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Specific properties and fracture toughness of syntactic foam: Effect of foam microstructures

机译:复合泡沫的特殊性能和断裂韧性:泡沫微观结构的影响

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Studies were performed on the specific strength, moduli and fracture toughness of varied microstructures of syntactic foam. The different microstructures were created by using three different types of microspheres, namely 3M Scotchlite~? K15 and K46 glass bubbles, and Phenoset BJO-093 hollow phenolic microspheres, and by changing the volume fractions of microspheres from 0 to 50 vol percent. Tension, compression, flexural and fracture tests were performed. Results showed that the tensile and flexural strengths decreased with increasing filler content. The behavior of the tensile and flexural strength was not affected by the component micro-spheres. Interestingly, the tensile and flexural moduli showed different trends for each type of microspheres with increasing filler content. Results of the compression tests revealed superior behavior of the high density microspheres. The specific fracture toughness data yielded maximum values at 30 vol percent for each type of microspheres investigated. Scanning electron microscope studies were performed to determine the failure mode for each loading condition.
机译:对语法泡沫的各种微观结构的比强度,模量和断裂韧性进行了研究。通过使用三种不同类型的微球(即3M Scotchlite ??)来创建不同的微结构。 K15和K46玻璃泡以及Phenoset BJO-093中空酚醛微球,并通过将微球的体积分数从0更改为50体积%。进行了拉伸,压缩,弯曲和断裂测试。结果表明,抗张强度和抗弯强度随填料含量的增加而降低。拉伸和弯曲强度的行为不受组分微球的影响。有趣的是,随着填料含量的增加,每种微球的拉伸模量和挠曲模量均显示出不同的趋势。压缩测试的结果显示出高密度微球的优异性能。特定的断裂韧性数据得出了所研究的每种微球的30%(体积)最大值。进行扫描电子显微镜研究以确定每种加载条件的失效模式。

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