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首页> 外文期刊>Procedia IUTAM >Helium-Ion-Implantation in Tungsten: Progress towards a Coherent Understanding of the Damage Formed and its Effects on Properties
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Helium-Ion-Implantation in Tungsten: Progress towards a Coherent Understanding of the Damage Formed and its Effects on Properties

机译:钨中的氦离子注入:一致理解形成的损伤及其对性能的影响的进展

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Tungsten is a likely material for divertor armour in fusion reactors. We describe recent progress combining multi-technique experiments with atomistic modelling to understand how injected helium interacts with displacement damage and modifies the physical properties of tungsten. Using X-ray micro-diffraction and laser-induced transient grating measurements, we observe both a lattice swelling and modulus change after helium implantation. Surprisingly, a fraction of a percent lattice expansion is associated with an order of magnitude larger reduction in elastic modulus. These observations are interpreted using a combined elasticity and density functional theory model. We also measure a large reduction of thermal diffusivity due to helium implantation. This can be explained in terms of the underlying damage microstructure using a new atomistic kinetic theory model. Together our observations and calculations allow us to begin to form a joined-up picture of helium-implantation-induced damage in tungsten and its diverse effects on microstructure and physical properties.
机译:钨可能是聚变反应堆中偏滤器装甲的材料。我们描述了将多技术实验与原子建模相结合的最新进展,以了解注入的氦如何与位移损伤相互作用并改变钨的物理性质。使用X射线微衍射和激光诱导的瞬态光栅测量,我们观察到氦注入后晶格膨胀和模量变化。出人意料的是,百分之几的晶格膨胀与弹性模量的大幅度降低相关。这些观察结果是使用组合的弹性和密度泛函理论模型进行解释的。我们还测量了由于氦注入而导致的热扩散率的大幅降低。这可以使用新的原子动力学理论模型根据潜在的破坏微观结构进行解释。我们的观察和计算共同使我们能够开始形成氦注入引起的钨损伤及其对微观结构和物理性能的各种影响的综合图景。

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