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Comparison of Tensile and Compressive Properties of Carbon/Glass Interlayer and Intralayer Hybrid Composites

机译:碳/玻璃中间层和层内杂化复合材料的拉伸和压缩性能比较

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摘要

Tensile and compressive properties of interlayer and intralayer hybrid composites were investigated in this paper. The tensile modulus and compression modulus of interlayer and intralayer hybrid composites are the same under the same mixed ratio, the tensile strength is much superior to the compression strength, and while the tensile modulus and strength increase along with the carbon fiber content, the compression values change slightly. The influence of stacking structures on the tensile and compressive strengths is opposite to the ratio of T/C (tensile/compression) strength for interlayer hybrid composites, and while the tensile and compression strengths with glass fiber sandwiching carbon fiber can reach the maximum value, the ratio of T/C strength is minimum. For structures with carbon fiber sandwiching glass fiber, or with asymmetric structures, the tensile and compressive strengths are at a low value. For intralayer hybrid structures, while the carbon/glass (C/G) dispersion degree is high, the tensile and compression strengths are low. The experimental tensile and compressive strengths for interlayer and intralayer hybrid composites are greater than the theoretical values, which demonstrates that strength conforms well to the positive hybrid effect. The tensile fracture strain is greater than the compression fracture strain for hybrid composites, with both of them basically maintained at the same level.
机译:研究了层间和层内杂化复合材料的拉伸和压缩性能。在相同的混合比下,层间和层间杂化复合材料的拉伸模量和压缩模量相同,拉伸强度远优于压缩强度,而拉伸模量和强度随碳纤维含量的增加而增大,压缩值稍微改变。叠层结构对拉伸强度和压缩强度的影响与层间杂化复合材料的T / C(拉伸/压缩)强度之比相反,而玻璃纤维夹层碳纤维的拉伸强度和压缩强度可以达到最大值, T / C强度比最小。对于具有碳纤维夹层玻璃纤维的结构或具有不对称结构的结构,拉伸强度和压缩强度处于较低值。对于层内混合结构,虽然碳/玻璃(C / G)的分散度较高,但拉伸强度和压缩强度却较低。层间和层内杂化复合材料的实验拉伸强度和压缩强度大于理论值,这表明该强度很好地符合正杂化效应。混合复合材料的拉伸断裂应变大于压缩断裂应变,两者基本保持在同一水平。

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