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Recrystallization and grain growth induced by ELMs-like transient heat loads in deformed tungsten samples

机译:变形钨样品中类似ELMs的瞬态热负荷引起的再结晶和晶粒长大

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摘要

Tungsten has been chosen as the main candidate for plasma facing components (PFCs) due to its superior properties under extreme operating conditions in future nuclear fusion reactors such as ITER. One of the serious issues for PFCs is the high heat load during transient events such as ELMs and disruption in the reactor. Recrystallization and grain size growth in PFC materials caused by transients are undesirable changes in the material, since the isotropic microstructure developed after recrystallization exhibits a higher ductile-to-brittle transition temperature which increases with the grain size, a lower thermal shock fatigue resistance, a lower mechanical strength, and an increased surface roughening. The current work was focused on careful determination of the threshold parameters for surface recrystallization, grain growth rate, and thermal shock fatigue resistance under ELM-like transient heat events. Transient heat loads were simulated using long pulse laser beams for two different grades of ultrafine-grained tungsten. It was observed that cold rolled tungsten demonstrated better power handling capabilities and higher thermal stress fatigue resistance compared to severely deformed tungsten. Higher recrystallization threshold, slower grain growth, and lower degree of surface roughening were observed in the cold rolled tungsten.
机译:由于钨在未来的核聚变反应堆(如ITER)的极端运行条件下具有优越的性能,因此钨被选作等离子组件(PFC)的主要候选者。对于PFC而言,严重的问题之一是瞬态事件(例如ELM)和反应堆中断时的高热负荷。瞬态引起的PFC材料的再结晶和晶粒尺寸增长是材料的不良变化,因为再结晶后形成的各向同性显微组织显示出较高的韧性至脆性转变温度,该温度随晶粒尺寸而增加,具有较低的抗热震疲劳性,较低的机械强度,并增加了表面粗糙度。当前的工作集中在仔细确定在类似ELM的瞬态热事件下表面再结晶,晶粒生长速率和抗热冲击疲劳性能的阈值参数。使用长脉冲激光束模拟了两种不同等级的超细晶粒钨的瞬态热负荷。据观察,与严重变形的钨相比,冷轧钨表现出更好的功率处理能力和更高的抗热应力疲劳性能。在冷轧钨中观察到较高的再结晶阈值,较慢的晶粒生长和较低的表面粗糙程度。

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