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Effects of thermal aging on the fracture toughness of cast stainless steel CF8

机译:热老化对铸造不锈钢裂缝韧性的影响CF8

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摘要

Cast stainless steels are widely used in the primary coolant systems of nuclear power plants because of their high strength, toughness, and corrosion resistance. Mechanical property degradation due to thermal embrittlement of the ferrite phase is of major concern in long-term operations. To investigate the aging-induced loss of fracture resistance in cast stainless steels, static fracture resistance (J-R) testing was performed for three different CF8 stainless steels with significantly different delta-ferrite contents. The materials were thermally aged at 290-400 degrees C for up to 10,000 h and tested in static fracture at 25-400 degrees C. It was found that the fracture toughness in high ferrite materials generally decreased with thermal aging, while the relationship between aging and fracture toughness in low-ferrite materials was complicated, showing non-monotonic variation with the degree of aging. While significant degradation was observed for long-term aged high-ferrite materials, no material tested showed a K-0.2mm value less than 100 MPa root m.
机译:由于其高强度,韧性和耐腐蚀,铸造不锈钢广泛用于核电厂的主要冷却剂系统。由于铁氧体相的热脆化因热脆性而导致的机械性能降解是长期操作的主要关注点。为了研究铸造不锈钢中的抗衰老抗性损失,对于三种不同的CF8不锈钢进行静态断裂性(J-R)测试,具有显着不同的δ-铁氧体含量。将材料在290-400℃下热量老化,可达10,000小时,并在25-400℃下在静骨折中进行测试。发现高铁氧体材料中的断裂韧性通常随着热老化而降低,而老化之间的关系通常会降低低铁氧体材料中的断裂韧性复杂,显示出与老化程度的非单调变化。虽然对于长期老化的高铁氧体材料观察到显着降解,但没有测试的材料显示k-0.2mm值小于100mPa根部。

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