首页> 外文会议>International Symposium on Eco-Materials Processing amp; Design; 20050116-18; Jinju(KR) >Embrittlement Fracture in a 17-4 PH Stainless Steel After Aging at 400℃
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Embrittlement Fracture in a 17-4 PH Stainless Steel After Aging at 400℃

机译:400℃时效后17-4 PH不锈钢的脆化断裂

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The embrittlement fracture mechanism caused by microstructural evolution of 17-4 PH stainless steel at long term aging was studied using scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The solution treated specimen consists largely of lath martensite with a small fraction of elongated δ-ferrite. The spherical particles existed a little in the martensite matrix, while no precipitates were present in the δ-ferrite at the solution treated specimen as non-aging. The precipitation of Fe-Cu in the δ-ferrite causes the aged hardening after long term aging accormpanied by decreases in elongation and charpy V-notch energy absorption. The increased fraction of brittle fracture on the fractured surface by impact and tensile test reveals that the embrittlement of the 17-4 PH alloys during long term aging is mainly caused by the precipitation hardening in the δ-ferrite matrix.
机译:利用扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了17-4 PH不锈钢在长期时效时组织演变引起的脆性断裂机理。固溶处理后的试样主要由板条马氏体组成,并有一小部分细长的δ铁素体。马氏体基体中的球形颗粒很少,而固溶处理后的试样在δ-铁素体中未析出未时效。 δ-铁素体中Fe-Cu的析出导致长期时效后的时效硬化,其伸长率和夏比V型缺口能量吸收降低。通过冲击和拉伸试验,在断裂表面上脆性断裂的分数增加,这表明17-4 PH合金在长期时效过程中的脆化主要是由δ-铁素体基体中的沉淀硬化引起的。

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