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Online since: February 2007
Authors: Nan Huang, Jin Wang, Ya Jun Weng, Ruixia Hou, Dong Xie
Materials and methods Substrates were anataseTiO2 films deposited on Si (100) prepared by unbalanced magnetron sputtering.
Wang: International Journal of Biological Macromolecules Vol.33 (2003), P.95 [2] A.P.
Li: Journal of Colloid and Interface Science Vol. 255 (2002), P. 150 [5] Q.
Colloid and Interface Science Vol. 214 (1999), P.16 [8] A.
Colloid and Interface Science Vol. 251 (2002), P.278 [9] C.R.
Online since: March 2015
Authors: Wen Bin Guo, Xue Yi Yu, Zhang Rong Liu
Therefore, it is necessary to study on mining subsidence disasters characteristic in loess gully areas. 2.1 Stress distribution and deformation law of mining loess Through the conventional three axis test, it can be discovered that loess has a more obvious nonlinear deformation characteristics than other materials.
Journal of Xi’an University of Science and Technology, 2012, 32(3): 269-274. 165
Journal of China University of Mining and Technology, 2008, 37(1): 43-47. 170
Journal of Engineering Geology, 2013, 21(6): 920-925. 175
Journal of Engineering Geology, 2001, 9(3), 233-240
Online since: May 2006
Authors: Kyoung Nam Kim, Sang Bae Lee, Kwang Mahn Kim, Keun Taek Oh, Jae Sun Hwang
Journal Citation (to be inserted by the publisher ) Copyright by Trans Tech Publications Titanium Oxide Layer with Micro and Nano Tubes on Titanium Substrate Jae-Sun Hwang1,a, Sang-Bae Lee1,b, Keun-Taek Oh 1,2,3,c, Kyoung-Nam Kim 1,2,3,d, Kwang-Mahn Kim 1,2,3,e,* , 1 Department & Research Institute of Dental Biomaterials and Bioengineering, 2 Brain Korea 21 Project for Medical Science, 3 Research Center for Orofacial Hard Tissue Regeneration, Yonsei University College of Dentistry, 134 Shinchon-dong, Seodaemun-ku, Seoul 120-752, Korea a hjs1031@yumc.yonsei.ac.kr, b ridm@yumc.yonsei.ac.kr, cokt0505@yonsei.ac.kr d kimkn@yumc.yonsei.ac.kr, e kmkim@yumc.yonsei.ac.kr, *Corresponding author Keywords: Micro pore, Nanotube, Surface treatment, Anodic oxidation, Titanium oxide Abstract The formation of titanium oxide layer with micro and nanotube arrays on titanium substrate was investigated by grit-blasting and anodic oxidation treatment.
Due to the unique nanometric properties of some components of physiological bone in body such as collagen (300 nm in length) and hydroxyapatite crystal (20~80 nm in length and 4~6 nm thick), nanomaterials have been proposed as the next generation of improved implant materials.
Materials and Methods The grade� cp Ti plates (TSM Tech.
R13-2003-13 from the Medical Science and Engineering Research Program of the Korea Science & Engineering Foundation.
Literature References [1] Nikitas Sykaras et al. : Int J Oral Maxillofacial implants Vol.15(2000),p.675 [2] Tomas Albrektsson et al. : Int J Prosthodont Vol. 17(2004), p.536 [3] C.Sitting et al. : J of Materials Science : Materials in Medicine vol.10 (1999),p.35 [4] Ai Lin Chun et al..: Nanotechnology Vol.15(2004),p.234 [5] Dawei Gong et al. : J.
Online since: November 2006
Authors: Bo Zhou, Sung Ho Yoon
Introduction Unlikely other smart materials, a shape memory alloy (SMA) has the unique characteristics of large recoverable strains due to the phase transformation.
Funakubo, Shape memory alloys, Gordon and Breach Science Publishers, 1987
Wayman, Shape memory materials, Cambridge University, 1998
Rogers, "One-dimensional thermomechanical constitutive relations for shape memory materials," Journal of Intell.
Brinson, "One-dimensional constitutive behavior of shape memory alloys: thermo- mechanical derivation with non-constant material functions and redefined martensite internal variable," Journal of Intell.
Online since: March 2013
Authors: Guang Zhong Xing, Wei Hong, Qing Shan Li, Biao Zhan
Preparation and photocatalytic activity of TiO2/opal composite Li Qing-shana, Zhan Biaob, Hong Weic, Xin Guang-zhongd State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao 066004, China aqsli@ysu.edu.cn, bzhanbiao1987@126.com cweih@ysu.edu.cn, dgzxing@ysu.edu.cn Keywords: Opal, TiO2, Sol-gel, Photocatalytic, Methylene blue Abstract.
The results show that TiO2 supported on opal induced enhancement of photocatalytic decolorization rant and TiO2 doping is about 30 wt. % with 92.15% of decolorization rate at 700℃. 1 Introduction As a representative of the semiconductor photocatalytic materials, TiO2 has attracted much attention because of its application in the eliminations of aqueous and gaseous pollutants [1-4].
Journal of Hazardous Materials.
European Polymer Journal.
Journal of Hazardous Materials.
Online since: July 2011
Authors: Yu Jun Cai, Tie Li Qi, Shu Lai Chen
It can drilling holes by large diameter drill which can remove a vast amount of material.
Rough machining requires removing materials speedly by the end-mill to raise the cutting efficiency.
Journal of Engineering Graphics,2000,1:28-35 (In Chinese) [2] Yadong Li, Junwei Du.
Journal of Material Processing Technology 2000,98:104-115 [4] Fussell B K, Jerard R B, Hemmett J G..
Chip load prediction in ball-end milling,Journal of Materials Processing Tchnology,2001,111:250-255 [7] Yoshiaki K.
Online since: July 2011
Authors: Rui Shang, Sheng Yuan Li
The working process of the machine are molding bag, sealing bag at vertical and horizontal direction, feeding material, measuring, stamping, cutting and outputting.
The first is vertical and horizontal sealing, material supply, stamping, longitudinal cutting and single bag crosscutting.
The second is vertical and horizontal sealing, material supply, stamping, longitudinal cutting and many bags crosscutting.
The third is vertical and horizontal sealing, material supply, stamping and longitudinal cutting.
Edtied by Food Science journals, China, (2009) [2] ZHAO Zhong-min,in:The Study on Design Technology about module of Reconfigurable Machine Tool, Edtied by Precision Manufacturing and Automation Journals, China (2007) [3] LI Sheng-yuan, SHANG Rui, HE Yun-fang,in: Application of SolidWorks Redevelopment in the Packing of Mechanical Engineering Drawings, Edtied by Liaoning University of Technology Journals, China (2010)
Online since: December 2011
Authors: Long Zhang, Keith A. Williams, Zheng Chao Xie
Piezoelectric materials can be configured in many different ways that may prove useful in energy harvesting applications.
Roundy, Journal of Intelligent Material Systems and Structures Vol. 16, (2005), p. 809 [6] S.
Park, Smart Materials and Structures Vol. 16, (2007), p. 1 [8] S.
Wright, Smart Materials and Structure Vol. 13, (2004), p. 1131 [11] Q.
Liao, Journal of Intelligent Material Systems and Structures Vol. 16, (2005), p. 785 [15] J.
Online since: January 2015
Authors: Meng Jing, Werasak Raongjant
The advantages of floating concrete structures lie in the economy of the materials used (concrete is very well suited to a marine environment), in the fact that it is easy to make concrete structures buoyant in the construction stage as well as permanently and for towing, whereas they are or can be made heavy enough for a safe permanent installation, and in the fact that they can also provide storage space.
To ensure publication quality and uniformity, the following requirements have been prepared to assist authors in preparing papers for the journal.
So the moderate lightweight concrete is appropriate material for floating concrete structures.
[2] Wang Xiaowen, New Thinking Facing with The Flood, in: The Development of Science, Vol.447, pp.67-71. (2010)
[6] Somyot Wiwatpattanapong, Concrete Mixing Medium Granules, in: Master Thesis, King Mongkut's University of Technology North Bangkok, (2005) [7] Piti Sukontasukkul and Somyot Wiwatpattanapong, Moderate Lightweight Concrete Mixed with Recycled Crumb Rubber, in: Thammasat International Journal of Science and Technology (TIJSAT), Vol. 14,No.1, , pp. 1-9.
Online since: August 2013
Authors: Ling Tian, Ze Ming Zhang, Chun Guang Li, Li Ping Huang
Birdsall, PLASMA SOURCES SCIENCE & TECHNOLOGY, 8, R45-R64 (1999)
Spatenka, IEEE TRANSACTIONS ON PLASMA SCIENCE, 38, 2322-2327 (2010)
Verboncoeur, JOURNAL OF APPLIED PHYSICS, 101 (2007)
Aydil, JOURNAL OF APPLIED PHYSICS, 86, 4799-4812 (1999)
J.Lieberman M A, Principles of Plasma Discharges and Materials Processing, Wiley,New York (2005)