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51.
为了提升直流电动机起动效率,对其起动进行变分,得到唯一的转速下凹抛物极值轨线。通过仿真比较,验证此为最低能效的轨线。故而考虑其他几种起动轨线以寻找出能效最优的轨线,尤其是与变分极值轨线相对偶的凸抛物轨线,经仿真验证其为高能效轨线。另外经仿真验证,恒定高电流的简单起动方法也可以进一步提升效率。  相似文献   
52.
《中国航空学报》2023,36(3):220-240
Blade-health monitoring is intensely required for turbomachinery because of the high failure risk of rotating blades. Blade-Tip Timing (BTT) is considered as the most promising technique for operational blade-vibration monitoring, which obtains the parameters that characterize the blade condition from recorded signals. However, its application is hindered by severe undersampling and stringent probe layouts. An inappropriate probe layout can make most of the existing methods invalid or inaccurate. Additionally, a general conflict arises between the allowed and required layouts because of arrangement restrictions. For the sake of economy and safety, parameter identification based on fewer probes has been preferred by users. In this work, a spatial-transformation-based method for parameter identification is proposed based on a single-probe BTT measurement. To present the general Sampling-Aliasing Frequency (SAFE) map definition, the traditional time–frequency analysis methods are extended to a time-sampling frequency. Then, a SAFE map is projected onto a parameter space using spatial transformation to extract the slope and intercept parameters, which can be physically interpreted as an engine order and a natural frequency using coordinate transformation. Finally, the effectiveness and robustness of the proposed method are verified by simulations and experiments under uniformly and nonuniformly variable speed conditions.  相似文献   
53.
《中国航空学报》2022,35(8):249-264
Currently, industrial robots are considered as an alternative towards traditional machine tools. Especially for the large-scale parts milling, robotic flexibility and low cost make it possess the irreplaceability. However, the milling chatter caused by its weak rigidity hampers robotic application and promotion severely in aviation industry. Rotary ultrasonic milling (RUM) technology with one-dimensional axial vibration has been proven and approved on avoiding robotic chatter. Based on this, the research of project team demonstrates that longitudinal-torsional composite ultrasonic milling (CUM-LT) involving separation characteristic has a greater advantage than RUM in terms of chatter suppression. Thereby, the CUM-LT as a new means is applied to avoid processing vibration of robotic milling system. And its influence mechanism on stability improvement of weak stiffness processing system is clarified. Meanwhile, the approaches to strengthen separation effect are provided innovatively. Moreover, a new analysis method of robotic CUM-LT (RCUM-LT) stability is proposed on the basis of ultrasonic function angles. The simulation and experimental results indicate that compared with robotic RUM (RRUM), stability regions of separated RCUM-LT (SRCUM-LT) and unseparated RCUM-LT (URCUM-LT) are improved by 124.42% and 39.20%, respectively. The addition of torsional ultrasonic energy has a wonderful effect on the milling chatter suppression of low stiffness robots.  相似文献   
54.
55.
Numerous rivets have to be modelled for aeronautical framework crashes. A numerical procedure based on FE modelling and characterisation of material failure constitutive models is proposed in order to limit the experimental procedure. Quasi-static and dynamic experiments are carried out on elementary tension (punched) and shear (riveted) specimens. No strain rate sensitivity has been measured on the riveted joint assemblies failure. The experiments are used to identify, by an inverse method, the Gurson damage parameters of each material (2024-T351 and 7050 aluminium alloys for the sheet metal plate and the rivet). The characterisation gives rise to a satisfactory correlation between FE models and experiments. Optimised parameters are validated for each material by means of a uniaxial tension test for the sheet metal plate and an ARCAN type specimen in pure tension for the rivet. Results can then be used to identify macroscopic failure criterion to model the rivet behaviour in aeronautical framework crashes. FE tools can also resolve problems linked to limit-design or the design of new riveted joint assemblies more rapidly and cost effectively than experiments.  相似文献   
56.
《Acta Astronautica》1999,44(2-4):147-150
The Orbital Angular Momentum Reversal (H-Reversal mode), is a new class of trajectories to get a cruise speed ranging from 12 to 20 AU/yr. To accomplish the H-reversal mode, a sailcraft needs of all metal solar sail. The solar sail envisaged by the “AURORA Project” is composed of two metallic layers (AI and Cr) deposited on plastic substrate. To obtain an all metal solar sail, required by the Project, the substrate must be removed in orbit. In order to accomplish that, two possible methods are described in this paper. The first one is based on the UV degradation of a buffer layer located between the substrate and the metallic layers. The UV degradation would be the starting mechanism that causes the interface weakness. The Diamond Like Carbon has been used as buffer layer and preliminary experimental results on its UV degradation are reported. The second method exploits the characteristic of most plastics to be etched (ashing process) by the atomic oxygen. The number density of atomic oxygen in Low Earth Orbit could be enough to remove a properly-selected plastic substrate in Short time.  相似文献   
57.
The thermal radiation of micron-sized condensed phase particles plays a dominant role during the heat transfer process in aluminized Solid Rocket Motors(SRMs). Open research mainly focuses on the radiative properties of alumina particles while the study considering the presence of aluminum is lacking. In addition, the thermal radiation inside the SRM with consideration of the participating particles is seldom studied. In this work, the multiscale method of predicting the thermal environment insi...  相似文献   
58.
为了对复合材料变截面压杆的变形性能进行理论预测,本文以航天器空间桁架结构中的复合材料变截面压杆作为研究对象,首先,基于经典层合板理论,将复合材料变截面杆的壁板等效为主方向与杆轴线方向一致的正交异性板,此时复合材料变截面杆可近似为正交异性杆;其次,基于弹性变形理论和小变形假设,推导了反映杆轴向变形能力的等效轴压刚度理论公式;最后,利用有限元对等效轴压刚度理论的准确性进行了验证。结果表明,不同中间半径和变截面段长度条件下,理论值和有限元值之间的偏差基本保持在3%以内;不同铺层角条件下,理论值和有限元值之间的偏差基本保持在2%以内。因此,本文的理论能够较准确地预测复合材料变截面压杆的变形。  相似文献   
59.
图像序列中机动目标三维运动和结构的计算   总被引:1,自引:0,他引:1  
综合视觉运动分析中的2类处理方法,选取图像中的角点作为特征点,在理论上证明了图像序列的光流场可以近似地用角点的位移场代替。利用已有文献中的建模思想,详细推导出递归计算机动目标三维运动和结构的非线性计算模型,采用广义卡尔曼滤波(EKF)递归地计算图像序列中机动目标的三维运动和结构。合成图像序列和真实图像序列实验结果表明该算法能取得较好的效果。  相似文献   
60.
可重构制造系统的性能分析   总被引:4,自引:0,他引:4  
蔡宗琰 《航空学报》2004,25(5):516-519
可重构制造系统的生产管理与控制是实施可重构制造系统哲理的关键技术,而可重构制造系统的性能分析是可重构制造系统生产管理与控制的重要功能。基于可重构制造系统的赋时可重构Petri网模型及其调度Gantt图,提出可重构制造系统的性能指标评价方法,定义最大完成时间、生产资源利用率、作业完成时间和零件的平均生产能力等可重构制造系统的性能指标,并计算了实例系统的性能指标。实例研究表明,可重构制造系统的性能分析方法体现了可重构制造系统的重构柔性本质。  相似文献   
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