论文标题
HE对辐射下Ni3al的订单disorder跃迁的影响
Effect of He on the Order-Disorder Transition in Ni3Al under Irradiation
论文作者
论文摘要
辐射下Ni-Al合金中的阶端级过渡表示各种重新排序过程与由于相遇高能颗粒产生的热尖峰而导致的无序之间的相互作用。通常,通过热产生空位的扩散来订购启用,并且只能在它们流动的温度和足够高的浓度下进行。在这里,原位透射电子显微照片表明,在该材料中通常被认为是有害的原子原子的HE的存在可在空位无效的订购剂中促进Ni3al中的重新排序。提出了一个速率理论模型,该模型基于原子模拟提取的参数来定量解释这种行为。这些计算表明,V2HE复合物通过其高稳定性和迁移率是一种有效的药物。推测,不混溶的原子可以稳定在经过驱动过程的其他材料中的重新排序剂,并在温度下保持有序的阶段,否则驱动过程将导致无序。
The order-disorder transition in Ni-Al alloys under irradiation represents an interplay between various re-ordering processes and disordering due to thermal spikes generated by incident high energy particles. Typically, ordering in enabled by diffusion of thermally-generated vacancies, and can only take place at temperatures where they are mobile and in sufficiently high concentration. Here, in-situ transmission electron micrographs reveal that the presence of He, usually considered to be a deleterious immiscible atom in this material, promotes reordering in Ni3Al at temperatures where vacancies are not effective ordering agents. A rate-theory model is presented, that quantitatively explains this behavior, based on parameters extracted from atomistic simulations. These calculations show that the V2He complex is an effective agent through its high stability and mobility. It is surmised that immiscible atoms may stabilize reordering agents in other materials undergoing driven processes, and preserve ordered phases at temperature where the driven processes would otherwise lead to disorder.