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Microstructure and peeling behavior of MOCVD processed oxide insulator coating before and after ion beam irradiation

机译:离子束辐照前后MOCVD处理的氧化物绝缘体涂层的微观结构和剥离行为

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Highlight ? The adhesion strength of the MOCVD processed multi oxide coating (Er 2 O 3 /Y 2 O 3 /SUS) before and after 2.4?MeV Cu 2+ ion beam irradiation could be easily estimated using the nano-scratch method. ? The adhesion strength at 1.5 dpa Cu 2+ ion beam irradiation corresponded to approximately 70% compared with that of without ion beam irradiation. ? The adhesion strength degradation by the Cu 2+ ion irradiation was caused by the thicker and accelerated amorphous Fe-(Y)-O interlayer formation base on the displacement damage dose effect. Abstract The mechanical durability and soundness of the several oxide coating materials used as the electrical insulator and tritium permeation barrier are important design parameters on an advanced liquid breeding blanket system. We tried to investigate the adhesion strength evaluation due to the peeling behavior on the MOCVD processed multilayered oxide coating (Er 2 O 3 /Y 2 O 3 ) on the stainless steel (SUS) substrate before and after Cu 2+ ion beam irradiation using the nano-scratch tester. The adhesion strength of the coating material was able to estimate easily from the scratch trace and scratch stress, and the nano-scratch test was suitable method to evaluate the mechanical durability and soundness. After the Cu 2+ ion beam irradiation, the adhesion strength was decreased with increasing the displacement per atom (dpa). The adhesion strength degradation by the Cu 2+ ion beam irradiation was caused by the embrittlement of the thicker and amorphous Fe-(Y)-O interlayer formation between Y 2 O 3 buffer layer and SUS substrate based on the displacement damage dose effect.
机译:突出显示?使用纳米划痕法可以很容易地估计出在进行2.4?MeV Cu 2+离子束辐照之前和之后,MOCVD处理的多氧化物涂层(Er 2 O 3 / Y 2 O 3 / SUS)的粘附强度。 ?与未进行离子束照射相比,在1.5 dpa Cu 2+离子束照射下的粘合强度约为70%。 ?基于位移损伤剂量效应,由较厚且加速的非晶Fe-(Y)-O中间层形成导致Cu 2+离子辐照引起的粘合强度下降。摘要几种用作电绝缘体和tri渗透屏障的氧化物涂层材料的机械耐久性和牢固性是先进的液体育种毯系统的重要设计参数。我们尝试研究由于使用Cu 2+离子束辐照前后在不锈钢(SUS)上进行MOCVD处理的多层氧化膜(Er 2 O 3 / Y 2 O 3)在不锈钢(SUS)上的剥离行为而造成的粘附强度评估。纳米划痕测试仪。可以从划痕和划痕应力容易地估计涂料的粘合强度,并且纳米划痕试验是评价机械耐久性和牢固性的合适方法。在Cu 2+离子束辐照后,随着每原子位移(dpa)的增加,粘合强度降低。基于位移损伤剂量效应,Y 2 O 3缓冲层与SUS基板之间较厚且非晶的Fe-(Y)-O中间层形成的脆化导致Cu 2+离子束辐照引起的粘合强度降低。

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