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Online since: August 2014
Authors: Zhi Qiang Xu
Wind energy technology is an integrated technology, which involves aerodynamics, structural dynamics, meteorology, mechanical engineering, electrical engineering, control multiple disciplines technology, materials science, environmental science and other areas.
[3] Weifei Hu, Insik Han, Sang-Chul Park and Dong-Hoon Choi, Multi-objective structural optimization of a HAWT composite blade based on ultimate limit state analysis[J], Journal of Mechanical Science and Technology 26 (1) (2012) 129-135
Enhancement of wind turbine aerodynamic performance by a numerical opti mization technique[J], Journal of Mechanical Science and Technology 26 (2) (2012): 455-462
Laminate design for coupled wind turbine blades[A].44th AIAAaerospace sciences meeting and xhibit[C].
Utility Scale Twist-Flap Coupled Blade Design[J].Journal of Solar Energy Engineering, 2005(127): 529-537
[3] Weifei Hu, Insik Han, Sang-Chul Park and Dong-Hoon Choi, Multi-objective structural optimization of a HAWT composite blade based on ultimate limit state analysis[J], Journal of Mechanical Science and Technology 26 (1) (2012) 129-135
Enhancement of wind turbine aerodynamic performance by a numerical opti mization technique[J], Journal of Mechanical Science and Technology 26 (2) (2012): 455-462
Laminate design for coupled wind turbine blades[A].44th AIAAaerospace sciences meeting and xhibit[C].
Utility Scale Twist-Flap Coupled Blade Design[J].Journal of Solar Energy Engineering, 2005(127): 529-537
Online since: October 2014
Authors: Ján Kráľ, Ján Kráľ, Jaroslav Melko, Lorant Harsányi, Š. Cosmin-Roszkos, Kamil Madáč, Adrián Rjabušin
This paper aims to study ultra-light materials, which will replace the conventional materials used in the production of trailers.
The samples were welded from the same material but also from different materials.
Maier, Modeling of dynamic microstructure evolution of EN AW-6082 alloy during hot forward extrusion, Computational materials science 50 (2011) 1520–1525
El-Danaf, The influence of multi-pass friction stir processing on the microstructural and mechanical properties of aluminum alloy 6082, Journal of materials processing technology 212 (2012) 1157–1168
Ashrafizadeh, Effect of microstructure and texture on formability and mechanical properties of hot-dip galvanized steel sheets, Journal of materials processing technology 196 (2008) 205–212
The samples were welded from the same material but also from different materials.
Maier, Modeling of dynamic microstructure evolution of EN AW-6082 alloy during hot forward extrusion, Computational materials science 50 (2011) 1520–1525
El-Danaf, The influence of multi-pass friction stir processing on the microstructural and mechanical properties of aluminum alloy 6082, Journal of materials processing technology 212 (2012) 1157–1168
Ashrafizadeh, Effect of microstructure and texture on formability and mechanical properties of hot-dip galvanized steel sheets, Journal of materials processing technology 196 (2008) 205–212
Online since: November 2015
Authors: D. Dinakaran, A. Nandakumar
Journal of Materials Processing Technology 58(1996) 109 – 113
[2] J.P.
Journal of Composite Materials, 45(24), 2579-2586, 2011
Indian Journal of Science and Technology.
Journal of Composite Materials, 46(18), 2227-2237, 2011
Journal of Composite Materials, 46(26), 3321-3324, 2012
Journal of Composite Materials, 45(24), 2579-2586, 2011
Indian Journal of Science and Technology.
Journal of Composite Materials, 46(18), 2227-2237, 2011
Journal of Composite Materials, 46(26), 3321-3324, 2012
Online since: November 2010
Authors: Rong Yang, Masaki Tanemura, Lei Miao, Ya Ning Feng, Li Ling Ge, Bai Ling Jiang
Research on Mechanism of Electrical Transport of Carbon Aerogels
Yaning Feng1,a, Rong Yang 2,b, Liling Ge 1,c, Bailing Jiang 1,d,
Masaki Tanemura3,e, Lei Miao4,f
1School of Materials Science and Engineering, Xi’an University of Technology, China,
2School of Sciences, Xi’an University of Technology, China,
3Department of Frontier Materials, Graduate School of Engineering, Nagoya Institute of Technology, Japan
4Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences
aYaning.feng@gmail.com, bYangrong@xaut.edu.cn, cgeliling-xaut@163.com,
djiangbail@vip.163.com, emasaki.tanemura@nitech.ac.jp, fmiaolei@ms.giec.ac.cn
Keywords: electrode materials, carbon aerogels, electrical conductivity, porosity.
Carbon materials, such as active carbon, is generally served as the anode materials or the active materials for the cathode of lithium battery because of it high specific surface area [1].
Those results prove that carbon aerogels is one of the promising materials used in high energy storage field.
Petkava, Journal of Power Source 191 (2009) 58-75
[2] Michio Inagaki, Now Carbon Materials, Volume 24, Issue 3, September 2009, P. 193-232
Carbon materials, such as active carbon, is generally served as the anode materials or the active materials for the cathode of lithium battery because of it high specific surface area [1].
Those results prove that carbon aerogels is one of the promising materials used in high energy storage field.
Petkava, Journal of Power Source 191 (2009) 58-75
[2] Michio Inagaki, Now Carbon Materials, Volume 24, Issue 3, September 2009, P. 193-232
Online since: August 2013
Authors: Wei Zhang
This paper reviews recent work on surface coating of magnesium and its alloys as biomedical materials and discusses the corrosion resistance and biocompatibility of modified materials.
Blawert: Advanced Engineering Materials Vol. 10 (2008), p. 3 [3] M.
Han: Materials Letters Vol. 62 (2008), p3276 [13] Y.
He: Journal of Materials Science Vol. 45(2010), p. 6038 [16] Y.
Kumta: Materials Science and Engineering B Vol. 176 (2011), p. 1679
Blawert: Advanced Engineering Materials Vol. 10 (2008), p. 3 [3] M.
Han: Materials Letters Vol. 62 (2008), p3276 [13] Y.
He: Journal of Materials Science Vol. 45(2010), p. 6038 [16] Y.
Kumta: Materials Science and Engineering B Vol. 176 (2011), p. 1679
Online since: April 2011
Authors: Ming Luo, Ding Hua Zhang, Bao Hai Wu, Ming Tang
Therefore, the machining of thin-walled workpiece is often time-consuming, and increase in efficiency of machining process is constrained by the highly demands regarding quality and functionality as well as use of difficult to cut materials.
Acknowledgements This project has been supported by the National Natural Science Foundation of China (Project number: 51005183) and the Science and Technology Innovation Fund of Northwestern Polytechnical University.
Aramendi: International Journal of Machining and Machinability of Materials Vol. 4 (2008), p. 377 [4] F.J.
Seguy: Journal of Advanced Manufacturing Technology (2010) [9] X.M.
Zhang: International Journal of Machine Tools and Manufacture Vol. 50 (2010), p. 502
Acknowledgements This project has been supported by the National Natural Science Foundation of China (Project number: 51005183) and the Science and Technology Innovation Fund of Northwestern Polytechnical University.
Aramendi: International Journal of Machining and Machinability of Materials Vol. 4 (2008), p. 377 [4] F.J.
Seguy: Journal of Advanced Manufacturing Technology (2010) [9] X.M.
Zhang: International Journal of Machine Tools and Manufacture Vol. 50 (2010), p. 502
Online since: June 2012
Authors: Zhe Wang, Xin He Li, Xia Hui He
Influence principle of ultrasonic vibration on the rheological behavior of materials
Xinhe LI 1, a, Zhe WANG 1,b and Xiahui HE 1,c
1State Key Laboratory of High Performance and Complex Manufacturing, Central South University, Changsha, Hunan, China, 410083
a li_xinhe@163.com, bwzh8664@163.com, chxh.33@163.com
Keywords: Ultrasound; Extrusion; Material rheological behavior; Mechanism
Abstract.
From the experimental results, ultrasound can decrease the load effect on the mental material generally, other than on one material.
Materials Processing Technology, 1992, 34(1-4):62-68 [9] Yonggang MENG, Xinzhong LIU, Jun CHEN.
Journal of Tsinghua University (Natural Science Edition), 1999, 38 (4):28-32 [10] Xisen WEN.
Photonic and Phononic Crystal Theory .Science and Technology Press, 2006
From the experimental results, ultrasound can decrease the load effect on the mental material generally, other than on one material.
Materials Processing Technology, 1992, 34(1-4):62-68 [9] Yonggang MENG, Xinzhong LIU, Jun CHEN.
Journal of Tsinghua University (Natural Science Edition), 1999, 38 (4):28-32 [10] Xisen WEN.
Photonic and Phononic Crystal Theory .Science and Technology Press, 2006
Online since: July 2014
Authors: Yao Ru Liu, Ming Zhang, Fei Wang, Gu Jie Mouse, Wei Tao Luo, Hong Wu Zhang
The grain size distribution of landslide dam materials may have special features.
According to the researches of granular materials, the movement of granular materials will lead to particle size segregation, that is, larger particles tend to move upward to the top layer of the granular flow [5-7].
During this process, materials of the landslide dam may segregates, which probably contributes to special size distribution.
Hogg: Journal of Fluid Mechanics, Vol.550 (2006), pp.1-25
Xu, et al.: Journal of Asian Earth Sciences, Vol.57 (2012), pp.25-37.
According to the researches of granular materials, the movement of granular materials will lead to particle size segregation, that is, larger particles tend to move upward to the top layer of the granular flow [5-7].
During this process, materials of the landslide dam may segregates, which probably contributes to special size distribution.
Hogg: Journal of Fluid Mechanics, Vol.550 (2006), pp.1-25
Xu, et al.: Journal of Asian Earth Sciences, Vol.57 (2012), pp.25-37.
Online since: July 2023
Authors: R. Karthikeyan, Gunda Pranavkumar, Yerram Sruthikkumar, Kunchala Ramakrishna, K. Rajendhar Naik, A. Punitha
Effect of Various Heat Treatment On The Mechanical Properties of Steel Alloy EN31.IJIRST –International Journal for Innovative Research in Science & Technology| “Volume 3 | Issue 12 | May 2017
Hindawi Publishing Corporation Journal of Optimization Volume 2015, Article ID 192030, 13 pages
Selvam, Dr.A.K.Shaik Dawood , optimization of machining parameters for face milling operation in a vertical cnc milling machine using genetic algorithm BY IRACST – Engineering Science and Technology: An International Journal (ESTIJ), ISSN: 2250-3498, Vol.2, No. 4, August 2012
International Journal of Environmental Science and Technology 11:949–58. doi:10.1007/s13762-013-0273-5
Journal of Natural Gas Science and Engineering 21:524–31. doi:10.1016/j.jngse.2014.09.022.
Hindawi Publishing Corporation Journal of Optimization Volume 2015, Article ID 192030, 13 pages
Selvam, Dr.A.K.Shaik Dawood , optimization of machining parameters for face milling operation in a vertical cnc milling machine using genetic algorithm BY IRACST – Engineering Science and Technology: An International Journal (ESTIJ), ISSN: 2250-3498, Vol.2, No. 4, August 2012
International Journal of Environmental Science and Technology 11:949–58. doi:10.1007/s13762-013-0273-5
Journal of Natural Gas Science and Engineering 21:524–31. doi:10.1016/j.jngse.2014.09.022.
Online since: October 2011
Authors: Xiao Bao Zuo, Wei Sun, Xiong Zhou Yuan
Research on PA heat-melt adhesive being used as self-healing agent in cementitious materials
Yuan Xiong-zhou1,a, Sun Wei1,b, Zuo Xiao-bao2,c
1College of Materials Science and Engineering, Southeast University, Nanjing, China;
2College of Science, Nanjing University of Science & Technology, Nanjing, China;
acouscous@126.com, bsunwei@seu.edu.cn, cxbzuo@sina.com
Keywords: Self-healing; PA; Heat-melt adhesive; Bonding strength; chemical stability;
Abstract.
Experimental materials PA heat-melt adhesive was chosen in the experiments, as shown in Figure 2.
S. van der Zwaag (eds.), Self Healing Materials, An Alternative Approach to 20 Centuries of Materials Science, Springer series in materials science 100, Springer Netherlands, 2007, 195–204
Journal of Advanced Concrete Technology, 2006, 4(2): 267–275
Journal of the Chinese Ceramic Society,2010, 38(11):2185-2192
Experimental materials PA heat-melt adhesive was chosen in the experiments, as shown in Figure 2.
S. van der Zwaag (eds.), Self Healing Materials, An Alternative Approach to 20 Centuries of Materials Science, Springer series in materials science 100, Springer Netherlands, 2007, 195–204
Journal of Advanced Concrete Technology, 2006, 4(2): 267–275
Journal of the Chinese Ceramic Society,2010, 38(11):2185-2192