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611.
介质材料电导率是影响卫星充电过程的重要材料参数,它决定着航天器上电荷的分布状态以及电流平 衡建立的快慢。常规的电导率测量方法完全不考虑空间真实带电环境,其测试结果用于卫星带电防护设计将会产生 较大的误差。本文建立了用传统三电极法和电荷衰减法测试介质材料本征电导率的测试系统,对卫星常用的FR4 材 料进行了测试,测试结果与国外的结果相近。  相似文献   
612.
Particle-reinforcing titanium matrix composites(PTMCs) exhibit the sharp raising applications in modern industries owing to its extraordinary physical and mechanical properties. However, the poor grindability and unstable grinding processes due to the existence of TiC particles and TiB short fibres inside PTMCs, leading to the sudden grinding burn and low material removal rate.In this work, a novel radial ultrasonic vibration-assisted grinding(RUVAG) device with a special cross structure was dev...  相似文献   
613.
纳米银浆低温烧结工艺及应用可靠性   总被引:1,自引:0,他引:1       下载免费PDF全文
为了探索纳米银浆在大功率器件组装中的应用可靠性,亟待获得纳米银浆的烧结特性和热力学性能。本文对不同烧结温度、烧结时间、升温速率、烧结方式的纳米银浆样件烧结强度,结合烧结形貌进行了系统研究,并与航天电子产品中常规的互连材料Au80Sn20焊料、Sn90.5Ag3Cu0.5焊料以及H20E导电胶的散热性进行了对比分析。研究结果表明:采用可控升温速率空气氛围的烧结方式,在200 ℃下保温90 min,银浆样件的剪切强度最高可达40 MPa。纳米银浆导热性能与Au80Sn20相当,明显高于H20E和SAC305。在经历严酷的热应力和机械应力试验后,其剪切强度保持稳定,因此纳米银浆作为高导热连接材料在宇航大功率器件组装中具有良好的应用前景。  相似文献   
614.
《中国航空学报》2023,36(4):338-353
Reinforcement Learning (RL) techniques are being studied to solve the Demand and Capacity Balancing (DCB) problems to fully exploit their computational performance. A locally generalised Multi-Agent Reinforcement Learning (MARL) for real-world DCB problems is proposed. The proposed method can deploy trained agents directly to unseen scenarios in a specific Air Traffic Flow Management (ATFM) region to quickly obtain a satisfactory solution. In this method, agents of all flights in a scenario form a multi-agent decision-making system based on partial observation. The trained agent with the customised neural network can be deployed directly on the corresponding flight, allowing it to solve the DCB problem jointly. A cooperation coefficient is introduced in the reward function, which is used to adjust the agent’s cooperation preference in a multi-agent system, thereby controlling the distribution of flight delay time allocation. A multi-iteration mechanism is designed for the DCB decision-making framework to deal with problems arising from non-stationarity in MARL and to ensure that all hotspots are eliminated. Experiments based on large-scale high-complexity real-world scenarios are conducted to verify the effectiveness and efficiency of the method. From a statistical point of view, it is proven that the proposed method is generalised within the scope of the flights and sectors of interest, and its optimisation performance outperforms the standard computer-assisted slot allocation and state-of-the-art RL-based DCB methods. The sensitivity analysis preliminarily reveals the effect of the cooperation coefficient on delay time allocation.  相似文献   
615.
纤维型纳米隔热材料的研制   总被引:2,自引:1,他引:2       下载免费PDF全文
以纳米填料改性环氧树脂为基体,空心微珠和有机纤维为隔热填料,采用湿法缠绕工艺制备了纳米隔热材料。结果表明,F12型纳米隔热材料的隔热性能最佳,其热导率(20~150℃)为0.23~0.28W/(m·K),且随着温度的升高而增加。此外,隔热材料在150℃下加热100s后,背壁温度不超过50℃。  相似文献   
616.
《中国航空学报》2023,36(6):446-459
Cubic boron nitride (cBN) superabrasive grinding wheels exhibit unique advantages in the grinding of difficult-to-cut materials with high strength and toughness, such as titanium alloys and superalloys. However, grinding with multilayered metallic cBN superabrasive wheels faces problems in terms of grain wear resistance, the chip storage capability of the working layers and the stability and controllability of the dressing process. Therefore, in this work, novel metallic cBN superabrasive wheels with aggregated cBN (AcBN) grains and open pore structures were fabricated to improve machining efficiency and surface quality. Prior to the grinding trials, the air-borne abrasive blasting process was conducted and the abrasive blasting parameters were optimized in view of wear properties of cBN grains and metallic matrix materials. Subsequently, the comparative experiments were performed and then the variations in grinding force and force ratio, grinding temperature, tool wear morphology and ground surface quality of the multilayered AcBN grinding wheels were investigated during machining Ti–6Al–4V alloys. In consideration of the variations of grain erosion wear volume and material removal rate per unit of pure metallic matrix materials as the abrasive blasting parameters changes, the optimal abrasive blasting parameters were identified as the SiC abrasive mesh size of 60# and the abrasive blasting distance and time of 60 mm and 15 s, respectively. The as-developed AcBN grains exhibited better fracture toughness and impact resistance than monocrystalline cBN (McBN) grains because of the existence of metal-bonded materials amongst multiple cBN particles that decreased crack propagation inside whole grains. The metallic porous AcBN wheels had lower grinding forces and temperature and better ground surface quality than vitrified McBN wheels due to the constant layer-by-layer exposure of cBN particles in the working layer of AcBN wheels.  相似文献   
617.
冯小虎  夏景林  张志清 《上海航天》2005,22(Z1):111-116
介绍了风云二号(FY-2)C星地面应用分系统数据与指令接收站(CDAS)的主要技术指标、工作流程,以及与C星的星地接口与地面应用分系统其他部分的接口.说明了CDAS的天伺馈、信道、图像获取(IAS)、三点测距(TRRR)、数据收集(DCP)、遥测遥控(TT&C)、卫星模拟器、标校、时间统-、低速信息传输(LRIT)信息编码与发送等子系统的组成与功能.阐述了C星CDAS的设计原则,以及用群调技术实现DCP的数据解调、用扩频伪码进行TRRR定位、图像处理、TT&C增加图形化界面控制、正交相移键控(QPSK)解调器抗长连"1"功能等关键技术.在轨测试和试运行期间,C星的CDAS不仅解决暴露的问题,而且进行适应性调整.验收前测试结果表明,其功能及技术指标满足业务运行要求,设备工作正常、性能稳定.  相似文献   
618.
我国航天事业的不断发展对航天器热防护材料提出了更高的要求,气凝胶作为一种纳米网络多孔材料,因其纳米尺度效应,具有超级隔热性能,是近年来超级隔热材料研究的热点和前沿。本文以航天热防护应用为背景,综述了气凝胶隔热材料近十年来的研究进展,包括无机氧化物气凝胶、有机气凝胶、炭气凝胶、碳化物气凝胶隔热材料等,以及其制备方法、隔热性能和热防护应用现状,结合当前航天领域需求和气凝胶隔热材料研究的难点问题,提出气凝胶隔热材料的未来发展方向。  相似文献   
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