首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Automatic Detection and Characterization of Cracked Constituent Particles/Inclusions in Al-Alloys under Uniaxial Tensile Loading
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Automatic Detection and Characterization of Cracked Constituent Particles/Inclusions in Al-Alloys under Uniaxial Tensile Loading

机译:单轴拉伸载荷下铝合金中裂纹成分/夹杂物的自动检测与表征

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摘要

The detailed quantitative microstructural data on the cracking of coarse constituent particles in 7075 (T651) series wrought Al-alloys have been studied using the utility of a novel digital image processing technique, where the particle cracks are generated due to monotonic loading. The microstructural parameters such as number density, volume fraction, size distribution, first nearest neighbor distribution, and two-point correlation function have been quantitatively characterized using the developed technique and such data are very useful to verify and study the theoretical models for the damage evolution and fracture of Al-alloys. The data suggests useful relationships for damage modeling such as a linear relationship between particle cracking and strain exists for the uniaxial tensile loading condition, where the larger particles crack preferentially.
机译:利用新颖的数字图像处理技术,研究了由于7075(T651)系列锻造铝合金中的粗大成分颗粒开裂而产生的详细的定量微观结构数据,其中由于单调加载而产生了颗粒开裂。使用开发的技术定量表征了微观结构参数,例如数量密度,体积分数,尺寸分布,第一近邻分布和两点相关函数,这些数据对于验证和研究损伤演化的理论模型非常有用。和铝合金的断裂。数据表明对于损伤建模有用的关系,例如在单轴拉伸载荷条件下存在颗粒破裂与应变之间的线性关系,在这种情况下较大的颗粒优先破裂。

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