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首页> 外文期刊>JOM >Microstructure-Sensitive Computational Estimates of Driving Forces for Surface Versus Subsurface Fatigue Crack Formation in Duplex Ti-6Al-4V and Al 7075-T6
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Microstructure-Sensitive Computational Estimates of Driving Forces for Surface Versus Subsurface Fatigue Crack Formation in Duplex Ti-6Al-4V and Al 7075-T6

机译:双相Ti-6AL-4V和AL 7075-T6中表面与地下疲劳裂缝形成的动力敏感计算估计

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摘要

Statistical realizations of three-dimensional digital microstructures with different crystallographic orientation distributions, grain shapes, and grain size distributions are subjected to uniaxial cyclic straining to compare the cases of bulk and free surface on driving forces for fatigue crack formation. Crystal plasticity finite element simulations are conducted using both fully periodic (more representative of the bulk) and traction-free (i.e., free surface) boundary conditions for duplex Ti-6Al-4V and rolled Al 7075-T6.Following elastic-plastic shakedown, mesoscale volume-averaged fatigue indicator parameters (FIPs) are computed within fatigue damage process zones of grains and are fit to known extreme value distributions (EVDs). Owing to differences in crystallographic slip symmetry, FIPs for fcc Al 7075-T6 statistically occur much closer to the traction-free surface than for hcp Ti-6Al-4V.Additionally, surface versus bulk EVDs of FIPs vary differently for the two material systems, indicating a coupled role of microstructure and surface proximity that had not been previously elucidated.
机译:具有不同晶体取向分布,晶粒形状和晶粒尺寸分布的三维数字微结构的统计实现经受单轴环状紧张,以比较抗疲劳裂纹形成驱动力的体积和自由表面的情况。使用完全周期性(散装)和无牵引力(即自由表面)边界条件的完全定期(更换的散装)边界条件进行晶体塑性有限元模拟和卷起Al 7075-T6. Messcale体积平均疲劳指示器参数(FIPS)在谷物的疲劳损伤处理区域内计算,并适合已知的极值分布(EVDS)。由于晶体滑移对称性的差异,FCC AL 7075-T6的FIPS比HCP Ti-6Al-4V.Adrationally的统计学上统计学上更接近牵引表面,对于两种材料系统,表面与围绕FIPS的散装EVDS不同不同,表示未预先阐明的微观结构和表面接近度的耦合作用。

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