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951.
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
952.
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
953.
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
954.
针对目前网络化指挥信息系统作战效能评估指标体系不完善、且缺乏分项指标计算方法模型等问题,从网络化作战对指挥信息系统的作战需求出发,研究构建了空军网络化指挥信息系统的作战效能评估指标体系,并提出了分项指标概念内涵和计算模型与方法,可为指挥信息系统研制提供参考和支撑,为其作战效能的客观评估提供指标体系和模型方法。 相似文献
955.
SiO_2在SHS铝热-重力分离法制备陶瓷内衬复合钢管中的作用 总被引:1,自引:0,他引:1
采用自蔓延铝热-重力分离法,制备了陶瓷内衬复合钢管,并系统研究了SiO_2添加剂对SHS燃烧过程、陶瓷层相对密度与组织结构、复合钢管力学性能的影响。经研究发现,SiO_2在铝热燃烧过程中作为稀释剂存在,随着SiO_2添加量增多,燃烧温度与蔓延速率下降,并使分布于α-Al_2O_3枝晶晶界处的亚稳定相FeO·Al_2O_3增多;陶瓷相对密度与复合钢管抗压溃强度在SiO_2含量为2wt%时出现极大值(分别为92.5%与430MPa);陶瓷硬度、断裂韧性与复合钢管抗压剪强度随SiO_2含量增加而降低。 相似文献
956.
957.
基于有限元强度折减法,结合工程实例,利用软件ANSYS对不同倾角微型桩加固边坡以及倾斜微型桩的设桩位置、锚固深度和桩排距等桩身参数对边坡稳定性的影响进行了数值模拟分析。结果表明:微型桩加固边坡较优的倾斜角度为60°;随着设桩位置离坡顶距离的增加,边坡的稳定系数先增大后减小,当设桩位置距坡顶的相对位置为0.58~0.66,边坡的稳定系数较高;当桩排距为9倍桩径,边坡的稳定系数较高。研究结果为倾斜微型桩的设计与工程应用提供了理论依据,具有一定的普遍意义。 相似文献
958.
利用非线性最优反馈控制和伪谱轨迹快速重构技术,设计了一种有限推力空间远程拦截自适应闭环制导方法。首先建立了有限推力远程拦截最优制导问题模型,并给出了适用于该问题的非线性最优反馈控制求解原理。然后,将空间变轨动力学模型特点和伪谱法相结合,设计了基于状态量缩减的计算效率改进策略以提高轨迹优化的实时性。基于改进伪谱法进行连续轨迹快速重构,利用开环最优解形成闭环反馈,从而保证制导指令的实时更新,并通过引入控制逻辑对制导算法进行改进。时间最短远程拦截仿真表明,该闭环制导方法在保证任务指标最优性的同时,可以有效抑制J2摄动和计算误差的影响,具有较高的制导精度、自适应性和鲁棒性。 相似文献
959.
认知多输入多输出(multiple-input multiple-output,MIMO)雷达将认知技术与MIMO技术相结合,具备动态环境信息感知和自适应调节能力,受到雷达界的广泛关注。相比于传统雷达,认知MIMO雷达性能更优、适应性更强,是雷达迈向智能化发展的趋势,而发射波形的优化设计是实现雷达认知的关键,因而成为近年来学者研究的重点。首先介绍了认知MIMO雷达基本概念,分析了波形设计现状,然后在波形设计步骤的基础上,重点从优化准则和优化方法两方面总结了现有研究成果及特点,最后讨论了未来研究方向和需要解决的问题。 相似文献
960.