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Fracture Toughness to Understand Stretch-Flangeability and Edge Cracking Resistance in AHSS

机译:骨折韧性,以了解AHSS中的伸展义率和边缘开裂性

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摘要

The edge fracture is considered as a high risk for automotive parts, especially for parts made of advanced high strength steels (AHSS). The limited ductility of AHSS makes them more sensitive to the edge damage. The traditional approaches, such as those based on ductility measurements or forming limit diagrams, are unable to predict this type of fractures. Thus, stretch-flangeability has become an important formability parameter in addition to tensile and formability properties. The damage induced in sheared edges in AHSS parts affects stretch-flangeability, because the generated microcracks propagate from the edge. Accordingly, a fracture mechanics approach may be followed to characterize the crack propagation resistance. With this aim, this work addresses the applicability of fracture toughness as a tool to understand crack-related problems, as stretch-flangeability and edge cracking, in different AHSS grades. Fracture toughness was determined by following the essential work of fracture methodology and stretch-flangeability was characterized by means of hole expansions tests. Results show a good correlation between stretch-flangeability and fracture toughness. It allows postulating fracture toughness, measured by the essential work of fracture methodology, as a key material property to rationalize crack propagation phenomena in AHSS. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:边缘骨折被认为是汽车部件的高风险,特别是对于由先进的高强度钢(AHS)制成的部件。 AHSS的有限延展性使它们对边缘损坏更敏感。传统方法,例如基于延展性测量或形成限位图的方法,无法预测这种类型的裂缝。因此,除了拉伸和可成形性的性质之外,拉伸凸缘性已经成为重要的成形性参数。在AHSS部件中剪切边缘引起的损伤影响了拉伸法不义,因为所产生的微裂纹从边缘传播。因此,可以遵循裂缝力学方法来表征裂纹传播电阻。通过这种目标,这项工作解决了裂缝韧性作为理解裂缝相关问题的工具的适用性,作为不同的AHSS等级。通过以下裂缝方法的基本作品来确定断裂韧性,并通过孔膨胀试验表征伸展法不定。结果表明,拉伸凸缘性和断裂韧性之间存在良好的相关性。它允许在裂缝方法的基本作品中起作用的裂缝韧性,作为在AHSS中合理化裂纹繁殖现象的关键材料性质。 (c)2016年矿物质,金属和材料协会和ASM国际

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