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Fracture of progressively drawn pearlite steels under triaxial stress states

机译:三轴应力状态下逐步拉伸的珠光体钢骨折

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In this paper the fracture behaviour of progressively drawn pearlite steels is studied under triaxial stress states produced by surface defects like cracks. To this end, samples from different stages of an industrial manufacturing process were analyzed. The real manufacture chain was stopped in the course of the process, and samples of five intermediate stages were extracted, apart from the original material or base product (hot rolled bar: not cold drawn at all) and the final commercial product (prestressing steel wire: heavily cold drawn). Results demonstrated that progressive cold drawing affects clearly the fracture performance of the materials, so that the most heavily drawn steels exhibit anisotropic fracture behaviour with crack deflection, i.e., a change in crack propagation direction which deviates from the original mode I propagation and approaches the wire axis or cold drawing direction, thereby producing a mixed mode stress state. At the microscopical level, clear changes are observed in the micrographs with appearances from cleavage-like in the slightly drawn steels to predominant micro-void coalescence in the heavily drawn steels.
机译:在本文中逐步拉伸珠光体钢的断裂行为下通过像裂纹的表面缺陷产生的三轴应力状态的影响。为此,从工业制造工艺的不同阶段的样品进行分析。真正的制造链被停止在处理的过程中,提取的五个中间阶段的样品,除了原有的材料或基础产品(热轧条:不冷在所有绘制)和最终的商业产品(预应力钢丝:重冷拔)。结果表明,渐进冷拔清楚地影响了材料的断裂性能,使最重的拉制的钢材表现出与裂纹偏转,即在裂缝传播方向的变化,这从原始模式I传播偏离并接近线各向异性断裂行为轴或冷拉的方向,从而产生混合模式应力状态。在微观水平,明确改变显微照片中观察到的外观从切割状的略微拉制的钢材到主要微空隙聚结在重拉制的钢材。

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