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圆形纤维增强塑料缠绕混凝土柱在持续轴向压缩下的面向设计的模型分析(英文)
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《Journal of Zhejiang University-Science A(Applied Physics & engineering)》2015年 第1期16卷 47-58页
作者:Hui LIU Ming-hua HE Jia GUO Yong-jiu SHI Zhao-xin HOU Lu-lu LIUDepartment of Civil Engineering Tsinghua University Central Research Institute of Building and Construction Co. Ltd. China Metallurgical Group Corporation Research Institute of Highway of China Ministry of Transport Institute of Chemical Machinery Zhejiang University College of Energy and Power Engineering Nanjing University of Aeronautics and Astronautics 
目的:在实际工程服役过程中,纤维增强塑料(FRP)约束混凝土柱在遭遇极限荷载前往往已经经历了长时间的轴压荷载作用。因此,相比其短期力学性能,本文旨在研究FPR约束混凝土柱在长期荷载作用后的力学性能。创新点:1.考虑长期轴压荷载作用,...
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Image interpolation algorithm on a triangular grid
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《Computer Aided Drafting,Design and Manufacturing》2016年 第1期26卷 19-25页
作者:Xu Lan Li Xuemei Wang Guizhong Tian ShuoSchool of Computer Science and TechnologyShandong UniversityJinan 250101China Shandong Linglong Tire Co.Ltd.Zhaoyuan 250014China China Machinery Engineering CorporationBeijing 100055China 
A new method for constructing a fitting surface on a triangular grid is presented. Assuming images are obtained by sampling from the original scene. Conventional polynomial interpolation methods generally construct th...
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基于光和湿度双重驱动软体机器人的荧光增强性水检测器
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《Science china Materials》2023年 第6期66卷 2445-2453页
作者:王子正 保金映 黄睿 宋晨捷 申晨 孙健 兰若尘 张兰英 杨槐School of Materials Science and EngineeringPeking UniversityBeijing 100871China Institute of Advanced MaterialsKey Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of EducationJiangxi Normal UniversityNanchang 330022China School of Materials Science and EngineeringUniversity of Science and Technology BeijingBeijing 100083China Department of OphthalmologyBeijing Anzhen HospitalCapital Medical UniversityBeijing 100029China China National Machinery Industry Corporation(Sinomach)Beijing 100080China Key Laboratory of Polymer Chemistry and Physics of Ministry of EducationPeking UniversityBeijing 100871China 
智能仿生软材料是近年来科学研究的重点之一.液晶高分子材料是众多软材料中最有发展潜力的材料之一.目前通过液晶高分子材料制备具有复杂功能和多种响应的仿生器件主要通过两种方法,其一是引入多种响应性基团,赋予材料多重响应.另一个...
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