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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Center Notch Flexure Sandwich Geometry for Characterizing Skin-Core Adhesion in Thin-Skinned Sandwich Structures
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Center Notch Flexure Sandwich Geometry for Characterizing Skin-Core Adhesion in Thin-Skinned Sandwich Structures

机译:中心凹口挠曲三明治几何形状,用于表征薄皮三明治结构中的皮芯粘合力

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The fracture properties of a number of sandwich structures have been in vestigated using a simple three point bend test geometry. The center notch flexure sandwich (CNFS) test involves loading the lower skin of the sandwich structure and propagating a central crack along the lower skin-core interface. A finite element analysis has been used to determine the crack tip loading conditions as a function of crack length and mechanical properties of the via experiment, and shows the CNFS test to be predominantly mode I. The CNFS technique has been used to characterize the interfacial fracture properties of several foam, balsa, and honeycomb-based sandwich structures similar to those currently used in the marine and aerospace industries. Experimentally-determined values for interfacial fracture energy varied between approximately 170 J/m~2 for a glass fiber reinforced polyester/linear PVC system and 2750 J/m~2 for a glass fiber reinforced sandwich system based on a Nomex honeycomb core. The fracture toughness values obtained through the CNFS test agreed well with those values obtained via two different test methods. The J integral has been proposed as a fracture criterion for CNFS specimens that do not behave in a linear elastic manner; initial findings suggest this fracture criterion is applicable to CNFS specimens.
机译:使用简单的三点弯曲测试几何形状对许多三明治结构的断裂特性进行了研究。中心缺口挠曲夹层(CNFS)测试涉及加载夹层结构的下部蒙皮,并沿着下部蒙皮-核心界面传播中心裂缝。有限元分析已被用来确定裂纹尖端的加载条件,该条件取决于裂纹长度和通孔实验的力学性能,并且表明CNFS测试主要是模式I。CNFS技术已用于表征界面断裂几种泡沫,轻木和蜂窝状三明治结构的特性类似于目前在海洋和航空航天行业中使用的结构。对于玻璃纤维增​​强的聚酯/线性PVC体系,界面断裂能的实验确定值在大约170 J / m〜2之间,对于基于Nomex蜂窝芯的玻璃纤维增​​强的夹心体系,其​​在2750 J / m〜2之间变化。通过CNFS测试获得的断裂韧性值与通过两种不同测试方法获得的断裂韧性值非常吻合。已经提出了J积分作为不以线性弹性方式表现的CNFS试样的断裂准则。初步发现表明该断裂标准适用于CNFS标本。

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