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Determining shear modulus of thin wood composite materials using a cantilever beam vibration method

机译:悬臂梁振动法测定薄木复合材料的剪切模量

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Shear modulus (G) of thin wood composite materials is one of several important indicators that characterizes mechanical properties. However, there is not an easy method to obtain this value. This study presents the use of a newly developed cantilever beam free vibration test apparatus to detect in-plane G of thin wood composite materials by measuring the first order free vibration cantilever specimens and its logarithmic decrement of vibration. Six sets of commercially purchased thin wood composite materials having three different fiber types were tested. A significant linear correlation was found between in plane G and bending modulus of elasticity (MOE) from cantilever-beam free vibration test and MOE was shown to be approximately two times of in-plane G. This was in full agreement with previous findings by other researchers. The study demonstrated that the cantilever beam free vibration method could be widely used to obtain in-plane G easily for thin wood composite materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:薄木复合材料的剪切模量(G)是表征机械性能的几个重要指标之一。但是,没有一种简单的方法来获得该值。这项研究提出了使用新开发的悬臂无梁振动测试设备,通过测量一阶自由振动悬臂试样及其振动的对数递减来检测薄木复合材料的面内G。测试了六组商业购买的具有三种不同纤维类型的薄木复合材料。发现在G平面和悬臂无梁振动测试的弯曲弹性模量(MOE)之间存在显着的线性相关性,并且MOE大约是平面G的两倍。这与以前的发现完全一致研究人员。研究表明,悬臂无梁振动法可广泛用于薄木复合材料的面内G的简便获取。 (C)2016 Elsevier Ltd.保留所有权利。

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