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精密轴承轮廓的形成方法及其加工量的确定
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作者 王建设 《光学精密工程》 EI CAS CSCD 1997年第5期44-47,共4页
论述了精密多油楔轴承轮廓的形成方法,建立了计算轮廓有关几何尺寸的数学公式,着重论述了确定轴承轮廓加工量的理论算法。
关键词 精密轴承 弧轮廓 几何尺寸 加工量 理论算法
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基于Pro/ENGINEER平台的弧面分度凸轮特征造型 被引量:8
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作者 胡文祥 《制造技术与机床》 CSCD 北大核心 2006年第7期36-40,49,共6页
叙述了用Pro/E三维设计软件绘制弧面分度凸轮的步骤和方法,可供此类型面设计使用。
关键词 面分度凸轮轮廓设计 PRO/E
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Influence of alloy components on arc erosion morphology of Ag/MeO electrical contact materials 被引量:8
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作者 吴春萍 易丹青 +2 位作者 翁桅 李素华 周孑民 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第1期185-195,共11页
Arc erosion morphologies of Ag/MeO(10) electrical contact materials after 50000 operations under direct current of 19 V and 20 A and resistive load conditions were investigated using scanning electron microscope(SE... Arc erosion morphologies of Ag/MeO(10) electrical contact materials after 50000 operations under direct current of 19 V and 20 A and resistive load conditions were investigated using scanning electron microscope(SEM) and a 3D optical profiler(3DOP). The results indicated that 3DOP could supply clearer and more detailed arc erosion morphology information. Arc erosion resistance of Ag/SnO_2(10) electrical contact material was the best and that of Ag/CuO(10) was the worst. Arc erosion morphology of Ag/MeO(10) electrical contact materials mainly included three different types. Arc erosion morphologies of Ag/ZnO(10) and Ag/SnO_2(10) electrical contact materials were mainly liquid splash and evaporation, and those of Ag/CuO(10) and Ag/CdO(10) were mainly material transfer from anode to cathode. Arc erosion morphology of Ag/SnO_2(6)In_2O_3(4) electrical contact materials included both liquid splash, evaporation and material transfer. In addition, the formation process and mechanism on arc erosion morphology of Ag/MeO(10) electrical contact materials were discussed. 展开更多
关键词 Ag/MeO electrical contact material alloy component arc erosion morphology three-dimensional optical profiler
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一种新的基于日侧全天空图像的极光弧宽测定方法 被引量:1
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作者 杨秋菊 丘琪 韩德胜 《中国科学:地球科学》 CSCD 北大核心 2016年第8期1141-1148,共8页
极光弧是最常见的一种极光形态,其空间尺度大至数百千米,小至几十米.极光弧宽的研究对理解极光粒子加速机制及磁层-电离层中的跨尺度耦合具有重要意义.现有文献在计算极光弧图像中的弧宽时,多是只考虑了过天顶某条剖线上极光强度的变化... 极光弧是最常见的一种极光形态,其空间尺度大至数百千米,小至几十米.极光弧宽的研究对理解极光粒子加速机制及磁层-电离层中的跨尺度耦合具有重要意义.现有文献在计算极光弧图像中的弧宽时,多是只考虑了过天顶某条剖线上极光强度的变化,而忽略了极光弧的形态信息.文章从极光弧图像出发,利用计算机模式识别技术,自动识别出极光弧轮廓,在此基础上计算极光弧的宽度,统计弧宽分布规律.通过对2003-2005年北极黄河站越冬观测的2520幅日侧全天空极光弧图像进行实验,并与Qiu等(2013)结论进行对比,验证了文章方法的有效性.结果显示,黄河站全天空成像仪观测到的日侧极光弧空间尺度主要在1-100k m量级,磁天顶附近±1 5°内极光弧宽的平均值为1 9.65km,并且随着天顶角远离磁天顶,极光弧宽增大. 展开更多
关键词 极光 极光弧轮廓
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Effect of Diffuser Vane Shape on the Performance of a Centrifugal Compressor Stage 被引量:4
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作者 T Ch Siva Reddy GV Ramana Murty MVSSSM Prasad 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第2期127-132,共6页
The present paper reports the results of experimental investigations on the effect of diffuser vane shape on the performance of a centrifugal compressor stage. These studies were conducted on the chosen stage having a... The present paper reports the results of experimental investigations on the effect of diffuser vane shape on the performance of a centrifugal compressor stage. These studies were conducted on the chosen stage having a back- ward curved impeller of 500 turn tip diameter and 24.5 mm width and its design flow coefficient is Фd=0.0535. Three different low solidity diffuser vane shapes namely uncarnbered aerofoil, constant thickness flat plate and circular arc cambered constant thickness plate were chosen as the variants for diffuser vane shape and all the three shapes have the same thickness to chord ratio (t/c=0.1). Flow coefficient, polytropic efficiency, total head coeffi- cient, power coefficient and static pressure recovery coefficient were chosen as the parameters for evaluating the effect of diffuser vane shape on the stage performance. The results show that there is reasonable improvement in stage efficiency and total head coefficient with the use of the chosen diffuser vane shapes as compared to conven- tional vaneless diffuser. It is also noticed that the aero foil shaped LSD has shown better performance when com- pared to flat plate and circular arc profiles. The aerofoil vane shape of the diffuser blade is seen to be tolerant over a considerable range of incidence. 展开更多
关键词 Centrifugal compressor Vaneless diffuser Low solidity diffuser
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