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Online since: March 2006
Authors: Woo Keun Lee, Seung Whee Rhee
Hence,
mixture of SFS and loess can be used as ceramic support materials with reductive or oxidative
capability.
Turbidity in furan sand and loess is sharply increased with the amount of materials but that in CO2 sand and green sand is slightly increased with the amount of materials as shown in.
Turbidity in furan sand and loess was sharply increased with the amount of materials but that in CO2 sand and green sand was slightly increased with the amount of materials. 5.
Eykholt, Journal of Hazardous Materials, B109, 2536, 2004 [2] Seung-Whee Rhee, Se Il Yang, Sam Yong Choi, Hyong Whee Yoon, A Study on Turbidity ans ORP of the Mixture of Foundry sand and Loess, Proceeding of the 2004 Spring Conference of the Korea Society of Waste Management, 111-114, 2004
Rossi, Edson RobertoLeite, Carlos Alberto Paskocimas, Jose Arana Varela, Elson Longo, Journal of Materials Processing Technology, 159, 125-134, 2005
Turbidity in furan sand and loess is sharply increased with the amount of materials but that in CO2 sand and green sand is slightly increased with the amount of materials as shown in
Turbidity in furan sand and loess was sharply increased with the amount of materials but that in CO2 sand and green sand was slightly increased with the amount of materials. 5.
Eykholt, Journal of Hazardous Materials, B109, 2536, 2004 [2] Seung-Whee Rhee, Se Il Yang, Sam Yong Choi, Hyong Whee Yoon, A Study on Turbidity ans ORP of the Mixture of Foundry sand and Loess, Proceeding of the 2004 Spring Conference of the Korea Society of Waste Management, 111-114, 2004
Rossi, Edson RobertoLeite, Carlos Alberto Paskocimas, Jose Arana Varela, Elson Longo, Journal of Materials Processing Technology, 159, 125-134, 2005
Online since: July 2022
Authors: António Andrade-Campos, Yi Zhang, Sam Coppieters
Mechanics of Materials [J], 2019, 129, pp.361-374
Computational Materials Science [J], 2014, 85, pp.102-120
International Journal of Mechanical Sciences [J], 2020, 173, pp.105422
International Journal of Mechanical Sciences [J], 2015, 101-102, pp.252-271
International Journal of Mechanical Sciences [J], 2021, p.106891
Computational Materials Science [J], 2014, 85, pp.102-120
International Journal of Mechanical Sciences [J], 2020, 173, pp.105422
International Journal of Mechanical Sciences [J], 2015, 101-102, pp.252-271
International Journal of Mechanical Sciences [J], 2021, p.106891
Online since: July 2014
Authors: Hai Bao Li, Hui Liu, En Ming Zhao
The common feature of these materials is expensive, and not easy to obtain it.
In other words, we use MMA instead of the expensive polymeric materials.
From MMA to PMMA by the way of bulk polymerization • MMA is one of the cheaper polymeric materials In comparison, MMA is one of the cheaper polymeric materials.
Journal of Materials Science: Materials in Medicine, 2005, 16(12): 1121-1124
Journal of display technology, 2009, 5(5): 147-151
In other words, we use MMA instead of the expensive polymeric materials.
From MMA to PMMA by the way of bulk polymerization • MMA is one of the cheaper polymeric materials In comparison, MMA is one of the cheaper polymeric materials.
Journal of Materials Science: Materials in Medicine, 2005, 16(12): 1121-1124
Journal of display technology, 2009, 5(5): 147-151
Online since: October 2015
Authors: Farzad Ferdowsian, Adel Ghorani Azam, Safoura Soleymani, Mahtab Mofidi, Hadi Zare-Zardini, Leila Ebrahimi, Masoud Zare-Shehneh, Hossein Soltaninejad, Roya Rafati
Nano-materials are recently used to bind specific ligands to cancer cells.
Journal of Materials Processing Technology, 2004. 149(1–3): p. 585-590
Materials Letters, 2012. 72(0): p. 153-156
Journal of Biomedical Materials Research Part A, 2014. 102(6): p. 1774-1781
Journal of Pharmaceutical and Health Sciences, 2013. 2(1): p. 51-56.
Journal of Materials Processing Technology, 2004. 149(1–3): p. 585-590
Materials Letters, 2012. 72(0): p. 153-156
Journal of Biomedical Materials Research Part A, 2014. 102(6): p. 1774-1781
Journal of Pharmaceutical and Health Sciences, 2013. 2(1): p. 51-56.
Online since: July 2012
Authors: Yao Lin Shi, Shan Qi Liu, Xu Yao Liu, Bo Jing Zhu, Hui Quan Tian, Yong Bing Li
Beijing: Science Press(1995)
Journal of Thermal Science and Technology(in Chinese), 1(1): 28-31(2002)
Beijing: Graduate University of Chinese Academy of Sciences
Polymer Engineering and Science, 16(9):615-625(2004)
International Journal of Refrigeration, 29 :958-967(2006).
Journal of Thermal Science and Technology(in Chinese), 1(1): 28-31(2002)
Beijing: Graduate University of Chinese Academy of Sciences
Polymer Engineering and Science, 16(9):615-625(2004)
International Journal of Refrigeration, 29 :958-967(2006).
Online since: December 2013
Authors: Dong Liang Li, Gang Cheng, Feng Rui Sun, Fei Song
A circulating fluidized-bed boiler was studied, 54 parameters were chosen, a data mining approach was applied to analyze relationship among them.
4 Issues about properties of energy materials
Coal is a most common fuel used in power plant.
The influence of energy material property on power plant operation was also concluded.
[9] Jianxin Zhou, Fengqi Si, Xiaozhi Qiu, et al: Journal of southeast university (Natural science edition) Forum Vol. 38 (2008), p. 1061-1066
[15] Xiaobo Zhang, Hong Zhao and Jianguo Yang: Journal of China Coal Society Forum Vol.36(2011), p.999-1003
[16] Xiumin Jiang, Jubin Li and Jianrong Qiu: Journal of China Coal Society ForumVol.24(1999), p.643-647
The influence of energy material property on power plant operation was also concluded.
[9] Jianxin Zhou, Fengqi Si, Xiaozhi Qiu, et al: Journal of southeast university (Natural science edition) Forum Vol. 38 (2008), p. 1061-1066
[15] Xiaobo Zhang, Hong Zhao and Jianguo Yang: Journal of China Coal Society Forum Vol.36(2011), p.999-1003
[16] Xiumin Jiang, Jubin Li and Jianrong Qiu: Journal of China Coal Society ForumVol.24(1999), p.643-647
Online since: November 2010
Authors: Xian Jun Lu, Hai Li Niu, Zi Qiao Jin, Shu Gang Hu
Experimental
Material.
Table 6 Compressive strength comparison of different cementing materials net paste Cementing material compressive strength (MPa) R1 R3 R7 SL 0.98 10.65 17.10 SGY 1.90 11.28 16.94 OPC 1.09 9.85 15.89 Table 7 Compressive strength comparison of mortar with SL, SLG and OPC Cementing material compressive strength (MPa) R1 R3 R7 SL 0.22 1.30 3.13 SLG 0.34 1.55 5.32 OPC 0.24 0.76 1.53 Compressive strength of paste with SL is higher than OPC except R1, and compressive strength of paste with SLG is all higher than OPC showed in table 6.
Acknowledgements This work was financially supported by National Natural Sciences Foundation of China (50974082) together with research project of “SUST Spring Bud” (2008AZZ076) of China.
References [1] He Zhexiang, Xie Kaiwei and Zhou Aimin: The Chinese Journal of Nonferrous Metals, 12(1998), p.739-744
[10]Wang Fusheng, Wang Xiaoli and Wang Guangming: Journal of University of Jinan (Science and Technology), 13(1) , (1999),p.6-8.
Table 6 Compressive strength comparison of different cementing materials net paste Cementing material compressive strength (MPa) R1 R3 R7 SL 0.98 10.65 17.10 SGY 1.90 11.28 16.94 OPC 1.09 9.85 15.89 Table 7 Compressive strength comparison of mortar with SL, SLG and OPC Cementing material compressive strength (MPa) R1 R3 R7 SL 0.22 1.30 3.13 SLG 0.34 1.55 5.32 OPC 0.24 0.76 1.53 Compressive strength of paste with SL is higher than OPC except R1, and compressive strength of paste with SLG is all higher than OPC showed in table 6.
Acknowledgements This work was financially supported by National Natural Sciences Foundation of China (50974082) together with research project of “SUST Spring Bud” (2008AZZ076) of China.
References [1] He Zhexiang, Xie Kaiwei and Zhou Aimin: The Chinese Journal of Nonferrous Metals, 12(1998), p.739-744
[10]Wang Fusheng, Wang Xiaoli and Wang Guangming: Journal of University of Jinan (Science and Technology), 13(1) , (1999),p.6-8.
Online since: February 2015
Authors: Bo Rong Wu, Yong Huan Ren, Dao Bin Mu, Xiong Xiong Hou, Lei Wang, Fei Fei Zhao
SEM images of (a) pristine and (b) AlF3+MgF2-coated NCM333 materials
Fig.3.
And after cycled 65 times there is a significantly difference between the two materials.
References [1] Cuixiao Cheng, Huiyang Yi,Fang Chen,Effect of Cr2O3 Coating on LiNi1/3Co1/3Mn1/3O2 as Cathode for Lithium-Ion Batteries,Journal of ELECTRONIC MATERIALS. 43 (2014) 3681-3687
Amine, Effect of fluorine on the electrochemical properties of layered Li(Ni0.5Mn0.5)O2 cathode materials, Journal of Power Sources. 146 (2005) 650-653
Sun, Improvement of structural and electrochemical properties of AlF3-coated Li[Ni1/3Co1/3Mn1/3]O2 cathode materials on high voltage region, Journal of Power Sources. 178 (2008) 826-831.
And after cycled 65 times there is a significantly difference between the two materials.
References [1] Cuixiao Cheng, Huiyang Yi,Fang Chen,Effect of Cr2O3 Coating on LiNi1/3Co1/3Mn1/3O2 as Cathode for Lithium-Ion Batteries,Journal of ELECTRONIC MATERIALS. 43 (2014) 3681-3687
Amine, Effect of fluorine on the electrochemical properties of layered Li(Ni0.5Mn0.5)O2 cathode materials, Journal of Power Sources. 146 (2005) 650-653
Sun, Improvement of structural and electrochemical properties of AlF3-coated Li[Ni1/3Co1/3Mn1/3]O2 cathode materials on high voltage region, Journal of Power Sources. 178 (2008) 826-831.
Online since: August 2018
Authors: Rattanaphol Mongkholrattanasit, Chi Wai Kan, Manat Pangsai, Clare Man Ching Ko, Somchai Udon, Siriorn Wanitchottayanont
During using of textile materials, such as intimate apparel, which is in close contact with skin, the water transport capability is very important to avoid any uncomfortable feeling to the users.
The water transport capability of fabric-foam-fabric plied materials were evaluated in this study.
The fabric-foam-fabric plied materials were prepared by plying polyurethane foams (non-laminated and laminated) with different fabrics.
Thus, the water transport capability of the plied materials is very important which would affect their end uses [1-5].
Textile Research Journal. 85 (2015) 838-849
The water transport capability of fabric-foam-fabric plied materials were evaluated in this study.
The fabric-foam-fabric plied materials were prepared by plying polyurethane foams (non-laminated and laminated) with different fabrics.
Thus, the water transport capability of the plied materials is very important which would affect their end uses [1-5].
Textile Research Journal. 85 (2015) 838-849
Online since: April 2016
Authors: Paweł Grzegorz Kossakowski
In many metallic materials, there is a decrease in the nominal stresses when the ultimate strength is exceeded.
Gurson, Continuum theory of ductile rupture by void nucleation and growth: Part I – Yield criteria and flow rules for porous ductile media, Journal of Engineering Materials and Technology, 99 (1977) 2–15
Journal of Materials Science, 43 (2008) 1897–1909
Journal of Mechanical Science and Technology, 26 (2012) 345–352
Dzioba, Properties of 13KhMF steel after operation and degradation under the laboratory conditions, Materials Science, 46 (2010) 357–364
Gurson, Continuum theory of ductile rupture by void nucleation and growth: Part I – Yield criteria and flow rules for porous ductile media, Journal of Engineering Materials and Technology, 99 (1977) 2–15
Journal of Materials Science, 43 (2008) 1897–1909
Journal of Mechanical Science and Technology, 26 (2012) 345–352
Dzioba, Properties of 13KhMF steel after operation and degradation under the laboratory conditions, Materials Science, 46 (2010) 357–364