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Influence of aging on microstructure and toughness of die-casting die steels

机译:时效对压铸模具钢组织和韧性的影响

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This study investigates the modification of the carbide type, size, shape and the associated changes in the toughness properties after prolonged aging at temperatures close to that of maximum hardening during tempering treatment. The aging effects on the microstructure of both steels still consist of a tempered martensite matrix, with an increased amount of precipitates and more marked prior austenitic grain boundaries. For H13 steel, the aging effects on fracture toughness show an appreciable increase in up to 50 h treatment; raising the aging time to 250 h causes considerable embrittlement. For H11 steel, however, the fracture toughness decreases early, from the first stages of aging; this behaviour has been associated with an increase in the carbide size. At increasing aging time, also for H11 steel, the embrittlement of prior austenite grain boundaries prevails in controlling fracture initiation and in decreasing fracture toughness.
机译:这项研究研究了在接近回火处理过程中最大硬化温度的温度下长时间老化后,碳化物类型,尺寸,形状的变化以及韧性的相关变化。时效对两种钢的显微组织的影响仍由回火的马氏体基体组成,具有增加的析出物量和更明显的先前奥氏体晶界。对于H13钢,时效对断裂韧性的影响在长达50 h的处理中显示出明显的增加。将老化时间提高到250小时会导致相当大的脆化。但是,对于H11钢,从时效的第一阶段开始,断裂韧性就开始下降。这种行为与碳化物尺寸的增加有关。随着时效时间的增加,对于H11钢而言,奥氏体晶界的脆化在控制断裂萌生和降低断裂韧性方面也很普遍。

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