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Plastic damage evolution in structural steel and its non-destructive evaluation

机译:结构钢塑料损伤演化及其无损评价

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This paper reports the plastic damage evolution in low carbon structural steel and its NDT evaluation. The SEM observations reveal that the voids initiation, growth, coalescence, micro-crack propagation, and macro-crack formation are the main failure forms. The EBSD results show that with the increasing plastic strain, the KAM andρGNDwithin grains in LC steel increased continuously. Meanwhile, the BS value and the IPF maps quality decreased significantly. Besides, the TEM observations show that the plastic strain induced dislocation density increase and inhomogeneous dislocation distribution in LC steel, the dislocation nets structures were developed at the later plastic stages, which consist of high-density dislocation tangles. Also, the magnetic hysteresis-loop changed distinctly after the plastic strain, and the Coercivity is sensitive to the change of dislocation structure/density. Therefore, the electromagnetic technique can be utilized to assess the plastic damage in LC steel.
机译:本文报道了低碳结构钢的塑料损伤演化及其NDT评价。 SEM观察表明,空隙引发,生长,聚结,微裂纹繁殖和宏观裂纹形成是主要的失效形式。 EBSD结果表明,随着塑料应变的增加,LC钢中的Kam和PaGndwithin颗粒连续增加。同时,BS值和IPF地图质量显着下降。此外,TEM观察表明,LC钢中的塑性应变诱导位错密度增加和不均匀的位错分布,在后续塑料阶段开发了脱位网结构,该塑料阶段由高密度位错缠结组成。而且,在塑性应变之后,磁滞后环明显变化,并且矫顽力对位错结构/密度的变化敏感。因此,可以利用电磁技术来评估LC钢中的塑性损伤。

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