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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Fracture toughness assessment of ferritic-martensitic steel in liquid lead-bismuth eutectic
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Fracture toughness assessment of ferritic-martensitic steel in liquid lead-bismuth eutectic

机译:液态铅铋共晶中铁素体-马氏体钢的断裂韧性评估

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摘要

The presence of micro-cracks at the surface of a ferritic-martensitic steel is known to favour its embrittlement by liquid metals and thus decrease the mechanical properties of the structural materials. Unfortunately, conventional fracture mechanics methods cannot be applied to tests in liquid metal environment due to the opaque and conducting nature of the LBE. Therefore new methods based on the normalization technique for assessment of plain strain fracture toughness in LBE were examined. This paper discusses the assessment of the plain strain fracture toughness of T91 steel in liquid lead bismuth environment at 473 K, tested at a displacement rate of 0.25 mm min(-1) and makes the comparison with results obtained in air at the same temperature and displacement rate. Although there is a decrease of the fracture toughness by 20-30% when tested in LBE. the toughness of the T91 steel remains sufficient under the tested conditions.
机译:已知在铁素体-马氏体钢的表面存在微裂纹,这有利于液态金属脆化,从而降低结构材料的机械性能。不幸的是,由于LBE的不透明和导电特性,常规的断裂力学方法无法应用于液态金属环境中的测试。因此,研究了基于归一化技术评估LBE平面应变断裂韧性的新方法。本文讨论了T91钢在473 K液态铅铋环境下在0.25 mm min(-1)的位移速率下测试时的平面应变断裂韧性的评估,并与在相同温度和温度下在空气中获得的结果进行了比较。位移率。在LBE中测试时,断裂韧性降低了20-30%。在测试条件下,T91钢的韧性仍然足够。

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