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Orientation Selection and Microstructural Evolution in Directionally Solidified Tb0.3Dy0.7Fe1.95

机译:定向凝固Tb0.3Dy0.7Fe1.95的取向选择与组织演变

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摘要

Tb0.3Dy0.7Fe1.95 alloy was directionally solidified by using a modified Bridgman technique at a wide range of growth rates of 5 to 100 cm/h. The directionally grown samples exhibited plane front solidification morphology up to a growth rate of 90 cm/h. Typical island banding feature was observed closer to the chilled end, which eventually gave rise to irregular peritectic coupled growth (PCG). The PCG gained prominence with an increase in the growth rate. The texture study revealed formation of strong aOE (c) 311 > texture in a lower growth rate regime, aOE (c) 110 > and ``rotated aOE (c) 110 > aEuroe in an intermediate growth regime, and aOE (c) 112 > in a higher growth rate regime. In-depth analysis of the atomic configuration of a solid-liquid interface revealed that the growth texture is influenced by the kinetics of atomic attachment to the solid-liquid interface, which is intimately related to a planar packing fraction and an atomic stacking sequence of the interfacial plane. The mechanism proposed in this article is novel and will be useful in addressing the orientation selection mechanism of topologically closed packed intermetallic systems. The samples grown at a higher growth rate exhibit larger magnetostriction (lambda) and d lambda/dH owing to the absence of pro-peritectic (Tb,Dy)Fe-3 and formation of aOE (c) 112 > texture, which lies closer to the easy magnetization direction (EMD).
机译:Tb0.3Dy0.7Fe1.95合金通过使用改良的Bridgman技术定向凝固,生长速度范围为5至100 cm / h。定向生长的样品表现出高达90 cm / h的生长速度的平面前凝固形态。在靠近冷端的地方观察到典型的岛状带状特征,最终导致不规则的包晶耦合生长(PCG)。随着增长速度的提高,PCG的地位越来越突出。纹理研究表明,在较低的生长速率条件下,形成了坚固的aOE(c)311>纹理,aOE(c)110>,并且在中间生长条件下形成了旋转的aOE(c)110> aEuroe,而在aOE(c)112 >在更高的增长率机制中。对固液界面原子构型的深入分析表明,生长织构受到固液界面原子附着动力学的影响,这与平面堆积分数和原子的堆积顺序密切相关。界面平面。本文提出的机制是新颖的,将可用于解决拓扑封闭的填充金属间化合物系统的方向选择机制。由于不存在包晶前(Tb,Dy)Fe-3且不形成aOE(c)112>织构,因此以较高的生长速率生长的样品表现出较大的磁致伸缩(lambda)和d lambda / dH。易磁化方向(EMD)。

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