首页> 外文期刊>Transactions of the Indian Institute of Metals >The Influence of the Thickness and Areal Density on the Mechanical Properties of Carbon Fibre Reinforced Aluminium Laminates (CARAL)
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The Influence of the Thickness and Areal Density on the Mechanical Properties of Carbon Fibre Reinforced Aluminium Laminates (CARAL)

机译:厚度和面密度对碳纤维增强铝层压板机械性能的影响(Caral)

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摘要

A novel composite material consisting of a laminate of several thin aluminium sheets bonded with layers of carbon fibre mat/epoxy resin. Carbon fibre reinforced aluminium laminates (CARAL) offer specific advantageous properties such as better strength, fatigue, impact, corrosion resistance, fire resistance and weight savings. CARAL is a kind of fibre metal laminate system. In the present work, CARAL was prepared and experimental tests were conducted to evaluate the influence of the thickness and areal density on the mechanical properties of CARAL. Mechanical properties such as, the tensile strength and flexural strength of the laminates were increased with the increase in thickness and areal density. CARAL with four aluminium layers and three carbon fibre mat layers have superior strength than the laminates with lesser number of layers due to thickness of laminates and areal density.
机译:一种新型复合材料,由几层薄铝板层压而成,与碳纤维毡/环氧树脂层粘合。碳纤维增强铝层板(CARAL)具有特殊的优越性能,如更好的强度、疲劳、冲击、耐腐蚀性、耐火性和重量节省。CARAL是一种纤维金属层压系统。在本研究中,制备了CARAL,并进行了实验测试,以评估厚度和面密度对CARAL力学性能的影响。随着厚度和面密度的增加,层合板的拉伸强度和弯曲强度等力学性能增加。由于层压板的厚度和面积密度,四层铝层和三层碳纤维毡层的CARAL比层压板的强度更高。

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