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71.
基于雷诺平均Navier-Stokes方程的表面传热系数计算   总被引:1,自引:1,他引:0  
侯硕  曹义华 《航空动力学报》2015,30(6):1319-1327
采用有限体积法数值求解控制二维绕流的雷诺平均Navier-Stokes(RANS)方程组,计算了光滑和粗糙NACA0012翼型以及圆柱表面的局部表面传热系数.分析了近壁面网格间距、湍流模式和表面粗糙度模型对数值计算结果的影响.结果表明:切应力输运(SST)湍流模型能够区分层流和湍流边界层的对流传热特性,并能预测转捩的发生;采用Spalart-Allmaras(S-A) 扩展模型能够计算粗糙壁面的对流传热系数,但采用忽略转捩函数的S-A模型不能有效计算层流边界层的传热系数.当近壁面网格间距接近10-5量级的黏性子层时,在光滑和粗糙壁面都能得到准确的传热系数分布.结合合适的近壁面网格间距,湍流模式和表面粗糙度模型可以得到与实验数据十分接近的表面传热系数曲线.通过与求解不可压缩RANS方程得到的结果比较后发现,不可压缩RANS方程主要忽略了压缩和黏性耗散效应,这种效应可以通过绝热升温项的形式并入总体热分析.   相似文献   
72.
综合考虑了轮齿接触几何、啮合点法向载荷、齿向参数、真实表面粗糙度、润滑剂流变特性等因素,建立了滤波减速器轮齿混合润滑数值分析模型,采用复合迭代法和快速傅里叶变换(FFT)方法分别求解Reynolds方程和弹性变形方程,获得了轮齿接触表面混合润滑分析完全数值解,得到了滤波减速器在啮入点、节点和啮出点的压力与平均油膜厚度,以及转速对轮齿接触表面平均油膜厚度和接触比的影响.结果表明:在啮入点、啮出点及节点处,沿齿宽方向的压力分布不相等,两侧压力较大,而在啮入点处的两侧压力突变相对较小,且平均油膜厚度最大;对于粗糙轮齿接触表面,随着滤波减速器转速逐渐降低,啮入点、节点及啮出点的平均油膜厚度随之减小,接触比增加,润滑效果变差,并且在同一工况下粗糙轮齿接触表面的啮合点平均油膜厚度小于光滑轮齿表面的平均油膜厚度.   相似文献   
73.
微粒子喷丸因其采用的弹丸介质尺寸小,具有强化基体表面并降低表面粗糙度的优点,已成为航空、能源动力等领域中一项重要的表面强化技术。目前对于该技术的研究仍处于对其强化机理的试验论证阶段,还未有完整的理论体系。对微粒子喷丸技术的原理和特点进行了综述,讨论了微粒子喷丸的强化机制,阐述了目前微粒子喷丸技术的研究现状及在各类材料中的应用,并指出了该技术的应用前景。研究各类参数对喷丸效果的影响将是微粒子喷丸发展的主要方向。  相似文献   
74.
Influence of lunar topography on simulated surface temperature   总被引:2,自引:0,他引:2  
The surface temperature of the Moon is one of the essential parameters for the lunar exploration, especially to evaluate the Moon thermophysical features. The distribution of the temperature is heavily influenced by the Moon topography, which, however, is rarely studied in the state-of-art surface temperature models. Therefore, this paper takes the Moon topography into account to improve the surface temperature model, Racca model. The main parameters, such as slopes along the longitude and latitude directions, are estimated with the topography data from Chang’E-1 satellite and the Horn algorithm. Then the effective solar illumination model is then constructed with the slopes and the relative position to the subsolar point. Finally, the temperature distribution over the Moon surface is obtained with the effective illumination model and the improved Racca model. The results indicate that the distribution of the temperature is very sensitive to the fluctuation of the Moon surface. The change of the surface temperature is up to 150 K in some places compared to the result without considering the topography. In addition, the variation of the surface temperature increases with the distance from the subsolar point and the elevation, along both latitude and longitude directions. Furthermore, the simulated surface temperature coincides well with the brightness temperature in 37 GHz observed by the microwave sounder onboard Chang’E-2 satellite. The corresponded emissivity map not only eliminates the influence of the topography, but also hints the inherent properties of the lunar regolith just below the surface. Last but not the least, the distribution of the permanently shadowed regions (PSRs) in the lunar pole area is also evaluated with the simulated surface temperature result.  相似文献   
75.
基于碟形砂轮磨齿的面齿轮包络残差研究   总被引:1,自引:1,他引:0  
郭辉  赵宁  张淑艳 《航空动力学报》2014,29(11):2743-2750
介绍了采用碟形砂轮磨削面齿轮的原理及过程,研究了齿廓包络和齿宽包络两种包络方式产生包络残差的机理.分别建立了两种加工方式下包络残差的计算模型和方法,并研究了所产生包络残差的特点.通过数值算例分析了包络过程中刀具周向进给角度、齿宽方向进给量以及碟形砂轮外径对齿面包络残差的影响规律.计算结果表明:齿宽包络比齿廓包络具有更高的效率.进行了以齿廓包络方式的面齿轮磨齿加工实验,当刀具周向进给角度分别取为2°,1°,0.5°及0.2°时,齿面表面粗糙度逐渐明显提高,齿面磨削加工印痕的数目和方向与包络仿真计算结果一致.初步证明根据包络残差计算结果选取合适的进给量参数,可以保证面齿轮磨齿加工的表面粗糙度水平并能提高加工效率.   相似文献   
76.
文章采用反应烧结工艺制备 Si/SiC 材料,然后通过真空扩散渗铝工艺制备了 Al-Si/SiC 复合材料。通过精确调控浸渗合金的铝浓度使制备的Al-Si/SiC复合材料具有可控的热膨胀系数,利用该工艺制备出热膨胀系数连续可调(4.6×10-6K-1~8.7×10-6K-1,0~40℃)的 Al-Si/SiC 复合材料,其力学性能优异,经检测密度为2.86g/cm3,弹性模量为236GPa,断裂韧性为6.1MPa·m1/2,可采用线切割、铣磨、钻孔、攻丝等手段加工,相比SiC陶瓷材料更易于高精度机械加工。扫描电子显微镜分析表明,制备的Al-Si/SiC复合材料均匀、致密,光学抛光后表面粗糙度均方根值达到1.017 nm。各项测试数据表明, Al-Si/SiC复合材料作为反射镜可以满足空间光学的应用。  相似文献   
77.
文章通过讨论n沟道CCD的物理结构以及两种CCD饱和弥散(弥散型饱和状态和表面型饱和状态)的差异,介绍了面阵CCD抗弥散技术,它通过改变垂直转移时序使普通CCD具有抗弥散功能。对采用该技术前后相机抗弥散的实际效果进行了对比,进一步研究了面阵CCD时序抗弥散所必需的表面型饱和高电平偏置电压测定方法、低电平电压偏置测定方法以及时序工作频率标定方法,给出了工程实现的具体途径。总结了时序抗弥散技术的优缺点,列出了该技术的使用范围和限制条件。  相似文献   
78.
《中国航空学报》2021,34(2):576-585
Creep feed profile grinding of the fir-tree blade root forms of single crystal nickel-based superalloy was conducted using microcrystalline alumina abrasive wheels in the present study. The grinding force and the surface quality in terms of surface topography, subsurface microstructure, microhardness and residual stress obtained under different grinding conditions were evaluated comparatively. Experimental results indicated that the grinding force was influenced significantly by the competing predominance between the grinding parameters and the cross-sectional root workpiece profile. In addition, the root workpiece surface, including the root peak and valley regions, was produced with the large difference in surface quality due to the nonuniform grinding loads along the root workpiece profile in normal section. Detailed results showed that the surface roughness, subsurface plastic deformation and work hardening level of the root valley region were higher by up to 25%, 20% and 7% in average than those obtained in the root peak region, respectively, in the current investigation. Finally, the superior parameters were recommended in the creep feed profile grinding of the fir-tree blade root forms. This study is helpful to provide industry guidance to optimize the machining process for the high-valued parts with complicated profiles.  相似文献   
79.
《中国航空学报》2021,34(4):451-464
For higher efficiency and precision manufacturing, more and more attentions are focused on the surface roughness and residual stress of machined parts to obtain a good fatigue life. At present, the in-situ TiB2/7050Al metal matrix composites are widely researched due to its attractive properties such as low density, good wear resistance and improved strength. It is of great significance to investigate the machined surface roughness, residual stress and fatigue life for higher efficiency and precision manufacturing of this new kind material. In this study, the surface roughness including two-dimensional and three-dimensional roughness, residual stress and fatigue life of milling in-situ TiB2/7050Al metal matrix composites were analyzed. It was found from comparative investigation that the three-dimensional surface roughness would be more appropriate to represent the machined surface profile of milling particle reinforced metal matrix composites. The cutting temperature played a great role on the residual stress. However, the effect of increasing cutting force could slow down the transformation from compressive stress to tensile stress under 270 °C. An exponential relationship between three-dimensional roughness and fatigue life was established and the main fracture mechanism was brittle fracture with observation of obvious shellfish veins, river pattern veins and wave shaped veins in fracture surface.  相似文献   
80.
《中国航空学报》2021,34(4):540-567
Continuous fiber reinforced SiC ceramic matrix composites (FRCMCs-SiC) are currently the preferred material for hot section components, safety–critical components and braking components (in the aerospace, energy, transportation) with high value, and have triggered the demand for machining. However, the high brittleness, anisotropy, and heterogeneity of materials bring great challenges to machining, due to high mechanical and thermal loads, severe tool wear, and poor machining quality. With the increasing demand of FRCMCs-SiC parts, high-quality and high-efficient machining has become a hot issue. This review paper provides a detailed literature survey on the machining of FRCMCs-SiC. The material removal mechanism, defect form, and interfacial mechanical properties of FRCMCs-SiC were summarized. The machining processes of FRCMCs-SiC were introduced, and their respective advantages and disadvantages were compared. Given the low machinability (high hardness, high brittleness, anisotropy, and heterogeneity) of FRCMCs-SiC, preliminary experiments have proved that ultrasonic-assisted machining and laser-assisted machining have shown unique advantages in reducing force and tool wear, improving machining quality and machining efficiency. The machined surface integrity was discussed, the influence of process parameters on the machined surface quality was analyzed, and the machining defects of FRCMCs-SiC were summarized. But for FRCMCs-SiC, the existing quantitative evaluation of the machined surface integrity was weak and unsystematic.  相似文献   
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