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Fatigue crack propagation in cast duplex stainless steels: thermal ageing and microstructural effects

机译:铸造双相不锈钢的疲劳裂纹扩展:热时效和微观结构效应

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The ferrite phase of cast duplex stainless steels becomes embrittled after thermal ageing, leading to a significant decrease in fracture properties. In the present paper, the influence of ageing and solidification structure on the fatigue crack growth rates (FCGRs) and on the fatigue crack growth mechanisms in a cast duplex stainless steel is studied. FCGRs measured at room temperature increase slightly after ageing at 400 deg C, due to ferrite cleavage and to the resulting irregular shape of the crack front. The crack propagates without any preferential path by successive ruptures of ferrite and austenite phases. The macroscopic crack propagation plane depends on the crystallographic orientation of the ferrite grain. Secondary cracks can appear due to the complex solidification structure. This in turn influences the FCGR. The fatigue crack closure level decreases with increasing ageing. This can be explained by a decrease in the kinematic cyclic hardening of these materials.
机译:铸造双相不锈钢的铁素体相在热时效后变脆,导致断裂性能显着降低。本文研究了时效和凝固组织对铸造双相不锈钢疲劳裂纹扩展速率(FCGRs)和疲劳裂纹扩展机理的影响。室温下测得的FCGR在400℃时效后会略有增加,这是由于铁素体的分裂和所产生的不规则形状的裂纹前沿。裂纹通过铁素体和奥氏体相的连续破裂而没有任何优先路径地传播。宏观裂纹扩展平面取决于铁素体晶粒的晶体学取向。由于复杂的凝固结构,可能会出现二次裂纹。这反过来影响了FCGR。疲劳裂纹闭合水平随着时效的增加而降低。这可以通过减少这些材料的运动循环硬化来解释。

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