首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 31 毫秒
1.
It is an inevitable trend of sustainable manufacturing to replace flood and dry machining with minimum quantity lubrication(MQL) technology. Nevertheless, for aeronautical difficult-tomachine materials, MQL couldn’t meet the high demand of cooling and lubrication due to high heat generation during machining. Nano-biolubricants, especially non-toxic carbon group nano-enhancers(CGNs) are used, can solve this technical bottleneck. However, the machining mechanisms under lubrication of CGNs are uncl...  相似文献   

2.
运载火箭测控系统技术与发展   总被引:2,自引:0,他引:2  
针对中国新一代运载火箭发射轨道多样、外部环境日益复杂、上行控制和空间环境安全要求逐步提高等发展特点,以及高码率、高覆盖、高精度的测控需求,研究了天基测控、多音组合编码安控、高效遥测和测控数传一体化等几种运载火箭测控新技术的应用前景;从工程的角度,提出了中国运载火箭测控系统发展思路和天地一体化的测控体系结构;并就测控系统资源配置与使用模式、新型测控体制和测控手段、遥测和安控频段等重点发展方向简述了作者的观点。  相似文献   

3.
孟光  韩亮亮  张崇峰 《航空学报》2021,42(1):523963-523963
空间机器人是实现空间操控自动化和智能化的使能手段之一,在无人及载人的空间科学探索活动中至关重要。首先,回顾了国际空间站舱内外机器人、中国空间站机器人、在轨自由飞行空间机器人等几类轨道空间机器人工程应用现状,以及已成功在轨应用月面机器人和火星机器人两类星表机器人系统的应用现状。其次,针对空间机器人后续日益复杂的任务需求,探讨了空间机器人在机构构型、关节驱动、末端操作、感知认知、行走移动、动力学与控制等方面面临的技术挑战。然后,论述了空间机器人在多臂、超冗余、柔性化、可重构、仿生等新型机构构型方面的探索,介绍了空间机器人主动、被动柔顺关节方面的研究进展,论述了空间机器人末端执行器在专用化工具及通用化多指灵巧手两个方向的研究进展,总结了星表机器人在新型移动机构构型、高自主导航方面的研究进展,介绍了空间机器人在多传感器集成融合、力与触觉感知方面的研究进展,论述了空间机器人在多臂协调控制、柔顺控制、漂浮基座抓捕动力学控制等方面的研究进展。最后,展望了空间机器人在空间目标抓捕与移除、高价值飞行器在轨服务与维修、空间大型构件在轨组装及星球科学探测等方面的应用前景。  相似文献   

4.
战斗机发动机使用方与制造方越来越重视发动机保障性,并将其与性能、质量、研制费用和周期同等考虑。特别是在第4代战斗机发动机研制过程中,通过可靠性、可维修性和可测试性设计等措施使其保障性大大提高。针对第4代战斗机发动机F119、F135和F136,综述了其"通过文件与制度保证、通过体验与培训重视、通过总结明确要求、通过具体设计实施"等贯彻保障性设计思想的措施,归纳总结其"简化设计、防错设计、优化设计、细节设计"等关键技术。  相似文献   

5.
《中国航空学报》2021,34(2):104-123
Plastic forming is one of enabling and fundamental technologies in advanced manufacturing chains. Design optimization is a critical way to improve the performance of the forming system, exploit the advantages of high productivity, high product quality, low production cost and short time to market and develop precise, accurate, green, and intelligent (smart) plastic forming technology. However, plastic forming is quite complicated, relating to multi-physics field coupling, multi-factor influence, multi-defect constraint, and triple nonlinear, etc., and the design optimization for plastic forming involves multi-objective, multi-parameter, multi-constraint, nonlinear, high-dimensionality, non-continuity, time-varying, and uncertainty, etc. Therefore, how to achieve accurate and efficient design optimization of products, equipment, tools/dies, and processing as well as materials characterization has always been the research frontier and focus in the field of engineering and manufacturing. In recent years, with the rapid development of computing science, data science and internet of things (IoT), the theories and technologies of design optimization have attracted more and more attention, and developed rapidly in forming process. Accordingly, this paper first introduced the framework of design optimization for plastic forming. Then, focusing on the key problems of design optimization, such as numerical model and optimization algorithm, this paper summarized the research progress on the development and application of the theories and technologies about design optimization in forming process, including deterministic and uncertain optimization. Moreover, the applicability of various modeling methods and optimization algorithms was elaborated in solving the design optimization problems of plastic forming. Finally, considering the development trends of forming technology, this paper discusses some challenges of design optimization that may need to be solved and faced in forming process.  相似文献   

6.
Hypersonic vehicles with turbojet, ramjet, and scramjet engines are expected to be widely applied to future transportation systems. Due to high-speed flight in the atmosphere, body outer surfaces suffer strong aerodynamic heating, and on the other hand, combustion chamber inter walls are under extremely high temperature and heat flux. Therefore, more efficient and stable active cooling technologies are required in hypersonic vehicles, such as regenerative cooling, film cooling, and transpiration cooling, as well as their combinations. This paper presents a comprehensive literature review on three active cooling methods, i.e., regenerative cooling, film cooling, and transpiration cooling, and deeply analyzes the mechanism of each cooling method, including the fluids flow, heat transfer, and thermal cracking characteristics of different hydrocarbon fuels in regenerative cooling, the heat transfer and flow mechanism of film cooling under supersonic mainstream conditions, and the heat transfer and flow mechanism of transpiration cooling.  相似文献   

7.
针对航天测控系统建设目前所面临的角色定位转换、功能体制转型,以及任务要求不断提高、测控技术快速发展等新形势和新要求,分析了航天测控系统的建设管理和功能体制现状,提出了坚持一体规划、推动系统建设,坚持与时俱进、提升建设标准,坚持信息主导、突出建设重点的系统建设转型思路.并在此建设思路的基础上,提出了装备研制向型谱化、标准化转型,维修保障向全寿命、体制化转型,软件开发向产品化、装备化转型,以及推进一体化网络化、强化综合能力、重视安全性可靠性等建设举措.  相似文献   

8.
无人机以其独特优势在侦察探测和武装打击等领域得到广泛应用,并在世界范围内多处战场上大放异彩。然而,针对无人机的干扰、诱骗和捕获问题不断发生,反无人机作战越来越成为各国军事研究热点。从无人机光学、热能散射、雷达反射、电磁信号、磁场和声学等目标特征分析了探测侦收技术,针对无人机测控和导航链路方面研究了干扰压制技术,并分析了对无人机的主要诱骗捕获方式。在此基础上,在探测侦收、干扰压制和诱骗捕获3个方面对无人机抗干扰防诱骗主要手段进行了技术分析,并提出了加强中远程空空中继链路、自主导航技术、智能化以及信息安全一体化设计研究等发展建议。  相似文献   

9.
空间激光通信现状、发展趋势及关键技术分析   总被引:4,自引:0,他引:4  
针对目前空间激光通信的背景需求,介绍了国内外星、空、地、海等平台间的空间激光通信研究与试验现状。通过对空间激光通信现状的分析,并结合科研实践,归纳出空间激光通信的高速率、网络化、多用途、一体化、多谱段5个未来发展趋势。在此基础上,从空间激光通信系统的光学结构、通信收发以及环境影响等方面,着重分析了高质量光学系统设计、高精度捕获对准跟踪、大气信道影响补偿、高速率高功率发射、高灵敏度低误码探测、一对多通信网络、平台振动与姿态补偿、器件部件空间适应性8项关键技术,并提出相关技术的解决方法和途径,进而给出须进一步深入研究的方向,展示了空间激光通信良好的应用前景。  相似文献   

10.
面向航天器在轨装配的数字孪生技术   总被引:1,自引:0,他引:1       下载免费PDF全文
构建航天器在轨维修维护能力是确保空间系统长期稳定工作的有效途径,而对于空间环境中的在轨装配过程的模拟、监控、诊断和预测,目前的研究尚处于探索阶段,研究成果相对较少且缺乏整体解决方案。提出采用构建航天器数字孪生体的方式,来抽象表达航天器完成在轨装配的过程、状态和行为。首先分析了在轨装配航天器的结构组成及功能需求,然后系统阐述了航天器数字孪生体的数据组成、实现方式和作用,最后给出了航天器数字孪生体在设计、制造和在轨服务阶段的实施途径,并对航天器数字孪生体的作用进行了总结和展望。  相似文献   

11.
蔚保国  鲍亚川  杨梦焕  李建佳  崔宋祚 《导航定位与授时》2022,9(2):前插1-前插2,1-14
通导一体化是综合PNT体系发展的重要组成部分和关键方向.对通信导航一体化的概念进行了探讨,提出了通信导航弹性融合的概念框架.面向综合PNT体系需求,设计了通导一体网络化PNT系统架构,阐述了通导一体化关键技术的研究进展,从通导一体化信号、信道、接收处理、网络架构、网络管理等多个角度进行了全面系统的梳理和分析;介绍了低轨...  相似文献   

12.
The unmanned aerial vehicle (UAV) which is capable to observe the Earth has wide applications and large quantities, such as reconnaissance and surveillance, attack on the ground, fire-proof forest, and marine search and rescue, and so on. The system of simulation composed of tracking, navigation, telecontrol, telemetering, and flight control is introduced in this paper. The method of simulation on telemetering and telecontrol, tracking and position, and target observation and tracking is explained.  相似文献   

13.
The MESSENGER Science Operations Center (SOC) is an integrated set of subsystems and personnel whose purpose is to obtain, provide, and preserve the scientific measurements and analysis that fulfill the objectives of the MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) mission. The SOC has two main functional areas. The first is to facilitate science instrument planning and operational activities, including related spacecraft guidance and control operations, and to work closely with the Mission Operations Center to implement those plans. The second functional area, data management and analysis, involves the receipt of science-related telemetry, reformatting and cataloging this telemetry and related ancillary information, retaining the science data for use by the MESSENGER Science Team, and preparing data archives for delivery to the Planetary Data System; and the provision of operational assistance to the instrument and science teams in executing their algorithms and generating higher-level data products.  相似文献   

14.
新一代战斗机全机地面强度试验技术   总被引:1,自引:0,他引:1  
王育鹏  裴连杰  李秋龙  郑建军  冯建民  王凡 《航空学报》2020,41(6):523482-523482
介绍了全机地面强度试验及验证要求,分析了试验的新问题和新挑战。通过试验顶层规划,采用全新设计模式、先进的加载技术,从试验的边界条件、综合平台、动力系统、测量与控制、损伤检测与监测等方面制定了总体技术方案。研究并应用了全硬式单侧双向加载技术、试验综合平台设计技术、试验边界条件模拟技术、动力系统设计技术等多项新技术,提高了设计效率、加快了试验实施速度、提升了试验安全性和可靠性。这些新技术在新一代战斗机多架次全机静力/疲劳试验中成功应用,结果表明各试验系统安全、可靠,达到了试验要求和预期试验目标,实现了全机地面强度试验技术的跨越式进步,技术成果为后续型号试验提供了较高参考价值。  相似文献   

15.
Electromechanical flight actuators for advanced flight vehicles   总被引:3,自引:0,他引:3  
The aircraft flight quantities and success of the mission depend to a great extent upon the actuator performance, and flight actuators must be designed to achieve the specified criteria. Electromechanical flight actuators driven by electric motors have begun to displace hydraulic technology in advanced flight vehicles. In aerospace application, permanent-magnet stepper motors are perfectly suited due to their efficiency and reliability, low volume-, weight-, and size-to-torque ratios, high power and torque densities, low cost and maintenance, simplicity and ruggedness, etc. Conventional open-loop stepper motor servos do not ensure the required accuracy and dynamic performance. An innovative method in motion control of advanced electromechanical flight actuators is developed, and nonlinear controllers are designed. The specified tracking accuracy, desired stability margins, microstepping capabilities, and disturbance attenuation are ensured by the robust nonlinear controllers synthesized. Analytical, numerical, and experimental results are documented to study the performance of flight actuators directly driven by stepper motors and to demonstrate the efficiency of control algorithms  相似文献   

16.
2.4 m跨声速风洞虚拟飞行试验技术研究   总被引:3,自引:0,他引:3  
风洞虚拟飞行试验(WTBVFT)技术是在风洞环境中对飞行器机动运动最逼真模拟的物理过程,它不仅可以更加有效模拟飞行器的机动运动过程、获取气动/运动耦合特性和揭示气动/运动耦合机理,而且能够实现气动/飞行力学集成的相容性研究。鉴于此,简要介绍了2.4 m跨声速WTBVFT技术,包括:相似准则和模拟方法、试验模型支撑技术、气动/运动参数测试技术和操纵控制技术等,并开展了典型导弹模型开环控制、姿态角闭环控制、加速度闭环控制、俯仰/滚转耦合与解耦控制以及靶试弹道验证等WTBVFT。研究结果表明:WTBVFT系统运动灵活,气动参数和运动参数测量结果准确可靠,能够有效模拟导弹实际飞行过程,具备闭环控制与耦合运动解耦控制的试验模拟能力,初步形成了气动/飞行力学一体化试验研究能力。同时,该研究也为开展控制方法优化与验证、数据修正与应用以及发展复杂构型的WTBVFT奠定了技术基础。  相似文献   

17.
针对闭式布雷顿循环发电系统热力循环过程及其参数影响,开展系统的热力过程参数建模研究,建立系统发电功率、比功率和效率的计算模型;在此基础上,研究闭式布雷顿循环发电系统比功率和效率随涡轮入口总温及效率、压气机入口总温、压气机压比及效率、累积总压恢复系数等的变化规律,考虑参数灵敏度及其优化潜力,提出可用灵敏度并对系统的比功率和效率进行灵敏度分析。研究表明,闭式布雷顿循环发电系统的比功率和效率随涡轮入口总温及效率、压气机压比及效率、系统累积总压恢复系数等参数的增大而增高,随压气机入口总温的增大而减小。在压气机入口总温、压比与效率、涡轮入口总温及效率、累积总压恢复系数等主要热力参数中,系统比功率灵敏度最高的参数为涡轮效率,系统效率灵敏度最高的参数为压气机压比。考虑参数的实际优化潜力,在循环工质一定的条件下,系统比功率可用灵敏度最高的参数为涡轮入口总温,系统效率可用灵敏度最高的参数为压气机压比。  相似文献   

18.
The avionics of current-day aircraft is termed as modular integrated full glass cockpit. Unlike lots of dials and gauges, the pilot will interact with Multi-Function Displays (MYD). This means that the systems are coupled with multi-function displays, communication and navigation radios with control units, multi-mode interactive instruments for control and navigation, recording and fault management systems, airframes and health monitoring diagnostic capabilities. Pilot Vehicle Interface (PVI) is an important measure of good avionics and cockpit layout, which implies the optimization of man-machine interface, enhancement of the economy, and safety of flight operations. This presents the avionics architecture of a 14-seat Light Transport Aircraft (LTA) for general aviation, which has multi-role commuter capabilities. LTA is a twin turbo-prop, multi-role aircraft, with air taxi and commuter services as its primary roles. The avionics is built on the digital communication mode for both command and control with current requirements of TCAS, digital Autopilot, and AMLCD multi-purpose glass displays. The LTA Avionics suite is grouped into six major groups based on functionality: Display System, Communication System, Navigation System, Recording System, Radar System, and Engine instruments and other cockpit displays. This paper also covers details about the extensive tests carried out to prove the avionics design in terms of functionality, inter-operability, interference, and compatibility. Various practical integration and flight-test issues, methodologies, and details of the scenarios is presented herein.  相似文献   

19.
America's future in space calls for manned missions that are of long duration and increasing complexity. Under these conditions, psychological and interpersonal stressors will take on added importance in affecting the safely of the crew and the outcome of the mission. Through an analysis of reports from manned American and Soviet space missions and Earth-bound simulations, several psychological, psychiatric, and interpersonal issues can be identified that could affect the success of the space station and other long-duration space ventures. Psychological issues include sleep problems, alteration in time sense, demographic effects, career motivation, transcendent experiences, homesickness, and alteration in perceptual sensitivities. Psychiatric issues include anxiety, depression, and psychosis, psychosomatic symptoms, emotional problems related to the stage of the mission, and postflight personality changes. Interpersonal issues include interpersonal tension, decreased cohesiveness over time, need for privacy, and task vs emotional leadership. Steps can be taken to minimize the impact of these issues, both before and during the mission.  相似文献   

20.
风洞试验设备是一个国家航空航天事业发展的基础设施,对国家的航空航天事业、武器装备研制以及国民经济的发展发挥着非常重要的作用。美国国家航空航天管理局(NASA)拥有世界上规模最大的风洞群,在风洞设备的建造、运行和管理方面积累了丰富的经验。作者根据美国对风洞试验设备的战略需求、试验能力需求等多种需求状况,对NASA风洞试验设备的现状进行了综合研究,重点对NASA风洞试验设备的综合状况、技术竞争力以及在资金日益削减情况下对风洞试验设备的管理进行了分析。在此基础上,对NASA在风洞试验设备的需求、规划、建造、技术竞争力、运行与管理等方面进行了经验总结,为我国风洞试验设备的规划、建造、运行与管理提供参考和借鉴。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号