Cleavage cracking resistance of large-angle grain boundaries in Fe-3 wt% Si alloy

A. Argon, Yao Qiao
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引用次数: 47

Abstract

Abstract Large-angle grain boundaries in steel offer an important resistance to the propagation of cleavage cracks that affects the fracture toughness and can modulate the ductile-to-brittle transition temperature of fracture downwards. This behaviour has been studied in bicrystals of Fe-3 wt% Si alloy in detail. It was noted that the twist misorientation across a large-angle boundary has a more profound effect on cleavage fracture resistance than the tilt misorientation does. Specific measurements of such resistance at −20°C over a random selection of large-angle grain boundaries in bicrystals and associated fractographic studies have led to quantitative models of this resistance. The study has also revealed a transition from pure cleavage to mixed cleavage at around 0°C for this alloy, above which the observed increment of fracture work could be associated with the sigmoidal plastic bending and rupture of ligaments left between separate primary cleavage strips in the adjoining grain.
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fe - 3wt % Si合金大角度晶界的抗解理开裂性能
摘要钢中的大角度晶界对解理裂纹的扩展具有重要的抑制作用,解理裂纹影响断裂韧性,并向下调节断口的韧脆转变温度。在铁- 3wt % Si合金的双晶中对这种行为进行了详细的研究。结果表明,大角度边界上的扭转错向比倾斜错向对解理断裂抗力的影响更大。在- 20°C下,通过随机选择双晶中的大角度晶界和相关的断口学研究,对这种电阻进行了具体测量,得出了这种电阻的定量模型。该研究还揭示了该合金在0°C左右从纯解理到混合解理的转变,在此以上观察到的断裂功的增加可能与相邻晶粒中单独的初级解理带之间留下的s形塑性弯曲和韧带断裂有关。
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