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Application of Load Updating to a Complex Three Dimensional Frame Structure

机译:负荷更新在复杂三维框架结构中的应用

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This paper presents a novel method for the correlation of FEM results to experimental test results known as the "Load Updating Method." Specifically, the load updating method uses the math model from the FEM and the strains measured from experimental or flight test data as inputs and then predicts the loads in the FEM which would result in strains that would correlate best to the measured strains in the least squared sense. In this research, the load updating method is applied to the analysis of a complex frame structure whose validation is challenging due to the complex nature of its structural behavior, load distributions, and error derived from residual strains. A FEM created for this structure is used to generate strain data for thirty-two different load cases. These same thirty-two load cases are replicated in an experimental setup consisting of the frame, supporting structure, and thirty actuators which are used to load the frame according to the specifications for each of the thirty-two load conditions. A force-strain matrix is created from the math model in NASTRAN using unit loads which are separately applied to each load point in order to extract strain results for each of the locations of the seventy-four strain gages. The strain data from the structural test and the force-strain matrix is then input into a Matlab code which is created to perform the load updating method. This algorithm delivers a set of coefficients which in turn gives the updated loads. These loads are applied to the FEM and the strain values extracted for correlation to the strains from test data. It is found that the load updating method applied to this structure produces strains which correlate well to the experimental strain data. Although the loads found using the load updating method do not perfectly match those which are applied during the test, this error is primarily attributed to residual strains within the structure. In summary, the load updating method provides a way to predict loads which, when applied to the FEM, would result in strains that correlate best to the experimental strains. Ultimately, this method could prove especially useful for predicting loads in experimental and flight test structures and could aid greatly in the Federal Aviation Administration (FAA) certification process.
机译:本文提出了一种新的FEM结果与实验测试结果相关的新方法,称为“负载更新方法”。具体地,负载更新方法使用来自FEM的数学模型和从实验或飞行测试数据测量的菌株作为输入,然后预测有限元的负荷,这将导致最佳的菌株与最小平方中的测量菌株相关联感觉。在该研究中,载荷更新方法应用于复杂帧结构的分析,其验证由于其结构行为,负载分布和源自残留菌株的错误性质而挑战。为该结构创建的FEM用于生成三十二个不同负载案例的应变数据。这些相同的三十二负载箱在由框架,支撑结构和三十致动器组成的实验设置中复制,该夹具根据用于根据三十二个负载条件中的每一个的规格加载框架的三十致动器。使用单位载荷从Nastran中的数学模型创建力 - 应变矩阵,其单独应用于每个负载点,以便为七十四个应变计的每个位置提取应变结果。然后将来自结构测试和力应变矩阵的应变数据输入到创建的MATLAB代码中以执行负载更新方法。该算法提供一组系数,又提供更新的负载。这些载荷应用于FEM,提取与从测试数据的菌株相关的应变值。结果发现,应用于该结构的负载更新方法产生与实验应变数据相比的应变。尽管使用负载更新方法的负载不完全匹配测试期间应用的那些,但该误差主要归因于结构内的残余菌株。总之,负载更新方法提供了一种方法来预测载荷,当施加到FEM时,将导致与实验菌株相关的菌株。最终,这种方法可以证明对于预测实验和飞行测试结构中的负荷特别有用,并且可以在联邦航空管理局(FAA)认证过程中大大帮助。

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