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本文首先分析了当前直升机在运用CAD/CAE/CAM技术进行研制中存在的一些问题,接着提供了解决的方法,介绍了PDM的概念、构成、主要功能。最后简述了PDM技术在直升机研制中的作用,以及企业在实施PDM当中应注意的一些问题。 相似文献
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分析了圆波导中“圆柱轴+平面扇形金属叶片终端”的不连续性,根据电磁场互易定理和物理光学法(PO)计算了这种终端对波导模的反射系数。这个问题的研究可用来解决喷气式发动机进气道对电磁波的反射,进一步地利用本文的结果可计算进气道的雷达截面(RCS)或极化散射矩阵。 相似文献
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以空调制冷故障考核仿真系统为例,介绍空调制冷仿真实验实训系统在国家级试点专业——供热通风与空调工程技术专业教学中的作用。该系统重点解决了空调制冷故障的考核仿真模拟,阐明了仿真技术对于高职高专学生培养的重要性和可行性。仿真实验实训技术在技能型人才培养中将有很大的发展空间。 相似文献
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有效性控制是飞机设计和生产过程中的重要环节,也是将设计更改动态、实时地落实到生产中的重要途径。本文提出了一种基于构型管理的产品有效性控制算法,可用于飞机工程数据的动态管理系统设计中。 相似文献
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Jie Wang Cuichun Li Xiuyun Meng 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(8):2517-2533
As the lighter-than-air (LTA) flight vehicle, the stratospheric airship is a desirable platform to provide communication and surveillance services. During the ascent from sea-level to the mission altitude, the volume of the lifting gas may change significantly, which will result in the change of the center-of-buoyancy (CB). A general calculation method is developed to specify CB for the stratospheric airship with a double-ellipsoid hull and an arbitrary number of the gas cells. The cross-section-integral (CSI) method is used as a basic calculation scenario to specify CB. Considering the complexity in determining the boundary between the helium and air in the gas cell, a searching algorithm is put forward and the specification of CB can be conducted by the iterative calculation. As an important application, the stable condition of the pitch angle is analyzed when the change of CB is involved. Under different initial configurations, the stable pitch angle of the stratospheric airship during the ascent is specified and compared, which shows the advantages of the multi-gas-cell configuration. The results of this paper may provide an important reference for the engineering application of the stratospheric airship. 相似文献
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卫星结构中的非金属材料 总被引:5,自引:0,他引:5
介绍了各种复合材料、胶粘剂、高分子材料和工业陶瓷等非金属材料的性能及其在卫星结构中的应用情况。强调了非金属材料在提高卫星性能、减轻卫星结构质量,以及增大卫星有效栽荷方面的作用。最后指出了卫星结构材料高性能、多功能、复合化、智能化、低成本以及高环境相容性的发展趋势。 相似文献
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A formal approach using SysML for capturing functional requirements in avionics domain 总被引:1,自引:0,他引:1
In this work, a Model-Based Systems Engineering approach based on SysML is proposed. This approach is used for the capture and the definition of functional requirements in avionics domain. The motivation of this work is triple: guide the capture of functional requirements, validate these functional requirements through functional simulation, and verify efficiently the consistency of these functional requirements. The proposed approach is decomposed into several steps that are detailed to go from conceptual model of avionics domain to a formal functional model that can be simulated in its operating context. To achieve this work, a subset of SysML has been used as an intermediate modelling language to ensure progressive transformation that can be understood and agreed by system stakeholders. Formal concepts are introduced to ensure theoretical consistency of the approach. In addition, transformation rules are defined and the mappings between concepts of ARP4754A civil aircraft guidelines and SysML are formalized through meta-model. The resulting formalization enables engineers to perform functional simulation of the top-level functional architecture extracted from operational scenarios. Finally, the approach has been tested on an industrial avionics system called the Onboard Maintenance System. 相似文献