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Deformation alloying and transformation reactions

机译:变形合金化和相变反应

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摘要

During intense deformation of multilayer samples, atomic mixing reactions can yield alloy synthesis and amorphization reactions and can control amorphous phase stability against nanocrystallization. A precondition for deformation-induced alloying is a mixing reaction at interphase boundaries. In multilayer samples the intermixing occurs on a nanostructured size scale. As a result of localized mixing reactions at the interfaces, very steep concentration gradients develop that act to suppress crystal nucleation and allow for the development of metastable states such as supersaturated solutions or amorphous layers. In systematic studies of the alloying reaction during intense deformation of elemental multilayers in isomorphous and glass forming systems, atomic level mixing is observed to proceed in stages. The initial reaction is characterized by a significant layer refinement to nanoscale levels and an asymmetric exchange across layer interfaces. With continued deformation, the length scales of the layer thickness and the deformation-induced mixing zone can approach each other to yield a bulk nanostructured alloy or a fully amorphous phase. In contrast, intense deformation of amorphous Al base alloys can catalyze crystallization behavior. The characteristic behavior during deformation driven alloying and transformation reactions reveal opportunities for new kinetic pathways and novel microstructures that are not accessible by thermally activated processes.
机译:在多层样品的剧烈变形过程中,原子混合反应可以产生合金合成和非晶化反应,并且可以控制非晶相相对于纳米晶的稳定性。变形诱导合金化的前提是在相间边界发生混合反应。在多层样品中,混合发生在纳米结构的尺寸尺度上。由于界面处的局部混合反应,形成了非常陡峭的浓度梯度,该浓度梯度起到抑制晶体成核的作用,并允许形成亚稳态,例如过饱和溶液或非晶层。在对同构和玻璃形成系统中元素多层的剧烈变形过程中合金化反应的系统研究中,观察到原子级混合是分阶段进行的。初始反应的特征在于显着的层细化至纳米级水平以及跨层界面的不对称交换。随着连续变形,层厚度的长度尺度和由变形引起的混合区域可以彼此接近以产生块状纳米结构合金或完全非晶态相。相反,非晶态铝基合金的剧烈变形可以催化结晶行为。变形驱动的合金化和相变反应过程中的特征行为揭示了新的动力学途径和热激活过程无法获得的新的微观结构的机会。

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