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New developments in actuator materials as reflected in magnetically controlled shape memory alloys and high-strength shape memory steels

机译:磁控形状记忆合金中反映的致动器材料的新开发和高强度形状记忆钢

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Shape memory alloys (SMA) are applied as actuator materials in smart structures and in fastening and pre-stressing devices. Shape memory alloys can be divided into three groups: one-way alloys, two-way alloys and magnetically controlled SMAs. The magnetically controlled SMAs recently suggested by one of the present authors are potential actuator materials for smart structures because they may provide rapid strokes with large amplitudes under precise control. The most extensively applied conventional SMAs are Ni-Ti and Cu- based alloys. Iron-based shape memory alloys, especially Fe-Mn-Si steels, are becoming more and more important in engineering applications due to their low price. The properties of Fe-Mn-Si steels have been improved by alloying, for example, with Cr, Ni and Co. Nitrogen alloying was shown to significantly improve shape memory, mechanical and corrosion properties of Fe-Mn-Si-based steels. Tensile strengths over 1500 MPa, recovery stresses of 300 MPa and recoverable strains of 4% have been attained. In fasteners made from these steels, stresses of 700 MPa were reached. The beneficial effect of nitrogen alloying on shape memory and mechanical properties is based on the decrease of stacking fault energy and increase of the strength of austenite caused by nitrogen atoms. Nitrogen alloyed Fe-Mn-Si- based steels are expected to be employed as actuator materials in pre-stressing and fastening applications in many fields of engineering. Nitrogen alloyed shape memory steels possess good manufacturing properties and weldability, and they are economical to process using conventional industrial methods.
机译:形状记忆合金(SMA)施加为智能结构的致动器材料和紧固和预应力装置。形状记忆合金可分为三组:单向合金,双向合金和磁控制的SMA。最近由本作者之一建议的磁控SMA是用于智能结构的潜在执行器材料,因为它们可以在精确控制下提供具有大幅度的快速冲程。最广泛应用的常规SMA是Ni-Ti和Cu基合金。由于价格低廉,铁基形状记忆合金,尤其是Fe-Mn-Si钢,在工程应用中变得越来越重要。的Fe-Mn-Si系钢的性能进行了合金化,例如,含Cr,Ni和Co的合金化氮改善显示出显著提高-Fe基锰的Si钢的形状记忆,机械和腐蚀特性。抗拉强度超过1500MPa,恢复应力为300MPa和4%的可恢复菌株。在由这些钢制成的紧固件中,达到700MPa的应力。氮合金化对形状记忆和机械性能的有益效果基于堆叠故障能量的降低以及由氮原子引起的奥氏体强度的增加。预期氮合金化Fe-Mn-Si基钢预计在许多工程领域采用致动器材料,在预应力和紧固应用中。氮合金形状记忆钢具有良好的制造性能和可焊性,并且通过传统的工业方法可以经济地处理。

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