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首页> 外文期刊>Journal of Materials Engineering and Performance >Optimization of Fe-15Mn-5Si-9Cr-5Ni Shape Memory Alloy for Pipe and Shaft Couplings
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Optimization of Fe-15Mn-5Si-9Cr-5Ni Shape Memory Alloy for Pipe and Shaft Couplings

机译:用于管轴联轴器的Fe-15Mn-5Si-9Cr-5Ni形状记忆合金的优化

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摘要

We investigated whether Fe-Mn-Si shape memory alloys could be manufactured into machine parts and devices, in particular pipe and shaft couplings. Accounting for the optimal parameters affecting shape memory properties, i.e., the chemical composition, the amount of processing deformation, the annealing temperature, and the correlation between the reversibility of the martensitic transformation and the conditions of the microstructure (particularly the role of crystal defects), we found that maximum recovery in a Fe-15Mn-5Si-9Cr-5Ni alloy is achieved by rolling at 800℃ followed by annealing at 650℃. Furthermore, we investigated certain properties that establish technological feasibility limits to industrial production, including alloy weldability and mechanical response. Bending and tensile specimen tests determinate the expected behavior of parts joined by welding. We also developed an original process to produce the couplings. The degree of shape recovery of the couplings manufactured by this method depends on the annealing temperature after welding. The couplings annealed at 800℃ recovered 83% of a 3.6% permanent diametrical expansion.
机译:我们研究了是否可以将Fe-Mn-Si形状记忆合金制造成机器零件和设备,特别是管和轴联轴器。考虑影响形状记忆性能的最佳参数,即化学成分,加工变形量,退火温度以及马氏体相变的可逆性与微观结构条件(尤其是晶体缺陷的作用)之间的相关性,我们发现,通过在800℃轧制然后在650℃退火,可以实现Fe-15Mn-5Si-9Cr-5Ni合金的最大回收率。此外,我们调查了某些特性,这些特性为工业生产确立了技术可行性极限,包括合金的可焊性和机械响应。弯曲和拉伸试样测试确定了通过焊接连接的零件的预期性能。我们还开发了一种原始工艺来生产联轴器。通过这种方法制造的联轴器的形状恢复程度取决于焊接后的退火温度。在800℃退火的联轴器恢复了3.6%永久直径膨胀的83%。

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