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301.
根据伽辽金法,用Matlab/Simulink软件对推导的经典板假设理论、一阶剪切理论蜂窝夹层板运动方程进行了数值仿真。简单算例的计算结果表明两者基本一致。基于一阶剪切理论讨论了蜂窝夹芯泊松比对蜂窝夹层板低阶频率的影响。发现当泊松比接近1时对频率响应有显著的影响。  相似文献   
302.
冲压发动机燃烧室壳体静热试验局部失稳变形分析   总被引:1,自引:0,他引:1  
对静热试验中某发动机燃烧室壳体的局部失稳变形的试验现象进行了描述,为探究其失稳变形产生的机理,对试验测得的温度数据和应力数据进行了分析,并对静热联合作用下的应力分布进行了有限元的计算,找到了引起静热联合试验中燃烧室壳体产生局部失稳变形的主要原因,并给出了解决该类问题的几点建议。  相似文献   
303.
简要介绍了焊接机器人系统结构特征,采用VPTIG单面焊双面成型技术进行2A14铝合金焊接试验,获得良好的焊接接头性能,总结出可靠的工艺控制方法.并应用于铝合金贮箱箱底的生产中,产品焊缝经过RT探伤、液压气密试验、氦质谱检漏等检测方法,各项技术指标满足设计要求.  相似文献   
304.
风力机柔性叶片振动变形对其气动阻尼的影响分析   总被引:1,自引:0,他引:1  
为了研究大型水平轴风力机柔性叶片的振动变形对其气动阻尼的影响,用叶素动量理论计算了风力机叶片气动力,用有限元法计算了结构动力响应,基于能量损失法建立了风力机的气动阻尼分析模型.重点分析了叶片振动扭角、挥舞倾角、摆振倾角对攻角的影响,考虑了挥舞速度,摆振速度对入流速度、入流角的影响.以某5MW海上风力机为例,分析计算了风力机整个叶片的气动阻尼.结果表明挥舞倾角、扭角对挥舞方向气动阻尼影响较大,会使其减小;摆振倾角对摆振方向气动阻尼的影响较大,会使其增大;振动变形对气动阻尼沿叶片的分布没有影响.  相似文献   
305.
为了保证可调引射器运动机构的灵活性,根据其结构特点,采用胀胎结合胀块的定位方法减小筒体变形,合理布局连杆座和耳座位置以利用焊接残余变形,在胀块上安装与连杆座相应的垫块,减小由焊接连杆座引起的凹陷变形,保证了组合件的顺利安装;同时根据同步环摆动的特点,确定同步环灵活摆动的角向位置,有效地满足了可调引射器的机构运动要求.试验结果表明:可调引射器调节片工作时能够保证打开和关闭2个位置的稳固,未发生构件失效等问题,其可靠性初步满足装机要求.  相似文献   
306.
薄壁零件如汽车覆盖件、机翼、导弹壳体、燃料储箱等在汽车、航空、航天、船舶、家电、机械等行业有着广泛的应用。本文通过对某产品薄壁纯铝碗状壳渐进成型制造工艺的综合分析,阐述了在薄壁回转体零件的加工中,如何通过选择不同的制造工艺,采用“分层制造”思想,将复杂的三维数字模型沿高度方向分解成一系列等高线层,从而实现对产品的渐进塑性成型加工,希望此文对同类型的产品的制造有所借鉴。  相似文献   
307.
A total of more than 260 continuous stations and 2000 campaign stations from the Crustal Movement Observation Network of China (CMONOC) project, covering the Chinese mainland and its surrounding areas during the period of 1998–2018, are processed using the Bernese Global Navigation Satellite System (GNSS) software via a state-of-the-art method. We obtain the coordinate time series of all the stations given in the reference frame ITRF2014, estimate the coseismic deformation, and remove outliers. Lastly, we present the latest, most complete, and most accurate contemporary horizontal velocity field with respect to the stable Eurasian plate, irrespective of the postseismic deformations. This study shows that the signal of tectonic movement in Western China is stronger than that in Eastern China particularly in the Tibetan Plateau, with a rate of 18–32?mm/a. Moreover, the signal decays sharply from south to north. However, North China and South China move coherently to the ESE direction mostly at a rate of 4–10?mm/a and have not experienced any abrupt velocity gradients in their interiors. Meanwhile, Northeast China has the lowest velocity of only 2–4?mm/a in addition to the coastal areas that have slightly larger velocities. The densified and continuous observation of GNSS stations are of great significance to the study of the present-day crustal movement and tectonic deformation characteristics of the Chinese mainland. This would help to provide better constraints on the kinematics and dynamics of the region.  相似文献   
308.
《中国航空学报》2020,33(6):1812-1823
The temperature-induced variation in operating force of flow control valves may result in performance degradation or even jam faults of fuel metering unit (FMU), which significantly affects the safety of aircrafts. In this work, an analytical modeling approach of temperature-sensitive operating-force of servo valve is proposed to investigate the temperature characteristics in varying temperature conditions. Considering the temperature effects, a new extended model of flow force is built and an analytical model of valve friction is also derived theoretically based on the dynamic clearance induced by thermal effects. The extremum condition of friction is obtained to analyze the characteristic-temperature points where jam faults occur easily. The numerical results show that flow force increases firstly and then decreases as temperature increases under a constant valve opening. The maximum friction of flow servo valve can be uniquely determined when the structural parameters and ambient temperature are given. The worst situation just happens at the characteristic-temperature points, which are linearly related to the axial temperature gradients of valve spool. Such evaluations may give an explanation for the temperature-induced jam faults of vulnerable valves and provide a reference for designers to determine a suitable working-temperature range of valves in practice.  相似文献   
309.
The paper presents data from some campaigns at Sura heating facility in 2011–1016. The experiments on probing of the artificial disturbed region of the lower ionosphere were carried out at two observation sites. One of them was located near Vasil’sursk 1 km from Sura facility (56.1°N; 46.1°E) and the other site was located at the Observatory (55.85°N; 48.8°E) of Kazan State University, 170 km to the East. Investigation of the features of the disturbed region of the lower ionosphere based on its diagnostics by the methods of the vertical sounding and oblique backscattering is the main goal of this paper. Ionosphere disturbance was fulfilled by the effect of the powerful radio wave of the ordinary or extraordinary polarization emitted by transmitters of the Sura facility with effective radiated power ERP = 50–120 MW at the frequency of 4.3, 4.7 and 5.6 MHz. Pumping waves were emitted with period from 30 s to 15 min. The disturbed region of the ionosphere in Vasil’sursk was probed by the vertical sounding technique using the partial reflexion radar at the frequency of 2.95 and 4.7 MHz. For the oblique sounding of the disturbed region the modified ionosonde Cyclon-M, operating at ten frequencies from 2.01 to 6.51 MHz was used at the Observatory site. On many heating sessions simultaneous variations of the probing partial reflection signals in Vasil’sursk and backscattered signals in Observatory were observed at the height at 40–100 km below the reflection height of the pumping wave. These observations were correlated with the pumping periods of the Sura facility. Possible mechanisms of the appearance of the disturbance in the lower ionosphere and its effect on the probing radio waves are discussed.  相似文献   
310.
《中国航空学报》2020,33(3):902-909
Flexible chiral honeycomb cores generally exhibit nonlinear elastic properties due to large geometric deformation. The effective elastic moduli and Poisson’s ratio typically vary with an increase in deformation. Here, the size and shape optimization of the chiral hexagonal honeycombs was performed to keep the Young’s moduli and Poisson's ratio unchanged under large deformations. The size of the honeycomb unit cell and the position coordinates of the key points were defined simultaneously as design variables. The equivalent Young's modulus and Poisson’s ratio of chiral honeycombs were calculated through geometric nonlinear analysis. The objective was to minimize the allowable tolerance between the prescribed and actual properties within the range of the target strain. A genetic algorithm was then adopted. The optimal results demonstrate that the chiral honeycombs can maintain effective elastic properties that do not vary under large deformation. These results are meaningful to morphing aircraft designs.  相似文献   
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