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Damage Resistance Characterization of Sandwich Composites Using Response Surfaces

机译:响应曲面夹层复合材料的损伤性表征

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The coupled influence of material configuration (number of facesheet plies, core density, core thickness) and impact parameters (impact velocity and energy, impactor diameter) on the impact damage resistance characteristics of sandwich composites comprised of carbon-epoxy woven fabric facesheets and Nomex honeycomb cores was investigated using empirically based quadratic response surfaces. The diameter of the planar damage area associated with TTU C-scan measurements and the peak residual facesheet indentation depth were used to describe the extent of internal and detectable surface damage, respectively. Estimates of the size of the planar damage region correlated reasonably well with experimentally determined values. For a fixed set of impact parameters, estimates of the planar damage size and residual facesheet indentation suggest that impact damage development is highly material and lay-up configuration dependent. Moreover, those combinations of material system and impact parameters leading to the maximum estimated internal damage do not correspond to those that result in the greatest facesheet indentation. Hence, blunt object impacts may result in appreciable damage that is not amenable to visual inspection. These efforts may facilitate sandwich panel design by establishing relationships between material configuration and impact parameters that lead to improved damage tolerance/ resistance.
机译:材料构造(面表板的数量,核心密度,芯厚)和冲击参数(冲击速度和能量,撞击器直径)的耦合影响对由碳 - 环氧树脂织物面板和Nomex蜂窝组成的夹层复合材料的冲击损伤电阻特性使用经验基准的二次响应表面来研究核心。与TTU C扫描测量相关的平面损伤区域的直径和峰值残余面板压痕深度分别用于描述内部和可检测的表面损坏的程度。平面损伤区域的尺寸的估计与实验确定的值相当好。对于一个固定的冲击参数集,平面损伤尺寸和残差面板压痕的估计表明,影响损伤开发是高度材料和放置配置的依赖性。此外,材料系统的那些组合和导致最大估计内部损伤的影响参数不应对应于导致最大面板缩进的内部损伤。因此,钝物对象的影响可能导致不可明显的损坏,不适合目视检查。这些努力可以通过建立材料配置和影响参数之间的关系来促进三明治面板设计,这导致改善损坏容差/电阻。

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