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Mechanical buckling of nanocomposites: Experimental and numerical investigations

机译:纳米复合材料的机械屈曲:实验和数值研究

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摘要

The proposed research explores Multi-Walled Carbon Nanotube's (MWCNT's) effect on the mechanical buckling behavior of glass fiber-enhanced thermosetting composites using UTM and the load vs displacement curve is plotted. Using the inflection point method, the critical buckling load is obtained from the load vs displacement curve for beams with three different volume fractions of MWCNT. The nonlinear finite element method is used to numerically obtain the load vs deflection curve and the numerical results are compared with the experimental results, and a close match is found with the experimental results. It is observed that the nonlinearity associated with the structure can significantly reduce the critical buckling load. The critical buckling load is found to increase and reported a 27.4 increase in buckling load with 0.3 wt. of MWCNT which could be accounted for the increase in flexural modulus of the material.
机译:本研究探讨了多壁碳纳米管(MWCNT)对UTM玻璃纤维增强热固性复合材料机械屈曲行为的影响,并绘制了载荷与位移曲线。采用拐点法,从MWCNT三种不同体积分数梁的荷载与位移曲线中得到临界屈曲荷载。采用非线性有限元方法数值求得荷载与挠度曲线,并将数值计算结果与实验结果进行对比,发现与实验结果吻合较近。结果表明,与结构相关的非线性可以显著降低临界屈曲荷载。发现临界屈曲载荷增加,并报告屈曲载荷增加 27.4%,MWCNT 为 0.3 wt.%,这可能是材料弯曲模量增加的原因。

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