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首页> 外文期刊>Steel & Composite Structures: An International Journal >Bending, buckling, and free vibration analyses of carbon nanotube reinforced composite beams and experimental tensile test to obtain the mechanical properties of nanocomposite
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Bending, buckling, and free vibration analyses of carbon nanotube reinforced composite beams and experimental tensile test to obtain the mechanical properties of nanocomposite

机译:碳纳米管增强复合梁和实验拉伸试验的弯曲,屈曲和自由振动分析,以获得纳米复合材料的机械性能

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摘要

In this research, experimental tensile test and manufacturing of carbon nanotube reinforced composite beam (CNTRC) is presented. Also, bending, buckling, and vibration analysis of CNTRC based on various beam theories such as Euler-Bernoulli, Timoshenko and Reddy beams are considered. At first, the experimental tensile tests are carried out for CNTRC and composite beams in order to obtain mechanical properties and then using Hamilton's principle the governing equations of motion are derived for Euler Bernoulli, Timoshenko and Reddy theories. The results have a good agreement with the obtained results by similar researches and it is shown that adding just two percent of carbon nanotubes increases dimensionless fundamental frequency and critical buckling load as well as decreases transverse deflection of composite beams. Also, the influences of different manufacturing processes such as hand layup and industrial methods using vacuum pump on composite properties are investigated. In these composite beams, glass fibers used in an epoxy matrix and for producing CNTRC, CNTs are applied as reinforcement particles. Applying two percent of CNTs leads to increase the mechanical properties and increases natural frequencies and critical buckling load and decreases deflection. The obtained natural frequencies and critical buckling load by theoretical method are higher than other methods, because there are some inevitable errors in industrial and hand layup method. Also, the minimum deflection occurs for theoretical methods, in bending analysis. In this study, Young's and shear modulli as well as density are obtained by experimental test and have not been used from the results of other researches. Then the theoretical analysis such as bending, buckling and vibration are considered by using the obtained mechanical properties of this research.
机译:在本研究中,提出了实验拉伸试验和碳纳米管增强复合梁(CNTRC)的制造。此外,考虑了基于各种光束理论的CNTRC的弯曲,屈曲和振动分析,例如Euler-Bernoulli,Timoshenko和Reddy梁。首先,对CNTRC和复合梁进行实验拉伸试验,以获得机械性能,然后使用Hamilton的原理,用于欧拉伯努利,Timoshenko和Reddy理论导出运动的控制方程。结果与通过类似研究的结果具有良好的一致性,结果表明,增加了两个百分之的碳纳米管增加了无量纲的基本频率和关键屈曲负荷,以及减少复合梁的横向偏转。此外,研究了不同制造过程的影响,例如使用真空泵对复合性能的手持式和工业方法。在这些复合梁中,用于环氧基质和生产CNTRC的玻璃纤维,CNT作为增强颗粒施加。施加百分之两种CNT导致力量增加机械性能并增加自然频率和关键屈曲负荷并降低偏转。通过理论方法获得的固有频率和关键屈曲负荷高于其他方法,因为工业和手动铺设方法存在一些不可避免的误差。此外,在弯曲分析中,理论方法发生最小偏转。在本研究中,杨氏和剪切型和密度通过实验测试获得,并且没有从其他研究的结果中使用。然后通过使用该研究的机械性能考虑弯曲,屈曲和振动等理论分析。

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