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Molecular dynamics study of carbon nanotube reinforced titanium composites

机译:碳纳米管增强钛复合材料的分子动力学研究

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Because of their high corrosion resistance, Ti and its alloys are widely used for chemical and petrochemical applications. Carbon nanotube reinforced Ti composites can be used in space and defense applications because these composites are lightweight and at the same time exhibit exceptional mechanical properties. In this study, the mechanical properties of carbon nanotube-Ti composites have been predicted using molecular dynamics approach. The effect of variation in carbon nanotube volume fraction, temperature and strain on the elastic and the shear modulus of carbon nanotube-Ti composites, was studied. The elastic and shear moduli were all found to increase significantly because of the increasing carbon nanotube volume fraction. Even at temperatures approaching 1 °K, the carbon nanotube-Ti composites show high values of elastic and shear moduli. The elastic moduli tend to attain a constant value at high levels of strain.
机译:由于它们的高耐腐蚀性,Ti及其合金广泛用于化学和石化应用。碳纳米管增强的Ti复合材料可用于空间和防御应用,因为这些复合材料是重量轻的,同时表现出卓越的机械性能。在该研究中,使用分子动力学方法预测了碳纳米管-TI复合材料的机械性能。研究了碳纳米管体积分数,温度和碳纳米管 - Ti复合材料的弹性和剪切模量对碳纳米管体积分数,温度和菌株的影响。由于碳纳米管体积分数的增加,弹性和剪切模态发现显着增加。即使在接近1°K的温度下,碳纳米管 - Ti复合材料也显示出高值的弹性和剪切模量。弹性模量倾向于以高水平的菌株达到恒定值。

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