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Online since: February 2014
MEMS-NAO 2014 is an annual conference to call together researchers, engineers, academicians as well
as industrial professionals from all over the world to present their research results and development
activities in MEMs and Materials science.
The papers come from both academia and industry reflecting the international flavor of this event in the topics of MEMS, Mechanical Materials and Manufacturing Engineering.
Chapter 1: Materials Science, Processing and Application, 2.
For example, the "Theoretical Method Research on a MEMS Safety and Arming Device" by Liu Fangyi provided novel theoretical analysis in MEMS safety; the application of Ferroferric Oxide Nanoparticle was introduced in "Polymerization of Acrylamide Photo Initiated by Ferroferric Oxide Nanoparticles" by Jing Tian was highlight of the Materials Science, Processing and Application session.
All accepted papers will be published on international journal " Advanced Materials Research (ISSN: 1022-6680) " and will be indexed in the major academic databases, including EI Compendex, Thomson ISI (ISTP) , and other indexing services.
The papers come from both academia and industry reflecting the international flavor of this event in the topics of MEMS, Mechanical Materials and Manufacturing Engineering.
Chapter 1: Materials Science, Processing and Application, 2.
For example, the "Theoretical Method Research on a MEMS Safety and Arming Device" by Liu Fangyi provided novel theoretical analysis in MEMS safety; the application of Ferroferric Oxide Nanoparticle was introduced in "Polymerization of Acrylamide Photo Initiated by Ferroferric Oxide Nanoparticles" by Jing Tian was highlight of the Materials Science, Processing and Application session.
All accepted papers will be published on international journal " Advanced Materials Research (ISSN: 1022-6680) " and will be indexed in the major academic databases, including EI Compendex, Thomson ISI (ISTP) , and other indexing services.
Online since: January 2016
Authors: Ya Dong Gong, Qi Gao, Yun Guang Zhou, Yang Sun, Zhong Xiao Zhu
References
[1] Li Jiarong,Xiong Jichun,Tang Dingzhong.Advanced High Temperature Structural Materials and Technology[M],BeiJing:National Defense Industry Press,2012:2-3
Journal of manufacturing science and engineering, 2004, 126(3): 451-458
Journal of Materials Processing Technology, 2001, 116(2): 165-169
Micro grinding tool for manufacture of complex structures in brittle materials[J].
Journal of Mechanical Science and Technology, 2014, 28(3): 1027-1037.
Journal of manufacturing science and engineering, 2004, 126(3): 451-458
Journal of Materials Processing Technology, 2001, 116(2): 165-169
Micro grinding tool for manufacture of complex structures in brittle materials[J].
Journal of Mechanical Science and Technology, 2014, 28(3): 1027-1037.
Online since: January 2012
Authors: Ju Ying Luo, Xue Chun Yang
Materials and Methods
Materials.
18 larch log samplings with 1m length are all from Xianfeng Forest Farm in Fangzheng Forestry Bureau in Heilongjiang Province.
The lumber is the typical anisotropic material.
Wood compression strength is the maximum pressure loads along the wood grain, which is one of the important mechanical properties as the structure and building materials.
Xu, “Effect of temperature on the wood physicomechanics property of larch plantation,” Forestry Science & Technology, vol. 25, pp. 38-40, May 2000
Chen, “Wood science,” Beijing: China Forestry Press, 1985, pp. 16-18
The lumber is the typical anisotropic material.
Wood compression strength is the maximum pressure loads along the wood grain, which is one of the important mechanical properties as the structure and building materials.
Xu, “Effect of temperature on the wood physicomechanics property of larch plantation,” Forestry Science & Technology, vol. 25, pp. 38-40, May 2000
Chen, “Wood science,” Beijing: China Forestry Press, 1985, pp. 16-18
Online since: January 2010
Authors: Hong Juan Sun, Jin Mei Sun, Hai Feng Liu, Tong Jiang Peng
The hydrated cations in the interlayer space
of vermiculite crystal layers have good exchangeability, so organic hydrophlogopite and
organic/inorganic nanometer composite materials can be prepared by cation exchange; the modified
hydrophlogopite has been used in the field as, for example, a catalyst and carrier, waste water treating
compound, and adsorbent, etc.
[4] D.S.Williams and R.K.Thomas: Journal of Colloid and Interface Science, Vol. 255 (2002), p. 303
Castro, et al.: Journal of Colloid and Interface Science, Vol. 256 (2002), p. 314
[6] Pingxiao Wu, Nengwu Zhu, Zhi Dang, et al.: Journal of Functional Materials, Vol. 37 (2006), p. 83
[13] Tomasz Kwolek, Maciej Hodorowicz, Katarzyna Stadnicka, et al.: Journal of Collold and Interface Science, Vol. 264 (2003), p. 14.
[4] D.S.Williams and R.K.Thomas: Journal of Colloid and Interface Science, Vol. 255 (2002), p. 303
Castro, et al.: Journal of Colloid and Interface Science, Vol. 256 (2002), p. 314
[6] Pingxiao Wu, Nengwu Zhu, Zhi Dang, et al.: Journal of Functional Materials, Vol. 37 (2006), p. 83
[13] Tomasz Kwolek, Maciej Hodorowicz, Katarzyna Stadnicka, et al.: Journal of Collold and Interface Science, Vol. 264 (2003), p. 14.
Online since: January 2013
Authors: Ying Xu, Wei Dong Wen, Yu Huo
Introduction
Advanced composite materials for its excellent mechanical properties are widely used in the aviation and aerospace fields.
Composites Science and Technology, 2000,60:273-281
Journal of Materials Science and Engineering, 2006, 24(1):77-81 [4] CHANG KY, LIU S, CHANG FK.
Journal of Composite Materials, 1991, 25(3): 274-301 [5] MOURA M.S, MARQUES AT.
Journal of Materials Engineering, 2007,(7): 6-11
Composites Science and Technology, 2000,60:273-281
Journal of Materials Science and Engineering, 2006, 24(1):77-81 [4] CHANG KY, LIU S, CHANG FK.
Journal of Composite Materials, 1991, 25(3): 274-301 [5] MOURA M.S, MARQUES AT.
Journal of Materials Engineering, 2007,(7): 6-11
Online since: January 2013
Authors: Rui Hu, Hong Chao Kou, Jin Shan Li, Bin Tang, Xian Lin Meng, Chuan Yun Wang
Materials Science and Engineering:A 7005-7011(2011), p528
Materials Science and Engineering, 2012,A538: 340–348
Materials Science and Engineering, 2007, A 456 (1-2): 93–98
Journal of Biomedical Materials Research Part B: Applied Biomaterials, 2010,93(1): 39-50
Journal of Materials Processing Technology, 2009, 209(5): 2746–2752
Materials Science and Engineering, 2012,A538: 340–348
Materials Science and Engineering, 2007, A 456 (1-2): 93–98
Journal of Biomedical Materials Research Part B: Applied Biomaterials, 2010,93(1): 39-50
Journal of Materials Processing Technology, 2009, 209(5): 2746–2752
Online since: June 2014
Authors: Kai Zhao
Prediction of TCP phases in nickel-base superalloys
Kai Zhao 1, a
1School of Metallurgical and Materials Engineering, Chongqing University of Science and Technology, Chongqing, 401331, China
a tony_zk@163.com
Keywords: superalloy; TCP phases
Abstract.
Acknowledgement This research is funded by Natural Science Foundation Project of CQ CSTC2012jjA1491 and Research Foundation of Chongqing University of Science & Technology (No. is CK2011B18).
Journal of Metals, 1968,11,pp.46-53
Materials Science Progress. 1989, Vol.3,pp.210-214
Journal of Aeronautical Materials, Vol.18,1998,pp.13-18.
Acknowledgement This research is funded by Natural Science Foundation Project of CQ CSTC2012jjA1491 and Research Foundation of Chongqing University of Science & Technology (No. is CK2011B18).
Journal of Metals, 1968,11,pp.46-53
Materials Science Progress. 1989, Vol.3,pp.210-214
Journal of Aeronautical Materials, Vol.18,1998,pp.13-18.
Online since: October 2013
Authors: Qun Qin, Guang Xia Chen
Methods and materials
In the present experiments, stainless steel powder (Fe-17Cr-4Ni-2Mo-0.1C(quality fraction ω)) was used that its granularity was -325 and SLM system which was developed and manufactured by ourselves was employed in our research.
Applied Surface Science, 253 (2007): 8064–8069 [2] D.T.
International Journal of Machine Tools & Manufacture, 1998, (38): 1257-1287 [3] P.A.
International Journal of Machine Tools & Manufacture [J], 2005(45): 1288–1294 [5] F.
Materials Science and Engineering A 445–446 (2007):461–466 [6] Zhang D Y.
Applied Surface Science, 253 (2007): 8064–8069 [2] D.T.
International Journal of Machine Tools & Manufacture, 1998, (38): 1257-1287 [3] P.A.
International Journal of Machine Tools & Manufacture [J], 2005(45): 1288–1294 [5] F.
Materials Science and Engineering A 445–446 (2007):461–466 [6] Zhang D Y.
Online since: May 2011
Authors: Ling Cheng, Zheng Nan Chen, Jian Gao
Journal of Materials Engineering 2000; (11): 9-12
Case study of the use of API 581 on HK and HP material furnace tubes.
Fusion welding theory and metal material welding [M].
Journal of Pressure Vessel Technology, 2000, 12 (8): 329-338
Mechanical material data manual [M].
Case study of the use of API 581 on HK and HP material furnace tubes.
Fusion welding theory and metal material welding [M].
Journal of Pressure Vessel Technology, 2000, 12 (8): 329-338
Mechanical material data manual [M].
Online since: June 2010
Authors: O.A. Olafuyi
Date accepted: 12 May 2010]
Keywords: Capillary pressure, Network models, Digital core, Wettability, Pore structure
Abstract: Advances in micro-CT imaging of porous materials provide the opportunity to extract
representative networks from the images.
Journal of Petroleum Science and Engineering 39 (2003) 177 - 199
Journal of Petroleum Science and Engineering, 52(1-4) (2006) 54-70
Journal of Pet.
Journal of Pet.
Journal of Petroleum Science and Engineering 39 (2003) 177 - 199
Journal of Petroleum Science and Engineering, 52(1-4) (2006) 54-70
Journal of Pet.
Journal of Pet.