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Online since: May 2015
Authors: Prinya Chindaprasirt, Kiatsuda Somna
Materials and method 2.1 Materials Fly ash (FA) was obtained from Mae Moh Power station, Lumpang province, Thailand.
References [1] American Society for Testing and Materials, ASTM C618-08a.
MacKenzie Geopolymer synthesis using silica fume and sodium aluminate Journal of Materials Science June 2007, Volume 42, Issue 11, pp 3990-3993 [4] De Silva, P., Sagoe-Crenstil, K. and Sirivivatnanon, V., 2007, “Kinetics of Geopolymerization: Role of Al2O3 and SiO2”, Cement and Concrete Research, Vol. 37, pp.512-518
[7] Hisham M Khater, Effect of silica fume on the characterization of the geopolymer materials, International Journal of Advanced Structural Engineering 2013, 5:12 [8] Loderio, I.G., Macphee, D.E., Palomo, A.
[14] Somna, K., Bumrongjaroen, W., Effect of external and internal Calcium in Fly Ash on Geopolymer Formation, Developments in Strategic Materials and Computational Design II: Ceramic Engineering and Science Proceedings, Vol. 32, 2011
Online since: December 2018
Authors: Mohd Zul Helmi Rozaini, Habibah Hamzah, Nor Fazliyana Mohtar, Nor Hayati Ibrahim, Razali Mohd Hasmizam
Extraction of Raw Materials.
Materials Science & Engineering C, vol. 32 (3) (2012), p. 478-486
European Journal of Lipid Science and Technology.
Journal of Minerals & Materials Characterization & Engineering, vol. 11(1) (2012), p. 55-67
Journal Young Pharmacists.
Online since: July 2012
Authors: Jing Sun, Hui Li, Hui Jun Yuan, Jie Li Liu, Ai Mei Yang
Plant material.
(Science press, China 1988, in Chinese)
Vol. 3, (2005), p. 144 [8] Xiaodong Jia, Xingzeng Zhao: Journal of Chinese Medicinal Materials [in Chinese].
Vol. 31, (2008), p. 988 [9] Linxia Zhu, Guogang Zhang: Chinese Journal of Medicinal Chemistry [in Chinese].
Vol. 18, (2008), p. 291 [10] Pu Liu, Hongquan Duan: China Journal of Chinese Materia Medica [in Chinese].
Online since: November 2011
Authors: Qi Meng, Gui Yong Wu, Ying Shao, Xiao Qiang Sun
Experimental Details Materials and apparatus.
Molecular graphics and publication materials were prepared using SHELXTL [17].
Windisch: Progress in Polymer Science, Vol. 25 (2000) No.7, p. 987
Karak: Materials Chemistry and Physics, Vol. 112 (2008) No.3, p.1114
Dehaen: Materials Science and Engineering C, Vol. 18 (2001) No.1-2, p.243
Online since: January 2022
Authors: Musabbikhah Musabbikhah, Sartono Putro, Samsul Bakhri
Materials dan Method 1.
Materials The materials in this study include shells, leaves, stems, and Jatropha seeds cake waste as well as adhesives. 2.
Nwandikom, An Evaluation of Briquettes from Sawdust and Corn Starch Binder, The International Journal of Science & Technoledge. 2 (2014) 149-157
Handra, Anwar, Gunawarman, and Santosa, Effect of heating temperature on quality of bio-briquette empty fruit bunch fiber, International Journal of Advances in Applied Sciences (IJAAS)Vol. 9 (2020) 192-200
Almedeij, Modeling Pan Evaporation for Kuwait using Multiple Linear Regression and Time-Series Techniques, American Journal of Applied Sciences. 13 (2016)739-747.
Online since: November 2010
Authors: Yu Qing Shi
Acknowledgements This work was supported by Science and Technology Planning Project of Zhejiang Province, P.R.
Li: Journal of Plasticity Engineering, (2009) No. 1, pp. 12-17 (in Chinese)
Han: Metals and Materials International, (2000) No. 2, pp. 121-129
Park: Metals and Materials International, (2001) No. 2, pp. 133-142
Li: Journal of Plasticity Engineering, (2006) No. 6, pp. 29-33 (in Chinese).
Online since: July 2011
Authors: Zhang Ming Li, Feng Wu
Where is the parameter corresponding to response of materials under mean pressure, is a coefficient related to the material’s shape change, and is on the change of inner structure, is the increment of stress difference.
(16) Where is materials coefficient related to the characteristic ratio.
Acknowledgments The work reported here was supported by the Guangdong Province Nature Science Fund (registered as No.06021462) of P.R.
M.: Theory of finite characteristic ratio and its physical background, Chinese Journal of Rock Mechanics and Engineering Vol.19 (2000), p. 326 [2] Li, Z.
Journal of Geotechnical Engineering Vol. 123(1997), p. 609 [4] Li, Z.
Online since: May 2011
Authors: Guang Lei Zhang, Xiu Shu Tian, Chen Jing Lv
Inorganic antibacterial materials have many advanced functions and features, including high stability, strong antibacterial function, high safety and heat-resistant property [1-3].
Of which, silver-doped inorganic antimicrobial materials can restrain bacteria and mildew well.
So it has become a hotspot in the field of inorganic antibacterial material research [4–6].
Journal of Inorganic Biochemistry.
Journal of Non-Crystalline Solids.
Online since: March 2011
Authors: Y. Cao, L.Z. Jiang, Y. Sun, T.M. Xie, Z.L. Sun, P.L. Sun
College of Food, Northeast Agricultural University, Harbin150030; 3.National Research Center of Soybean Engineering and Technology, Harbin150030; 4.Food Processing Research Center of Heilongjiang Academy of Agriculture Sciences,Harbin150086) Key Words: high humidity extrusion, high-emulation meat, soybean protein, twin screw extruder     Abstract: The high-emulation meat with 60% ~ 80% moisture content made use of high humidity extrusion technology was prepared with soybean protein isolate, defatted soybean meal and wheat gluten as main raw materials.
Material and Method Material and Equipment.
(2) Product condition of high moisture content fibrous imitate meat that made use of high humidity extrusion technology and prepared with soybean protein isolate, defatted soybean meal and wheat gluten as main raw materials could be determined referring to the structure and textured degree of various cattle and poultry.
Journal of Food Engineering, 2004, 62: 193-202
Journal of Food Sci., 2000, 65(2): 264~269.
Online since: August 2025
Authors: En Wei Qin, Wen Li Li, Shu Hui Wu, Cheng Wei Liu, Hong Zhi Zhou
Shen, The effect of hot isostatic pressing on thermal conductivity of additively manufactured pure tungsten, International Journal of Refractory Metals and Hard Materials 87 (2020) 105135
Lund, Traditional and additive manufacturing of a new Tungsten heavy alloy alternative, International Journal of Refractory Metals and Hard Materials 73(6) (2018) 22-28
Zeng, Influence of tungsten particle size on microstructure and mechanical properties of high strength and tough tungsten particle-reinforced nickel-based composites by laser-direct energy deposition, Journal of Materials Science & Technology 172 (2024) 213-27
Kruth, Selective laser melting of tungsten and tungsten alloys, International Journal of Refractory Metals and Hard Materials 72(4) (2018) 27-32
Leichtfried, Molybdenum and tungsten manufactured by selective laser melting: Analysis of defect structure and solidification mechanisms, International Journal of Refractory Metals and Hard Materials 84(10) (2019) 104999