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Stochastic low-velocity impact analysis of sandwich plates including the effects of obliqueness and twist

机译:夹层板的随机低速冲击分析,包括倾斜和扭曲的影响

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摘要

This paper quantifies the influence of uncertainty in the low-velocity impact responses of sandwich plates with composite face sheets considering the effects of obliqueness in impact angle and twist in the plate geometry. The stochastic impact analysis is conducted by using finite element (FE) modelling based on an eight nodded isoparametric quadratic plate bending element coupled with multivariate adaptive regression spline (MARS) in order to achieve computational efficiency. The modified Hertzian contact law is employed to model contact force and other impact parameters. Newmark's time integration scheme is used to solve the time-dependent equations. Comprehensive deterministic as well as probabilistic results are presented by considering the effects of location of impact, ply orientation angle, impactor velocity, impact angle, face-sheet material property, twist angle, plate thickness and mass of impactor. The relative importance of various input parameters is determined by conducting a sensitivity analysis. The results presented in this paper reveal that the impact responses of sandwich plates are significantly affected by the effect of source-uncertainty that in turn establishes the importance of adopting an inclusive stochastic design approach for impact modelling in sandwich plates.
机译:考虑到冲击角的倾斜和板几何形状的扭曲,本文对具有复合面板的夹心板在低速冲击响应中的不确定性影响进行了量化。随机影响分析是通过使用有限元(FE)建模进行的,该建模基于八个点等参二次板弯曲元素与多元自适应回归样条(MARS)耦合,以实现计算效率。修改后的赫兹接触定律用于模拟接触力和其他冲击参数。 Newmark的时间积分方案用于求解与时间有关的方程。通过考虑冲击位置,层定向角,冲击器速度,冲击角,面板材料特性,扭曲角,板厚和冲击器质量的影响,给出了综合的确定性和概率性结果。各种输入参数的相对重要性通过进行敏感性分析来确定。本文提出的结果表明,夹层板的冲击响应受源不确定性的影响显着影响,这反过来确立了采用包容性随机设计方法进行夹层板冲击建模的重要性。

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