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Online since: September 2011
Authors: Wu Xiu Ding, Hong Yi Wang
Wu: The Chinese Journal of Geological Hazard and Control, Vol. 17 (2006) No.1, p.130.
Sun: Mechanism Analysis of Permeation Disease and Experiment Study on Impervious Material of Longmen Grottoes (Master's thesis, China University of Geosciences, China 2006)
Zhang: Sciences of Conservation and Archaeology, Vol. 22 (2010) No.4, p.77.
Ma: Sciences of Conservation and Archaeology, Vol. 18 (2006) No.3, p.30.
Wang: Journal of Luoyang University, Vol. 18 (2003) No.4, p.79.
Sun: Mechanism Analysis of Permeation Disease and Experiment Study on Impervious Material of Longmen Grottoes (Master's thesis, China University of Geosciences, China 2006)
Zhang: Sciences of Conservation and Archaeology, Vol. 22 (2010) No.4, p.77.
Ma: Sciences of Conservation and Archaeology, Vol. 18 (2006) No.3, p.30.
Wang: Journal of Luoyang University, Vol. 18 (2003) No.4, p.79.
Online since: October 2011
Authors: Xiao Zhong Ren, Yong Qing Liu
Study on the Influence of Deforming Velocity on Steel Ball Quality Based on DEFORM
Xiaozhong Ren a Yongqing Liub
School of Mechatronics Engineering, Henan University of Science & Technology, Luoyang, China
aren_xiaozhong@126.com,bliuyongqing101@126.com
Keywords: skew rolling, deformation, DEFORM, ball quality
Abstract.
where, k—constant related to material; ε—degree of deformation; η—velocity of deformation; A—work hardening index; B—strain rate sensitivity index.
Acknowledgment This work was financially supported by the Natural Science Research Foundation of Henan Education Department (2011A460002).
Chen: Journal of Mechanical Engineering Science, Vol.25 (2001), No.25, p.523-532
Jiang: Journal of HUST, Vol.23 (2006), No.2, p.56-58 (in Chinese)
where, k—constant related to material; ε—degree of deformation; η—velocity of deformation; A—work hardening index; B—strain rate sensitivity index.
Acknowledgment This work was financially supported by the Natural Science Research Foundation of Henan Education Department (2011A460002).
Chen: Journal of Mechanical Engineering Science, Vol.25 (2001), No.25, p.523-532
Jiang: Journal of HUST, Vol.23 (2006), No.2, p.56-58 (in Chinese)
Online since: August 2013
Authors: Xian En Wang, Hai Yan Duan, Wei Liu, De Ming Dong, Jin Fu Liu, Yu Cai
Description of overproof upstream water scene
If upstream pollutant concentrations exceeded specified target, the excessive part of upstream pollutant flux shall be deducted from pollutant flux measured at downstream sections according to material balance, then calculate pollutant concentrations based on downstream section water flux.
Lemunyon, et al: Journal of Environmental Quality,Vol.27,Issue 2(1999),p.251-257
[3] P.F Wang , J Martin and G Morrison: Coastal and Shelf Science, Vol.49,Issue 1(1999),p.1-20
[4] Siyun Lai,Pengfei Du and Jining Chen:Journal of Tsinghua University (sience and technology)Vol.44,Issue 9(2004),p.1184-1187.In Chinese
[5] Yena Shen,Jun Lv,Junhua Chen,Dingjiang Chen and Yiming Shi:Environmental Science,Vol.31,Issue 8(2010),p.1768-1774.In Chinese
Lemunyon, et al: Journal of Environmental Quality,Vol.27,Issue 2(1999),p.251-257
[3] P.F Wang , J Martin and G Morrison: Coastal and Shelf Science, Vol.49,Issue 1(1999),p.1-20
[4] Siyun Lai,Pengfei Du and Jining Chen:Journal of Tsinghua University (sience and technology)Vol.44,Issue 9(2004),p.1184-1187.In Chinese
[5] Yena Shen,Jun Lv,Junhua Chen,Dingjiang Chen and Yiming Shi:Environmental Science,Vol.31,Issue 8(2010),p.1768-1774.In Chinese
Online since: May 2019
Authors: Xiao Hui Wang, Ye Liu, Yun Xiao Zang, Li Ming Dong
It has the advantages of low raw material cost, simple polymerization process, low toxicity and environmental protection, etc [1].
Acknowledgments The project was supported by the Major Science and Technology support project of Jiangsu Province (No.
Journal of applied polymer science, 1999, 73(11):2235-2245
Journal of Beijing Forestry University, 1994, (04): 85-91
Science & Technology in Chemical Industry, 2000, 8(5):33-37
Acknowledgments The project was supported by the Major Science and Technology support project of Jiangsu Province (No.
Journal of applied polymer science, 1999, 73(11):2235-2245
Journal of Beijing Forestry University, 1994, (04): 85-91
Science & Technology in Chemical Industry, 2000, 8(5):33-37
Online since: February 2011
Authors: Qin Shou Huang, Ping Liang, Hua Xu, Bin Yang
If KII﹤0, then ﹥0;and KII﹥0,then ﹤0
(2)
Where is the effective stress intensity factor; KI and KII are the stress intensity factor of type I and type II; KIC e is the fracture tenacity of material; is the initiation angle.
Acknowledgments The project is supported by The Nation Natural Science Fund(41072240), The Guangxi Natural Science Fund (0728006), The Director Fund Project of Key Laboratory of Disaster Prevention and Structural Safety of Ministry of Education(2009TMZR004),Science and Technology Project of Guangxi Education Department([2006]No.26 and 200911MS351),Graduate Education Innovation Project of Guangxi.
Journal of GuangxiUniversity(Nat Sci Ed).2009,34(4):474-478
Journal of Guangxi University(Nat Sci Ed).2009,34(4):431-437.
Acknowledgments The project is supported by The Nation Natural Science Fund(41072240), The Guangxi Natural Science Fund (0728006), The Director Fund Project of Key Laboratory of Disaster Prevention and Structural Safety of Ministry of Education(2009TMZR004),Science and Technology Project of Guangxi Education Department([2006]No.26 and 200911MS351),Graduate Education Innovation Project of Guangxi.
Journal of GuangxiUniversity(Nat Sci Ed).2009,34(4):474-478
Journal of Guangxi University(Nat Sci Ed).2009,34(4):431-437.
Online since: October 2012
Authors: Feng Li Huang, Yun Zhao, Hua Jie Li, Shi Peng Zhou
Some steps are needed like selecting suitable element type to division unit, defining the material properties such as modulus of elasticity, Poisson’s ratio and the mass density.
Yang etc: Mechanical Science and Technology, Vol. 29 (2010) No.4, pp.467-471.
Francesco: International Journal of Advanced Manufacturing Technology, Vol. 43 (2009) No.5, pp.620-630
[5] LIU Yao, JIA Chun-de, ZHANG Liao-yuan: Journal of Shenyang Institute of Engineering, Vol.22 (2003) No.4, pp.69-71.
Training course of MSC.ADAMS/Flex and Auto Flex (Science Press, China 2006) (In Chinese) [8] W.
Yang etc: Mechanical Science and Technology, Vol. 29 (2010) No.4, pp.467-471.
Francesco: International Journal of Advanced Manufacturing Technology, Vol. 43 (2009) No.5, pp.620-630
[5] LIU Yao, JIA Chun-de, ZHANG Liao-yuan: Journal of Shenyang Institute of Engineering, Vol.22 (2003) No.4, pp.69-71.
Training course of MSC.ADAMS/Flex and Auto Flex (Science Press, China 2006) (In Chinese) [8] W.
Online since: July 2015
Authors: Kusminarto Kusminarto, Pekik Nurwantoro, Arief Hermanto, Sumariyah Sumariyah
Velocity Measurement of EHD Flow Produced by Pin-Multi Concentric Ring electrodes Generator
Sumariyah1,a, Kusminarto2,b, Arief Hermanto2,c and Pekik Nuswantoro2,d
1Physics Department, Faculty of Science and Mathematics, Diponegoro University, Indonesia
2Physics Department, Faculty of Mathematics and Natural Sciences, Gadjah Mada University, Indonesia
asumariyah@undip.ac.id, bkusmin@ugm.ac.id, carief_hermanto@ugm.ac.id, dpekik@ugm.ac.id
Keywords: EHD flow, generator, corona discharge, multi concentric ring, electrodes, velocity
Abstract.
Lai, A prototype of EHD-enhanced drying system, Journal of Electrostatics 68 (2010) 101-104
Dunn-Rankin, Numerical simulation of a tubular ion-driven wind generator, Journal of Electrostatics 65 (2007) 646–654
Weinbergb, F.Carleton, Maximizing ion-driven gas flows, Journal of Electrostatics 64 (2006) 368–376
Dunn-Rankin, Numerical simulation of a tubular ion-driven wind generator, Journal of Electrostatics 65 (2007) 646–654
Lai, A prototype of EHD-enhanced drying system, Journal of Electrostatics 68 (2010) 101-104
Dunn-Rankin, Numerical simulation of a tubular ion-driven wind generator, Journal of Electrostatics 65 (2007) 646–654
Weinbergb, F.Carleton, Maximizing ion-driven gas flows, Journal of Electrostatics 64 (2006) 368–376
Dunn-Rankin, Numerical simulation of a tubular ion-driven wind generator, Journal of Electrostatics 65 (2007) 646–654
Online since: April 2020
Authors: Kensuke Kuroda, Satoshi Okano, Sengo Kobayashi, Kenta Nisogi, Takeaki Okamoto
Effects of Titanium Surface Wettability on Osteoblast Behavior in Vitro
Kenta Nisogi1,a*, Okano Satoshi1,b, Sengo Kobayashi1,c, Kensuke Kuroda2,d, Takeaki Okamoto3,e
1Department of Materials Science and Biotechnology, Ehime University, Matsuyama, Ehime, Japan
2Institute of Materials and Systems for Sustainability, Nagoya University, Nagoya, Aichi, Japan
3Faculty of Education, Ehime University, Matsuyama, Ehime, Japan
af843025z@mails.cc.ehime-u.ac.jp, bokano.satoshi.mj@ehime-u.ac.jp, ckobayashi.sengo.me@ehime-u.ac.jp, dkuroda.kensuke@material.nagoya-u.ac.jp, eokamoto.takeaki.my@ehime-u.ac.jp
Keywords: Titanium, wettability, osteoblast, cell growth, surface treatment
Abstract.
Surface wettability is thought to influence the osteoconductivity of bone-substituting materials; however, the effects of surface wettability on osteoblast behavior are not well understood.
Introduction Titanium and Ti alloys have been widely applied for bone replacement implant materials because of high mechanical reliability and biocompatibility.
Materials and Methods Sample preparation and characterization.
Surwade, Lei Li and Haitao Liu, Effect of airborne contaminants on the wettability of supported graphene and graphite, Nature Materials, 12, 10 (2013), 925-931
Surface wettability is thought to influence the osteoconductivity of bone-substituting materials; however, the effects of surface wettability on osteoblast behavior are not well understood.
Introduction Titanium and Ti alloys have been widely applied for bone replacement implant materials because of high mechanical reliability and biocompatibility.
Materials and Methods Sample preparation and characterization.
Surwade, Lei Li and Haitao Liu, Effect of airborne contaminants on the wettability of supported graphene and graphite, Nature Materials, 12, 10 (2013), 925-931
Online since: February 2012
Authors: Xiao Su Yi, Zi Long Zhang, Xue Qin Li
Monitoring and Characterization of Chemical Shrinkage
during Curing in a RTM Resin
Xueqin Li1, a, Zilong Zhang1, b, and Xiao-Su Yi1, c
1Science and Technology on Advanced Composites Laboratory,
Beijing Institute of Aeronautical Materials,Beijing, 100095, China
alinda04@gmail.com, bzzl-zhang@sohu.com, cxiaosu.yi@gmail.com
Keywords: Chemical Shrinkage, Cure Monitoring, Fiber Bragg Grating, RTM Resin
Abstract.
Among those methods, fiber Bragg grating (FBG) sensors have been widely used [11-13], because of their small size, easiness to be embedded in materials and structures, and low intrusion on mechanical properties of structures.
Experimental Material preparation.
The material used for this study is an epoxy resin applicable to Resin Transfer Moulding (RTM).
D’Amore: Composites Part A: Applied Science and Manufacturing Vol. 37(2006), p.565 [6] Ruiz E and Trochu F: Composites Part A: Applied Science and Manufacturing Vol. 36(2005), p. 806 [7] Guojun Hu, Jing-En Luan and Spencer Chew: Journal of Electronic Packaging Vol. 131(2009), p.011010 [8] Chun Li, Kevin Pottera, Michael R.
Among those methods, fiber Bragg grating (FBG) sensors have been widely used [11-13], because of their small size, easiness to be embedded in materials and structures, and low intrusion on mechanical properties of structures.
Experimental Material preparation.
The material used for this study is an epoxy resin applicable to Resin Transfer Moulding (RTM).
D’Amore: Composites Part A: Applied Science and Manufacturing Vol. 37(2006), p.565 [6] Ruiz E and Trochu F: Composites Part A: Applied Science and Manufacturing Vol. 36(2005), p. 806 [7] Guojun Hu, Jing-En Luan and Spencer Chew: Journal of Electronic Packaging Vol. 131(2009), p.011010 [8] Chun Li, Kevin Pottera, Michael R.
Online since: September 2016
Authors: Qiang Zhu, Da Quan Li, Kang Du
Advanced Materials Research [J], 2015, 1096: 268–274
Progress in materials science, 2005, 50(3): 341-412
Advanced Materials Research, 2012, 418: 1274-1278
Materials Science and Engineering: A, 2013, 560: 811-816
Materials Science and Engineering: A, 2015, 640: 275-279
Progress in materials science, 2005, 50(3): 341-412
Advanced Materials Research, 2012, 418: 1274-1278
Materials Science and Engineering: A, 2013, 560: 811-816
Materials Science and Engineering: A, 2015, 640: 275-279