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A new structural health monitoring system for composite laminates

机译:用于复合材料层压板的新型结构健康监测系统

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摘要

The increasing use of composite laminates in safety critical structures has prompted the development of a robust structural health monitoring system for laminates, which uses metastable ferrous alloy inserts embedded within the laminate during component construction to provide an indication of the peak tensile strain encountered by the laminate. The metastable ferrous alloy insert has an austenitic crystal structure at room temperature, but upon application of strain, this transforms to a thermodynamically stable martensite, resulting in a change in magnetic susceptibility, which can be correlated with the peak strain experienced by the material (strain memory effect). This paper presents the test results that show that it is possible to manufacture a smart laminate in this fashion, and that sufficient strain is experienced by the insert to provide a significant change in magnetic susceptibility, thereby warning of a high strain level in the laminate. Various insert geometries and laminate thicknesses are also tested for their effect on the susceptibility measurements.
机译:复合材料层压板在安全关键型结构中的使用不断增加,促使开发了一种坚固的层压板结构健康监测系统,该系统使用在组件构建过程中嵌入层压板中的亚稳态铁合金嵌件提供层压板遇到的峰值拉伸应变的指标。亚稳态铁合金插入件在室温下具有奥氏体晶体结构,但在施加应变后,转变为热力学稳定的马氏体,导致磁化率发生变化,这可能与材料所经历的峰值应变相关(应变记忆效应)。本文介绍的测试结果表明,可以以这种方式制造智能层压板,并且插入件承受足够的应变,从而显着改变磁化率,从而警告层压板出现高应变水平。还测试了各种刀片几何形状和层压板厚度对磁化率测量的影响。

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