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| 1 | FRFT Based Parameter Estimation of the Quadratic FM Signal显示文摘 | QU Qiang JIN Minglu KIM Jae Moung | 2010 | Chinese Journal of Electronics2010,19,3: | 3 |
| 2 | Evaluation of polyamidoamine (PAMAM) dendrimers as drug carriers of anti-bacterial drugs using sulfamethoxazole (SMZ) as a model drug显示文摘 | Minglu Ma Yiyun Cheng Zhenhua Xu Peng Xu Haiou Qu Yujie Fang Tongwen Xu Longping Wen | 2006 | European Journal of Medicinal Chemistry2006,,1: | 1 |
| 3 | Polyamidoamine (PAMAM)dendrimers as biocompatible carriers of quinolone antimicrobials:An in vitro study显示文摘 | Chen Yiyun Qu Haiou Ma Minglu | 2007 | Eur J Med Chem2007,42,: | 1 |
| 4 | A study of the re- verse cycle defrosting performance on a multi-circuit out- door coil unit in an air source heat pump - Part I:Ex- periments 显示文摘 | Qu Minglu Xia Liang Deng Shiming | 2012 | Applied Energy2012,91,1: | 1 |
| 5 | A novel defrosting control method based on the degree of refrig- erant superheat for air source heat pumps 显示文摘 | Yiqiang Jiang Jiankai Dong Minglu Qu | 2013 | Interna- tional Journal of Refrigeration2013,36,8: | 1 |
| 6 | Polyamidoamine (PAMAM) dendrimers as biocompatible carriers of quinolone antimicrobials:An in vitro study显示文摘 | Chen Yiyun Qu Haiou Ma Minglu | 2007 | Eur J Med Chem2007,42,: | 1 |
| 7 | A study of the reverse cycle defrosting performance on a multi - cir- cuit outdoor coil unit in an air source heat pump--Part I: Experiments 显示文摘 | QU Minglu XIA Liang DENG Shiming | 2012 | Applied Energy2012,91,1: | 1 |
| 8 | Improved indoor thermal comfort during defrost with a novel reverse-cycle defrosting method for air source heat pumps显示文摘 | Qu Minglu Xia Liang Deng Shiming | 2010 | Building and Environment2010,45,11: | 1 |
| 9 | A study of the reverse cycle defrosting performance on a multi-circuit outdoor coil unit in an air source heat pump:Part I Experiments显示文摘 | QU Minglu LIANG Xia DENG Shiming | 2012 | Applied Energy2012,91,1: | 1 |
| 10 | Improving performance of macro electrolyte jet machining of TC4 titanium alloy:Experimental and numerical studies显示文摘Electrolyte jet machining(EJM)is a promising method for shaping titanium alloys due to its lack of tool wear,thermal and residual stress,and cracks and burrs.Recently,macro-EJM has attracted increasing attention for its high efficiency in machining wide grooves or planes.However,macro-EJM generates large amounts of electrolytic products,thereby increasing the difficulty of rapid product removal with a standard tool and reducing the surface quality.Therefore,for enhanced product transport,a novel tool with a back inclined end face was proposed for macroEJM of TC4 titanium alloy.For comparison,also proposed were ones with a standard flat end face,a front inclined end face,and both front and back inclined end faces.The flow field distributions of all proposed tools were simulated numerically,and experiments were also conducted to validate the simulation results.The results show that one with a 5°back inclined end face can decrease the lowvelocity flow zone in the machining area and increase the high-velocity flow zone at the back end of tool,thereby promoting rapid product removal.A relatively smooth bright-white groove surface was obtained.The same tool also resulted in the highest machining depth and material removal rate among the tested ones.In addition,rapid product removal was beneficial to the subsequent processing.Because of its rapid product removal,the machining depth and material removal rate during deep groove machining using the tool with a 5°back inclined end face were respectively 7%and14%higher than those produced using a standard one.Moreover,the lowest bottom height difference of 0.027 mm can be obtained when the step-over value was 8.2 mm,and a plane with a depth of0.285 mm and a bottom height difference of 0.03 mm was fabricated using the tool with a 5°back inclined end face. | Minglu WANG Ningsong QU | 2022 | Chinese Journal of Aeronautics2022,35,8: | 0 |
| 11 | A modeling study of different kinds of sessile droplets on the horizontal surface with surface wettability and gravity effects considered显示文摘Droplet phase change is important for energy storage and saving technology.The initial profile of the droplet is extremely important for its vaporization or solidification on a horizontal surface.To understand the effect of liquid physical properties on droplet profile,a theoretical model was developed in this study,based on the Young-Laplace equation with gravity effect specially considered.After the model was experimentally validated by comparing the geometric shape of water droplets,it was further used for predicting droplet shapes of other materials,and thus analyzing the influence of different physical properties,such as temperature,pressure,surface wettability,etc.Results show that the results of this model agree well with the experimental data.The maximum and average deviations are less than 4.5%and 1.5%,respectively.For all kinds of droplets on the fixed surfaces,when the temperature increases,the droplet contact radius increases and height decreases.The droplets of nitro-gen and carbon dioxide are more sensitive to temperature than ethanol and ethylene glycol droplets.For 20��L droplets on the surface of contact angle 150°,when the temperature changes from 273.15 K to 293.15 K,the droplet contact radiuses increase by 30.6%for carbon dioxide,1.2%for ethanol and 0.67%for ethylene glycol,and the droplet heights decrease by 42.9%,2.5%,1.1%,respectively.Results of this study are meaningful for predicting the phase change process of droplets on the horizontal surface by controlling their initial profiles. | DANG Qun SONG Mengjie LUO Xiaoyan QU Minglu WANG Xiaotao | 2022 | Energy Storage and Saving2022,1,1: | 0 |