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Investigation of Cleavage Fracture Behavior in Notched Specimens of a low Alloy Hot Rolled Steel 16MnR

机译:低合金热轧钢缺口标本裂解断裂行为的研究16MNR

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The cleavage fracture behaviors are studied in notched specimens of a low alloy hot rolled steel 16MnR. The results show that two types of cleavage initiation sites are existed in notched specimens, one being related to the inclusions ahead of notch root (IC type) and the other related to inclusions located ahead of string cracks far from the notch root (SIC type). The types of initiation sites are influenced strongly on temperature, changing from IC type at -196°C to SIC type at -130°C. In both IC and SIC initiation mechanisms, the crack nucleation is induced by inclusions and the final fracture is controlled by propagation of a ferrite grain-sized crack into matrix grain. The cleavage fracture of IC initiation type in notched specimens satisfies a dual-criterion model, i.e. a critical plastic strain ε_p≥ε_(pc) for initiating a crack nucleus and a critical tensile stress σ_(yy)≥σ_f for its propagation. While for SIC initiation type, the dual-criterion model is evolved with the expression of ε_p+ε_(ps)≥ε_(pc) and σ_(yy)+σ_(yys)≥σ_f.
机译:在低合金热轧钢16MNR的缺口标本中研究了切割断裂行为。结果表明,在缺口标本中存在两种类型的裂解引发位点,与陷波根(IC型)领先的夹杂物有关,另一个与位于截止槽根(SIC型)前方的夹杂物相关的另一个。 。起始位点的类型受到温度强烈影响,从IC型在-196℃下改变为-130°C。在IC和SiC引发机制中,通过夹杂物诱导裂缝成核,并通过将铁氧体晶粒尺寸的裂缝传播到基质晶粒中来控制最终裂缝。 IC启动型在缺口样品中的切割骨折满足了双标准模型,即,用于启动裂纹核和临界拉应力σ_(YY)≥Σ_f的临界塑料应变ε_p≥ε_(PC)进行传播。虽然对于SiC启动类型,双标准模型随着ε_p+ε_(ps)≥ε_(pc)和σ_(yy)+σ_(yys)≥Σ_f的表达式而演变。

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