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An evaluation of helium embrittlement resistance of reduced activation martensitic steels

机译:还原活化马氏体钢的抗氦脆性评估

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Susceptibility to high temperature helium embrittlement was examined on several reduced activation ferritic/martensitic steels through creep rupture testing after hot helium implantation at a cyclotron, so as to procure knowledge beneficial for determination on the upper limit temperature of the materials of this kind in first wall/blanket structural application. Creep properties (lifetime, minimum creep rate and rupture elongation) were not significantly deteriorated by helium up to the concentration of fusion DEMO reactor level. In addition, fracture occurred in a perfectly transgranular and ductile mode regardless of the presence or the absence of helium in every case, so that any symptom of intergranular separation induced by helium was not appreciated at all. These results reveal that this class of materials may preserve its superior resistance against high temperature helium embrittlement during long time operation in fusion devices.
机译:在回旋加速器中注入热氦后,通过蠕变断裂测试,对几种还原活化的铁素体/马氏体钢的高温氦脆性进行了研究,以获取有助于确定此类材料在第一壁中的上限温度的知识/毯子结构应用。直到聚变DEMO反应堆浓度,氦气都不会使蠕变性能(寿命,最小蠕变速率和断裂伸长率)显着降低。另外,在每种情况下,无论是否存在氦,断裂都以完全的经晶和延性的方式发生,因此根本不了解由氦引起的晶间分离的任何症状。这些结果表明,这类材料可以在聚变装置中长时间运行期间保持其对高温氦脆性的优异抵抗力。

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