首页> 外文会议>第五届先进材料与加工国际会议(Fifth International Conference on Advanced Materials and Processing ICAMP-5)论文集 >INVESTIGATION ON MARTENSITIC TRANSFORMATION AND MECHANICAL PROPERTIES OF THE Ni50Mn37-xSn1.3Fex(x=0, 2,5,10) ALLOYS
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INVESTIGATION ON MARTENSITIC TRANSFORMATION AND MECHANICAL PROPERTIES OF THE Ni50Mn37-xSn1.3Fex(x=0, 2,5,10) ALLOYS

机译:Ni50Mn37-xSn1.3Fex(x = 0,2,5,10)合金的马氏体相变和力学性能的研究

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摘要

The microstructures, martensitic transformation behavior and mechanical properties of Fe-doped Ni-Mn-Sn ferromagnetic shape memory alloys are investigated. The influence of composition on the precipitation of second phase and the improvement of ductility are also explained in this paper. The results show that the phase transformations of Ni-Mn-Sn-Fe alloys are still one-step thermo-elastic transformation. The transformation temperatures increase with the increase of Fe content, and the hysteresis decreases after being doped Fe element, this is mainly due to the difference of atom size and the precipitation of second phase. After homogeneously annealing at 1123K for 12h, the Ni50Mn35Sn13Fe2 alloy becomes single phase due to the solid solubility of Fe. The breaking strength and maximum compressive strain increase with the increase of doped Fe content due to the solid solution strengthening and second phase strengthening. The fracture of the Ni-Mn-Sn alloy is intergranular crack, and becomes transgranular crack after doping Fe element. The ductility is improved by this means, which is in favour of the application of the Ni-Mn-Sn alloys.
机译:研究了掺铁的Ni-Mn-Sn铁磁形状记忆合金的显微组织,马氏体转变行为和力学性能。本文还解释了成分对第二相沉淀和延展性提高的影响。结果表明,Ni-Mn-Sn-Fe合金的相变仍然是一步热弹性转变。随着Fe含量的增加,相变温度升高,掺杂Fe元素后磁滞降低,这主要是由于原子尺寸的不同和第二相的析出所致。在1123K下均匀退火12h后,由于Fe的固溶性,Ni50Mn35Sn13Fe2合金变成单相。由于固溶强化和第二相强化,随着Fe含量的增加,断裂强度和最大压缩应变也随之增加。 Ni-Mn-Sn合金的断裂为晶间裂纹,掺杂Fe元素后为横晶裂纹。通过这种方式改善了延展性,这有利于Ni-Mn-Sn合金的应用。

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