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Particulate composites are one of the widely used materials in producing numerous state-of-the-art components in biomedical, automobile, aerospace including defence technology. Variety of modelling techniques have been adopted in the past to model mechanical behaviour of particulate composites. Due to their favourable properties, particle-based methods provide a convenient platform to model failure or fracture of these composites. Smooth particle hydrodynamics (SPH) is one of such methods which demonstrate excellent potential for modelling failure or fracture of particulate composites in a Lagrangian setting. One of the major challenges in using SPH method for modelling composite materials depends on accurate and efficient way to treat interface and boundary conditions. In this paper, a master-slave method based multi-freedom constraints is proposed to impose essential boundary conditions and interfacial displacement constraints in modelling mechanical behaviour of composite materials using SPH method. The proposed methodology enforces the above constraints more accurately and requires only smaller condition number for system stiffness matrix than the procedures based on typical penalty function approach. A minimum cut-off value-based error criteria is employed to improve the compu-tational efficiency of the proposed methodology. In addition, the proposed method is further enhanced by adopting a modified numerical interpolation scheme along the boundary to increase the accuracy and computational efficiency. The numerical examples demonstrate that the proposed master-slave approach yields better accuracy in enforcing displacement constraints and requires approximately the same computational time as that of penalty method. 相似文献
956.
In this work, we extend the recently proposed adaptive phase field method to model fracture in orthotropic functionally graded materials (FGMs). A recovery type error indicator combined with quadtree decomposition is employed for adaptive mesh refinement. The proposed approach is capable of capturing the fracture process with a localized mesh refinement that provides notable gains in computational efficiency. The implementation is validated against experimental data and other nu-merical experiments on orthotropic materials with different material orientations. The results reveal an increase in the stiffness and the maximum force with increasing material orientation angle. The study is then extended to the analysis of orthotropic FGMs. It is observed that, if the gradation in fracture properties is neglected, the material gradient plays a secondary role, with the fracture behaviour being dominated by the orthotropy of the material. However, when the toughness increases along the crack propagation path, a substantial gain in fracture resistance is observed. 相似文献
957.
To help optimize the spacecraft design and reduce the risk of spacecraft mission failure, a new approach to assess the survivability of spacecraft in orbit is presented here, including the following three steps:1) Sensitivity Analysis of spacecraft. A new sensitivity analysis method, a ray method based on virtual outer wall, is presented here. Using rays to simulate the debris cloud can effectively address the component shadowing issues. 2) Component Vulnerability analysis of spacecraft. A function"Component functional reduction degree — Component physical damage degree"is provided here to clearly describe the component functional reduction. 3) System-level Survivability Assessment of spacecraft. A new method based on expert knowledge reasoning, instead of traditional artificial failure tree method, is presented here to greatly improve the efficiency and accuracy of calculation. 相似文献
958.
速射转管炮作为近程反导武器系统的重要一员,射击精度影响着其最终防御效果,通过对速射转管炮特点及其射击偏差机理的分析,研究了转管炮射击过程中身管转速、弹丸初速等多种因素对射击精度的影响,并在转管炮初始设计、弹道模型和校射等方面提出了修正误差、提高射击精度的方法。 相似文献
959.
罗李平 《海军工程大学学报》2007,19(2):21-24
考虑一类具连续分布滞量的非线性抛物型偏微分方程的振动性,借助Green定理将多维振动问题转化为关于某一类具连续分布滞量的非线性微分不等式的一维问题,给出了该类方程在Robin,Dirichlet边值条件下所有解振动的若干充分判据。所得结论充分地表明,振动是由时滞量引起的。 相似文献
960.
确定Kelvin模型粘弹性材料参数的一种实验方法 总被引:2,自引:0,他引:2
从Kelvin模型和Euler-bernoulli梁理论出发,利用弹性-粘弹性相应原理和弹性材料动力学理论得出粘弹性梁的动力学方程。利用中心差分法分析了粘弹性材料悬臂梁的动态函数。根据振动特性,将材料参数与梁应变响应周期及振幅衰减相联系;利用这种联系,提出了测定Kelvin模型粘弹性材料参数的一种简单实验方法;分别取不同长度的橡胶悬臂梁进行了相应的实验,测出了材料的剪切模量和粘性系数;分析实验结果,得出一些有益的结论。 相似文献