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11.
单向层合结构的高强度碳纤维增强树脂基复合材料已逐渐发展成为航空承力结构件的主要材料,相关的切削加工需求也越来越多。由于显著的各向异性,单向层合结构的碳纤维复合材料易在切削加工中形成缺陷,难切削加工性明显。采用直角自由切削试验的方法,得到了T700航空高强度碳纤维单向层合结构复合材料在不同纤维方向角下的切削力、切削比能、切削温度、切削加工表面。基于试验结果讨论了碳纤维单向层合材料在切削过程中力热行为的各向异性,得到了不同切削参数条件下的切削比能图谱以及碳纤维复合材料的切削热源和传导模型。通过扫描电子显微镜(Scanning electron microscope,SEM)分析了典型切削加工表面的特征,得到了不同纤维方向下的表面形成规律。  相似文献   
12.
采用均相流模型并结合FBM湍流模型,对绕轴对称回转体通气云状空泡流动特性进行了三维数值模拟,基于实验结果对数值方法进行验证,同时利用基于拉格朗日体系的有限时间李雅普诺夫指数(FTLE)、拉格朗日拟序结构(LCS)和粒子追踪方法分析了其三维非定常脱落特性。研究结果表明:纵截面上空泡覆盖区域的拉格朗日拟序结构整体呈椭球状分布,内部为不规律的复杂拟序结构;不同横截面上拟序结构分布存在很大差异。空泡内部的非对称流动结构和周向流动导致空泡呈现很强的三维运动特性。反向射流在周向上推进的不同步性,是造成空泡呈现不规则断裂和大尺度U型空泡团脱落的主要原因。  相似文献   
13.
多重分形谱在材料分析中的应用研究   总被引:13,自引:0,他引:13  
基于多重分形谱的物理意义,通过图像分析与处理技术,利用Delphi语言设计了图像结构的多重分形谱的计算程序。通过程序中图像黑白二值化转化阈值的设定,实现了从材料组织结构形貌图像上提取其相应的概率测度和标度指数的功能,并计算了它们的多重分形谱。分析表明:在对材料的组织结构进行研究的问题中,多重分形谱是一种有意义的表征参数,能够从多分形角度对材料的组织结构开展定量化的分析与解释。  相似文献   
14.
应用细观力学方法对三维编织结构复合材料的有效性能进行预测是研究编织复合材料宏观性能的重要途径。细观结构参数决定编织体内纤维束的结构形态特征及复合材料的各种性能。根据作者提出的三维四向编织复合材料代表单元模型 ,文章应用选择平均法 (SAM)详细的分析了主要细观结构参数(单步步长、纤维束弯曲半径 )与编织体有效弹性模量之间的变化关系 ,分析了细观结构参数对编织体有效弹性模量的影响 ,为材料优化设计奠定基础  相似文献   
15.
为了获取模拟月面的三维地形数据,采用激光雷达系统进行专项试验场地形测量。文章分析了激光雷达系统的测量站点布局规划和位置参数设置对大尺寸地形扫描测量的影响,重点研究了激光雷达在景深条件限制下为实现最大扫描面积的有效扫描高度和扫描宽度设置。研究结果可为深空大范围扫描测量深入研究提供一定的参考。  相似文献   
16.
液体火箭发动机涡轮泵机械密封磨损机理研究   总被引:2,自引:0,他引:2  
对比分析了机械密封静环端面原始表面和磨损表面形貌,得到了磨损形式和内外径磨损差异;仿真分析了密封端面接触应力及温度场,分析了转速、介质压力等条件对端面接触应力和温度场的影响;探明了端面接触应力和温度变化对磨损性能的影响,阐述了机械密封的磨损机理。  相似文献   
17.
月表地形环境对着陆器热控系统的影响分析   总被引:1,自引:1,他引:0  
月球着陆器着陆月表之后的外热流环境与地球轨道卫星外热流环境的最大区别在于月表红外热流的影响.分析月表地形特征是确定月表红外热流影响范围的基础.文章根据调研分析选择了月海地区可能存在的平坦月表、斜坡、石块和撞击坑4种典型地形特征以及月表的热物性参数,并通过计算分析得出了月表地形对着陆器热控系统的一些影响规律--其中平坦月表和斜坡的影响最大,石块和小型撞击坑的影响可以忽略,大型撞击坑可以等效为斜坡的影响.  相似文献   
18.
《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   
19.
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   
20.
Optimal interpolation methods for improving the reconstruction of coastal dynamics from along-track satellite altimetry measurements have been recently developed over the North Western Mediterranean Sea. Maps of satellite-derived geostrophic current anomalies are generated using these methods, and added to different mean circulation fields in order to obtained absolute geostrophic currents. The resulting fields are then compared to standard AVISO products, and their accuracies are assessed with Lagrangian diagnostics. The trajectories of virtual particle clusters are simulated with a Lagrangian code either with new current fields or with the AVISO ones. The simulated trajectories are then compared to 16 in situ drifter trajectories to evaluate the performance of the different velocity fields. The comparisons show that the new current fields lead to better results than the AVISO one, especially over the shallow continental shelf of the Gulf of Lion. However, despite the use of innovative strategies, some altimetry limitations still persist in the coastal domain, where small scale processes remain sub-sampled by conventional altimetry coverage but will benefit from technological development in the near future. Some of the limitations of the Lagrangian diagnostics presently used are also analyzed, but dedicated studies will be required for future further investigations.  相似文献   
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