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61.
62.
动态保障结构下多级多层备件配置优化建模 总被引:1,自引:0,他引:1
针对作战编队执行长时间、远距离任务期间,编队后方保障站点变更的情况,结合部队维修保障的特点,基于可修复备件多级管理(METRIC)理论,通过计算编队剩余备件分布规律,建立了动态保障体系结构下基于时变可用度的三级两层备件保障模型。以备件储存空间为约束,可用度为目标,建立了分阶段边际优化模型。列举实例,采用分阶段边际算法对备件方案进行优化,对比分析了动态保障结构下和固定保障结构下装备可用度随时间的变化,并采用蒙特卡罗仿真方法对案例进行实验验证。案例结果表明:采取多个后方站点的保障方式能有效提高装备可用度;案例仿真实验结果与解析结果误差在4%以内。模型可为保障决策者制定备件方案提供辅助决策工具。 相似文献
63.
为拓展服务计算的形式化研究视野、手段和方法,建立并实现了一种针对Web服务的服务计算形式化模型。鉴于开放环境下的服务实体主要来源于不同的第三方提供者,将软件实体抽象成余代数单子,从而以一种黑盒方式给出软件服务的语义模型。给出了余代数单子的一般性定义,在此基础上对软件服务进行单子描述,进而提出一种基于余代数方法和单子技术的Web服务参考模型。最后,实现了一个基于单子的Web服务计算平台原型系统,可支持从遗留系统中进行服务抽取、发布、发现和度量等。 相似文献
64.
《中国航空学报》2021,34(6):1-17
Corundum abrasives with good chemical stability can be fabricated into various free abrasives and bonded abrasive tools that are widely used in the precision machining of various parts. However, these abrasives cannot satisfy the machining requirements of difficult-to-machine materials with high hardness, high strength, and strong wearing resistance. Although superhard abrasives can machine the above-mentioned materials, their dressing and manufacturing costs are high. By contrast, ceramic corundum abrasives fabricated by sol–gel method is a cost-effective product between conventional and superhard abrasives. Ceramic corundum abrasives exhibit self-sharpening and high toughness. In this review, the optimization methods of ceramic corundum abrasive properties are introduced from three aspects: precursor synthesis, particle shaping, and sintering. Firstly, the functional mechanism of seeds and additives on the microstructural and mechanical properties of abrasives is analyzed. Specifically, seeds can reduce the phase transition temperature and improve fracture toughness. The grain size and uniformly dense structure can be controlled by applying an appropriate amount of multicomponent additives. Then, the urgent need of engineering application and machinability of special shape ceramic corundum abrasives is reviewed, and three methods of abrasive shaping are summarized. The micromold replication technique is highly advanced and can be used to prepare functional abrasives. Additionally, the influence of a new sintering method, namely, two-step sintering technique, on the microstructural and mechanical performance of ceramic corundum abrasives is summarized. Finally, the challenge and developmental trend of the optimization of ceramic corundum abrasives are prospected. 相似文献
65.
先进铝化物涂层制备技术进展 总被引:1,自引:0,他引:1
铝化物涂层是现役发动机热端部件高温氧化防护的主要手段。未来,高性能铝化物涂层仍是发展先进发动机所必需的技术。传统基于化学气相的制备方法不仅污染环境,腐蚀设备,效率低下,更重要的是难以有效制备高性能铝化物涂层。高效"绿色"化将是先进铝化物涂层制备技术的发展趋势。近年通过利用机械能辅助的策略获得了高效制备铝化物涂层的方法。另外,利用真空物理气相沉积加高温扩散的策略,"绿色"制备高性能铝化物涂层的研究也进展显著。结合上述两种策略,利用真空等离子辐照形成的离子撞击能,可高效、"绿色"地制备铝化物涂层,为高性能铝化物涂层的制备提供了一种新的有效途径。 相似文献
66.
针对微小型无人机光电吊舱对光轴稳定与目标跟踪的需求,研究了一种基于载体姿态测量的光学平台稳定技术.该技术利用吊舱基座上的速率陀螺测量机体三轴姿态运动,通过控制光学平台的俯仰和偏航两通道伺服系统实现对光轴的惯性空间稳定.该系统使用步进电机来当执行机构,根据步进电机的特性,可以推导得到控制量与转速的关系,由此省去了在一般捷联稳定技术中的微分测速环节,得出了一种新的基于前馈控制的不变性原理.设计了解耦指令分配算法,将一个两轴耦合系统,转换为两个独立的单轴系统.在单轴控制中,分别设计了比例控制及比例积分控制算法实现对光轴的稳定控制和跟踪.最后通过在Matlab/Simulink环境下的仿真,以及实际的摇摆台试验,证明了基于载体姿态测量的稳定技术能够实现微小型无人机光电吊舱的光轴稳定. 相似文献
67.
68.
基于自然激励技术的颤振边界预测 总被引:1,自引:1,他引:0
为了预测紊流激励条件下机翼的颤振边界,基于自然激励技术提取紊流响应的自由衰减信号,采用矩阵束方法识别模态参数,最后通过Z-W(Zimmerman-Weissenburger)方法计算稳定性判据,拟合判据变化曲线并外推颤振边界.对平板机翼模型进行了数值仿真分析,对单独机翼模型风洞颤振试验数据进行了计算.结果表明:采用自然激励技术与矩阵束方法能够较准确地识别紊流激励响应的模态参数,频率识别误差小于6%,阻尼比识别误差小于30%,结合Z-W方法能够在较低风速较早地预测颤振边界,有助于提高试验的安全性. 相似文献
69.
《中国航空学报》2016,(2):560-570
Single-crystal superalloys are typical advanced materials used for manufacturing aeroengine turbine blades. Their unique characteristics of high hardness and strength make them exceedingly difficult to machine. However, a key structure of a turbine blade, the film-cooling hole,needs to be machined in a single-crystal superalloy; such machining is challenging, especially considering the increasing levels of machining efficiency and quality demanded by the aeroengine industry. Tube electrode high-speed electrochemical discharge drilling(TSECDD), a hybrid technique of high-speed electrical discharge drilling and electrochemical machining, provides high machining efficiency and accuracy, as well as eliminating the recast layer. In this study, TSECDD is used to machine a film-cooling hole in a nickel-based single-crystal superalloy(DD6). The Taguchi methods of experiment are used to optimise the machining parameters. Experimental results show that TSECDD can effectively drill the film-cooling hole; the optimum parameters that give the best performance are as follows: pulse duration: 12 ls, pulse interval: 30 ls, peak current:6 A, and salt solution conductivity: 3 m S/cm. Finally, a hole is machined by TSECDD, and the results are compared with those obtained by electrical discharge machining. TSECDD is found to be promising for improving the surface quality and eliminating the recast layer. 相似文献
70.
《中国航空学报》2020,33(12):3027-3038
Hypersonic and high-enthalpy wind tunnels and their measurement techniques are the cornerstone of the hypersonic flight era that is a dream for human beings to fly faster, higher and further. The great progress has been achieved during the recent years and their critical technologies are still in an urgent need for further development. There are at least four kinds of hypersonic and high-enthalpy wind tunnels that are widely applied over the world and can be classified according to their operation modes. These wind tunnels are named as air-directly-heated hypersonic wind tunnel, light-gas-heated shock tunnel, free-piston-driven shock tunnel and detonation-driven shock tunnel, respectively. The critical technologies for developing the wind tunnels are introduced in this paper, and their merits and weakness are discussed based on wind tunnel performance evaluation. Measurement techniques especially developed for high-enthalpy flows are a part of the hypersonic wind tunnel technology because the flow is a chemically reacting gas motion and its diagnosis needs specially designed instruments. Three kinds of the measurement techniques considered to be of primary importance are introduced here, including the heat flux sensor, the aerodynamic balance, and optical diagnosis techniques. The techniques are developed usually for conventional wind tunnels, but further improved for hypersonic and high-enthalpy tunnels. The hypersonic ground test facilities have provided us with most of valuable experimental data on high-enthalpy flows and will play a more important role in hypersonic research area in the future. Therefore, several prospects for developing hypersonic and high-enthalpy wind tunnels are presented from our point of view. 相似文献