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Design of Devices and Manufacturing of Fe-Mn-Si Shape Memory Alloy Couplings

机译:Fe-Mn-Si形状记忆合金联轴器的装置和制造设计

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We have studied an Fe-15Mn-5Si-9Cr-5Ni (wt.%) shape memory alloy produced by casting in sand moulds. After processing by rolling at 800° C followed by annealing at 650° C, the structure contains a high density of stacking faults and high strength austenite. When a stress is applied to the material, a reversible martensitic transformation activates before the austenite deforms plastically. Under these conditions, the material recovers about 95% of a 3% permanent deformation. The mechanical properties were measured by tensile tests, giving a yield strength of 350 MPa, an ultimate strength of 880 MPa and 16% total elongation to fracture. Furthermore, the alloy has good weldability using the GTAW method. No macro or micro defects were observed, but there is a 15% deterioration of the shape memory properties due to a heat affected (HAZ) and welded zone (WZ), as measured with bend specimens. In this work, we studied the formability of the material, finding very good performance in simple bending tests. We also present a method for manufacturing couplings by forming and welding, designing forming devices and obtaining the first prototypes. Finally, we evaluated the shape memory properties of the manufactured couplings, finding 83% recovery of a 3.6% diameter expansion. This amount of recovery is suitable for various industrial applications.
机译:我们研究了通过在砂模中铸造生产的Fe-15mn-5si-9cr-5ni(wt.%)形状记忆合金。通过在800℃下轧制后进行处理后,在650℃下退火,该结构含有高密度的堆叠故障和高强度奥氏体。当应力施加到材料上时,可逆的马氏体转化在奥氏体塑造之前激活。在这些条件下,该材料恢复约95%的永久变形的约95%。通过拉伸试验测量机械性能,从而产生350MPa的屈服强度,最终强度为880MPa和16%的裂缝总伸长率。此外,合金使用GTAW方法具有良好的可焊性。没有观察到宏或微缺陷,但由于用弯曲标本测量,由于热影响(HAZ)和焊接区域(WZ),形状记忆性能的劣化15%劣化。在这项工作中,我们研究了材料的可成形性,在简单的弯曲测试中找到了很好的性能。我们还通过形成和焊接,设计成型装置并获得第一原型来介绍一种用于制造联轴器的方法。最后,我们评估了制造耦合的形状记忆性能,发现了83%的直径膨胀率恢复。此恢复量适用于各种工业应用。

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