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Methodology for Determining Spall Damage Mode Preference in Shocked FCC Polycrystalline Metals from 3D X-Ray Tomography Data

机译:从3D X射线断层扫描数据确定震荡的FCC多晶金属中剥落损伤模式偏好的方法

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Three-dimensional X-ray tomography (XRT) provides a non-destructive technique to determine the location, size, and shape of spall damage within shock loaded metals. Polycrystalline copper samples of varying thermomechanical histories were shocked via plate impacts at low pressures to ensure incipient spall conditions. Additionally, samples of similar heat-treated microstructures were impacted at various loading rates. All 3D XRT volumetric void data underwent smoothing, thresholding, and volumetric sieves. The full inertia tensor was found for each void, which was used to create best fit ellipsoids correlating shape to damage modes. Density distributions were plotted for the best-fit ellipsoid semi-axes aspect ratios a/c and b/c, where, a≤b≤c. It was found that >60% of voids in heat-treated samples resembled transgranular damage, whereas >70% of voids in the rolled sample resembled intergranular damage. Preliminary analysis also clearly indicates an increase of void coalescence with decreasing tensile loading stress rates for impacted samples of similar microstructures.
机译:三维X射线断层扫描(XRT)提供了一种非破坏性技术来确定冲击载荷金属内剥落损伤的位置,大小和形状。在低压下,通过板冲击,对具有不同热机械历史的多晶铜样品进行了冲击,以确保出现初始剥落情况。另外,在不同的加载速率下,类似的经过热处理的微观结构的样品也会受到影响。所有3D XRT体积空隙数据均经过了平滑,阈值处理和体积筛分。找到每个空隙的完整惯性张量,该张量用于创建最合适的椭圆体,从而将形状与损坏模式相关联。绘制了最佳拟合椭圆半轴长宽比a / c和b / c的密度分布,其中a≤b≤c。结果发现,经热处理的样品中> 60%的空隙类似于经晶损伤,而经轧制样品中的> 70%的空隙类似于晶间损伤。初步分析还清楚地表明,对于相似微观结构的受冲击样品,随着降低的拉伸载荷应力速率,空隙聚结的增加。

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