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The NASA/industry Design Analysis Methods for Vibrations (DAMVIBS) program: Boeing Helicopters airframe finite element modeling

机译:NASA /工业振动设计分析方法(DAMVIBS)程序:波音直升机机体有限元建模

摘要

Mathematical models based on the finite element method of structural analysis, as embodied in the NASTRAN computer code, are routinely used by the helicopter industry to calculate airframe static internal loads used for sizing structural members. Historically, less reliance has been placed on the vibration predictions based on these models. Beginning in the early 1980's NASA's Langley Research Center initiated an industry wide program with the objective of engendering the needed trust in vibration predictions using these models and establishing a body of modeling guides which would enable confident future prediction of airframe vibration as part of the regular design process. Emphasis in this paper is placed on the successful modeling of the Army/Boeing CH-47D which showed reasonable correlation with test data. A principal finding indicates that improved dynamic analysis requires greater attention to detail and perhaps a finer mesh, especially the mass distribution, than the usual stress model. Post program modeling efforts show improved correlation placing key modal frequencies in the b/rev range with 4 percent of the test frequencies.
机译:NASTRAN计算机代码中包含的基于结构分析的有限元方法的数学模型通常被直升机行业用来计算用于确定结构构件尺寸的机身静态内部载荷。从历史上看,对基于这些模型的振动预测的依赖较少。从1980年代初期开始,美国国家航空航天局(NASA)的兰利研究中心(Langley Research Center)发起了一项全行业计划,目的是使使用这些模型的振动预测获得所需的信任,并建立一组建模指南,这将有信心将机体振动作为常规设计的一部分进行未来的预测处理。本文的重点放在陆军/波音CH-47D的成功建模上,该模型与测试数据显示出合理的相关性。一个主要发现表明,与通常的应力模型相比,改进的动力学分析需要更多地关注细节,并且可能需要更精细的网格,尤其是质量分布。程序后建模工作表明,改进的相关性将关键模态频率置于b / rev范围内,并具有4%的测试频率。

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    Lang P.; Reed D.; Gabel R.;

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  • 年度 1993
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