based shape memory alloys: Impact of precipitates, texture and grain size

机译:FeMnSi基形状记忆合金中恢复应力的形成:沉淀,织构和晶粒尺寸的影响

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摘要

FeMnSi based shape memory alloys are considered for engineering applications such as prestressing of concrete or coupling devices. For this, a high recovery stress is desired which forms when the FeMnSi alloy is first elongated and then heated above the austenite transformation temperature under mechanical constraints. In this work, we study the impact of three different microstructural properties on the recovery stress of Fe17Mn5Si10Cr4Ni1(V,C) shape memory alloys: Precipitates, texture and grain size. Precipitates allowed varying the recovery stress in a broad range between 255 MPa and 564 MPa. A recovery stress of 564 MPa was achieved by a combination of a high materials yield strength sigma(0.1) of 536 MPa and a shape recovery of 14%. The [001] grain orientation with a low Schmid factor has a beneficial impact on the recovery stress due to a higher yield strength when compared with the [011] orientation. A decrease of the grain size caused a Hall-Petch strengthening but had no influence on the recovery stress. However the pseudo-elasticity increased for a decrease of grain size. (C) 2017 Elsevier Ltd. All rights reserved.
机译:考虑将FeMnSi基形状记忆合金用于工程应用,例如混凝土或连接装置的预应力。为此,当首先拉伸FeMnSi合金然后在机械约束下加热到奥氏体转变温度以上时,需要形成高恢复应力。在这项工作中,我们研究了三种不同的显微组织性能对Fe17Mn5Si10Cr4Ni1(V,C)形状记忆合金的恢复应力的影响:析出物,织构和晶粒尺寸。沉淀物使恢复应力在255 MPa和564 MPa之间的较宽范围内变化。通过将536 MPa的高材料屈服强度sigma(0.1)与14%的形状恢复相结合,可以实现564 MPa的恢复应力。与[011]取向相比,由于具有较高的屈服强度,具有低Schmid因子的[001]晶粒取向对恢复应力具有有益的影响。晶粒尺寸的减小引起霍尔-帕奇强化,但对恢复应力没有影响。然而,伪弹性增加以减小晶粒尺寸。 (C)2017 Elsevier Ltd.保留所有权利。

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