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Online since: June 2010
Authors: Nor Hafiez Mohamad Nor, Mohd Halim Irwan Ibrahim, Norhamidi Muhamad, Sufizar Ahmad, Khairur Rijal Jamaludin, Mohd Ruzi Harun
Scott Weil: Journal of Materials Science &
Engineering C (25), (2005), p. 336
[3] R.
Schimansky: Journal of Materials Science & Engineering A (423), (2006), p. 262 [4] H.
Qazi: Journal of Materials Science & Engineering C (26), (2006), p. 1269 [5] Guo Shibo, Qu Xuanhui, He Xinbo, Zhou Ting and Duan Bohua: Journal of Materials Processing Technology (17), (2006), p. 310 [6] K.
Arifin: Journal of the Institute of Materials Malaysia (2), (2001), p. 71 [8] F.
Lin: Journal of Materials Processing Technology (71), (1997), p. 337 [12] R.K.
Schimansky: Journal of Materials Science & Engineering A (423), (2006), p. 262 [4] H.
Qazi: Journal of Materials Science & Engineering C (26), (2006), p. 1269 [5] Guo Shibo, Qu Xuanhui, He Xinbo, Zhou Ting and Duan Bohua: Journal of Materials Processing Technology (17), (2006), p. 310 [6] K.
Arifin: Journal of the Institute of Materials Malaysia (2), (2001), p. 71 [8] F.
Lin: Journal of Materials Processing Technology (71), (1997), p. 337 [12] R.K.
Online since: September 2014
Authors: Zhen Bao Li, Hua Ma, Jing Fu, Ting Ting Zhang
The factors are simulated by ABAQUS software for the impact of seismic performance, which are difference of material strength grade, initial load and the order of prestressing and pretightening.
The factors are simulated by ABAQUS for the impact of seismic performance, which have different strength grade of materials, initial load, the order of prestressing and pretightening force.
The material strength of the new beams is higher than the initial beam, therefore, the damage of the new beam is lighter than it.
Acknowledgements This work was supported by the China Natural Science Foundation (51178014), and Beijing Natural Science Foundation (8132012).
Dave: Journal of Procedia Engineering, 51(2013), p. 230-239 [4] H.Wu: Journal of China Civil Engineering, Vol.46, No.7 (2013), p.37-46 (In Chinese) [5] J.
The factors are simulated by ABAQUS for the impact of seismic performance, which have different strength grade of materials, initial load, the order of prestressing and pretightening force.
The material strength of the new beams is higher than the initial beam, therefore, the damage of the new beam is lighter than it.
Acknowledgements This work was supported by the China Natural Science Foundation (51178014), and Beijing Natural Science Foundation (8132012).
Dave: Journal of Procedia Engineering, 51(2013), p. 230-239 [4] H.Wu: Journal of China Civil Engineering, Vol.46, No.7 (2013), p.37-46 (In Chinese) [5] J.
Online since: July 2014
Authors: Jing Ze Wang, Ming Lu Liu, Da Yong Li
(Journal of ELECTRONIC MATERIALS,Vol 41.No1,2013)
[5] R.DASGUPTA,S.K.BOSE:High Temperature Stability of Rapidly Solidified Al-Mn-Ni alloys(Journal of MATERIALS SCIENCE LETTERS,15,366-367,1996)
[6] SOON-GUN KIM,SUNG H.WHANG:Grain Refinement in Rapidly Solidified W-Si alloys(Journal of MATERIALS SCIENCE LETTERS,26,5911-5914,1991)
[7] S.H.LO,W.MGIBBON:Thermal Effect on Rapidly Solidified Cu-10Ni-8Fe alloy(Journal of MATERIALS SCIENCE LETTERS,6,441-443,1987)
[8] M.FASS,D.ELIEZER,E.AGHION:Hardening and Phase Stability in Rapidly solidified Al-Fe-Ce alloys(Journal of MATERIALS SCIENCE,33,833-837,1998) [9] T.B.Massalski:Binary Alloy Phase Diagrams(Materials Park:American Society for Metals,1987).
[5] R.DASGUPTA,S.K.BOSE:High Temperature Stability of Rapidly Solidified Al-Mn-Ni alloys(Journal of MATERIALS SCIENCE LETTERS,15,366-367,1996)
[6] SOON-GUN KIM,SUNG H.WHANG:Grain Refinement in Rapidly Solidified W-Si alloys(Journal of MATERIALS SCIENCE LETTERS,26,5911-5914,1991)
[7] S.H.LO,W.MGIBBON:Thermal Effect on Rapidly Solidified Cu-10Ni-8Fe alloy(Journal of MATERIALS SCIENCE LETTERS,6,441-443,1987)
[8] M.FASS,D.ELIEZER,E.AGHION:Hardening and Phase Stability in Rapidly solidified Al-Fe-Ce alloys(Journal of MATERIALS SCIENCE,33,833-837,1998) [9] T.B.Massalski:Binary Alloy Phase Diagrams(Materials Park:American Society for Metals,1987).
Online since: June 2015
Authors: Nor Sabirin Mohamed, Nurul Akmaliah Dzulkurnain
Composite electrolytes are multiphase (mostly two phase) solid systems in which two or more materials are mixed together to achieve some desirable material properties, namely high ionic conductivity, good thermal stability and mechanical strength and wide electrochemical window stability [1].
Gupta, Review Superionic solids: composite electrolyte phase – an overview, Journal of Materials Science 34 (1999) 1131-1162
Park, Effect of precursor on the preparation of lithium aluminate, Journal of Nuclear Materials 246 (1997) 131-138
Material Science Poland 24 (2006) 195-203
Gupta, Ionic conductivity in poly(vinylbutyral) based polymeric electrolytes: Effect of Solvents and salts, Solar Energy Materials and Solar Cells 44 (1996) 6-12
Gupta, Review Superionic solids: composite electrolyte phase – an overview, Journal of Materials Science 34 (1999) 1131-1162
Park, Effect of precursor on the preparation of lithium aluminate, Journal of Nuclear Materials 246 (1997) 131-138
Material Science Poland 24 (2006) 195-203
Gupta, Ionic conductivity in poly(vinylbutyral) based polymeric electrolytes: Effect of Solvents and salts, Solar Energy Materials and Solar Cells 44 (1996) 6-12
Online since: June 2017
Authors: Varinthorn Boonyaroj, Samanya Sanguanpak
Effect of Sodium Hydroxide Concentrations on Properties
of Panicum repens for Pulp and Paper
Varinthorn Boonyaroj1,a*, Samunya Sanguanpak2,b
1Department of Environmental Science and Natural Resources,
Faculty of Science and Technology, Rajamangala University of Technology Phra Nakhon,
Bangkok 10800, Thailand
2MTEC, National Science and Technology Development Agency (NSTDA),
114 Thailand Science Park, Thanon Phahonyothin,Tambon Khlong Nueng, Amphoe Khlong Luang,
Pathum Thani 12120, Thailand
a*varinthorn.b@rmutp.ac.th, samunys@mtec.or.th
Keywords: grass paper pulp, non-wood fiber, Panicum repens.
The paper has been made from non-wood materials for long times.
The paper has been made from non-wood materials for long times.
Evaluation of pulp and paper making characteristics of elephant grass (Pennisetum purpureum Schum) and switchgrass (Panicum virgatum L.), African Journal of Environmental Science and Technology Vol. 4(7) (2010), 465-470 [2] H.Muraleedharan, K.
Chemical Treatments of Natural Fiber for Use in Natural Fiber-Reinforced Composites: A Review, Journal of Polymers and the Environment 15(2007), 25–33.
The paper has been made from non-wood materials for long times.
The paper has been made from non-wood materials for long times.
Evaluation of pulp and paper making characteristics of elephant grass (Pennisetum purpureum Schum) and switchgrass (Panicum virgatum L.), African Journal of Environmental Science and Technology Vol. 4(7) (2010), 465-470 [2] H.Muraleedharan, K.
Chemical Treatments of Natural Fiber for Use in Natural Fiber-Reinforced Composites: A Review, Journal of Polymers and the Environment 15(2007), 25–33.
Online since: November 2013
Authors: Baharin Azahari, Siti Rohana Yahya, Azura A. Rashid, Farah Nadiah Hamdan
Awareness on environmental issues has forced the industries to look for eco-friendly materials based on naturally occurring renewable resources.
Materials and Methodology The natural rubber mixture was prepared according to formulation in Table 1.
The authors gratefully acknowledge the support provided by School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia.
Rao, Rheological Behavior of Blends of Natural Rubber and Styrene-Butadiene Rubber Latices, Journal of Applied Polymer Science. 56 (1995) 451-160
Mathew, Effect of Temperature on Sulfur Prevulcanization of Natural Rubber Latex, Journal of Applied Polymer Science. 65 (1998), 1913-1920.
Materials and Methodology The natural rubber mixture was prepared according to formulation in Table 1.
The authors gratefully acknowledge the support provided by School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia.
Rao, Rheological Behavior of Blends of Natural Rubber and Styrene-Butadiene Rubber Latices, Journal of Applied Polymer Science. 56 (1995) 451-160
Mathew, Effect of Temperature on Sulfur Prevulcanization of Natural Rubber Latex, Journal of Applied Polymer Science. 65 (1998), 1913-1920.
Online since: July 2014
Authors: Ying Zhang, You Li, Wen Long Zhang, Xuan Wang, Cheng Jun QIU
Journal of Polymer Science Part A-Polymer Chemistry, 2013, 51(20):4467~4473
Journal of Functional Materials, 2012, 43(24): 3386~3392
Recent developments in poly- phosphazene materials science [J].
Current Opinion in Solid State and Materials Science, 2006, 10(12):231~240
Journal of Polymer Science, Part A: Polymer Chemistry, 2013, 51(6):1278~1284
Journal of Functional Materials, 2012, 43(24): 3386~3392
Recent developments in poly- phosphazene materials science [J].
Current Opinion in Solid State and Materials Science, 2006, 10(12):231~240
Journal of Polymer Science, Part A: Polymer Chemistry, 2013, 51(6):1278~1284
Online since: January 2021
Authors: Yu Li Zhou, Gu Zhong, Zhan Kun Wang, Shi Peng Lin, Jun Chao Zhang
A new approach to the design of a low Si-added Al-Si casting alloy for optimizing thermal conductivity and fluidity, Journal of Materials Science, 50 (2015) 7271-7281
Sandström, Calculations of electrical resistivity for Al-Cu and Al-Mg-Si alloys, Materials Science and Technology, 17(2001) 655-661
Thermal and electrical conductivity in Al-Si/Cu/Fe/Mg binary and ternary Al alloys, Journal of Materials Science, 50(2015) 5630-5639
Sandström, Å.Karlsson, Comparison of experimental, calculated and observed values for electrical and thermal conductivity of aluminum alloys, Journal of Materials Science, 32(1997) 4383-4390
Overfelt, S.G.Teodorescu, Electrical and thermal conductivity of A319 and A356 aluminum alloys, Journal of Materials Science, 36(2001) 4643-4648
Sandström, Calculations of electrical resistivity for Al-Cu and Al-Mg-Si alloys, Materials Science and Technology, 17(2001) 655-661
Thermal and electrical conductivity in Al-Si/Cu/Fe/Mg binary and ternary Al alloys, Journal of Materials Science, 50(2015) 5630-5639
Sandström, Å.Karlsson, Comparison of experimental, calculated and observed values for electrical and thermal conductivity of aluminum alloys, Journal of Materials Science, 32(1997) 4383-4390
Overfelt, S.G.Teodorescu, Electrical and thermal conductivity of A319 and A356 aluminum alloys, Journal of Materials Science, 36(2001) 4643-4648
Molecular Imprinted Photonic Crystal Sensor for the Rapid and Visual Detection of Benzocaine in Fish
Online since: May 2019
Authors: Shi Li Chen, Hui Sun, Zhen Jian Huang, Si Yang Fang, Jia Hua He, Jia Ping Lai, Yang Yang Liu
Material and Methods
Materials.
[4] Li Yafei: Shaanxi Journal of Agricultural Sciences Vol. 61(2015), p.66-67
Grishina, P.Cloetens,et al.: Materials Science (2016)
:Materials Horizons Vol. 4(2017), p.862-868
[13] PB Landon, CL Gilleland, R Glosser:Journal of Materials Science Materials in Electronics Vol.18(2007), p.469-472.
[4] Li Yafei: Shaanxi Journal of Agricultural Sciences Vol. 61(2015), p.66-67
Grishina, P.Cloetens,et al.: Materials Science (2016)
:Materials Horizons Vol. 4(2017), p.862-868
[13] PB Landon, CL Gilleland, R Glosser:Journal of Materials Science Materials in Electronics Vol.18(2007), p.469-472.
Online since: October 2011
Authors: De Rong Wang, Chun Ming Song, Ming Yang Wang
Table 5 Compression coefficients of several materials
Material parameter
C30
C40
C50
C60
RPC(5% steel fiber)
Compression coefficient
0.17
0.157
0.15
0.147
0.036
Conclusions
The steel-fiber reactive powder concrete shows high strength and superior performance in terms of anti-explosion capability when compared to reinforced concrete, the compression coefficient of RPC with 0.5% steel fibres under contact explosion is obtained as 0.041 by model tests , it has about 3 times anti-explosion capability compared to C30 reinforced concrete.
Journal of fuzhou university,2005,31(s) 132-137.
Anti-penetration performance of reactive powder concrete reinforced with steel-wire-net.Journal of PLA University of Science and Technology,2008,9(1):57-61(In Chinese) [5] WANG Yao-ming,DUAN Ji-xiang,WANG De-rong,et a1.
Journal of PLA University of Science and Technology,2010,11(3):296-299(In Chinese) [6] WU Xu-tao,HU Shi-sheng,CHEN De-xing,et a1.
[8] An Ming-zhe,Zhang LI-ju,Yi Quan-xin.Size effect on compressive strength of PRC [J].Journal of China University of Nining&Teehnology,2008,(2):279-282.
Journal of fuzhou university,2005,31(s) 132-137.
Anti-penetration performance of reactive powder concrete reinforced with steel-wire-net.Journal of PLA University of Science and Technology,2008,9(1):57-61(In Chinese) [5] WANG Yao-ming,DUAN Ji-xiang,WANG De-rong,et a1.
Journal of PLA University of Science and Technology,2010,11(3):296-299(In Chinese) [6] WU Xu-tao,HU Shi-sheng,CHEN De-xing,et a1.
[8] An Ming-zhe,Zhang LI-ju,Yi Quan-xin.Size effect on compressive strength of PRC [J].Journal of China University of Nining&Teehnology,2008,(2):279-282.