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1.
《中国航空学报》2021,34(5):617-627
In this paper, a progressive approach to predict the multiple shot peening process parameters for complex integral panel is proposed. Firstly, the invariable parameters in the forming process including shot size, mass flow, peening distance and peening angle are determined according to the empirical and machine type. Then, the optimal value of air pressure for the whole shot peening is selected by the experimental data. Finally, the feeding speed for every shot peening path is predicted by regression equation. The integral panel part with thickness from 2 mm to 5 mm and curvature radius from 3200 mm to 16000 mm is taken as a research object, and four experiments are conducted. In order to design specimens for acquiring the forming data, one experiment is conducted to compare the curvature radius of the plate and stringer-structural specimens, which were peened along the middle of the two stringers. The most striking finding of this experiment is that the outer shape error range is below 3.9%, so the plate specimens can be used in predicting feeding speed of the integral panel. The second experiment is performed and results show that when the coverage reaches the limit of 80%, the minimum feeding speed is 50 mm/s. By this feeding speed, the forming curvature radius of the specimens with different thickness from the third experiment is measured and compared with the research object, and the optimal air pressure is 0.15 MPa. Then, the plate specimens with thickness from 2 mm to 5 mm are peened in the fourth experiment, and the measured curvature radius data are used to calculate the feeding speed of different shot peening path by regressive analysis method. The algorithm is validated by forming a test part and the average deviation is 0.496 mm. It is shown that the approach can realize the forming of the integral panel precisely.  相似文献   
2.
《中国航空学报》2020,33(2):634-663
The determination of optimal aerial transport networks and their associated flight frequencies is crucial for the strategic planning of airlines, as well as for carrying out market research, to establish target markets, and for aircraft and crew rostering. In addition, optimum airplane types for the selected networks are crucial to improve revenue and to provide reduced operating costs. The present study proposes an innovative approach to determine the optimal aerial transport network simultaneously with the determination of the optimum fleet for that network, composed of three types of airplanes (network and vehicle integrated design). The network profit is maximized. The passenger’s demands between the airports are determined via a gravitational model. An embedded linear programming solution is responsible for obtaining potential optimal network configurations. The optimum fleet combination is determined from a database of candidate aircraft designs via genetic algorithm. A truly realistic airplane representation is made possible thanks to accurate surrogate models for engine and aerodynamics is adopted. An accurate engine deck encompassing a compression map and an innovative engine weight calculation besides an aerodynamical artificial neural network module enable a high degree of accuracy for the mission analysis. The proposed methodology is applied to obtain the optimum network comprised of twenty main Brazilian airports and corresponding fleet.  相似文献   
3.
简要叙述了在西北工业大学二元柔壁自适应风洞中利用面元法进行二元半机翼模型试验的研究情况,分析了面元法的基本思想和部分试验结果。  相似文献   
4.
黄灵恩 《飞行力学》1993,11(3):87-91
对无动力J—7LP动力学缩比模型进行了遥控试飞,以研究其失速尾旋特性,全偏平尾和方向舵可使模型进八尾旋,舵面全回中即可从各种尾旋中改出。偏转副翼对尾旋特性有明显的影响。  相似文献   
5.
The architecture of digital sheet metal manufacturing system is proposed based on the classification of sheet metal manufacturing information.The essence of digital manufacturing is the definition,management and transfer of information,and the key technologies are brought forward and described.It is pointed out that knowledge-based manufacturing elements design is necessary to make digital technology efficient.The management of all kinds of sheet metal manufacturing element information is to build single source of manufacturing data.Multi-state model-based digital transfer and coordination method is designed to provide a foundation for digital manufacturing of aircraft sheet metal part.The application of digital sheet metal manufacturing is exemplified with an aircraft sheet metal part.The application result is compared to that of the traditional analog transfer technology.It is shown that the developed technology can improve part quality,shorten manufacturing time and lower manufacturing cost.  相似文献   
6.
分析了目前国内一些飞机基于三点温度控制方案的逆升压电子设备冷却系统的缺陷 ,提出了一种新的系统控制方案 ,即基于飞行速度和高度的逆升压电子设备冷却系统的控制方案。这一方案不需要人工干预 ,可实现全自动化。  相似文献   
7.
随振动量级增加卫星结构频率下移的分析   总被引:6,自引:0,他引:6  
对卫星振动频率随量级增加而出现下降,即振动频率“漂移”的现象进行了初步分析。发现随振动量级的增加。结构的非线性表现突出。结构的刚度下降和阻尼增加,可认为主要是由蜂窝材料的非线性因素所致。  相似文献   
8.
建立航空发动机状态空间模型的修正方法   总被引:3,自引:8,他引:3       下载免费PDF全文
以阶跃输入响应进行模型的检验,提出了状态空间模型的修正方法:基于动态响应较好的状态空间模型,进行其矩阵B,D,F,G的修正,获得基于稳态修正的模型,解决了航空发动机状态空间模型检验与修正的问题。仿真表明,使用该方法修正的状态空间模型具有与原非线性数学模型完全一致的稳态响应和基本一致的动态过程响应。这种方法为航空发动机多变量数字电子控制器的设计奠定了强有力的基础。  相似文献   
9.
基于支持向量机方法的发动机性能趋势预测   总被引:8,自引:3,他引:8       下载免费PDF全文
为了提高对航空发动机性能趋势预测的精度,提出利用支持向量机方法来预测表征发动机整体性能的参数一性能综合指数。建立了基于支持向量回归的一步及多步预测模型,利用该模型对性能正常衰退及性能异常发动机的综合指数分别进行预测,并与自回归(AR)模型的预测值进行比较。结果表明,基于支持向量机的预测模型比AR模型的预测精度更高,其四步预测精度由80.56%提高到88.51%。因此该模型尤其适合中、长期预测。  相似文献   
10.
郭乾荣 《航空学报》1990,11(7):389-393
 <正> 1.混合动力学系统的Hopf分叉定理 本文将Marsden-McCracken关于分布参数的Hopf分叉定理推广至混合动力学系统。 设在积空间X=E×R~n中依赖参数μ的演化方程为  相似文献   
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