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Effects of High Magnetic Field and Tensile Stress on Martensitic Transformation Behavior and Microstructure at 4.2 K in Fe-Ni-C Alloys

机译:高磁场和拉伸应力对Fe-Ni-C合金在4.2 K下马氏体相变行为和组织的影响

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摘要

Effects of high magnetic field and tensile stress on martensitic transformation behavior and microstructure at 4.2 K have been studied in Fe-31Ni-0.4C and Fe-27Ni-0.8C (wt%) shape memory alloys. In order to make clear the difference of the effects of high magnetic field and tensile stress on the amount of martensite, two types of experiments were conducted, that is, the magentic field of 10 T was applied first and then the tensile stress of 220 MPa was applied in constant magnetic field in one type of experiment and the tensile stress of 220 MPa was applied first and then the magnetic field of 10 T was applied under constant tensile stress in the other type if experiment. The amount of martensite formed in these two experiments were compared. It was found that the critical magnetic field to induce martensitic transformation is between 7.5 T and 10 T. In the case of Fe-27Ni-0.8C, martensitic transformation is stress-induced at lower level of stress in magnetic field than in the case no magnetic field is applied. The amount of martensite formed by increasing the magnetic field under constant stress is larger than that formed by increasing the stress in the constant magnetic field, which shows that the effect of tensile stress on the number density of martensite is larger than that of magnetic field in this experimental condition.
机译:在Fe-31Ni-0.4C和Fe-27Ni-0.8C(wt%)形状记忆合金中,研究了高磁场和拉伸应力对4.2 K下马氏体相变行为和显微组织的影响。为了弄清楚高磁场和拉伸应力对马氏体数量的影响的区别,进行了两种类型的实验,即先施加10 T的磁场,然后施加220 MPa的拉伸应力。在一种类型的实验中,在恒定磁场中施加磁场,先施加220 MPa的拉伸应力,然后在另一种类型的实验中,在恒定的拉伸应力中施加10 T的磁场。比较了在这两个实验中形成的马氏体的量。已经发现,引起马氏体相变的临界磁场在7.5 T和10 T之间。在Fe-27Ni-0.8C的情况下,在磁场中的应力水平较低的情况下,马氏体相变是在较低的应力水平下产生的。施加磁场。在恒定应力下增加磁场形成的马氏体数量大于在恒定磁场中增加应力形成的马氏体数量,这表明拉应力对马氏体数密度的影响大于磁场强度的影响。这个实验条件。

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