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The relation between lattice parameters and very low twinning stress in Ni50Mn25+xGa25-x magnetic shape memory alloys

机译:Ni50Mn25 + xGa25-x磁性形状记忆合金的晶格参数与极低孪晶应力之间的关系

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摘要

In search of the origins of the extraordinary low twinning stress of Ni-Mn-Ga 10M martensite, we studied the temperature induced changes in lattice parameters of Ni50Mn25+xGa25-x (x = 2.7-3.9) single crystal samples and compared them with twinning stress dependences. The alloys exhibited transformation to five-layered (10M) martensite structure (cubic to monoclinic) between 297 to 328 K and exhibited the magnetic shape memory effect in martensite. The structural changes were monitored using x-ray diffraction in the temperature range 200-343 K. The 10M structure was approximated by monoclinic lattice, a = b > c, gamma > 90 degrees with the coordinates derived from the cubic unit cell of the parent L2(1) phase. The lattice parameters gamma and c/a correlate well with the universal linear increase of twinning stress of type 1 twins with decreasing temperature. On the contrary, the twinning stress is not affected by differences between a and b and thus a/b twins seem to play no role in a - c twin boundary motion resulting in magnetically induced reorientation.
机译:为了寻找Ni-Mn-Ga 10M马氏体非常低的孪晶应力的起源,我们研究了温度引起的Ni50Mn25 + xGa25-x(x = 2.7-3.9)单晶样品的晶格参数变化,并将其与孪晶进行了比较。压力依赖性。合金在297至328 K之间表现出转变为五层(10M)马氏体结构(立方到单斜晶),并且在马氏体中表现出磁性形状记忆效应。在200-343 K的温度范围内使用X射线衍射监测结构变化。10M结构由单斜晶格近似,a = b> c,γ> 90度,坐标来自母体的立方晶胞L2(1)阶段。晶格参数gamma和c / a与1型孪晶的孪晶应力随温度降低而普遍线性增加具有很好的相关性。相反,孪晶应力不受a和b之间的差异的影响,因此a / b孪晶似乎在a -c孪晶边界运动中不起作用,从而导致磁感应重新定向。

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