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Online since: September 2011
Authors: Ahmad Beng Hong Kueh, Muhammad Nor Hafidzi, Norhidayah Rasin, Airil Yasreen Mohd Yassin, Hisham Mohamad
A wider potential of these materials is however hindered due to absent of bias reinforcement that can provide in-plane shear resistance in the off-axis direction, making the use of single ply material unusual in application.
ABD matrices for TWF are computed in terms of: (i) three plies material and (ii) lumped and averaged properties of several two plies materials, all using the same total thickness as that measured by Kueh and Pellegrino [4].
Kueh: submitted to International Journal of Mechanical Sciences (2011)
Hoa: Journal of Composite Material vol. 37 (2003), p. 763-789
Pellegrino: ABD Matrix of Single-Ply Triaxial Weave Fabric Composites, 48th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference, 23-26 April 2007, Honolulu, Hawaii, AIAA-2007-2161.
ABD matrices for TWF are computed in terms of: (i) three plies material and (ii) lumped and averaged properties of several two plies materials, all using the same total thickness as that measured by Kueh and Pellegrino [4].
Kueh: submitted to International Journal of Mechanical Sciences (2011)
Hoa: Journal of Composite Material vol. 37 (2003), p. 763-789
Pellegrino: ABD Matrix of Single-Ply Triaxial Weave Fabric Composites, 48th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference, 23-26 April 2007, Honolulu, Hawaii, AIAA-2007-2161.
Online since: March 2004
Authors: Zhan Qiang Liu, Xing Ai
Ozel, et al: Journal of Materials Processing Technology Vol.
98 (2000), p. 104 450 Advances in Grinding and Abrasive Processes
[4] S.Y.
Tsai: Journal of Materials Processing Technology Vol. 98 (1999), p. 114 [5] M.
Sumiya: Journal of Materials Processing Technology Vol. 127 (2002), p. 217 [9] M.W.
Bossom: International Journal of Refractory Metals and Hard Materials Vol. 18 (2000), p. 147 [10] H.
Nabhani: Journal of Materials Processing Technology Vol. 115 (2001), p. 402 [14] X.S.
Tsai: Journal of Materials Processing Technology Vol. 98 (1999), p. 114 [5] M.
Sumiya: Journal of Materials Processing Technology Vol. 127 (2002), p. 217 [9] M.W.
Bossom: International Journal of Refractory Metals and Hard Materials Vol. 18 (2000), p. 147 [10] H.
Nabhani: Journal of Materials Processing Technology Vol. 115 (2001), p. 402 [14] X.S.
Online since: March 2010
Authors: Jian Sha Lu, Guo Zhong Chai, Xiu Lin Li, Hong Tao Tang
Then material
holon is given.
Material Holon (MH).Abstraction of the raw material using during production process.
Every sub-order negotiate with product holon, acquire procedures, when the product made up of materials that need to be produce, the sub-order can analyze to more tiny order.
Morel: Journal of Materials Processing Technology, Vol. 179 (2006), p. 268 [6] P.
Wu: Journal of Intelligent Manufacturing, Vol. 15 (2004), p. 253
Material Holon (MH).Abstraction of the raw material using during production process.
Every sub-order negotiate with product holon, acquire procedures, when the product made up of materials that need to be produce, the sub-order can analyze to more tiny order.
Morel: Journal of Materials Processing Technology, Vol. 179 (2006), p. 268 [6] P.
Wu: Journal of Intelligent Manufacturing, Vol. 15 (2004), p. 253
Online since: March 2012
Authors: Shi Cheng Zhang, Jiu Yin Pang, Ya Ji Jiang
The single straw composite board manufacturing process research
Shicheng Zhang, Yaji Jiang, Jiuyin Pang
1Beihua University,Jilin,132013
2 Jilin woodiness material science and engineering key laboratories,Jilin,132013
Key words: veneer, straw, material, technology
Abstract: This experiment used high temperature short cycle hot-pressing process suppress the single composite straw, found that the density decided single composite straw bending capacity, inside combinative strength and bibulous ply the inflation rate important factors, among which the effect of internal bond strength is more obvious.
Materials instrument 1.1Materials 1.1.1 Straw Experiment with fresh straw from jilin suburbs.
Production; Styrene butadiene rubber latex-(carboxylic butyl benzene latex modified) (SBR), industrial goods, jilin dragon biomass materials Co., LTD.
J forestry science and technology development, 2001, 15 (5) : from 25 to 27
Journal of fujian agricultural university, 1997, 25 (2) : 223 ~ 227.
Materials instrument 1.1Materials 1.1.1 Straw Experiment with fresh straw from jilin suburbs.
Production; Styrene butadiene rubber latex-(carboxylic butyl benzene latex modified) (SBR), industrial goods, jilin dragon biomass materials Co., LTD.
J forestry science and technology development, 2001, 15 (5) : from 25 to 27
Journal of fujian agricultural university, 1997, 25 (2) : 223 ~ 227.
Online since: July 2011
Authors: Wan Shan Wang, Zi Rui Pang, Tian Biao Yu, Jing Qiang Zhang
Krzos: Journal of Materials Processing Technology Vol. 209(2009), p. 5377
[4] J.S.
Pecharroman: Progress in Materials Science Vol. 52(2007), p.1017 [5] Y.P.
Ning: Materials Letters Vol. 57(2003), p.2940 [6] J.B.
Cui: Materials Review Vol. 19(2005), p.170 [7] X.
Shi, et al: Materials Review Vol. 20(2006), p.19
Pecharroman: Progress in Materials Science Vol. 52(2007), p.1017 [5] Y.P.
Ning: Materials Letters Vol. 57(2003), p.2940 [6] J.B.
Cui: Materials Review Vol. 19(2005), p.170 [7] X.
Shi, et al: Materials Review Vol. 20(2006), p.19
Online since: June 2015
Authors: R. Zakaria, Abdul Malik Marwan Bin Ali, Mohamad Faizul Yahya, Zaidatul Salwa Mahmud, N.H.M. Zaki
Excellent physical characteristics of SPEs such as good thermal stability, high resistance to combustion, robustness under extreme conditions and ability to be shaped in various forms due to the flexibility of the polymeric materials become feature advantages.
Journal of Membrane Science, 352 (2010) 95-99
Materials Letters, 58 (2004) 641-649
Materials Chemistry and Physics, 97 (2006) 330-336
Materials Letters, 61 (2007) 2026-2029
Journal of Membrane Science, 352 (2010) 95-99
Materials Letters, 58 (2004) 641-649
Materials Chemistry and Physics, 97 (2006) 330-336
Materials Letters, 61 (2007) 2026-2029
Online since: October 2013
Authors: Takashi Sekiguchi, Jian Yong Li, Jun Chen, Ronit R. Prakash, Karolin Jiptner, Yoshiji Miyamura, Hirofumi Harada, Atsushi Ogura
Sekiguchi1, 2, h
1WPI Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science, 1-1 Namiki, 305-0044 Tsukuba, Ibaraki, Japan
2Graduate School of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tenodai, 305-8571 Tsukuba, Ibaraki, Japan
3 Department of Electrical and Electronic Engineering, Meiji University, 1-1-1 Higashi-Mita, Tama-ku, 214-8571 Kawasaki, Kanagawa, Japan
aCHEN.Jun@nims.go.jp (corresponding author), bPRAKASH.Ronit@nims.go.jp,
cLI.Jianyong@nims.go.jp, dJIPTNER.Karolin@nims.go.jp, eMIYAMURA.Yoshiji@nims.go.jp,
fHARADA.Hirofumi@nims.go.jp, ga_ogura@isc.meiji.ac.jp, hSEKIGUCHI.Takashi@nims.go.jp
Keywords: mc-Si; Dislocation; Grain boundary.
Introduction Multicrystalline and monocrystalline Si materials have a market share of more than 90% in solar cell industries.
Acknowledgements This work was supported by New Energy and Industrial Technology Development Organization (NEDO) and World Premier International Research Center (WPI) initiative on Materials Nanoarchitectonics (MANA), MEXT, Japan.
Clark, Bulk multicrystalline silicon for photovoltaic (PV) application, Journal of Crystal Growth 310 (2008) 2178-2184
Sun, An optical microscopy study of dislocations in multicrystalline silicon grown by directional solidification method, Materials Science in Semiconductor Processing 13 (2010) 276-280
Introduction Multicrystalline and monocrystalline Si materials have a market share of more than 90% in solar cell industries.
Acknowledgements This work was supported by New Energy and Industrial Technology Development Organization (NEDO) and World Premier International Research Center (WPI) initiative on Materials Nanoarchitectonics (MANA), MEXT, Japan.
Clark, Bulk multicrystalline silicon for photovoltaic (PV) application, Journal of Crystal Growth 310 (2008) 2178-2184
Sun, An optical microscopy study of dislocations in multicrystalline silicon grown by directional solidification method, Materials Science in Semiconductor Processing 13 (2010) 276-280
Online since: January 2011
Authors: Cheng Ye Liu, Feng Yan Yi, Ke Jun Jiang
Journal of Intelligent Material Systems and Structures, 2000,10(11):5-13
Analysis on the working principle of MRF transmission device[J], Journal of Chongqing University(Natural Science Edition ), 2007, 30(11): 19-22 (in Chinese)
Journal of Functional Materials, 2006,37(6):992-993( in Chinese) [7] Huang J, He J M, Zhang J Q.
Key Engineering Materials, 2004,274/276:969-974
Journal of Functional Materials, 1997, 28(2):264-267(in Chinese)
Analysis on the working principle of MRF transmission device[J], Journal of Chongqing University(Natural Science Edition ), 2007, 30(11): 19-22 (in Chinese)
Journal of Functional Materials, 2006,37(6):992-993( in Chinese) [7] Huang J, He J M, Zhang J Q.
Key Engineering Materials, 2004,274/276:969-974
Journal of Functional Materials, 1997, 28(2):264-267(in Chinese)
Online since: June 2012
Authors: Jie Min Cheng, Yu Zhen Liu
Chinese Journal of Soil Science. 2011,42 (3):973-975
[3] RANA ATHAR, MASOOD AHMAD.
Journal of Agro-Environment Science, 2008,27(5):1895- 1900 [5] Zencak Z, Elmquist M, Gustafsson Ö.
Journal of Agro-Environment Science, 2007, 26(2):770- 774 [11] Fan Yanzhen, Wang Baozhen, Wang Lin.
Journal of Hazardous Materials 178 (2010) 455–461 [14] Qiu Yuping, Cheng haiyan, Xu Chao, et al.
Journal of Hazardous Materials 178 (2010) 455–461
Journal of Agro-Environment Science, 2008,27(5):1895- 1900 [5] Zencak Z, Elmquist M, Gustafsson Ö.
Journal of Agro-Environment Science, 2007, 26(2):770- 774 [11] Fan Yanzhen, Wang Baozhen, Wang Lin.
Journal of Hazardous Materials 178 (2010) 455–461 [14] Qiu Yuping, Cheng haiyan, Xu Chao, et al.
Journal of Hazardous Materials 178 (2010) 455–461
Online since: September 2011
Authors: Zhong Guo Huang, Qing Hua Yuan, Kun Lei, Yu Zhou, Zong Ke Shao
Processing maps is drawn according to dynamic materials model (DMM).
Li: Journal of Materials Processing Technology Vol. 205(2008), p497-505
Fang: Materials Science and Technology Vol. 26(2010), p.1088-1094
Ramamurty: Materials Science and Engineering A 527 (2010), p.6157–6165
Seshacharyulu: Materials Science and Engineering A243 (1998), p.82–88 [9] H.
Li: Journal of Materials Processing Technology Vol. 205(2008), p497-505
Fang: Materials Science and Technology Vol. 26(2010), p.1088-1094
Ramamurty: Materials Science and Engineering A 527 (2010), p.6157–6165
Seshacharyulu: Materials Science and Engineering A243 (1998), p.82–88 [9] H.