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Experimental verification of an algorithm for determination of tire-wheel interface loads

机译:用于确定轮胎轮界面载荷算法的实验验证

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Knowledge of the tire-wheel interface pressure distribution is necessary for aircraft wheel design and analysis. A finite element code, ANTWIL, has been developed recently which makes tractable the determination of the tire-wheel interface loads from experimentally obtained strains. Motivated by computational considerations, ANTWIL employs an asymmetrically loaded axisymmetric finite element model. Previously reported results have shown numerically that the axisymmetric assumption is well-justified. Data from a strain-roll test conducted at Wright-Patterson Air Force Base for an F-16 Block30 main landing gear wheel were obtained and analyzed via ANTWIL to recover the associated tire-wheel interface loads. Strain comparisons are shown to illustrate the validity of the recovered loads. Comparison of the load profiles for radial and bias ply tires is given and discussed.
机译:飞机轮设计和分析是必要的轮胎轮界面压力分布的知识。最近开发了一个有限元代码,是一个开发的,这使得从实验获得的菌株的载体的测定变得易于确定轮胎轮界面的载荷。通过计算考虑的动机,Antwil采用了不对称加载的轴对称有限元模型。先前报道的结果表明,轴对称假设是合理的。来自用于F-16块30的赖特 - PATTERSON空气力底座的应变辊试验的数据,并通过ANTWIL获得并分析以恢复相关的轮胎轮界面载荷。应变比较显示用于说明回收负载的有效性。给出并讨论了径向和偏置层轮胎的负载曲线的比较。

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