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31.
介绍了防烟供氧面罩漏气系数试验系统的设计与试验原理。该系统采用单元分体式结构,将气路、油路、机械各部分集成于一体,在软件作用下,通过电气电路,控制油雾的产生,保证油雾发生的流量,控制油雾室浓度的高低,控制取样流量的大小,并通过油雾浊度仪读取检测数据,完成试验过程的自动控制。 相似文献
32.
随着高马赫数飞行器研制需求的增加,急需脉冲型风洞运行范围向中低马赫数段扩展,特别是需要具有跨马赫数运行能力。以路德维希管原理运行的管风洞试验设备,由于建设及使用成本较低、参数调节方便、流场品质高等优点,已在亚/跨/超声速及高超声速领域得到了发展和应用,体现出了宽马赫数的应用潜力。本文分析了宽马赫数脉冲型风洞发展现状,重点介绍了路德维希管风洞及其在宽马赫数应用中急需解决的关键技术,包括宽马赫数喷管设计技术、高温管外加热技术以及高温高压隔离技术。 相似文献
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Effect of blade tip winglet on the performance of a highly loaded transonic compressor rotor 总被引:2,自引:1,他引:1
《中国航空学报》2016,(3):653-661
The tip leakage flow has an important influence on the performance of transonic com-pressor. Blade tip winglet has been proved to be an effective method to control the tip leakage flow in compressor, while the physical mechanisms of blade tip winglet have been poorly understood. A numerical study for a highly loaded transonic compressor rotor has been conducted to understand the effect of varying the location of blade tip winglet on the performance of the rotor. Two kinds of tip winglet were designed and investigated. The effects of blade tip winglet on the compressor over-all performance, stability and tip flow structure were presented and discussed. It is found that the interaction of the tip winglet with the flow in the tip region is different when the winglet is located at suction-side or pressure-side of the blade tip. Results indicate that the suction-side winglet (SW) is ineffective to improve the performance of compressor rotor. In addition, a significant stall range extension equivalent to 33.74% with a very small penalty in efficiency can be obtained by the pressure-side winglet (PW). An attempt has been made to explain the fundamental mechanisms of blade tip winglet in detail. 相似文献
36.
《中国航空学报》2016,(2):305-315
With the implementation of environmental protection, sustainable development and conservation-oriented policies, components and parts of thin-walled welded tubes have gained increasing application in the aircraft and automotive industries because of their advantages: easily achieving forming and manufacturing process at low cost and in a short time. The current research on welded tube plastic forming is mainly concentrated on tube internal high-pressure forming, tube bending forming, and tube spinning forming. The focuses are on the material properties and characterization of welded tubes, finite element modeling for welded tube forming, and inhomogeneous deformation behavior and the mechanism and rules of deformation coordination in welded tube plastic forming. This paper summarizes the research progress in welded tube plastic forming from these aspects. Finally, with a focus on the urgent demand of the aviation, aerospace and automotive industries for high-strength and light-weight tubes, this paper discusses the development trends and challenges in the theory and technology of welded tube plastic forming in the future. Among them,laser tailor-welded technology will find application in the manufacture of high-strength steel tubes.Tube-end forming technology, such as tube flaring and flanging technology, will expand its application in welded tubes. Therefore, future studies will focus on the FE modeling regarding how to consider effects of welding on residual stresses, welding distortions and microstructure, the inhomogeneous deformation and coordination mechanism of the plastic forming process of tailor-welded tubes, and some end-forming processes of welded tubes, and more comprehensive research on the forming mechanism and limit of welded tubes. 相似文献
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减压腔宽度对刷式密封泄漏特性和滞后效应的影响 总被引:1,自引:0,他引:1
对减压腔轴向宽度分别为0、04 mm和06 mm的基本型和两种低滞后刷式密封结构进行了静态和动态下压差升降和转子转速升降循环试验,并对其泄漏特性和滞后效应进行了研究。研究结果表明:压差大于02 MPa后,同一压差下的动态泄漏系数比静态降低约14%~20%;低滞后结构的密封性能优于基本型,其泄漏系数最高比基本型降低约20%;静态压差升降循环中,减压腔轴向宽度为06 mm的低滞后结构的滞后效应最强;动态的压差升降循环中,基本型结构的滞后效应最强。转子转速升降循环前后,w为06 mm结构泄漏系数减小约15%,滞后效应最强,减压腔轴向宽度为04 mm结构几乎不存在滞后效应;三种结构中,减压腔轴向宽度为04 mm的结构密封性能最优,滞后效应也最弱。 相似文献
39.
《中国航空学报》2020,33(6):1799-1811
The bent double-ridged rectangular tube (DRRT) with high forming quality is helpful to improve the microwave transmission accuracy. For reducing the cross-sectional deformation in the H-typed bending process, in addition to using rigid mandrel to support the inside of tube, ridge groove fillers are also added to restrict the deformation of ridge grooves. Because of the change of stress and strain state of bent tube in bending, rigid mandrel retracting and specially twice-springback stages, and the springback of fillers, the cross-sectional deformation of tube in each stage may be different. Therefore, based on the ABAQUS platform, the finite element models (FEM) for H-typed bending, mandrel retracting and twice-springback stages of H96 DRRT with fillers were established and validated. It is found that, for the height and width deformation of tube and spacing deformation of ridge grooves, retraction of mandrel can make the distribution of these deformations more uniform along the bending direction. The first springback can reduce these deformations significantly, which should be emphasized. But the second springback only increases them by less amount, which can be ignored. The smaller height deformation of ridge groove and filler can be neglected. 相似文献
40.
以超声速气流中液滴变形破碎行为为研究内容,对水平激波管中承受激波冲击的亚毫米水液滴(0.44~1.09 mm)变形破碎过程进行了观测,实验激波马赫数范围为1.07~2.11。利用纹影法,结合高分辨率高速相机对不同破碎模态下液滴的变形破碎特征进行了记录,得到了袋状、多模态、剪切和爆炸式等破碎模式下的液滴纹影图像,分析了液滴运动参数的时空关系。得出了液滴变形阶段,液滴无量纲横向变形宽度以及液滴无量纲迎风面位移随无量纲时间的变化发展规律,并且得出在液滴初始直径相同时,不同液滴破碎模式的无量纲最大横向变形宽度的变化,其中袋状、多模态、剪切破碎模式的无量纲横向最大变形宽度均在1.15~1.61范围内变化,爆炸式破碎模式的无量纲横向最大变形宽度均在0.21~0.68范围内变化。 相似文献