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Online since: December 2011
Authors: Mei Fa Huang, Guang Qian, Wei Zhao Luo
Firstly, we used to define the counterforce of materials of blade.
The friction force of materials of blade is proportional toshown in Eq. 2
We can refer the allowable stress of material of propeller =[4] from Mechanical Engineering Materials Manual.
Journal of Chang an University: Natural Science Edition,2006,26(5):99- 102, in Chinese [3] Hui-zhu SAN.Mechanics of Meterials.
Mechanical Engineering Materials Manual (Ferrous Material).
Online since: September 2012
Authors: Ji Hong Yan, Lin Li
The material removal volume was set to 4615.8 mm3.
Acknowledgments This research is funded by the National Natural Science Foundation of China (#70971030).
Aramcharoen: Journal of Cleaner Production Vol. 18 (2010), p. 1059 [7] S.
Hu: Journal of Cleaner Production Vol. 27 (2012), p. 133 [8] X.D.
Deng: Journal of Grey system Vol. 1 (1989), p.1 [11] Nihat Tosun: Int.
Online since: September 2013
Authors: Xin Tang Wang, Jian Qi Lu, Hai Lun Tong, Jin Can Xu
The steel material has the yielding strength of 407.4MPa.
Acknowledgments This work was supported by Science and Technology Research Project of Zhejiang Provence under Grant Nos: 2012C23036.
Huo: Civil Engineering Journal Vol. 35 (2002), p.25 (in Chinese) [3] Z.
Zhou and J.M.Wang: Applied Mechanics and Materials Vol. 71-78 (2011), p.3721 [7] M.
Wang: Advanced Materials Research Vol.168-170 (2011), p. 674
Online since: December 2004
Authors: Wei Xiao Tang, B.C. Shi, Yi Qi Zhou, H. Zhang
Materials Science Forum Vols. *** (2004) pp.677-681 online at http://scientific.net  2004 Trans Tech Publications, Switzerland Web Based Virtual Design of Dynamics of Roller Gear Cam System Y.Q.
Advances in Materials Manufacturing Science and Technology 678 A practical model of roller gear cam system is presented to provide the foundation of dynamics simulation to the mechanical part of the system that is a high order nonlinear system.
Materials Science Forum Vols. *** 681 Implements The task of the virtual design on the dynamics is to get the dynamic performence that approves of customer by adjusting the parameter of controller.
Peng: Chinese Journal of Mechanical Engineering Vol. 45 (1997), p. 1 [3] Y.A.
Zhang: Journal of Machine Design Vol. 6 (2000), p. 33.
Online since: July 2011
Authors: Hao Liang, Yong Mei Chen, Ji Jun Yang, Jing Feng Wang, Bo Liu, Fu Sheng Pan
Influence of the strain rates on tensile properties and fracture interfaces for Mg-Al alloys containing Y Hao Liang1,2,a, Fusheng Pan1, Yongmei Chen2, Jijun Yang3, Jingfeng Wang2, Bo Liu3 1 School of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China 2 Institute of Structural Mechanics, China Academy of Engineering and Physics, mianyang, 621900, China 3 Institute of Nuclear Science and Technology, Sichuan University, Chengdu, 610064, China alh-lhm@163.com Keywords: magnesium alloy, strain rate, fracture interface, fractal dimension Abstract.
According to the fractal theory, the fractal dimension can be emplored to describe the fracture interface of material statistically if the fracture interface has fractal character, which is a new method to compare fracture interface of materials in different state.
Materials Park, OH: ASM International 1999: 6 [2] Mordike BL, Ebert T.
Journal of North University Of China (Natural Science Edition, in chinese), 2009, 30(2): 192-196 [11] MA Yan-long, ZUO Ru-lin.
Journal of Chongqing University(Natural Science Edition, in chinese), 2005, 28(2): 51-54
Online since: August 2012
Authors: Nancy E. Quaranta, Marta G. Caligaris, Nicolás Lalla, Gisela Pelozo, Adrián Cristobal
Lou: Journal of Hazardous Materials Vol. 168 (2009), p. 331
Measson: Materials Characterization Vol. 61 (2010), p. 39
Alguacil: Journal of Hazardous Materials Vol. 141 (2007), p. 33
Neto, and C.J. da Cunha: Journal of Hazardous Materials Vol. 154 (2008), p. 417
Monteiro: Material Science and Engineering A Vol. 427 (2006), p.142
Online since: June 2011
Authors: Elizabeth D. Cantando, Gerard M. Ludtka, William A. Soffa, Gail Mackiewicz-Ludtka
Acknowledgements We gratefully acknowledge the support of the National Science Foundation, Division of Materials Research - Grant #706446.
All other characterization was performed at the Nanoscale Materials Characterization Facility at the University of Virginia.
Khachaturyan: Nature Materials Vol. 8 (2009), p. 410 [3] G.
Soffa: Journal of Magnetism and Magnetic Materials Vol. 79 (2003), p. 266 [7] E.A.
Shimotomai: Metallurgical and Materials Transactions Vol. 32A (2001), p. 445 [10] R.A.
Online since: August 2012
Authors: Xing Hua Shao, Jiang Zhong Zhang
Science, 1974, 186: 53-55 [3] Vo Dinh Quang, J.
European Journal of Soil Science, 1995, 46, 641-647 [4] H.
European Journal of Soil Science. 2002, 53, 439-447 [6] J.
Journal of Environmental Quality, 2001, 30: 91-101
Science Society of America Journal. 1980, 45(3): 493-496 [12] Khalid, R.
Online since: November 2006
Authors: Lucio Salgado, Francisco Ambrozio Filho, Daniel Rodrigues, Mauricio David Martins das Neves, Nelson Karsokas Filho
S.; Materials Chemistry and Physics, 67,1-3, 2001, p. 56-65 2.
F.; Materials Characterizations 48, (2002), p.101-111. 3.
Candela, N.; Quesada, A.; Velasco, F.; Torralba, J.M.; Materials Chemistry and Physics, 67, (2001) p. 66-71 4.
Danninger, H.; Gierl, C., Materials Chemistry and Physics, 67, (2001) p. 49-55 5.
G.; Capdevila, Garcia de Andrés C.; Materials Sc.
Online since: September 2011
Authors: Xiang Ying Zhu, Qing Qing Liu, Yong Tang Jia
Because of the electrospun fibers have high surface area-to-volume, high aspect ratios and high porosity [3], they show great potential to prepare biomedical materials such as tissue engineering scaffold, wound dressing, drug delivery material [4].
Electrospun fibers containing AgNPs will exhibit much stronger antimicrobial activity, thus further expand their applications in the field of biomedical materials.
Experimental Materials.
To some biomedical materials such as wounding dressing and tissue engineering scaffold, they are required to possess hydrophilicity [12].
Sul: Journal of Polymer Science, Vol. 44 (2006) p.2468