首页> 外文会议>ASME international mechanical engineering congress and exposition >Effective damping of a flexible-matrix-composite laminate with a negative effective Poisson's ratio
【24h】

Effective damping of a flexible-matrix-composite laminate with a negative effective Poisson's ratio

机译:泊松比为负值的柔性基复合材料层压板的有效阻尼

获取原文

摘要

Two very important factors which determine the effectiveness of a pump are its volumetric and energy efficiencies. Yin and Ghoneim constructed a prototype of a flexible body pump with a very high volumetric efficiency or pumping potential (the relative volume reduction due to a relative input stroke). The high volumetric efficiency is attributed to the geometry of the pump's structure (hyperboloid) as well as the high negative effective Poisson's ratio of the 3-layer ([θ/β/θ]) flexible-matrix-composite (carbon/polyurethane) laminate adopted for the body of the pump. The energy efficiency was not evaluated. An important factor in assessing the energy efficiency of flexible-body pumps is the effective damping (a measure of the energy dissipation per cycle) of the flexible body material. An objective of the current work is to determine the effective damping inherent in the 3-layer laminate, as a function of the two angle orientations θ and β, employed for the design of the flexible body pump. Thereby, the best fiber angle orientation, for the highest volumetric as well as energy efficiency, can be considered. The contribution of this work is twofold: 1) viscoelastic characterization (longitudinal, transverse, and shear complex moduli, as well as the in-plane complex Poisson's ratio) of the polyurethane/carbon composite, used in the Geo-polymer lab at RTF; the results may be utilized as benchmarks for other researchers using similar carbon/polyurethane in dynamic applications, and 2) provide a comprehensive study of the effect of the two angles θ and β on the effective damping factors of the three-layer laminate. Together with the similar study on the negative Poisson's ratio, a better design of the laminate for the most efficient flexible-body pump performance can be established.
机译:决定泵的有效性的两个非常重要的因素是其体积和能量效率。 Yin和Ghoneim构造了具有高容积效率或泵送潜力(由于相对输入冲程而导致相对容积减小)的挠性人体泵的原型。高容积效率归因于泵结构(双曲面)的几何形状以及3层([θ/β/θ])柔性基复合材料(碳/聚氨酯)层压板的高负有效泊松比采用的泵体。没有评估能量效率。评估挠性泵能效的重要因素是挠性材料的有效阻尼(每周期能量耗散的量度)。当前工作的目的是确定在三层层压板中固有的有效阻尼,这取决于挠性体泵的设计所采用的两个角度方向θ和β。因此,可以考虑最佳的纤维角度取向,以获得最高的体积以及能量效率。这项工作的作用有两个方面:1)在RTF的地质聚合物实验室中使用的聚氨酯/碳复合材料的粘弹性表征(纵向,横向和剪切复数模量,以及面内复泊松比)。该结果可作为在动态应用中使用类似碳/聚氨酯的其他研究人员的基准,并且2)提供了两个角度θ和β对三层层压板有效阻尼因子的影响的综合研究。连同对负泊松比的类似研究,可以建立一种层压板的更好设计,以实现最有效的挠性泵性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号