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Fracture mechanism of borated stainless steel

机译:硼化不锈钢的断裂机理

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摘要

The mechanical properties and fracture mechanism of irradiated and unirradiated boron containing Type 304 stainless steel are studied. Four different batches with different boron weight percentages are used. One of these batches was manufactured by a conventional wrought technique, while the others were manufactured by a powder metallurgy technique. The irradiated specimens were subjected to a fluence level of 5 X 10(19) or 1 X 10(21) n/m(2). The mechanical and fracture tests were performed at temperatures of 233, 298, and 533 K. No significant effects on the mechanical properties or fracture behavior were observed as a result of neutron irradiation and/or temperature. The ductility and toughness of the borated steel were found to decrease with increasing boron content. The effect of boride on void nucleation and linkage was found to play an important role in the fracture behavior of borated steel. References: 7
机译:研究了304型不锈钢辐照和未辐照硼的力学性能和断裂机理。使用具有不同硼重量百分比的四种不同批次。其中一批是用传统的锻造技术制造的,而其他批次是用粉末冶金技术制造的。辐照样品的通量水平为 5 X 10(19) 或 1 X 10(21) n/m(2)。机械和断裂试验在233、298和533 K的温度下进行,中子辐照和/或温度对机械性能或断裂行为没有观察到显著影响。硼化钢的延展性和韧性随着硼含量的增加而降低。硼化物对空隙成核和连锁的影响在硼化钢的断裂行为中起着重要作用。[参考资料: 7]

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