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Online since: April 2016
Authors: Zhong Bo He, Zhao Shu Yang, Zheng Long Zhao, Dong Wei Li, Guang Ming Xue
Due to the different contact materials, the magnetic field distribution is different from each other for different part of the GMM rod, so each part is considered respectively.
Design and application of magnetostrictive materials.
Materials&Design 2007; 29: 469-483
Design&research of microdisplacement actuator based on giant magnetostrictive materials.
Journal of Materials Processing Technology 2008; 200:185
Online since: December 2014
Authors: Pei Jiang, Xue Liang Pang, Chun Sheng Lin
Hard iron error is a magnetic field bias that is either constant, which is caused by ferromagnetic (hard iron) materials near the magnetometer, or time-varying, which is caused by cur-rent carrying wires near the magnetometer.
Soft iron errors result from materials that generate fields in response to externally applied fields (commonly called soft iron materials), resulting in scaling of magnetometer readings.
Journal of the Astronautical Sciences,Vol.50,No.4,P:453 – 475, 2003. ][[] Roberto Alonso,.
Journal of the Astronautical Sciences,Vol.50,No.4,P:477 – 490, 2003. ][[6] Roberto Alonso,.
Journal of the Astronautical Sciences, Vol.50,No.4,P:433 –451, 2003. ].Manon Kok set forward the method of maximum likelihood calibration [[7] Kok,Manon,.
Online since: January 2012
Authors: Jing Hua Xu, Liu Wei Ding, Hao Ran Geng
Fabrication and Characterization of Nanoscale Porous Copper Film Liuwei Dinga, Haoran Gengb, and Jinghua Xuc School of Materials Science and Engineering University of Jinan, Jinan, China adinglw99@gmail.com, bmse_genghr@ujn.edu.cn, c E-mail: qiuxingchen@163.com Keywords: nano-porous copper; films; dealloying; magnetron sputtering; Cu-Zn alloy Abstract.
Acknowledgments We give thanks to financial support by National Natural Science Foundation of China (50871047) and National Natural Science Foundation of Shandong Province (ZR2010ZM071).
“A new method to produce nanoporous structure-preferential dissolution of phases in nanocrystalline”, Chinses Journal of Materials Research,vol. 15, June, 2001, pp.708-710, doi: 1005-3093.0.2001-06-022
“Advances of research on the dezincification mechanism of brass”, Chinses Journal of Materials Research, vol. 13, Feb, 1999, pp. 1-8, doi: CNKI: SUN: CYJB. 0.1999-01-000
“Inhibition of dezincification of brass”, Chinese Journal of Applied Chemistry.
Online since: June 2011
Authors: Guang Li, Xing Fa Ma, Ming Jun Gao, Xiao Chun He, Shu Juan Niu
Among many different functional materials, carbon nanotube is one of the important multi-functional materials.
Experimental Materials.
Y2008F24), Science Fundation of State Key Lab of Silicon Materials (project No.
Jayalekshmi: Journal of Applied Polymer Science Vol.117(2010), p.138 [34] P.
Bai: Materials Chemistry and Physics Vol.98(2006), p. 241 [58] X.
Online since: July 2014
Authors: Xue Feng Wu, Teng Fei Gao, Bo Wen Zhao, He Rong Cao
Introduction Laser assisted machining is an effective method to improve the machinability of difficult-to-machine materials, where a high power laser is employed to focally heat a workpiece before removing material.
International Journal of Heat and Mass Transfer, 2000, 43(8): 1409-1424
International Journal of Heat and mass transfer, 2000, 43(8): 1425-1437
Journal of manufacturing science and engineering, 2006, 128(2): 425-434
Journal of manufacturing science and engineering, 2008, 130(3)
Online since: January 2007
Authors: Aaron Costello, James Sears
Using higher performing materials can mitigate these problems, but fabricating tools from these materials significantly increase their cost.
PREP powders are preferred for LPD processing of these materials.
Shankar, et.al., "Microstructure and mechanical properties of Inconel 625 superalloy", Journal of Nuclear Materials, Vol. 288, No.2-3, 2001, pp.-222-232
Kuzucu, et.al., "Microstructure and phase analyses of Stellite 6 plus 6 wt.% Mo alloy", Journal of Materials Processing Technology, Vol 69 No.1-3, 1997, pp.-257-263
Karlsson, "Mechanical properties of laser cladded steel", Materials Science and Technology Vol. 19, No.11, 2003 pp.-1611-1616 [11] S.
Online since: January 2012
Authors: Rui Jie Wang, Guo Sheng Gai, Lian Wei Yang
Experimental procedure Materials and Pulverizing.
Honghua was purchased from Hubei Medicinal Materials Co, China.
The reason is that the plant materials are subjected to compressing force and cutting force during the grinding process.
International journal of minerals metallurgy and materials.
Applied Mechanics and Materials.
Online since: December 2010
Authors: Heng Zhou Zhen
Moon: Journal of Ship Production, Vol. 14 (1998), p. 238
Patrikalakis: International Journal of Mechanical Sciences, Vol. 43 (2001), p. 2349
Liu: Development and Application of Materials, Vol. 16 (2001), p. 10
Qi: Materials Science and Technology, Vol. 25 (2009), p.925
Wang: Materials Science Forum, Vol. 532-533 (2006), p. 93
Online since: October 2010
Authors: Rafael Cardoso Toledo, I.N. Bandeira, M.B. Mattos, Chen Y. An
Although they provide a microgravity environment that lasts only a few seconds, they supply enough time for the study of solidification of several types of materials [1-3].
Walter: Fluid sciences and materials science in space: An European Perspective. -.
Materials processing in space: early experiments. -.
Wollants: Journal of Alloys and Compounds Vol. 360 (2003). p. 98
Marash: Metals and Materials International Vol. 14 (5) (2008), p.575.
Online since: January 2019
Authors: Wen Tong Tian, Hui Yang
The purpose of the paper is to improve the traditional mechanical stirring method, which may be of fundamental knowledge for developing advanced semi-solid forming process. 1 Experimental Procedure 1.1 Experimental Materials The alloy used in the present study was A356 ingot.
Brabazon, The effect of direct thermal method, temperature and time on microstructure of a cast aluminum alloy, Materials and Manufacturing Process. 29 (2014) 134-139
[3] Sahrooz Nafisi, Reza Ghomashchi, Impact of melt treatment on semi-solid metal processing, Journal of Alloys and Compounds. 436 (2007) 86-90
Julathep, Metallurgical structure of A356 aluminum alloy solidified under mechanical vibration: An investigation of alternative semi-solid casting routes, Materials and Design. 30 (2009) 3925-3930
T Ramesh, Strengthening mechanisms in an Al-Mg alloy, Materials Science and Engineering:A. 527(6) (2014) 1292-1298