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Correlation of Fractographic Features with Mechanical Properties in Systematically Varied Microstructures of Cu-Strengthened High-Strength Low-Alloy Steel

机译:铜强化高强度低合金钢系统变化组织中的分形特征与力学性能的关系

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摘要

Fracture is often the culmination of continued deformation. Therefore, it is probable that a fracture surface may contain an imprint of the deformation processes that were operative. In this study, the deformation behavior of copper-strengthened high-strength low-alloy (HSLA) 100 steel has been investigated. Systematic variation of the microstructure has been introduced in the steel through various aging treatments. Due to aging, the coherency, size, shape, and distribution of the copper precipitates were changed, while those of inclusions, carbides, and carbonitrides were kept unaltered. Two-dimensional dimple morphologies, quantified from tensile fracture surfaces, have been correlated to the nature of the variation of the deformation parameters with aging treatment.
机译:断裂通常是持续变形的结果。因此,断裂表面可能包含有效变形过程的痕迹。在这项研究中,研究了铜强化高强度低合金(HSLA)100钢的变形行为。通过各种时效处理,已经在钢中引入了微观结构的系统变化。由于老化,铜沉淀物的相干性,大小,形状和分布发生了变化,而夹杂物,碳化物和碳氮化物的相貌保持不变。从拉伸断裂表面量化的二维凹痕形态已与时效处理引起的变形参数变化的性质相关。

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