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Characterization of less common nitrides as potential permeation barriers

机译:不太常见的氮化物表征为潜在的渗透屏障

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In a fusion reactor, the transport of hydrogen isotopes (primarily tritium) has to be controlled, from the point of view of fuel balance and retention in the reactor components, which can result in material degradation and spreading of radioactivity. To suppress this, tritium permeation barriers are developed. Suitable materials for the permeation barriers are those with low hydrogen isotope permeability - primarily ceramic materials, such as oxides, carbides and nitrides.In this study, coatings of six less common nitrides prepared by physical vapor deposition - namely AICrN, CrN, Cr2N, CrWN, WN and ZrN - were investigated. Besides basic characterization (elemental and phase composition, surface morphology and coating thickness), hydrogen permeation, adhesion, residual stress and thermal expansion were evaluated. All coatings were dense, crack-free and well adherent. The permeation reduction factor which was determined at 400 degrees C and 1 bar ranged from (similar to)10(2) to(similar to)5x 10(3) , the best performance being achieved by the ZrN coating. As these materials seem not to be investigated as hydrogen permeation barriers, they have a very high potential to be further improved.
机译:在聚变反应堆中,从燃料平衡和保留在反应堆组件中的角度出发,必须控制氢同位素(主要是tri)的运输,这可能导致材料降解和放射性扩散。为了抑制这种情况,开发了tri渗透屏障。渗透屏障的合适材料是氢同位素渗透率低的材料-主要是陶瓷材料,例如氧化物,碳化物和氮化物。 ,WN和ZrN-进行了研究。除了基本特征(元素和相组成,表面形态和涂层厚度)外,还评估了氢的渗透性,附着力,残余应力和热膨胀。所有涂层均致密,无裂纹且附着力良好。在400摄氏度和1巴下测得的渗透减少系数范围从(类似于)10(2)到(类似于)5x 10(3),ZrN涂层可实现最佳性能。由于这些材料似乎没有被研究为氢渗透屏障,因此它们有很大的潜力可以进一步改进。

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