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Micromechanics of Fracture in Notched Samples of Heavily Drawn Steel

机译:碎钢缺口样品中骨折的微观学

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This paper deals with the influence of the manufacturing process on the microscopic fracture behaviour of axisymmetric notched specimens of pearlitic steels with different degrees of cold drawing. To this end, samples from different steps of the manufacturing chain were obtained, from the initial hot rolled material (not cold draw at all) to the final prestressing steel (heavily cold drawn). A detailed fractographic analysis was performed by using scanning electronic microscopy and image analysis techniques, in order to define and measure the fracture process zone in each case. Results show that the microscopic fracture modes range from ductile micro-void coalescence to brittle cleavage, depending on the stress triaxiality generated in the vicinity of the notch tip. A special fibrous region was detected, which allows a definition of the fracture process zone as the central region of the fractured area in bluntly notched samples and the external ring (i.e., the notch tip) in sharply notched specimens.
机译:本文涉及制造过程对不同程度的冷绘的珠光体钢轴对称切口标本的显微骨折行为的影响。为此,从初始热轧材料(根本不冷拔出)到最终的预应力钢(非常冷绘制),获得来自制造链的不同步骤的样品。通过使用扫描电子显微镜和图像分析技术进行详细的式分析,以便在每种情况下定义和测量裂缝处理区。结果表明,微观骨折模式从延性微空隙聚结的范围为脆性切割,这取决于凹口尖端附近产生的应力三轴性。检测到特殊的纤维区域,其允许裂缝处理区的定义作为裂缝区域的裂缝区域的中心区域,并且在急剧缺口样本中的外环(即凹口尖端)。

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