首页> 外文会议>Conference on Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems >Concept and Model of a Piezoelectric Structural Fiber for Multifunctional Composites
【24h】

Concept and Model of a Piezoelectric Structural Fiber for Multifunctional Composites

机译:多功能复合材料的压电结构纤维的概念和模型

获取原文

摘要

The use of piezoceramic materials for structural sensing and actuation is a fairly well developed practice that has found use in a wide variety of applications. However, just as advanced composites offer numerous benefits over traditional engineering materials for structural design, actuators that utilize the active properties of piezoelectric fibers can improve upon many of the limitations encountered when using monolithic piezoceramic devices. Several new piezoelectric fiber composites have been developed, however almost all studies have implemented these devices such that they are surface-bonded patches used for sensing or actuation. This paper will introduce a novel active piezoelectric structural fiber that can be laid up in a composite material to perform sensing and actuation, in addition to providing load bearing functionality. The sensing and actuation aspects of this multifunctional material will allow composites to be designed with numerous embedded functions including, structural health monitoring, power generation, vibration sensing and control, damping, and shape control through anisotropic actuation. A one dimensional micromechanics model of the piezoelectric fiber will be developed to characterize the feasibility of constructing structural composite lamina with high piezoelectric coupling. The theoretical model will be validated through finite element (FE) modeling in ABAQUS. The results will show that the electromechanical coupling of a fiber reinforced polymer composite incorporating the active structural fiber (ASF) could be more than 70% of the active constituent.
机译:使用压电陶瓷材料进行结构感应和致动是一个相当良好的开发实践,这些实践已经在各种应用中使用。然而,正如先进的复合材料在传统的结构设计上为传统的工程材料提供了许多优势,使用压电纤维的有源特性的致动器可以改善使用整体式压电陶瓷装置时遇到的许多限制。已经开发了几种新的压电纤维复合材料,但几乎所有研究都实施了这些装置,使得它们是用于感测或致动的表面粘合斑块。本文将引入一种新型活性压电结构纤维,其可以在复合材料中铺设,以便进行传感和致动,除了提供承载功能。这种多功能材料的感测和致动方面将允许复合材料设计,包括许多嵌入功能,包括通过各向异性致动的结构健康监测,发电,振动传感和控制,阻尼和形状控制。将开发压电纤维的一维微机械模型,以表征具有高压电联轴器的结构复合薄片的可行性。理论模型将通过ABAQUS中的有限元(FE)造型进行验证。结果将表明,掺入活性结构纤维(ASF)的纤维增强聚合物复合材料的机电耦合可大于活性成分的70%。

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