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Mechanical Behavior Of Unidirectional Glass Fibers Reinforced Resol/vac-eha Composites At Different Volume Fraction Of Fibers

机译:单向玻璃纤维增​​强的Resol / vac-eha复合材料在不同纤维体积分数下的力学行为

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Glass fibers reinforced Resol/VAC-EHA Composites were fabricated at different volume fraction of fibers to determine the mechanical behavior. Resol solution was blended with vinyl acetate-2-ethylhexyl acrylate (VAc-EHA) resin in an aqueous medium with varying volume fraction of glass fibers. The. role of fiber/matrix interactions in glass fibers reinforced composites were investigated to predict the stiffness and damping properties and their different mechanical behavior was compared with pure Resol and Resol/VA C-EHA blend. In order to study the static and dynamic response of Resol, Resol/VAC-EHA blend, and glass fibers reinforced composites, a multiquadric radial basis function (MQRBF) method was developed. MQRBF was applied for spatial discretization and a Newmark implicit scheme was used for temporal discretization. The discretization of the differential equations generates a larger number of algebraic equations than the unknown coefficients. To overcome this ill conditioning, the multiple linear regression analysis, which is based on the least square error norm, was employed to obtain the coefficients. Simple supported and clamped boundary conditions were considered. Numerical results were compared with those obtained by other analytical methods.
机译:玻璃纤维增​​强的Resol / VAC-EHA复合材料是在纤维的不同体积分数下制造的,以确定机械性能。在具有变化的玻璃纤维体积分数的水性介质中,将可熔酚醛树脂溶液与乙酸乙烯酯-2-丙烯酸乙基己酯(VAc-EHA)树脂混合。的。研究了纤维/基体相互作用在玻璃纤维增​​强复合材料中的作用,以预测其刚度和阻尼性能,并与纯Resol和Resol / VA C-EHA共混物比较了它们的不同机械性能。为了研究Resol,Resol / VAC-EHA共混物和玻璃纤维增​​强复合材料的静态和动态响应,开发了一种多二次径向基函数(MQRBF)方法。 MQRBF用于空间离散化,Newmark隐式方案用于时间离散化。与未知系数相比,微分方程的离散化生成更多数量的代数方程。为了克服这种不适,采用了基于最小二乘误差范数的多元线性回归分析来获得系数。考虑了简单的支撑和约束边界条件。将数值结果与通过其他分析方法获得的结果进行比较。

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