On brittle fracture resistance determination of chromium stainless steel irradiated in ion accelerator

B. Margolin, V. Fomenko, F. L. Shishkov, E. V. Yurchenko
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Abstract

The possibility of brittle fracture resistance (BFR) determination is investigated with mechanical testing for ion-irradiated chromium stainless steel. To consider the ion irradiation effect on material properties disc specimens in initial and irradiated states were tested by mechanical loading until brittle fracture. The micro- hardness of specimens before and after ion irradiation was also determined. It was found that the microhardness of ion-irradiated steel is higher than the microhardness of steel in initial state. However, critical loads for brittle fracture of disc specimens are practically equal for initial and ion-irradiated states. The performed calculations, SEM investigations and also analysis of mechanisms of cleavage microcrack nucleation in disc specimen surfaces allowed us to explain the brittle fracture test results. As fracture tests do not allow us to estimate BFR, it is proposed to estimate BFR by microhardness measurement results.
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在离子加速器中辐照铬不锈钢的抗脆性断裂性能测定
通过对离子辐照铬不锈钢进行机械测试,研究了脆性断裂抗力(BFR)测定的可能性。为了考虑离子辐照对材料特性的影响,对初始状态和辐照状态的圆盘试样进行了机械加载测试,直至脆性断裂。同时还测定了离子辐照前后试样的显微硬度。结果发现,离子辐照钢的显微硬度高于初始状态钢的显微硬度。然而,圆盘试样脆性断裂的临界载荷在初始状态和离子辐照状态下实际上是相同的。通过计算、扫描电镜研究以及对圆盘试样表面劈裂微裂纹成核机制的分析,我们可以解释脆性断裂试验的结果。由于断裂测试无法估算脆性破坏率,因此建议通过显微硬度测量结果来估算脆性破坏率。
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