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| 1 | Clinical features and treatment status of hemifacial spasm in China显示文摘 | Wang Lin Hu Xingyue Dong Hongjuan Wang Wenzhao Huang Yue Jin Lingjing Luo Yumin Zhang Weixi Lian Yajun Liang Zhanhua Shang Huifang Feng Yabo wu Yiwen Chen Jun Luo Weifeng Wan Xinhua | 2014 | Chinese Medical Journal2014,,5: | 20 |
| 2 | Phase selection during solidification of undercooled Ni_(70.2)Si_(29.8) eutectic alloy显示文摘在冷却下面的高度(大约 392 K ) 在体积被完成最容易溶解的 Ni 70.2 Si 29.8 合金通过与周期的过热相结合的玻璃 fluxing 融化。这被发现亚稳的阶段 Ni 3 Si 2 并且非最后被获得通过慢团结以后什么时候在冷却下面超过 240 K。亚稳的阶段被使用 X 光检查衍射和微分扫描热量测定(DSC ) 的方法证实。基于免费精力最小和短暂成核理论的原则,阶段选择融化在凉下来的最容易溶解的 Ni 70.2 Si 29.8 融化。从在凉下来的 Ni 70.2 Si 29.8 融化被归功于到竞争成核与在冷却下面,即在冷却下面的高度便于亚稳的阶段的优先的成核。 | Yiping Lu Tingju Li Fu Yabo Sun Jianbo LUO Dawei Gencang Yang Yaohe Zhou | 2009 | Progress in Natural Science:Materials International2009,19,11: | 4 |
| 3 | Selective recovery of Cu^2+ and Ni^2+ from wastewater using bioelectrochemical system显示文摘作为 bioelectrochemical 系统,微生物引起的燃料房间(MFC ) 和微生物引起的电解房间(MEC ) 被开发有选择地恢复 Cu < 啜 class= “ a-plus-plus ” >2+ 和 Ni < 啜 class= “ a-plus-plus ” > 从废水的 2+ 个 离子。废水在系统的阴极房间被对待,在哪个 Cu < 啜 class= “ a-plus-plus ” >2+ 和 Ni < 啜 class= “ a-plus-plus ” >2+ 个 离子被分别地使用 MFC 和 MEC 移开。在起始的 Cu < 啜 class= “ a-plus-plus ” > 500 mg 瀠牥散瑮条 ? 景漠瑵異 ? 慶畬 ? 景椠摮獵牴 ? 湩敶瑳摥戠 ? 的 2+ 集中潈杮? 湯 ?? 捡潡 ? 慔睩湡愠摮愠牢慯? 攠敮杲 ? 牰捩 ? 湡 ? 湩敶瑳敭瑮漠 ? 諗棔娹驺硴超 _ 捥湨汯杯捩污愠瑣癩瑩敩 ? 潦 ? 湩畤瑳祲挠畯摬戠 ? 潰獳扩敬挠湯牴扩瑵牯 ? 湡 ? 牤癩牥 ? 潴琠敨椠摮獵牴慩? 湥牥祧攠晦捩敩据? | Haiping LUO Bangyu QIN Guangli LIU Renduo ZHANG Yabo TANG Yanping HOU | 2015 | Frontiers of Environmental Science & Engineering2015,9,3: | 4 |
| 4 | An Internetenabled image-and model-based Virtual Machining System显示文摘 | Luo Yabo Ong S K Chen Dingfang | 2002 | International Journal of Production Research2002,40,10: | 1 |
| 5 | Study in Realizing Virtual Reality by Software显示文摘 | Chen Dingfang | 1999 | Proceeding of Second International Conference on CAID&CD''991999,,: | 1 |
| 6 | An Internet - enabled image- and model-based virtual machining system显示文摘 | LUO Yabo ONG S K CHEN Dingfang | 2002 | International Journal of Production Research2002,40,10: | 1 |
| 7 | Test and Experiment Study on Synchronous Cooperative Design System Over Networked Manufacturing Platform显示文摘Based on the analysis on the previous research in virtual manufacturing and virtual enterprises,this paper pro- vides a novel architecture of networked manufacturing system around the cooperative design.The key technologies for synchronous cooperative design in networked manufacturing platform,such as the cooperative mechanism,cooperative rules,control authority conveyed,cooperative efficiency,are detailed,with which a synchronous cooperative design system is developed.Due to the cooper- ative efficiency is the major bottleneck of the synchronous cooperative design over Internet,this research details the test and experi- ment to demonstrate the practicality of the system.Finally the advantages of the system are illustrated compared with current soft- ware tools. | LUO Yabo~1 ZHENG Li~2 ZOU Shiwei~1 ZHAO Liang~1 1.School of Mechanical and Electrical Engineering,Wuhan University of Technology,Wuhan 430070,China 2.Department of Biology and Light Industry,Changsha University of Science and Technology,Changsha 410076,China | 2006 | 武汉理工大学学报2006,28,S2: | 1 |
| 8 | An efficient approach for the treatment of radioactive waste perfluoropolyether lubricants via a synergistic effect of thermal catalysis and immobilization显示文摘Perfluoropolyether(PFPE)lubricants are a kind of high-molecular polymer with many excellent properties.However,the use of PFPEs in the nuclear industry can lead to partial decomposition and carrying radionuclides,resulting in a large amount of radioactive waste PFPE lubricants annually.Moreover,radioactive waste PFPE lubricants are difficult to be effectively treated due to their high stability,the risk of possible leakage of radionuclides,and hypertoxic fluorine-containing by-products.In this study,without any precedent,a strategy of Mn O_(2)-catalyzed decomposition and Na_(2)CO_(3)-immobilized conversion was proposed for PFPE lubricant decomposition and fluorine immobilization simultaneously based on the Lewis acid-base and oxygen vacancies concept.A high fluorine conversion efficiency of 95.4%was achieved.Meanwhile,the mechanism of decomposition suggested that Mn O_(2)mainly provided Lewis acid sites and attacked the(basic)fluorine or oxygen atoms in PFPE molecules.The decomposition of PFPE chains was proceed down and volatile fluorine-containing gas was released by partial electron transfer,intramolecular disproportionation reaction,and unzipping fashion.Subsequently,gas by-products could be further oxidized and then immobilized into fluoride salts by carbonate solid absorbents.Overall,this study provides a simple,safe,and potentially practical strategy for the harmless conversion of refractory fluorinated organic wastes,especially perfluoropolymers. | Xinhang Du Wenhua Tong Xinyu Zhou Jia Luo Yuqiu Liu Yabo Wang Panyu Li Yongkui Zhang | 2024 | Journal of Environmental Sciences2024,,2: | 0 |
| 9 | Research on damage failure mechanism and dynamic mechanical behavior of layered shale with different angles under confining pressure显示文摘The hydrostatic or confining pressure of deep rocks has a significant impact on the mechanical behavior of brittle materials.Especially when confining pressure is applied,the mechanical properties of rock materials will undergo significant changes.Considering that the process of shale sample subjected to impact load is in a closed container in the dynamic triaxial SHPB test,the failure process of the sample cannot be observed.Meanwhile,the activation volume of the shale sample would be large and local failure would occur in the test under the high strain rate loading.Therefore,thefinite element model of shale considering the bedding effect under confining pressure was established in this study.Taking shale materials with different bedding dip angles as simulation objects,the dynamic failure characteristics of shale were studied using the dynamic analysis software ANSYS/LS‐DYNA from three aspects:stress‐strain curve,failure growth process,and failure morphology.The research results obtained can serve as the key technical parameters for deep resource extraction. | Ning Luo Haohao Zhang Yabo Chai Penglong Li Cheng Zhai Jianan Zhou Tianran Ma | 2023 | Deep Underground Science and Engineering2023,2,4: | 0 |