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The Effect of microstructural heterogeneities on the fatigue behaviour of 22MnB5 sheet steel

机译:微观组织异质性对22MnB5钢板疲劳性能的影响

摘要

This work deals with the effect of heat treatment on the fatigue strength of a rear axial beam and aims to propose a methodology suitable and reliable for fatigue design. The rear axial beam is made of sheet metal (22MnB5); the initial microstructure is ferrito-pearlitic and martensitic after the treatment. A vast experimental campaign has been undertaken to investigate the behaviour and more specially the fatigue damage mechanisms observed (with material treated and no treated) under different loading conditions: tension and shear test with different load ratios. To test a sheet on shearing an original test is also used. SEM observations of fatigue failure surfaces, for both heat treated and nontreated specimens, show that the fatigue cracks initiate from inclusions for the specimens loaded in tension. The experiments show that the damage mechanism depends on the applied loading condition: for shear loadings no inclusions are observed at the crack initiation site. A probabilistic approach using the weakest link concept is used to model the fatigue. This approach leads naturally to a probabilistic Kitagawa type diagram, which in this case explains the relationship between the influence of the heat treatment and the microstructural heterogeneities.
机译:这项工作涉及热处理对后轴梁疲劳强度的影响,旨在提出一种适用于疲劳设计的可靠方法。后轴向梁由金属薄板(22MnB5)制成;处理后,最初的显微组织为铁素体-珠光体和马氏体。已经进行了广泛的实验活动,以研究行为,尤其是研究在不同载荷条件下观察到的疲劳损伤机理(材料经过处理和未经处理):具有不同载荷比的拉伸和剪切试验。为了在剪切上测试片材,还使用原始测试。 SEM对热处理和未处理试样的疲劳破坏表面的观察表明,疲劳裂纹是由受拉试样的夹杂物引起的。实验表明,损伤机理取决于所施加的载荷条件:对于剪切载荷,在裂纹萌生部位未观察到夹杂物。使用最弱链接概念的概率方法用于对疲劳进行建模。这种方法自然可以得出概率性的Kitagawa型图,在这种情况下,它说明了热处理影响与微观结构异质性之间的关系。

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