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Magnetic properties of single crystalline expanded austenite obtained by plasma nitriding of austenitic stainless steel single crystals

机译:通过奥氏体不锈钢单晶的等离子氮化获得的单晶膨胀奥氏体的磁性

摘要

Ferromagnetic single crystalline [100], [110], and [111]-oriented expanded austenite is obtained by plasma nitriding of paramagnetic 316L austenitic stainless steel single crystals at either 300 or 400 C. After nitriding at 400 C, the [100] direction appears to constitute the magnetic easy axis due to the interplay between a large lattice expansion and the expected decomposition of the expanded austenite, which results in Fe- and Ni-enriched areas. However, a complex combination of uniaxial (i.e., twofold) and biaxial (i.e., fourfold) in-plane magnetic anisotropies is encountered. It is suggested that the former is related to residual stress-induced effects while the latter is associated to the in-plane projections of the cubic lattice symmetry. Increasing the processing temperature strengthens the biaxial in-plane anisotropy in detriment of the uniaxial contribution, in agreement with a more homogeneous structure of expanded austenite with lower residual stresses. In contrast to polycrystalline expanded austenite, single crystalline expanded austenite exhibits its magnetic easy axes along basic directions. © 2013 American Chemical Society.
机译:铁磁单晶[100],[110]和[111]取向的膨胀奥氏体是通过在300或400 C下对顺磁性316L奥氏体不锈钢单晶进行等离子体氮化而获得的。在400 C氮化后,[100]方向由于大的晶格膨胀与膨胀奥氏体的预期分解之间的相互作用,似乎构成了易磁化轴,从而导致了铁和镍的富集区域。但是,遇到了单轴(即两倍)和双轴(即四倍)面内磁各向异性的复杂组合。建议前者与残余应力引起的效应有关,而后者与立方晶格对称性的平面内投影有关。升高加工温度会增强双轴面内各向异性,从而损害单轴作用,这与具有较低残余应力的膨胀奥氏体结构更为均匀一致。与多晶膨胀奥氏体相反,单晶膨胀奥氏体表现出沿基本方向的易磁化轴。 ©2013美国化学学会。

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