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Online since: November 2010
Authors: Hong Wei Ji, Huai Wen Wang
The analytic results
indicate that the material density and the loading rate are the two major factors that influence the
stress-strain relationships of the molded pulp materials.
The stress-strain curves of the two materials of different density are shown in Figure 2(a).
However, the elastic modulus and ultimate strength of the two materials are different.
Kandachai: Composites Sci and technology Vol. 63 (2003), p. 1325 [5] K.C.Rusch: Journal of Applied Polymer Science Vol. 14 (1970), p. 1263 [6] D.M.
Meinecke: Journal of Applied Polymer Science Vol. 15 (1971), p. 2381 [7] J.A.
The stress-strain curves of the two materials of different density are shown in Figure 2(a).
However, the elastic modulus and ultimate strength of the two materials are different.
Kandachai: Composites Sci and technology Vol. 63 (2003), p. 1325 [5] K.C.Rusch: Journal of Applied Polymer Science Vol. 14 (1970), p. 1263 [6] D.M.
Meinecke: Journal of Applied Polymer Science Vol. 15 (1971), p. 2381 [7] J.A.
Online since: March 2016
Authors: Bei Gang Li, Shuang Yan Han, Rui Teng
Materials.
The composition of components has a very important influence on the adsorption performance of composite materials.
Compared with these adsorption materials, FA/CTS have a great advantage for the high-efficiency removal of AC B in the dye wastewater.
Journal of Environmental Sciences, 25 (2013) 393-398
Erdem, et al, Thermodynamics of Pb2+ and Ni2+ adsorption onto natural bentonite from aqueous solutions, Journal of Colloid and Interface Science, 286 (2005) 43-52
The composition of components has a very important influence on the adsorption performance of composite materials.
Compared with these adsorption materials, FA/CTS have a great advantage for the high-efficiency removal of AC B in the dye wastewater.
Journal of Environmental Sciences, 25 (2013) 393-398
Erdem, et al, Thermodynamics of Pb2+ and Ni2+ adsorption onto natural bentonite from aqueous solutions, Journal of Colloid and Interface Science, 286 (2005) 43-52
Online since: December 2011
Authors: Yusaku Fujii, Hironori Ebara, Tomohiko Azami, Akihiro Takita
Development of Material Tester using Pendulum
Hironori Ebara 1, a, Akihiro Takita 1,b , Tomohiko Azami 1,c and Yusaku Fujii 1,d
1 Department of Electronics, Graduate School of Engineering, Gunma University
1-5-1 Tenjin-cho, Kiryu 376-8515, Japan
a a06e018@ug.eng.gunma-u.ac.jp, b takita@ug.eng.gunma-u.ac.jp
c azami@rs.el.gunma-u.ac.jp,d fujii@el.gunma-u.ac.jp
Keywords: Pendulum, Material tester, Optical interferometer, Levitation mass method
Introduction
The requirements for evaluating the mechanical characteristics of materials have increased in the various industrial, research and the applications such as materials testing.
Therefore, the authors have proposed a method for measuring force acting a material using pendulum [1].
Conclusions Method for development of material tester using a pendulum is proposed.
Maru, "Instrument for Measuring the Body Mass of Astronauts under Microgravity Conditions", Microgravity Science and Technology Vol. 22, No. 1, 115-121, (2010) [4] Y.
Fujii, "Integrated wavelength-insensitive differential laser Doppler velocimeter using planar lightwave circuit", Journal of Lightwave Technology, Vol. 27, Issue 22, 5078-5083, (2009).
Therefore, the authors have proposed a method for measuring force acting a material using pendulum [1].
Conclusions Method for development of material tester using a pendulum is proposed.
Maru, "Instrument for Measuring the Body Mass of Astronauts under Microgravity Conditions", Microgravity Science and Technology Vol. 22, No. 1, 115-121, (2010) [4] Y.
Fujii, "Integrated wavelength-insensitive differential laser Doppler velocimeter using planar lightwave circuit", Journal of Lightwave Technology, Vol. 27, Issue 22, 5078-5083, (2009).
Online since: June 2014
Authors: Hui Cheng, Cheng Gang Xu
The Analysis for Low Carbon Materials on Planning and Development Determinants
Chenggang Xu1,a,Hui Cheng1,b
1College of Economics & Management, Three Gorges University, Yichang, Hubei, 443002, China
ammm98@126.com, bnnn98@sina.com
Keywords: Low carbon industry, Environmental friendly materials, High-carbon materials, Public choice.
Because OY1 is current the production on the environmental friendly materials.
So reduction yield Y1C1 on environmental friendly materials actually is that H's government transfers this part of resources to produce high-carbon materials .So Y1C1 can be understood as the current production or consumption on high -carbon materials.
But in the long run, as long as the time is long enough, the high-carbon materials can be replaced by environmental friendly materials.
Journal (Philosophy & Social Sciences) Vol.57.No.2 (2004), p.260, 262 [2] W.
Because OY1 is current the production on the environmental friendly materials.
So reduction yield Y1C1 on environmental friendly materials actually is that H's government transfers this part of resources to produce high-carbon materials .So Y1C1 can be understood as the current production or consumption on high -carbon materials.
But in the long run, as long as the time is long enough, the high-carbon materials can be replaced by environmental friendly materials.
Journal (Philosophy & Social Sciences) Vol.57.No.2 (2004), p.260, 262 [2] W.
Online since: June 2012
Authors: Zhen Bin Zhang, Rui Yang Chen, Miao Liu, Zhan Shi
Study on the defluorinated materials of High fluoride
Ruiyang Chen1, a, Zhan Shi2,b,Zhenbin Zhang3,cand Miao Liu*
1School of Environmental Science, Jilin University,Jilin,Changchun,130012,China
2School of Environmental Science, Jilin University,Jilin,Changchun,130012,China
3School of Environmental Science, Jilin University,Jilin,Changchun,130012,China
*School of Environmental Science, Jilin University,Jilin,Changchun,130012,China
achenry@126.com, bGemini068@126.com, c4139454@qq.com *liumiao@jlu.edu.cn
Keywords: environmental science; removal of fluorine; MgSO4; CaO powder
Abstract: In our country, high fluoride containing groundwater is general.
Science & Technology of Baotou Steel(group) Corporation, 2001,27(1):56~60 [4] Ying Zhang.
Journal of Colloid and Interface Science[J].2004,341~350 [9] Jumei LI and Jianguo LI.
Science & Technology of Baotou Steel(group) Corporation, 2001,27(1):56~60 [4] Ying Zhang.
Journal of Colloid and Interface Science[J].2004,341~350 [9] Jumei LI and Jianguo LI.
Online since: January 2022
Authors: Elise Elsacker, Lars de Laet, Aurélie Van Wylick, Li Li Yap, Eveline Peeters
In the search for environmentally friendly materials, mycelium composites have been labelled as high potential bio-based alternatives to fossil-based and synthetic materials in various fields.
Analysis of Thermal Insulation Building Materials Based on Natural Fibers.
Journal of Biobased Materials and Bioenergy J.
Growing and testing mycelium bricks as building insulation materials.
Journal of Materials in Civil Engineering 29, 04017030. https://doi.org/10.1061/(ASCE)MT.1943-5533.0001866
Analysis of Thermal Insulation Building Materials Based on Natural Fibers.
Journal of Biobased Materials and Bioenergy J.
Growing and testing mycelium bricks as building insulation materials.
Journal of Materials in Civil Engineering 29, 04017030. https://doi.org/10.1061/(ASCE)MT.1943-5533.0001866
Online since: July 2023
Authors: Kiran Kenchappa Kiran, Shashanka Rajendrachari, Amulya Giridasappa
Gowda, “Morphology, structural and photoluminescence properties of shaping triple semiconductor YxCoO:ZrO2 nanostructures,” Journal of Materials Science: Materials in Electronics, vol. 32, no. 9, pp. 12164–12181, 2021, doi: 10.1007/s10854-021-05845-2
Caglar, “Fabrication and characterization of green synthesized ZnO nanoparticle based dye-sensitized solar cells,” Journal of Science: Advanced Materials and Devices, vol. 5, no. 2, pp. 185–191, 2020
Gowda, “Morphology, structural and photoluminescence properties of shaping triple semiconductor YxCoO:ZrO2 nanostructures,” Journal of Materials Science: Materials in Electronics, vol. 32, pp. 12164–12181, May 2021, doi: 10.1007/s10854-021-05845-2
Sreedhar, “Green synthesis of silver nanoparticles using Coffea arabica seed extract and its antibacterial activity,” Materials Science and Engineering: C, vol. 58, pp. 36–43, Jan. 2016, doi: 10.1016/j.msec.2015.08.018
Danquah, “Review on nanoparticles and nanostructured materials: history, sources, toxicity and regulations,” Beilstein Journal of Nanotechnology, vol. 9, pp. 1050–1074, Apr. 2018, doi: 10.3762/bjnano.9.98
Caglar, “Fabrication and characterization of green synthesized ZnO nanoparticle based dye-sensitized solar cells,” Journal of Science: Advanced Materials and Devices, vol. 5, no. 2, pp. 185–191, 2020
Gowda, “Morphology, structural and photoluminescence properties of shaping triple semiconductor YxCoO:ZrO2 nanostructures,” Journal of Materials Science: Materials in Electronics, vol. 32, pp. 12164–12181, May 2021, doi: 10.1007/s10854-021-05845-2
Sreedhar, “Green synthesis of silver nanoparticles using Coffea arabica seed extract and its antibacterial activity,” Materials Science and Engineering: C, vol. 58, pp. 36–43, Jan. 2016, doi: 10.1016/j.msec.2015.08.018
Danquah, “Review on nanoparticles and nanostructured materials: history, sources, toxicity and regulations,” Beilstein Journal of Nanotechnology, vol. 9, pp. 1050–1074, Apr. 2018, doi: 10.3762/bjnano.9.98
Online since: July 2011
Authors: Li Na Hao, Jian Chao Gao, Hont Tao L.
Rediniotics: Smart Materials and Structures Vol. 9 (2000), pp. 673-83
Young: Journal of Bionic Engineering,Vol. 6 (2009), pp. 232-38
Jiang: Journal of Applied Physics, Vol. 87 (2000), pp. 3321-31
Kwang: Smart Materials and Structures, 2005, pp. 1363-68
Yucai: Journal of Functional Materials, 1979, pp. 18-23.
Young: Journal of Bionic Engineering,Vol. 6 (2009), pp. 232-38
Jiang: Journal of Applied Physics, Vol. 87 (2000), pp. 3321-31
Kwang: Smart Materials and Structures, 2005, pp. 1363-68
Yucai: Journal of Functional Materials, 1979, pp. 18-23.
Assessment of Theories of Failure for Multi-Directional Composites Laminates: A Fuzzy - AHP Approach
Online since: September 2015
Authors: Mohan Kumar Pradhan, Ashutosh Mishra
Introduction
Composite materials have been progressively used in various sectors such as aerospace and automotive applications over the last few decades.
The use of composite materials is extremely desirable attributable due to their outstanding strength to weight ratio, stiffness properties.
Composites Science and Tech. 62.12 (2002): 1725-1797
Composites Science and Technology 58.7 (1998): 1225-1254
Springer Science Business Media, LLC, 2006
The use of composite materials is extremely desirable attributable due to their outstanding strength to weight ratio, stiffness properties.
Composites Science and Tech. 62.12 (2002): 1725-1797
Composites Science and Technology 58.7 (1998): 1225-1254
Springer Science Business Media, LLC, 2006
Online since: October 2013
Authors: Nirdosha Gamage, Kasuni Liyanage, Sujeeva Setunge
Materials and Methodology
Brown coal fly ash was supplied by Loy Yang Power Company (LYP) which is located in La Trobe valley in Victoria, Australia.
These physical and chemical properties were considered when choosing materials for designing experiments of this investigation.
Balaguru, Properties of flowable high volume fly ash-cement composite, Journal of Materials in Civil Engineering, 2 (1993)
Ahmaruzzaman, A review on the utilization of fly ash, Journal of Progress in Energy and Combustion Science, Vol. 36 3 (2010) 327–363
Zollinger, Potential use of stockpiled circulating fluidized bed combustion ashes in manufacturing compressed earth bricks, Construction and Building Materials, 23 (2009) 2062–2071
These physical and chemical properties were considered when choosing materials for designing experiments of this investigation.
Balaguru, Properties of flowable high volume fly ash-cement composite, Journal of Materials in Civil Engineering, 2 (1993)
Ahmaruzzaman, A review on the utilization of fly ash, Journal of Progress in Energy and Combustion Science, Vol. 36 3 (2010) 327–363
Zollinger, Potential use of stockpiled circulating fluidized bed combustion ashes in manufacturing compressed earth bricks, Construction and Building Materials, 23 (2009) 2062–2071