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| 1 | Switching Impulse Strength of ±800 kV UHVDC Transmission Line Air Gap Insulation Under High Altitude Condition显示文摘 | LIAO Yongli GAO Chao LI Ruihai WANG Guoli MA Yi | 2012 | 高电压技术2012,38,12: | 3 |
| 2 | Measuring elastic–plastic properties of thin films on elastic–plastic substrates by sharp indentation显示文摘 | Yanguo Liao Yichun Zhou Yongli Huang Limei Jiang | 2008 | Mechanics of Materials2008,,3: | 2 |
| 3 | Measuring elastic-plastic properties of thin films on elastic-plastic substrates by sharp indentation显示文摘 | Liao Yanguo Zhou Yichun Huang Yongli | 2009 | Mechanics of Materials2009,41,3: | 1 |
| 4 | A Super-robust Armoured Superhydrophobic Surface with Excellent Anti-icing Ability显示文摘It has been proved that the construction of interconnected armour on superhydrophobic surface could significantly enhance the mechanical robustness.Here,a new kind of armour with frame/protrusion hybrid structure was achieved by nanosecond laser technology.Then,this armoured superhydrophobic surface demonstrated excellent durability,which could withstand linear abrasion(~3 N press)800 cycles,water jet test(1.0 MPa pressure)40 times and 100℃treatment 18 days.Particularly,the armoured superhydrophobic sample shows outstanding anti-icing ability,which can speed up the supercooled water dropping(no adhesion within 2 h),increase the freezing delay time by~3 times and maintain low adhesion force(less than 35 kPa)after 30 icing/de-icing cycles.Further finite element analysis and theoretical modeling proved that the developed frame/protuberance hybrid structure could effectively enhance the durability.The relatively low surface accuracy in this study can significantly reduce processing cost,which provides a bright future for the practical application of armour superhydrophobic materials. | Peng Wang Hui Zhao Boyuan Zheng Ximei Guan Bin Sun Yongli Liao Ying Yue Wei Duan Haimin Ding | 2023 | Journal of Bionic Engineering2023,20,5: | 1 |
| 5 | Measuring elastic-plastic properties of thin films on elastic-plastic substrates by sharp indentation显示文摘 | Liao Yanguo Zhou Yichun Huang Yongli | 2009 | Mechanics of Materials2009,41,3: | 1 |
| 6 | Measuring elastic- plastic properties of thin films on elastic-plastic suhstrates by sharp indentation 显示文摘 | Liao Y G Zhou Yichun Huang Yongli | 2009 | Mechanics of Materials2009,41,3: | 1 |
| 7 | Included angleselection of V-shape insulator string for 750kV compact trans-mission line显示文摘 | LIAO Yongli HOU Lei WANG Liming | 2011 | IEEE Transactions on Power Delivery2011,26,1: | 1 |
| 8 | HMTA-assisted One-pot Synthesis of Greigite Nano-platelet and Its Magnetic Properties显示文摘A facile one-pot hydrothermal procedure for the synthesis of magnetic greigite was investigated in this work, by using Fe SO4, thioacetamide, and a tiny amount of hexamethylenetetramine(HMTA) as starting materials. The HMTA molecule, which acted as a chelating agent and an oxidant, could not only tune the valence fluctuation of iron ions, but also direct the hydrothermal reaction towards the exclusive formation of greigite platelets with hundreds of nanometers in lateral size. In the presence of a static magnetic field during this synthesis, the greigite nano-platelets were apt to congregate to form 3D flower-like microspheres. A set of experiments suggested that the ferrous ions were at first partly oxidized by HMTA to form ferric intermediates, i.e., Fe(OH)3 and Fe2O3. Then excessive ferrous ions, along with the solid intermediates, reacted with sulfide ions, and finally evolved into greigite. Taken into consideration that a similar process occurred in magnetotactic bacteria, our results may give a hint at the design of biomimetic synthesis strategies to produce nanomaterials, especially the magnetosome-like greigite. | Tuoquan Liao Wei Wang Yongli Song Xianjie Wang Yanqiang Yang Xiaoyang Liu | 2015 | Journal of Materials Science & Technology2015,31,9: | 0 |
| 9 | Exploring the Mechanism,Advancements,and Application of Thermogalvanic Effect in Hydrogels显示文摘The issue of energy consumption has garnered significant interest due to its excessive usage.Recently,thermoelectric devices have been getting increased attention,as they can harness waste heat from various sources,such as solar radiation,human body,and industrial processes.Traditionally,the recovery of low-grade heat has been a challenge,resulting in unsustainable energy use and significant losses.While considerable advances have been made in thermoelectric materials in recent decades,the majority of these devices still primarily employ semiconductors.Nevertheless,the emergence of quasi-solid-state thermoelectric materials represents a novel development with profound promise for the environment and society.These materials offer several advantages,such as improved energy conversion capacities,cost-effectiveness,versatility,and scalability,to support increased usage.Additionally,this review explores the application of thermoelectric materials in self-powered sensors,integrated modules,and heat harvesting management.Lastly,the potential of high-performance thermocouples based on thermogalvanic effects is assessed,along with the challenges that must be overcome to realize this goal. | Xiaoyu Yang Peng Wang Xiaolong Wu Yongli Liao Senyun Liu Wei Duan Ying Yue | 2024 | Chinese Journal of Chemistry2024,42,5: | 0 |