The Dynamic Inertia Measurement (DIM) method uses a ground vibration test setup to determine the mass properties of an object using information from frequency response functions. Most conventional mass properties testing involves using spin tables or pendulum-based swing tests, which for large aerospace vehicles becomes increasingly difficult and time-consuming, and therefore expensive, to perform. The DIM method has been validated on small test articles but has not been successfully proven on large aerospace vehicles. In response, the National Aeronautics and Space Administration Armstrong Flight Research Center (Edwards, California) conducted mass properties testing on an "iron bird" test article that is comparable in mass and scale to a fighter-type aircraft. The simple two-I-beam design of the "iron bird" was selected to ensure accurate analytical mass properties. Traditional swing testing was also performed to compare the level of effort, amount of resources, and quality of data with the DIM method. The DIM test showed favorable results for the center of gravity and moments of inertia; however, the products of inertia showed disagreement with analytical predictions.


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    Title :

    Testing and Validation of the Dynamic Inertia Measurement Method


    Contributors:
    A. W. Chin (author) / C. Y. Herrera (author) / N. D. Spivey (author) / W. A. Fladung (author) / D. Cloutier (author)

    Publication date :

    2015


    Size :

    22 pages


    Type of media :

    Report


    Type of material :

    No indication


    Language :

    English




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