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首页> 外文期刊>Mechanics of materials >Role of different fiber orientations and thicknesses of the skins and the core on the transverse shear damping of polypropylene honeycomb sandwich structures
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Role of different fiber orientations and thicknesses of the skins and the core on the transverse shear damping of polypropylene honeycomb sandwich structures

机译:不同纤维取向,表皮和纤芯厚度对聚丙烯蜂窝夹层结构横向剪切阻尼的作用

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摘要

This paper investigates the effect of different orientations of fiber in the skins and different thicknesses of the skins and polypropylene honeycomb core (PPHC) on the transverse shear damping of the sandwich using experimental and theoretical studies. Three different sandwiches, SW1 (thickness of top and bottom FRP skin: 3.15 mm each with 10 mm thick PPHC), SW2 (thickness of top and bottom FRP skin: 1.575 mm each with 5 mm thick PPHC), SW3 (thickness of top and bottom FRP skin: 1.575 mm each with 10 mm thick PPHC) were fabricated for conducting experimental work. In order to study the effect of fiber orientation of the skin on the natural frequency and loss factors, five different orientations (all 0 degrees, +/-30 degrees, +/-45 degrees, +/-60 degrees and all 90 degrees) were considered. An impulse technique was used to calculate the natural frequency and loss factor of the composites. The natural frequency and loss factor were also computed theoretically and compared. As the in-plane load of the strong FRP skins imposes on the soft honeycomb core under dynamic condition, it causes a large transverse shear deformation on the core. This shear deformation leads to a high energy dissipation/loss factor of the sandwich. At the 0 degrees fiber oriented sandwich, the loss factor value (eta = 0.0234) becomes significantly higher without losing its natural frequency (stiffness) value (f(n) = 142.12 Hz), which is not so in the case of FRP composites having the loss factor (eta) value of 0.00218 and the natural frequency value (f(n)) of 114.23 Hz. It is also found that the transverse shear effect and damping loss factor increases with the increase in the thicknesses of the skins and core of the sandwich. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文通过实验和理论研究,研究了表皮中纤维的不同取向以及表皮和聚丙烯蜂窝芯(PPHC)的不同厚度对三明治材料横向剪切阻尼的影响。三种不同的三明治,SW1(顶部和底部FRP蒙皮的厚度:每个3.15毫米,厚度为10mm PPHC),SW2(顶部和底部FRP蒙皮的厚度:每个厚度为1.575 mm,每个5mm厚度PPHC),SW3(顶部和底部的厚度)底部FRP蒙皮:分别进行1.575毫米和10毫米厚的PPHC)以进行实验工作。为了研究皮肤纤维取向对自然频率和损耗因子的影响,提供了五个不同的取向(均为0度,+ /-30度,+ /-45度,+ /-60度和所有90度)被认为是。使用脉冲技术来计算复合材料的固有频率和损耗因子。还从理论上计算并比较了固有频率和损耗因子。在动态条件下,由于坚固的FRP蒙皮的面内载荷施加在软蜂窝状芯上,因此会在芯上引起较大的横向剪切变形。这种剪切变形导致三明治的高能量耗散/损耗因子。在0度纤维取向的夹心结构中,损耗因子值(eta = 0.0234)变得更高,而不会损失其固有频率(刚度)值​​(f(n)= 142.12 Hz),而对于FRP复合材料,损耗因子(η)值为0.00218,固有频率值(f(n))为114.23 Hz。还发现,横向剪切效应和阻尼损耗因数随着夹层的表皮和芯的厚度的增加而增加。 (C)2015 Elsevier Ltd.保留所有权利。

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