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Dissipated energy as the means for health monitoring of smart structures

机译:耗散能量作为智能结构健康监控的手段

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Abstract: NRL's Mechanics of Materials Branch has developed the Embedded Sensors for Smart Structures Simulator (ES) design tool which relates the output of a finite number of sensors to strain induced structural damage. This tool is based on the use of the dissipative part of the bulk nonlinear material behavior. The methodology used to identify this behavior has evolved at NRL over the past 20 years. This paper describes the role of strain measurements and their relation to sensor type and location, the conceptual framework of dissipated energy density as the metric employed for assessing material/structure performance, the facilities provided by the simulator and their use, as well as implementation details. Through this we hope not only to make designing and verifying embedded sensor layouts on composite material structures a tractable task, but also to promote the use of dissipated energy density as a foundation upon which to build an effective means of measuring material and structural health. 13
机译:摘要:NRL的材料力学分会开发了智能结构模拟器嵌入式传感器(ES)设计工具,该工具将有限数量的传感器的输出与应变引起的结构破坏联系起来。该工具基于使用散装非线性材料行为的耗散部分。在过去的20年中,用于识别这种行为的方法已在NRL上得到了发展。本文描述了应变测量的作用及其与传感器类型和位置的关系,耗散能量密度的概念框架(用作评估材料/结构性能的度量),模拟器提供的设施及其使用方法以及实施细节。通过这种方式,我们不仅希望使设计和验证复合材料结构上的嵌入式传感器布局成为一项容易完成的任务,而且希望促进使用耗散的能量密度作为基础,以此为基础来构建测量材料和结构健康的有效手段。 13

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