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TWO TIERED ANALYSIS OF A CFRP LAMINATE IMBEDDED WITH MAGNETOSTRICTIVE PARTICLES

机译:CFRP叠合板中磁化颗粒的两层分析

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The overall purpose of this research is to characterize the affects of imbedding magnetostrictive particles (MSP) in a CFRP laminate for the purpose of nondestructive evaluation. This paper details an investigation using an analytical and experimental approach. At the time of this publication, both the analytical and experimental investigations are in a preliminary stage and the results have not yet converged. The analytical investigation utilizes fundamental equations for the magneto-mechanical properties of the MSP and classical laminate theory for the strength and stiffness of the CFRP laminate to obtain a model of the combination. It is assumed that the magneto-mechanical relationship of the MSP layer is a function of the prestress acting on the layer. This relationship is nonlinear in nature but is broken down into a number of linear sections to facilitate analysis. This prestress acting on the MSP layer is a result of the CFRP laminate's stiffness resisting the induced strain of the MSP layer. Classical laminate theory is used to obtain the value of the prestress as a function of this induced strain. As would be expected, this analysis becomes an iterative process. The induced strain is calculated based on a prestress level of zero. This strain is then used to calculate the amount of stress in the CFRP laminate which becomes the prestress value, and the process is repeated until convergence is reached. Unidirectional CFRP laminates are used in this analysis. The experimental approach involved testing a collection of composite beams imbedded with MSP using a scanner that surrounded the beams. The scanner was composed of an excitation coil and a sensing coil. A detailed schematic of the scanner is included in the paper showing the slide along which the scanner apparatus moved, and the sensing coil surrounded by the excitation coil. The samples used in this analysis were constructed from unidirectional prepreg carbon fiber with varying internal delaminations, ply orientations, and number of plies. A program was constructed that allowed the user to control the signal being output to the excitation coil as well as record data from the sensing coil. The results presented in this paper are not final and will be used to create a foundation for continuation of this research.
机译:这项研究的总体目的是为了无损评估的目的,表征在CFRP层压板中嵌入磁致伸缩颗粒(MSP)的影响。本文详细介绍了使用分析和实验方法进行的调查。在本书出版之时,分析研究和实验研究都处于初步阶段,结果尚未趋于一致。分析研究利用MSP的磁机械特性的基本方程式和CFRP层压板的强度和刚度的经典层压板理论来获得组合模型。假定MSP层的磁机械关系是作用在该层上的预应力的函数。这种关系本质上是非线性的,但分解为多个线性部分以方便分析。作用在MSP层上的预应力是CFRP层压板抵抗MSP层引起的应变的刚度的结果。经典的层压理论被用来获得预应力的值,该值是该诱发应变的函数。不出所料,此分析将成为一个迭代过程。诱导应变是基于零的预应力水平计算的。然后使用该应变来计算CFRP层压板中的应力量,该应力量变为预应力值,然后重复该过程,直到达到收敛为止。在此分析中使用单向CFRP层压板。实验方法涉及使用包围光束的扫描仪测试嵌入了MSP的复合梁的集合。扫描仪由励磁线圈和感测线圈组成。纸中包括扫描仪的详细示意图,其中显示了扫描仪设备沿其移动的滑片以及被励磁线圈包围的感应线圈。本分析中使用的样品由单向预浸料碳纤维制成,具有不同的内部分层,层定向和层数。构建了一个程序,该程序允许用户控制输出到励磁线圈的信号以及记录来自感测线圈的数据。本文介绍的结果并非最终结果,将为继续进行这项研究奠定基础。

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