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Online since: July 2011
Authors: Hai Lin, Miao Tian, Zheng Yang Zhou, Xin Zhao
Evaluation of Optical Path Designing on 4´4 cm2 Er3+/Yb3+ Doped Phosphate Glass Waveguide Substrate
Miao Tian, Xin Zhao, Zhengyang Zhou, and Hai Lina
Faculty of Chemical Engineering and Materials, Dalian Polytechnic University, Dalian, China
awjs@dlpu.edu.cn
Keywords: waveguides; bent channel structure; device design
Abstract.
Yang.
Yang, Z.M.
Tian and S.B.
Yang.
Yang, Z.M.
Tian and S.B.
Online since: September 2013
Authors: Tian Yu, Ming Xiang Yang, Yun Zhong Jiang
Research on Urban Smart Water Resources Emergency Management
TIAN Yu, YANG Ming-xiang, JIANG Yun-zhong
State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China
sweetrain511@163.com
Keywords: Emergency management, urban water resources management, smart water resources, scientific decision-making, coordinated management
Abstract: In the background of global climate change, the risk caused by natural disaster further intensify, the features of sudden, abnormity and unpredictability of disasters appear to be greater.
[5] Tian Y, Jiang Y Z, Yang M X.
[5] Tian Y, Jiang Y Z, Yang M X.
Online since: February 2016
Authors: Ying Liang Tian, Mei Zhang, Yong Ming Li, Feng Wang, Jing Ting Yang
On the Methods for Measuring High Temperature Resistivity of Glass
TIAN Ying-liang1,2,a*, ZHAN Mei2,b, LI Yong-ming1,3,c,
WANG Feng1,d and YANG Jing-ting4,e
1 National Glassware Products Quality Supervision and Inspection Center, Shanxi 030900, China
2Glass Laboratory Materials College of Beijing University of Technology, Beijing 100124, China
3Shanxi Province Glass Products Quality Supervision and Inspection Center, Shanxi 030900, China
4Beijing Hua Yuda Glass Technology Research Institute, Beijing 100124, China
aboli106@126.com, bbolizhanmei@163.com, cgjbjzx@126.com, djsxz_wf@163.com, ehyd-YjT@163.com
Keywords: High alkali aluminosilicate glasses; High temperature melt; Resistivity
Abstract.
Tian, S.B.
Yang, X.F.
Tian et al, Light Metal. 10 (2007) 33-37.
Tian, S.B.
Yang, X.F.
Tian et al, Light Metal. 10 (2007) 33-37.
Online since: February 2014
Authors: Xin Wei Yang, Shi Zhu Yang
Tian, Q.
[4] Ruilan Tian, Xinwei Yang, Lifang Ren, Study on Mid-Span Deflection of Beam Bridge under Moving Loads by the Recently Proposed Oscillator with Time-Dependent Stiffness,Applied Material Research, 2011, 179-180: 1096-1101
[4] Ruilan Tian, Xinwei Yang, Lifang Ren, Study on Mid-Span Deflection of Beam Bridge under Moving Loads by the Recently Proposed Oscillator with Time-Dependent Stiffness,Applied Material Research, 2011, 179-180: 1096-1101
Online since: January 2018
Authors: Ojin Tegus, Naren Gerile, Hexig Alata, Tian Xiao, Ta Na Bao
Yang, X.
Yang.
Tian, et al.
Tian.
Yang, F.
Yang.
Tian, et al.
Tian.
Yang, F.
Online since: January 2015
Authors: Tian Tian Yin, Hui Li
Design of Injection Mould for the Mouse Shell with Two-step Parting Mechanism
Li Hui, Yin Tian-tian
School of Mechanical and Automotive Engineering, Kaifeng University, Kaifeng 475004, China
Key words: The mouse shell; Injection mold; Two-step mechanism; core-pulling mechanism
Abstract: The injection mould was designed through process analysis of the mouse shell.
References [1] Yang Yongshun.
Machinery industry press, 2011.8 [2] Yang Zhanyao.
References [1] Yang Yongshun.
Machinery industry press, 2011.8 [2] Yang Zhanyao.
Online since: January 2013
Authors: Yang Wang, Tian Li
Flexural bearing capacity research of composite beams with edge constraint component
Yang Wang 1,2 ,a, Tian Li 1,b
1School of Civil Engineering, Zhengzhou University, Zhengzhou, Henan, 450002,China
2Department of Civil Engineering, Taizhou Vocational & Technical College, Taizhou, Zhejiang,318000,China
awangyang96@126.com, b13084688012@126.com
Keywords: composite beam, finite element analysis, negative moment region, flexural bearing capacity
Abstract.
References [1] Li Tian.Structure design principle[M].Zhengzhou:Zhengzhou university press,2010 (In Chinese) [2] Nie Jianguo,Liu Ming,Ye lieping.Steel- concrete composite structure[M].Beijing: China architecture &building press,2005 (In Chinese) [3] GB50017-2003.
References [1] Li Tian.Structure design principle[M].Zhengzhou:Zhengzhou university press,2010 (In Chinese) [2] Nie Jianguo,Liu Ming,Ye lieping.Steel- concrete composite structure[M].Beijing: China architecture &building press,2005 (In Chinese) [3] GB50017-2003.
Online since: October 2011
Authors: Jie Gu, Jun Zhao, Hui Ge Wu
References
[1]Wenfu Yang, Lu Gao, Lianyu Gao: New Building Materials,Vol.2(2007),p.22-26(In Chinese)
[2]Shuming Tian:Study on static behavior and aseismic performance of autoclaved aerated concrete(AAC)block bearing walls( Tian jin University, Tian jin 2004)
[3]Jinghai Yu,Wei Wang,Shuming Tian,et al: Low Temperature Architecture Technology, Vol.5 (2007), p.53-55 [4]Feng Xie,Jinghai Yu,Xiao-xiang Chen:Low Temperature Architecture Technology,Vol.8(2009), p.72-74 [5]Quanbin Zhao:Experimental research on the improvement of seismic behavior of load bearing masonry made of autoclaved aerated concrete(Tian jin University, Tian jin2006)
[3]Jinghai Yu,Wei Wang,Shuming Tian,et al: Low Temperature Architecture Technology, Vol.5 (2007), p.53-55 [4]Feng Xie,Jinghai Yu,Xiao-xiang Chen:Low Temperature Architecture Technology,Vol.8(2009), p.72-74 [5]Quanbin Zhao:Experimental research on the improvement of seismic behavior of load bearing masonry made of autoclaved aerated concrete(Tian jin University, Tian jin2006)
Study on the Safety Margin of Pressure Vessel Pit Defect Based on the Defect Failure Simulation Path
Online since: August 2013
Authors: Gao Zhan Li, Wei Long, Da Qing Tian
Study on the Safety Margin of Pressure Vessel Pit Defect Based on the Defect Failure Simulation Path
Gaozhan Li1, a, Wei Long2,b and Daqing Tian 3,c
1School of Manufacturing Science and Engineering, Sichuan University, Sichuan, Chengdu, 610065, China
2 School of Manufacturing Science and Engineering, Sichuan University, Sichuan, Chengdu, 610065, China
3 School of Manufacturing Science and Engineering, Sichuan University, Sichuan, Chengdu, 610065, China
a1030404993@qq.com, bscdxlongwei@yeat.net, c tiandaqing@scu.edu.cn
Key word: pressure vessel; pit defect; safety assessment; failure simulation; safety margin
Abstract: In order to obtain the level of security of the pressure vessel with pit defects, a safety evaluation simulation system bases on the failure paths of pit defects was used to find the level of dynamic security.
References [1] YongXiang ZHAO, Bing YANG, Qing GAO.
Study on the Threshold of Small Fatigue Cracks[J].Journal of GuiZhou Universitty of Technology,(2007),(03):P.21-23 [4] ZhiAN LI.Process and equipment fault theory and the defects assessment, [M].Beijing,Chemical Industry Press,(2006) [5] XueRong MA.Reliability Analysis of Safe Critical Crack of the Air Tank [J] .China Safety Science Journal,(2005),15(04):P. 84-87,92 [6] WenCai SUN, ZiChun YANG.Fatigue Remainder Life Analysis of Cracked Pressure Vessels Based on Mixed Variables[J].Pressure vessel Technology , (2010)(01):P. 17-20 [7] Beardsmore,DW; Dowling,AR;Lidbury,DPG;Sherry, AH.
INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING (2003), 80 (11):P.787-795 [8] SiJian LIN, Wei LONG, DaQing TIAN et al.
References [1] YongXiang ZHAO, Bing YANG, Qing GAO.
Study on the Threshold of Small Fatigue Cracks[J].Journal of GuiZhou Universitty of Technology,(2007),(03):P.21-23 [4] ZhiAN LI.Process and equipment fault theory and the defects assessment, [M].Beijing,Chemical Industry Press,(2006) [5] XueRong MA.Reliability Analysis of Safe Critical Crack of the Air Tank [J] .China Safety Science Journal,(2005),15(04):P. 84-87,92 [6] WenCai SUN, ZiChun YANG.Fatigue Remainder Life Analysis of Cracked Pressure Vessels Based on Mixed Variables[J].Pressure vessel Technology , (2010)(01):P. 17-20 [7] Beardsmore,DW; Dowling,AR;Lidbury,DPG;Sherry, AH.
INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING (2003), 80 (11):P.787-795 [8] SiJian LIN, Wei LONG, DaQing TIAN et al.
Online since: September 2013
Authors: Cong Bin Fan, Shu Hong Jing, Shou Zhi Pu
Tian and S.J.
Yang: Chem.
Yang and G.
Tian and Y.L.
Yang: J.
Yang: Chem.
Yang and G.
Tian and Y.L.
Yang: J.