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Online since: February 2011
Authors: Xi Ran Wang, Jing Wu, Hui Lu, Ying Wei Zhang, Xin Gang Hu
The Influence of Plating Temperature on the Properties of Electroless Ni-Cu-P Alloys on Aluminum Xiran Wang 1,2,a, Hui Lu 1,b, Yingwei Zhang1,c,Xingang Hu1,d,Jing Wu1,e 1School of Materials Science and Engineering, Henan university of science & technology, Luoyang 471003, China; 2Henan key laboratory of non-ferrous metal materials science and processing, Luoyang 471003, China) axiranwang1978@163.com, blh891124@163.com, czhangying_wei@yeah.net dhuxingang2000@163.com, e1020431718@qq.com Keywords: Plating Temperature; Deposition Rate; Corrosion Resistance; Hardness Abstract.
Acknowledgements We thank for supporting from Henan key laboratory of non-ferrous metal materials science and processing and SRTP of Henan University of Science & Technology (No. 2010001).
[2] Liang Huang, Yan Gao, Zhi-jun Zhang, et al: Journal of Functional Materials In Chinese, Vol.38 (2007),p683 [3] S.
[7] Yi-teng Zhan: Materials Protection In Chinese, Vol.33(2000),p12
[9] Xin-de Bai: Materials corrosion and control(Tsinghua University Press, Beijing, 2005).
Online since: February 2011
Authors: Zhi Li Zhao, Tao Wang, Hong Yuan Fang, Jian Guo Yang
Enhancement of Load-Carrying Capacity of Undermatching Butt Joints by Weld Shape Design Zhili Zhao1,a, Tao Wang2,b, Hongyuan Fang2,c and Jianguo Yang2,d 1School of Materials Science &Engineering, Harbin University of Science and Technology, Harbin 150040, China 2State Key Laboratory of Advanced Welding production Technology,Harbin Institute of Technology, Harbin 150001, China azzhli2002@yahoo.com.cn, bwtoa042454@sohu.com, chyfang@hope.hit.edu.cn, dyjg75@sina.com Keywords: Undermatching Butt Joints; Load-Carrying Capacity; Weld Shape Design; Mechanical Property; Fatigue Strength.
Materials and Design. 2008, 29: 1821~1827
Materials and Corrosion. 2000, 51: 407~412
Journal of Materials Processing Technology. 1995, 48: 581~588
International Journal of Fatigue. 2009, (31):644~650.
Online since: July 2019
Authors: Shuai Chen, Wen Bin Li, Xiao Ming Wang, Wen Jin Yao
The strain-stress relationships of the materials are achieved by processing the pulse signals.
The J-C model is adaptable to the dynamic impact behaviors at high strain rates of materials.
For metal materials with high plastic strain rates, η is 0.9, Cp is heat capacity at constant pressure, Cp is nonlinear, Cp of metal could be reducible to a linear relationship which is indicated by the formula below
Latin American Journal of Solids and Structures, 2017, 14(11): 2089-2106
Materials Science and Engineering: A, 2017, 695: 230-238
Online since: September 2013
Authors: H.C. Lin, Y.J. Lee, S.C. Wu, J.H. Chen, M.T. Yeh, K.M. Lin
Lina,* aDepartment of Materials Science and Engineering, National Taiwan University, Taipei, Taiwan bTaiwan Power Company, New Taipei, Taiwan cAmli Co.
Ltd., Taipei, Taiwan dDepartment of Materials Science and Engineering, Feng Chia University, Taichung, Taiwan Keywords: AZ80 magnesium alloys, cold spray, corrosion Abstract.
The materials in the form of extruded plates with dimensions of 100mm * 25mm * 3mm were prepared.
Zhang, Materials Characterization 58 (2007) 162-167
Hsieh, Materials Characterization 59 (2008) 1400-1406
Online since: October 2007
Authors: E.W. Lee, O.S. Es-Said
Green: "Emerging Technologies for NDE of Aging Aircraft Structures," Materials Research Society Symposia Proceedings, Materials Research Society, Pittsburgh, PS, 1998, vol. 503, pp. 3-14 [4] L.
Baolan, "Effect of Aging Treatment on Mechanical and Corrosion Properties of 7075 Aluminum Alloy," Materials Science Forum, Vol. 396-402 (2002), pp. 1497-4504
Lee, "The Effect of Retrogression and Reaging On the Properties of 7249 Aluminum Alloy, "Journal of Materials (JOM), January 2003, TMS, pp: 45-48
Hagemaier, "Evaluation of Heat Damage to Aluminum Aircraft Structures," Materials Evaluation. 40(9)(1982), 962-969
Hatch (ASM, Materials Park OH, 1984).
Online since: March 2006
Authors: Gerhard Zimmermann, A. Weiß, Laszlo Sturz
INTRODUCTION The microstructure of casting materials is primarily determined by the solidification process.
Rex: Journal of Crystal Growth 193 (1998), p. 701 [3] S.
Materials Transactions A35 (2004), p. 239 [7] C.
Hsu 2004: Journal of Crystal Growth 264 (2004), p. 379 [8] A.
Coriell: Materials Science Forum Vol. 329-330 (2000), p. 277 [10] A.
Online since: July 2011
Authors: Man Dong Zhang, Ming Lv
It needed to define two different types of materials.
After all the element were divided, select “Create all part”, the system would be number of different materials, and proceeding part group according to the order by the grid model of the whole, and generated parts.
Acknowledgements This project is supported by National Natural Science Foundation of China (No50975191) and Science Foundation of Taiyuan University of Technology (No900103-03010332).
Liu: Journal of Mechanical Transmission, Vol.26 (2002) No.2, pp.67-70.
Yang: Journal of Key Engineering Materials, Vol.375-376 (2008), pp.226-230
Online since: August 2013
Authors: Song Feng, Lei Tian, Kai Zou, Rong Ping Li, Yong Sheng Liu
Introduction The II–VI compound semiconductor materials are known for their wide and direct bandgaps, because of which they have many potential applications in optoelectronics.
Recent progress demonstrates that appropriate doping with rare earth elements can improve the performance of semiconductor materials[7,8], but reports about rare earth doped in CdS have been rarely seen.
CdS is a direct bandgap semiconductor materials ,so n can take the values 1/2.The plots of (αhυ)2~hυ of the films are shown in Fig.4.
Journal of Crystal Growth, 2003, 258(1-2): 141-148
Solar Energy Materials and Solar Cells, 2006, 90(6): 727-732 [7] Zhongqiu Xia, Rongping Li.
Online since: February 2016
Authors: D.S. Vasilega, M.S. Ostapenko
Applied Mechanics and Materials, #379: 49-55
World Applied Sciences Journal, Volume 25, Issue 9, 2013, Pages 1275-1279
Applied Mechanics and Materials Vol. 770 (2015) pp 216-220
Journal of Materials Processing Technology, #62: 175-179
Applied Mechanics and Materials Vol 770 (2015) pp 34-39 [11] Shalamov, V.G., Savel'ev, D.A.
Online since: March 2007
Authors: Thomas J. Webster, Karen M. Haberstroh, Megan A. Pattison, Martin Kaefer
Materials and Methods Scaffold Fabrication.
In Vivo Use of Bladder Replacement Materials.
Journal of Urology 159: 628-637, 1998
Journal of Biomedical Materials Research (JBMR) 43(4): 422-7, 1998
Biomaterials Science: An Introduction to Materials in Medicine, Academic Press, New York, NY, 1996