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Nonlinear free vibration of functionally graded polymer composite beams reinforced with graphene nanoplatelets (GPLs)

机译:石墨烯纳米片(GPL)增强的功能梯度聚合物复合材料梁的非线性自由振动

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This paper studies the nonlinear free vibration of a multi-layer polymer nanocomposite beam reinforced by graphene platelets (GPLs) non-uniformly distributed along the thickness direction. Theoretical formulations are based on Hamilton's principle, Timoshenko beam theory, and von Karman nonlinear strain displacement relationship. The effective Young's modulus of the GPL/polymer composites is estimated by Halpin-Tsai micromechanics model to account for the effects of GPL geometry and dimensions. The vibration frequencies and amplitude of the beam are obtained numerically by employing Ritz method. The influences of the distribution pattern, weight fraction, geometry and size of GPL nanofillers, the total number of layers together with the vibration amplitude and boundary conditions on the nonlinear free vibration behavior are investigated. The results show that adding a very small amount of GPLs into polymer matrix as reinforcements significantly increases the natural frequencies of the beam. Using larger sized GPLs with fewer single graphene layers and placing more GPLs near the top and bottom surfaces of the beam are the most effective ways to strengthen the beam stiffness and increase the linear and nonlinear natural frequencies. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了沿厚度方向非均匀分布的石墨烯薄片(GPL)增强的多层聚合物纳米复合材料梁的非线性自由振动。理论公式基于汉密尔顿原理,蒂莫申科梁理论和冯·卡曼非线性应变位移关系。通过Halpin-Tsai微力学模型估算GPL /聚合物复合材料的有效杨氏模量,以说明GPL几何形状和尺寸的影响。梁的振动频率和振幅是通过使用Ritz方法数值获得的。研究了GPL纳米填料的分布模式,重量分数,几何形状和尺寸,层总数以及振动幅度和边界条件对非线性自由振动行为的影响。结果表明,在聚合物基质中添加少量GPL作为增强材料会显着增加梁的固有频率。使用具有较少单个石墨烯层的更大尺寸的GPL,并在梁的顶部和底部表面附近放置更多的GPL是增强梁刚度并增加线性和非线性固有频率的最有效方法。 (C)2017 Elsevier Ltd.保留所有权利。

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