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Online since: February 2012
Authors: Chang Qing Su, Le Xin Li
Acknowledgement
We would like to express our appreciation to Chinese National Natural Science Foundation (51005228).
Engrs, Part E, Journal of Process Mechanical Engineering, Vol. 219 (2005) No.11, p.275
Notghi: International Journal of Crashworthiness, Vol. 15 (2010) No.4, p.443
Caicedo: International Journal for Simulation and Multidisciplinary Design Optimization, Vol.1 (2007) No.1, p.281
Zhang, C.M Lv, et al: Journal of Vibration and Shock, Vol.28 (2009) No.1, p.56 (In Chinese)
Engrs, Part E, Journal of Process Mechanical Engineering, Vol. 219 (2005) No.11, p.275
Notghi: International Journal of Crashworthiness, Vol. 15 (2010) No.4, p.443
Caicedo: International Journal for Simulation and Multidisciplinary Design Optimization, Vol.1 (2007) No.1, p.281
Zhang, C.M Lv, et al: Journal of Vibration and Shock, Vol.28 (2009) No.1, p.56 (In Chinese)
Online since: April 2012
Authors: Suzana Yusup, Sohail Ahmed, Anita Ramli
A hexagonal pore structure was found in the synthesized materials by HRTEM analysis, which confirms that the synthesized materials are MCM-41.
Materials and Methods Materials.
Hexagonal pore structure present in synthesized materials observed by HRTEM, which confirms that the synthesized materials are MCM-41.
Kemner: Science Vol. 276 (1997), p. 923 [7] T.
Su: International Journal of Inorganic Materials Vol. 3 (2001), p. 75 [18] I.V.
Materials and Methods Materials.
Hexagonal pore structure present in synthesized materials observed by HRTEM, which confirms that the synthesized materials are MCM-41.
Kemner: Science Vol. 276 (1997), p. 923 [7] T.
Su: International Journal of Inorganic Materials Vol. 3 (2001), p. 75 [18] I.V.
Finite Element Analysis of Coronary Sent with the Presence of Plaque and Vessel by Balloon Expansion
Online since: June 2014
Authors: Wen Yan Yu, Jian Guo Wang, Zhi Jian Qin
Balloon is a hyperelastic body, and its material is polyurethane which is nearly an incompressible material.
As for the vessel and plaque, they are also hyperelastic bodies which are assumed as isotropic incompressible materials.
During the expansion process simulation of coronary stent, the corners of “U” shape connection rods will experience the large deformation of geometric structure and elastic-plastic deformation of materials, and stresses are mainly concentrated upon these regions.
Journal of Biomechanics, 2008, 41(2): 383-389
Journal of Materials Processing Technology, 2004, 155-156: 1772-1779
As for the vessel and plaque, they are also hyperelastic bodies which are assumed as isotropic incompressible materials.
During the expansion process simulation of coronary stent, the corners of “U” shape connection rods will experience the large deformation of geometric structure and elastic-plastic deformation of materials, and stresses are mainly concentrated upon these regions.
Journal of Biomechanics, 2008, 41(2): 383-389
Journal of Materials Processing Technology, 2004, 155-156: 1772-1779
Online since: February 2014
Authors: Wei Ying Li, Jun Peng Zhang, Wen Ming Li
Methods and materials
One commercial UF membrane (LH3-1060-V) was examined in this study.
Journal of Membrane Science: 125(1997)109 – 122
Journal of Membrane Science: 115(1996)49 – 63
[6] Barbot, E., Moustier, S., Bottero, JY, and Moulin, P, Coagulation and ultrafiltration: Understanding of the key parameters of the hybrid process, Journal of membrane science 323(2008) 520-527
[7] Ognier, S; Wisniewski, C and Grasmick, A .Membrane bioreactor fouling in sub-critical filtration conditions: a local critical flux concept , Journal of membrane science: 229(2004)171-177
Journal of Membrane Science: 125(1997)109 – 122
Journal of Membrane Science: 115(1996)49 – 63
[6] Barbot, E., Moustier, S., Bottero, JY, and Moulin, P, Coagulation and ultrafiltration: Understanding of the key parameters of the hybrid process, Journal of membrane science 323(2008) 520-527
[7] Ognier, S; Wisniewski, C and Grasmick, A .Membrane bioreactor fouling in sub-critical filtration conditions: a local critical flux concept , Journal of membrane science: 229(2004)171-177
Online since: October 2011
Authors: Mariangela Lombardi, Giancarlo Canavese, Stefano Stassi, Candido F. Pirri
Composite piezoresistive polymeric materials are the best candidate to constitute a smart sensing skin for robotic applications.
Advanced Materials, 2007. 19: p. 2682-2686
Journal of Polymer Science Part B: Polymer Physics, 1996. 34(9): p. 1647-1657
Journal of Applied Polymer Science, 1962. 6(24): p. 651-655
Toker, et al., Tunneling and percolation in metal-insulator composite materials.
Advanced Materials, 2007. 19: p. 2682-2686
Journal of Polymer Science Part B: Polymer Physics, 1996. 34(9): p. 1647-1657
Journal of Applied Polymer Science, 1962. 6(24): p. 651-655
Toker, et al., Tunneling and percolation in metal-insulator composite materials.
Online since: December 2011
Authors: Chang Ren Zhou, Zhi Xin Jia, Ming Xian Liu
Dispersion of Single-Walled Carbon Nanotubes in Water by a Conjugated Surfactant
Mingxian Liu1, a, Zhixin Jia2, b, and Changren Zhou1,c
1Department of Materials Science and Engineering, Jinan University, Guangzhou 510632, China
2Department of Polymer Materials and Engineering, South China University of Technology, Guangzhou 510640, China
aliumx@jnu.edu.cn, bjzhixin@163.com, ctcrz9@jnu.edu.cn
Keywords: carbon nanotubes, dispersion, nanohybrids, conjugated molecules, surfactant
Abstract.
Wong, Advanced Materials, 2005, 17, 17-29
Strevens, Advanced Materials, 1998, 10, 1091-+
Tassi, Nature Materials, 2003, 2, 338-342
Dresselhaus, New Journal of Physics, 2003, 5.
Wong, Advanced Materials, 2005, 17, 17-29
Strevens, Advanced Materials, 1998, 10, 1091-+
Tassi, Nature Materials, 2003, 2, 338-342
Dresselhaus, New Journal of Physics, 2003, 5.
Online since: June 2019
Authors: Ying Wang, Ren Heng Tang, Fang Ming Xiao, Wei Ruan, Tai Sun, Ling Huang
Among these, carbon materials have significant advantages in providing electronic transport channels for pure silicon materials due to the network structure and hierarchical pore structures, and can accommodate the volume expansion of silicon materials.
In order to further improve the properties of the materials, high conductive materials, such as carbon-nanotubes and graphene, are introduced into the silicon material.
The effect of different ratio of raw materials on the performance of Si@PR-C/Graphite is further study.
Materials Letters, 2017,199:84-87 [11] Xiaotian Li, Dandan Yang, Xiaocun Hou, et al.
Interweaved Si@C/CNTs&CNFs composites as anode materials for Li-ion [J].
In order to further improve the properties of the materials, high conductive materials, such as carbon-nanotubes and graphene, are introduced into the silicon material.
The effect of different ratio of raw materials on the performance of Si@PR-C/Graphite is further study.
Materials Letters, 2017,199:84-87 [11] Xiaotian Li, Dandan Yang, Xiaocun Hou, et al.
Interweaved Si@C/CNTs&CNFs composites as anode materials for Li-ion [J].
Online since: July 2012
Authors: Zu Li Sun, Ming En Guo
Introduction
Ganoderma lucidum is a traditional Chinese famous medicinal materials, including various types of physical adjustment factor, which has obvious effects on human body.
Raw materials and methods Microorganism.
References [1] C.N.Lin,W.P.Tom: Journal of natural products Vol. 54-4(1991),p.998
[4] Yutian Liu, Zuli Sun: Journal of Yantai University(Natural Science and Engineering edirion) Vol.12-4( 1999), p. 298 (In Chinese)
[5] Yutian Liu, Zuli Sun: Journal of Yantai University(Natural Science and Engineering edirion) Vol.14-3(2001), p. 207 (In Chinese)
Raw materials and methods Microorganism.
References [1] C.N.Lin,W.P.Tom: Journal of natural products Vol. 54-4(1991),p.998
[4] Yutian Liu, Zuli Sun: Journal of Yantai University(Natural Science and Engineering edirion) Vol.12-4( 1999), p. 298 (In Chinese)
[5] Yutian Liu, Zuli Sun: Journal of Yantai University(Natural Science and Engineering edirion) Vol.14-3(2001), p. 207 (In Chinese)
Online since: January 2007
Authors: J.H. Liu, Zhi Jian Pei, Graham R. Fisher
Fisher2,c
1
Department of Industrial and Manufacturing Systems Engineering, Kansas State University,
Manhattan, KS 66506, USA
2MEMC Electronic Materials, Inc., 501 Pearl Drive, St.
Acknowledgments This work was supported by the National Science Foundation through the CAREER Award DMI-0348290 and Grant DMI-0218237.
Xin: Journal of Materials Processing Technology, Vol. 129 (2002), pp. 2-9
Lee: Japanese Journal of Applied Physics, Vol. 40 (2001), pp. 5300-5301
[11] SEMI, Specifications for Polished Mono-crystalline Silicon Wafers, SEMI M1-0600, Semiconductor Equipment and Materials International, San Jose, CA, 2000.
Acknowledgments This work was supported by the National Science Foundation through the CAREER Award DMI-0348290 and Grant DMI-0218237.
Xin: Journal of Materials Processing Technology, Vol. 129 (2002), pp. 2-9
Lee: Japanese Journal of Applied Physics, Vol. 40 (2001), pp. 5300-5301
[11] SEMI, Specifications for Polished Mono-crystalline Silicon Wafers, SEMI M1-0600, Semiconductor Equipment and Materials International, San Jose, CA, 2000.
Online since: November 2013
Authors: Shui Xuan Chen, Yeni Li, Jun Zou
Palomar Pardave: International Journal of Minerals, Metallurgy and Materials.
Vol. 17(2010), p. 403 [2] Yu-TuoZhang, Dian-Zhong Li, Yi-Yi Li: Journal of Materials Processing Technology.
Vol. 171(2006), p. 175 [3] Heung Nam Han, Jae Kon Lee, Hong Joon Kim, Young-Sool Jin: Journal of Materials Processing Technology.
Fattahi: Journal of Materials Processing Technology.
Vol. 47(2010), p. 1159 [8] Heung Nam Han, Jae Kon Lee, Hong Joon Kim, Young-Sool Jin: Journal of Materials Processing Technology.
Vol. 17(2010), p. 403 [2] Yu-TuoZhang, Dian-Zhong Li, Yi-Yi Li: Journal of Materials Processing Technology.
Vol. 171(2006), p. 175 [3] Heung Nam Han, Jae Kon Lee, Hong Joon Kim, Young-Sool Jin: Journal of Materials Processing Technology.
Fattahi: Journal of Materials Processing Technology.
Vol. 47(2010), p. 1159 [8] Heung Nam Han, Jae Kon Lee, Hong Joon Kim, Young-Sool Jin: Journal of Materials Processing Technology.