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Analyses of the failures on shear cutting blades after trimming of ultra high-strength steel

机译:超高强度钢修整后剪切切割刀片故障分析

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Damages on shear cutting blades were analyzed after 50,000 strokes of trimming on an ultra high-strength steel sheet. Traditional D2 alloy and an advanced one (Cr08H) based on the composition of 1C-8Cr were quenched from 1030 degrees C, tempered at 180 degrees C and submitted to the shear cutting test. Cr08H had lower hardness, a smaller volume fraction of M7C3 carbides while it contained a larger volume fraction of retained austenite. And these resulted in more scratches and rounded edges because of degraded resistance to wear and local plastic deformation. In spite of higher impact toughness, Cr08H exhibited inferior resistance to chipping which was the consequence of localized brittle fracture. It could be concluded that this was caused by more transformation of austenite as well as by insufficiently hardened matrix, both of which were attributed to inappropriate conditions of the heat treatment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在超高强度钢板上修整50,000次修剪后,分析了剪切切割刀片的损坏。 基于1C-8CR组合物的传统D2合金和先进的一种(CR08H)从1030℃下淬灭,以180℃回火并提交剪切切割试验。 CR08H具有较低的硬度,较小的M7C3碳化物体积分数含有较大体积的保留奥氏体。 由于耐磨性和局部塑性变形的抗性降低,因此这些导致了更多的划痕和圆形边缘。 尽管较高的冲击韧性,CR08H表现出较差的碎裂抗性,这是局部脆性骨折的结果。 可以得出结论,这是由奥氏体的转化和硬化的基质不充分的基质引起的,这两者都归因于不适当的热处理条件。 (c)2016 Elsevier Ltd.保留所有权利。

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