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Analysis of Fatigue Crack Paths in Cold Drawn Pearlitic Steel

机译:冷拔珠光体钢的疲劳裂纹路径分析

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In this paper, a fracto-metallographic analysis was performed on the cracked specimens of cold drawn pearlitic steel subjected to fatigue tests. Fatigue cracks are transcollonial and exhibit a preference for fracturing pearlitic lamellae, with non-uniform crack opening displacement values, micro-discontinuities, branchings, bifurcations and frequent local deflections that create microstructural roughness. At the micro-level, the cold drawn pearlitic steel exhibits higher micro-roughness than the hot rolled bar (this is a consequence of the manufacturing process by cold drawing), so that the actual fractured surface in the cold drawn wire is greater than that in the hot rolled bar, due to the fact that the crack deflection events are more frequent and with higher angle in the former (the heavily drawn prestressing steel wire). These findings show the relevant role on the manufacturing process by cold drawing in the fatigue crack propagation in pearlitic steel.
机译:本文对经受疲劳试验的冷拔珠光体钢的开裂试样进行了分形金相分析。疲劳裂纹是跨胶体的,并且表现出对断裂珠光体薄片的偏爱,其裂纹开口位移值不均匀,微观不连续,分支,分叉和频繁的局部挠曲会产生微观结构粗糙度。在微观水平上,冷拔珠光体钢的显微粗糙度要比热轧棒材高(这是冷拔制造过程的结果),因此,冷拔丝中的实际断裂表面大于在热轧棒材中,由于裂纹变形事件在前者(重拉伸的预应力钢丝)中更为频繁且具有更大的角度。这些发现表明,通过冷拔在珠光体钢的疲劳裂纹扩展中对制造过程具有重要作用。

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