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The Effect of Reinforcement Structure on the Modal Parameters for Sandwich Structure Composite Plate

机译:增强结构对三明治结构复合板型模态参数的影响

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In order to investigate the effect of different reinforcement structure on the dynamic characteristics of sandwich structure composite plates used for manufacturing the high speed reciprocating motion composite components, four kinds of paulownia wood sandwich composite test specimens with dimensions of 350 X 83.5 X 9.5mm was designed and made by hand lay-up performing and press molding technology. The woven and 2D braiding fabric prepreg were both selected as top face and inner face materials , respectively, and the carbon fiber woven fabric prepreg was chosen as inner part materials. According to the impulse response modal test method, a modal test system was established. It was found that this kind of sandwich structure composite plate has bigger natural frequency value, it's minimum natural frequency was about 609.77Hz that could meet the requirement for high speed reciprocating motion parts. The dynamic test results shown that the natural frequency of F2BAF-IUC-CPW sample is higher t about 11.17% at least, selecting 2D integral braiding pipe fabric as top face and inner face reinforced materials could effectively improve the dynamic properties of sandwich composite rectangular plates. The modal experiments indicated that the modal shapes of sandwich composite plate specimen with four kind reinforcement structures were identical, it's 1st modal shape, 2nd modal shape and 3rd modal shape presented torsional vibration shape, flexural vibration shape and torsional flexural vibration shape, separately, the modal shapes of sandwich composite plate specimen were not obviously affected by reinforcement structure.
机译:为了探讨不同增强结构对用于制造高速往复运动复合组件的夹层结构复合板的动态特性的影响,四种泡桐木夹层复合试样,尺寸为350 x 83.5 x 9.5mm并用手工铺设执行和压模技术。编织和2D编织织物预浸料分别选择为顶面和内表面材料,并且碳纤维织物预浸料被选择为内部部分材料。根据脉冲响应模态测试方法,建立了模态测试系统。结果发现,这种夹层结构复合板具有更大的固有频率值,它的最小自然频率约为609.77Hz,可以满足高速往复运动部件的要求。动态测试结果表明,F2BAF-IUC-CPW样品的固有频率至少为T约11.17%,选择2D整体编织管织物作为顶面和内面增强材料可以有效地提高夹层复合矩形板的动态性质。模态实验表明,具有四种型加强结构的夹层复合板标本的模态形状相同,它是第一模态形状,第二种模式形状和第3个模态形状呈现扭转振动形状,弯曲振动形状和扭转弯曲振动形状,分别夹层复合板标本的模态形状并不明显受加强结构的影响。

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