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The NASA/industry Design Analysis Methods for Vibrations (DAMVIBS) program : Bell Helicopter Textron accomplishments

机译:NASA /工业振动设计分析方法(DAMVIBS)计划:贝尔直升机德事隆的成就

摘要

Accurate vibration prediction for helicopter airframes is needed to 'fly from the drawing board' without costly development testing to solve vibration problems. The principal analytical tool for vibration prediction within the U.S. helicopter industry is the NASTRAN finite element analysis. Under the NASA DAMVIBS research program, Bell conducted NASTRAN modeling, ground vibration testing, and correlations of both metallic (AH-1G) and composite (ACAP) airframes. The objectives of the program were to assess NASTRAN airframe vibration correlations, to investigate contributors to poor agreement, and to improve modeling techniques. In the past, there has been low confidence in higher frequency vibration prediction for helicopters that have multibladed rotors (three or more blades) with predominant excitation frequencies typically above 15 Hz. Bell's findings under the DAMVIBS program, discussed in this paper, included the following: (1) accuracy of finite element models (FEM) for composite and metallic airframes generally were found to be comparable; (2) more detail is needed in the FEM to improve higher frequency prediction; (3) secondary structure not normally included in the FEM can provide significant stiffening; (4) damping can significantly affect phase response at higher frequencies; and (5) future work is needed in the areas of determination of rotor-induced vibratory loads and optimization.
机译:需要直升机机身的准确振动预测才能“从图纸上飞走”,而无需进行昂贵的开发测试来解决振动问题。 NASTRAN有限元分析是美国直升机行业内进行振动预测的主要分析工具。在NASA DAMVIBS研究计划下,贝尔进行了NASTRAN建模,地面振动测试以及金属(AH-1G)和复合材料(ACAP)机身的相关性。该计划的目的是评估NASTRAN机体的振动相关性,调查导致不一致的因素,并改进建模技术。过去,对于具有多叶片转子(三个或更多个叶片)且主要激发频率通常高于15 Hz的直升机的高频振动预测一直缺乏信心。贝尔在DAMVIBS计划下的研究成果包括以下内容:(1)复合材料机身和金属机身的有限元模型(FEM)的精度通常是可比的; (2)在有限元法中需要更多细节,以改善高频预测; (3)有限元法中通常不包含的二级结构可以提供明显的加强; (4)阻尼会显着影响较高频率下的相位响应; (5)在确定转子引起的振动载荷和优化方面需要进一步的工作。

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    Cronkhite James D.;

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  • 年度 1993
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