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31.
基于传动误差和齿面印痕控制的弧齿锥齿轮小轮加工参数的设计(英文) 总被引:3,自引:0,他引:3
Cao Xuemeia * Fang Zongdea Xu Haob Su Jinzhana aSchool of Mechatronics Northwestern Polytechnic University Xi’an China bZhongnan Transmission Machinery Works of Changsha Aviation Industries Changsha China 《中国航空学报》2008,21(2):179-186
This paper proposes a new approach to design pinion machine tool-settings for spiral bevel gears by controlling contact path and transmission errors. It is based on the satisfaction of contact condition of three given control points on the tooth surface. The three meshing points are controlled to be on a predesigned straight contact path that meets the pre-designed parabolic function of transmission errors. Designed separately, the magnitude of transmission errors and the orientation of the contact path are subjected to precise control. In addition, in order to meet the manufacturing requirements, we suggest to modify the values of blank offset, one of the pinion machine tool-settings, and redesign pinion ma- chine tool-settings to ensure that the magnitude and the geometry of transmission errors should not be influenced apart from minor effects on the predesigned straight contact path. The proposed approach together with its ideas has been proven by a numerical example and the manufacturing practice of a pair of spiral bevel gears. 相似文献
32.
Thomas Hobiger Yasuhiro Koyama Johannes Boehm Tetsuro Kondo Ryuichi Ichikawa 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2009
Very Long Baseline Interferometry (VLBI) allows to monitor universal time (UT1) by conducting regular international experiments. Such dedicated observation networks are equipped with different hardware components, which require different processing strategies when the data are correlated. As the timing units at each stations are usually offset with respect to universal time (UTC) this effect should be considered during correlation processing. Thus, it is investigated how neglecting of these offsets theoretically impacts the estimation of UT1. Three different strategies for the proper handling of the timing offset will be discussed and their advantages/drawbacks will be pointed out. Moreover, it is studied how neglecting of these timing offsets affects UT1 time-series and how such a missing correction can be applied a posteriori. Although the discussed effect is for most of the UT1 experiments smaller than the formal error of the estimates, it is important to consider station clock offsets properly in next-generation VLBI systems, which are expected to improve accuracy of results by about one order of magnitude. 相似文献
33.
采用抛物化稳定性方程的新方法研究稳定性的非平行问题,其控制方程从涡量形式的N-S方程导出,为提高计算精度和收敛速度,在法向采用高精度的高阶谱方法,结合边界层特征安排边界条件的方程,以及对无限区域数值问题作高效的代数变换处理,通过对预估校正迭代过程中推进步长有效的控制,以满足正规化条件,研究了不同类型压力梯度对稳定性的作用,由系列算例得到的增长率变化曲线和扰动中性曲线等,精确地给出了非平行性对流动稳定性的影响,计算的结果与相关数据符合甚好。 相似文献
34.
Spaceborne GPS receiver antenna phase center offset and variation estimation for the Shiyan 3 satellite 总被引:3,自引:2,他引:1
《中国航空学报》2016,(5):1335-1344
In determining the orbits of low Earth orbit (LEO) satellites using spaceborne GPS, the errors caused by receiver antenna phase center offset (PCO) and phase center variations (PCVs) are gradually becoming a major limiting factor for continued improvements to accuracy. Shiyan 3, a small satellite mission for space technology experimentation and climate exploration, was developed by China and launched on November 5, 2008. The dual-frequency GPS receiver payload delivers 1 Hz data and provides the basis for precise orbit determination within the range of a few centime-ters. The antenna PCO and PCV error characteristics and the principles influencing orbit determi-nation are analyzed. The feasibility of PCO and PCV estimation and compensation in different directions is demonstrated through simulation and in-flight tests. The values of receiver antenna PCO and PCVs for Gravity Recovery and Climate Experiment (GRACE) and Shiyan 3 satellites are estimated from one month of data. A large and stable antenna PCO error, reaching up to 10.34 cm in the z-direction, is found with the Shiyan 3 satellite. The PCVs on the Shiyan 3 satellite are estimated and reach up to 3.0 cm, which is slightly larger than that of GRACE satellites. Orbit validation clearly improved with independent k-band ranging (KBR) and satellite laser ranging (SLR) measurements. For GRACE satellites, the average root mean square (RMS) of KBR resid-uals improved from 1.01 cm to 0.88 cm. For the Shiyan 3 satellite, the average RMS of SLR resid-uals improved from 4.95 cm to 4.06 cm. 相似文献
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为获取在航空运输中系留索弹性变形对货物偏移量的影响效果,构建了货物系留固定的受力计算模型,并通过实例分析,计算分析了不同系留索弹性变形的条件下对货物最大偏移量的影响,实现了不同系留索的弹性变形对货物最大偏移量影响效果的可视化。该计算模型为货物系留索设计提供了重要依据,保证了航空货物运输的安全。 相似文献
38.
对传统的小波数值均匀化方法通过加入逐层修正的步骤进行了改进,并将改进后的方法用于求解具有小周期系数的抛物型方程。数值算例结果表明:在保持较高计算效率的同时,改进后的方法比改进前方法在精度方面有明显的提高。因此,改进后方法是小周期系数抛物型方程的一种高效率、高精度的数值求解方法。 相似文献
39.
目前,不同机构提供的GNSS实时服务产品性能存在差异。为了全面揭示实时服务产品的性能,为系统服务和用户应用提供参考,统计了各实时服务产品的历元完整率及卫星数量,基于实时轨道和钟差恢复方法,比较分析了产品精度,并评估了产品定位性能。研究结果表明:正常情况下,实时服务产品的历元完整率较高,基本可保持在95%以上,所提供系统的卫星数量保持稳定且充足。对于GPS,各机构卫星实时轨道平均精度基本一致,约为3cm,实时钟差精度略有差别。对于其他GNSS,不同机构产品精度存在差别。利用实时服务产品进行GPS实时精密单点定位的平面精度优于10cm,高程精度优于20cm。相对于GPS单系统,多系统联合定位精度基本一致,但收敛速度明显提升。 相似文献
40.
分离式共轴刚性旋翼风洞试验技术研究 总被引:1,自引:0,他引:1
为在■3.2 m风洞开展高速直升机共轴刚性旋翼风洞试验,中国空气动力研究与发展中心(China Aerodynamic Research and Development Center,CARDC)开展了分离式共轴刚性旋翼风洞试验关键技术研究。解决了双旋翼共轴反向驱动、双旋翼联动和差动变距操纵、旋翼气动力分离测量、旋翼间距调整等关键技术问题,研制了■2 m直径共轴刚性旋翼试验台和旋翼天平、旋翼操纵系统,实现了旋翼共轴等速反向旋转、双旋翼联动和差动变距操纵、旋翼升力偏置调整、旋翼气动力孤立测量、旋翼间距调整等功能。通过开展风洞试验,验证了该试验技术,表明试验技术具有技术成熟度高、数据重复性精度高、可调节参数多的优点。 相似文献