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Online since: March 2024
Authors: Brigita Tomšič, Mohammad Mamunur Rashid, Matija Zorc, Ivan Jerman, Barbara Simončič
Experimental
Materials.
Materials, 12, 2840
Journal of Materials Chemistry A, 7, 13833
Journal of Inorganic and Organometallic Polymers and Materials, 30, 2720–2735
Frontiers of textile materials.
Materials, 12, 2840
Journal of Materials Chemistry A, 7, 13833
Journal of Inorganic and Organometallic Polymers and Materials, 30, 2720–2735
Frontiers of textile materials.
Online since: October 2014
Authors: Ming Sheng Zhao, En An Chi, Jian Hua Zhang, Qiang Kang, Tie Jun Tao
Acknowledgements
This work was supported by the grants from the Guizhou Science and Technology Plan Project (No.
Journal of the Liaoning Technical University( Natural Science), 2008 (27):142~144
Journal of University of Science and Technology Beijing, 2006, 28(2): 101−103
Chinese Journal of Rock Mechanics and Engineering, 2010, 29(Supp. 1): 2720~2726
Chinese Journal of Rock Mechanics and Engineering, 2008, 27(2): 323-330.
Journal of the Liaoning Technical University( Natural Science), 2008 (27):142~144
Journal of University of Science and Technology Beijing, 2006, 28(2): 101−103
Chinese Journal of Rock Mechanics and Engineering, 2010, 29(Supp. 1): 2720~2726
Chinese Journal of Rock Mechanics and Engineering, 2008, 27(2): 323-330.
Online since: September 2013
Authors: Kai Fang Xie, Hua Wu Liu, Han Sun, Shu Wei Yang, Wei Wei Hu, Tian Yang Yang
Materials and Methods
Basalt fibers (diameter 9µm, fineness 264tex) were provided by Zhejiang Shijin Basalt Fiber Limited.
Conclusions The basalt fibre reinforced fir sawdust panels exhibit reduced water absorption rate and low thickness swelling, which emphasizes the principle advantages of using inorganic fibres to reinforce wood composite materials.
[2]Dhakal H N et al., Composites Science and Technology, 2007, 67(7-8): 1674-1683
[3]Hyo Jin Kim, et al., International Journal of Fatigue, 2006, 28(10): 1307-1314
[4]Morris P I et al., Forest Product Journal, 1998, 48(1): 86-88
Conclusions The basalt fibre reinforced fir sawdust panels exhibit reduced water absorption rate and low thickness swelling, which emphasizes the principle advantages of using inorganic fibres to reinforce wood composite materials.
[2]Dhakal H N et al., Composites Science and Technology, 2007, 67(7-8): 1674-1683
[3]Hyo Jin Kim, et al., International Journal of Fatigue, 2006, 28(10): 1307-1314
[4]Morris P I et al., Forest Product Journal, 1998, 48(1): 86-88
Online since: April 2018
Authors: Tsung Chia Chen, Chien Yi Chen
As the scale effect of material is not taken into consideration, the applied Swift material model is shown as below
Table 1 Microtube material parameter.
Leu, Finite-Element Simulation of Hole-Flanging Process of Circular Sheet of Anisotropic Materials, International Journal of Mechanical Sciences 38 (1996) 917-933
Huang, Finite element analysis of tube inward curling process by conical dies, Journal of Materials Processing Technology 170 (2005) 616-623
Yu, On the axial splitting and curling of circular metal tubes, International Journal of Mechanical Sciences 44 (2002) 2369-2391
Table 1 Microtube material parameter.
Leu, Finite-Element Simulation of Hole-Flanging Process of Circular Sheet of Anisotropic Materials, International Journal of Mechanical Sciences 38 (1996) 917-933
Huang, Finite element analysis of tube inward curling process by conical dies, Journal of Materials Processing Technology 170 (2005) 616-623
Yu, On the axial splitting and curling of circular metal tubes, International Journal of Mechanical Sciences 44 (2002) 2369-2391
Online since: August 2012
Authors: Hong Bin Nie, Xiao Chu Wang
For different components, materials, and the nonlinear programming and analysis, through the integral, combination, discrete type three calculation model of material and materials between, namely, concrete, steel, concrete and reinforced, GFRP cloth, concrete and CFRP cloth the constitutive relation analysis, this paper expounds the present research, points out the existing limitations of the present study and later the research direction.
Compared with the traditional reinforcement technology, FRP reinforcement involves the following advantages (1) High tensile strength:FRP materials are high tensile strength than the steel, and better ductility.
(3) Excellent fatigue resistance:No reinforcement after cyclic loading test of different degrees of strength and ductility index is lower than FRP reinforcement after equal cyclic loading test of materials, did not show significantly reduced its strength and ductility
(4) Construction of the convenient:When carbon fiber materials is used of reinforced concrete structures, the construction does not require large machinery, construction accounted for less, and no wet job, so efficiency is very high [4].
Journal of Building Structures, 2003, 24(5):1-9 [4] Shao Jing-song; LIU Wei-qing.Application of Carbon Fiber in Civil Engineering [J].
Compared with the traditional reinforcement technology, FRP reinforcement involves the following advantages (1) High tensile strength:FRP materials are high tensile strength than the steel, and better ductility.
(3) Excellent fatigue resistance:No reinforcement after cyclic loading test of different degrees of strength and ductility index is lower than FRP reinforcement after equal cyclic loading test of materials, did not show significantly reduced its strength and ductility
(4) Construction of the convenient:When carbon fiber materials is used of reinforced concrete structures, the construction does not require large machinery, construction accounted for less, and no wet job, so efficiency is very high [4].
Journal of Building Structures, 2003, 24(5):1-9 [4] Shao Jing-song; LIU Wei-qing.Application of Carbon Fiber in Civil Engineering [J].
Online since: October 2012
Authors: Mao Zhu Jin, Bin Wu, Pei Yu Ren
For that reason increase of idle time would possibly cause decreased buffer stock, and insufficient replenishment of materials for downstream processes.
Therefore, machines followed the bottleneck can suffer from insufficient buffer stock and materials, which leaves the machine waiting.
European Journal of Operational Research .1988(36), p.1-13
International Journal of Logistics Research and Applications.
Statistical Science 1993(8/3), p.219-283
Therefore, machines followed the bottleneck can suffer from insufficient buffer stock and materials, which leaves the machine waiting.
European Journal of Operational Research .1988(36), p.1-13
International Journal of Logistics Research and Applications.
Statistical Science 1993(8/3), p.219-283
Online since: October 2011
Authors: T.K. Sahoo, Barada Kanta Mishra, B.B. Jha, R.K. Sahoo, Olga I. Bylya, M.K. Sarangi
Langdon, “Seventy-five years of superplasticity: historic developments and new opportunities,” Journal of material sciences, Vol. 44, 2009, p.5998-6010
Lutjering, “Influence of processing on microstructure and mechanical properties of (α+β) titanium alloys,”Materials Science and Engineering A, vol.243, 1998, p. 32–45 [7] H.J.
Qazi, “Titanium alloys for biomedical applications,” Materials Science and Engineering C, Vol. 26, 2006, p. 1269 – 1277
Fraser , “Quantification of micro structural features in α/β titanium alloys,” Materials Science and Engineering A ,Vol .372 ,2004 P.191–198
[13] L.A.Xue, R.Raj, “Deformation-induced phase transformation in Zinc sulfide,” Journal of materials science letters, Vol.9, 1990, p.818-819.
Lutjering, “Influence of processing on microstructure and mechanical properties of (α+β) titanium alloys,”Materials Science and Engineering A, vol.243, 1998, p. 32–45 [7] H.J.
Qazi, “Titanium alloys for biomedical applications,” Materials Science and Engineering C, Vol. 26, 2006, p. 1269 – 1277
Fraser , “Quantification of micro structural features in α/β titanium alloys,” Materials Science and Engineering A ,Vol .372 ,2004 P.191–198
[13] L.A.Xue, R.Raj, “Deformation-induced phase transformation in Zinc sulfide,” Journal of materials science letters, Vol.9, 1990, p.818-819.
Online since: June 2023
Authors: Ogunleye Ojo Olugbusi, Taiwo Ebenezer Abioye
Materials and Method
2.1 Materials.
“A review on Friction Stir Welding in Aluminium Alloys”, IOP Conference Series: Materials Science and Engineering.
“A Review of Various Improvement Strategies for Joint Quality of AA 6061-T6 Friction Stir Weldments”, Journal of Materials Research and Technology.
“A review of laser welding techniques for magnesium alloys”, Journal of Materials Processing Technology.
“Optimized welding parameters for Al 6061 ultrasonic additive manufactured structures”, Journal of Materials Research.
“A review on Friction Stir Welding in Aluminium Alloys”, IOP Conference Series: Materials Science and Engineering.
“A Review of Various Improvement Strategies for Joint Quality of AA 6061-T6 Friction Stir Weldments”, Journal of Materials Research and Technology.
“A review of laser welding techniques for magnesium alloys”, Journal of Materials Processing Technology.
“Optimized welding parameters for Al 6061 ultrasonic additive manufactured structures”, Journal of Materials Research.
Online since: May 2011
Authors: Fang Yu, Fang Yan Chen, Cheng Chen, Yu Bin Tang
Experimental
Materials and Method
Materials.
Liu: Journal of Hazardous Materials Vol. 125, Issue 1-3(2005), p. 266 [5] C.
Mustafa: Journal of Hazardous Materials Vol. 152, Issue 1 (2008), p. 302 [14] Y.
Yunus: Journal of Hazardous Materials Vol.137, Issue 3 ( 2006), p. 1719 [18]Y.
Tosun: Journal of Hazardous Materials Vol.146, Issue 1-2 (2007), p. 362 [20] S.
Liu: Journal of Hazardous Materials Vol. 125, Issue 1-3(2005), p. 266 [5] C.
Mustafa: Journal of Hazardous Materials Vol. 152, Issue 1 (2008), p. 302 [14] Y.
Yunus: Journal of Hazardous Materials Vol.137, Issue 3 ( 2006), p. 1719 [18]Y.
Tosun: Journal of Hazardous Materials Vol.146, Issue 1-2 (2007), p. 362 [20] S.
Online since: April 2015
Authors: Norainiza Saud, Mohd Arif Anuar Mohd Salleh, Norhayanti Mohd Nasir, Mohd Izrul Izwan Ramli, Rita Mohd Said, Mohd Nazree Derman
Ltd, Japan for supporting the research effort through materials and finance with grant no. 9008-00003.
Shalaby: Materials Science and Engineering, Vol.550 (2012), p.112-117
Chen: Materials Science and Engineering, Vol.545 (2012), p.194– 200
Liu: Journal of Electronic Materials, Vol.37 (2008), p. 874-879
Shi: Journal of Electronic Material, Vol.34 (2005), p. 1357-1362
Shalaby: Materials Science and Engineering, Vol.550 (2012), p.112-117
Chen: Materials Science and Engineering, Vol.545 (2012), p.194– 200
Liu: Journal of Electronic Materials, Vol.37 (2008), p. 874-879
Shi: Journal of Electronic Material, Vol.34 (2005), p. 1357-1362