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Online since: March 2019
Authors: Guo Dong Zhang, Bao Yin Zhu, Xian Xi Xia, Jin Hua Shi
Strength of Materials, 2004, V 36(1): 47-58
International Journal of Pressure Vessels and Piping, 2005, 82(7): 546-552
Jiangxi Science, 2005, 23(1): 9-13
Paton Welding Journal, 2006(2): 6-10
Thermal power metal materials handbook.
International Journal of Pressure Vessels and Piping, 2005, 82(7): 546-552
Jiangxi Science, 2005, 23(1): 9-13
Paton Welding Journal, 2006(2): 6-10
Thermal power metal materials handbook.
Online since: April 2022
Authors: Ahmad Abdurrazzaq, Haruna Musa, Umar Sani
Material, Sample and Methods
The materials used in carrying out the research is CAC of BVT fruit shells and the sample for the research was Surface water.
Material and Sample Collection.
Galadima, “Arsenic Contamination of Domestic Water from Northern Nigeria,” International Journal of Science and Technology, vol. 2, no. 1, 2012, [Online].
Garg, “A comprehensive review on removal of arsenic using activated carbon prepared from easily available waste materials,” Environmental Science and Pollution Research, vol. 24, no. 15, pp. 13295–13306, May 2017, doi: 10.1007/s11356-017-8842-7
Chen, “Removal of As(III) and As(V) from aqueous solutions using nanoscale zero valent iron-reduced graphite oxide modified composites,” Journal of Hazardous Materials, vol. 268, pp. 124–131, Mar. 2014, doi: 10.1016/j.jhazmat.2014.01.009.
Material and Sample Collection.
Galadima, “Arsenic Contamination of Domestic Water from Northern Nigeria,” International Journal of Science and Technology, vol. 2, no. 1, 2012, [Online].
Garg, “A comprehensive review on removal of arsenic using activated carbon prepared from easily available waste materials,” Environmental Science and Pollution Research, vol. 24, no. 15, pp. 13295–13306, May 2017, doi: 10.1007/s11356-017-8842-7
Chen, “Removal of As(III) and As(V) from aqueous solutions using nanoscale zero valent iron-reduced graphite oxide modified composites,” Journal of Hazardous Materials, vol. 268, pp. 124–131, Mar. 2014, doi: 10.1016/j.jhazmat.2014.01.009.
Online since: September 2016
Authors: Pavel Hutař, Luboš Náhlík, Kateřina Štegnerová, Zdeněk Majer, Martin Pletz, Raul Bermejo
Introduction
Nowadays, the composite materials can be found in almost all engineering applications.
A considerable part consists of materials based on ceramics.
Nahlik, Mechanics of Composites Materials Vol. 49 (2013), p. 475
Woodhams: Journal of Applied Polymer Science Vol. 18 (1974), p. 1639
Knesl, Key Engineering Materials Vol. 592-593 (2014), p. 445
A considerable part consists of materials based on ceramics.
Nahlik, Mechanics of Composites Materials Vol. 49 (2013), p. 475
Woodhams: Journal of Applied Polymer Science Vol. 18 (1974), p. 1639
Knesl, Key Engineering Materials Vol. 592-593 (2014), p. 445
Online since: September 2011
Authors: Xiao Gang Zhao, Yi Zhou, Shi Xiang Pan
According to application of thermal insulation materials in the practical construction of electrical heat tracing in viscous oil pipeline, impact factors of rigid polyurethane foam widely used as new insulation material are systemically analyzed by Grey Relational Analysis (GRA) in the theory of Grey System to find out priorities among those factors.
So it is an urgent problem for us to explore good insulation materials in construction of oil pipelines.
Although the one-time investment is higher than ordinary materials (such as rock wool, vermiculite, slag asbestos, etc.), comprehensively considering the energy-saving, lifespan, compression, anti-aging, anticorrosion, heat resistant, water soaked and waterproof, it looks more economical than others.
[3] Liu Si-feng, Dang Yao-guo, Fang Zhi-geng, et al: The theory of grey system and its application (Science Press, China 2010), p. 62 (In Chinese)
[6] Guan Xiao-ke, Wu Ke-ning, Wang Xiu, et al: Journal of Safety and Environment, Vol. 8 (2008), p. 105 (In Chinese)
So it is an urgent problem for us to explore good insulation materials in construction of oil pipelines.
Although the one-time investment is higher than ordinary materials (such as rock wool, vermiculite, slag asbestos, etc.), comprehensively considering the energy-saving, lifespan, compression, anti-aging, anticorrosion, heat resistant, water soaked and waterproof, it looks more economical than others.
[3] Liu Si-feng, Dang Yao-guo, Fang Zhi-geng, et al: The theory of grey system and its application (Science Press, China 2010), p. 62 (In Chinese)
[6] Guan Xiao-ke, Wu Ke-ning, Wang Xiu, et al: Journal of Safety and Environment, Vol. 8 (2008), p. 105 (In Chinese)
Online since: January 2017
Authors: Zainuddin Zainuddin, Siti Aslamyah, Haryati Haryati
Laboratory research was done for testing the chemical substance of the materials which consists of glucose, fructose and starch testing.
The research shows that cassava flour has the highest fructose content than other materials.
[3] Aslamyah, Environmental quality and Digestive Enzyme Activity of vannamei (Litopenaeus vannamei) at different concentrations of Probiotic Bacillus Sp., Bioremediation-Fish Scientice, Journal of Fisheries Sciences and Marine. 1(2) (2011) 161-174
Handbook of Cereal Science and Technology.
The Israeli Journal of Aquaculture – Bamidgeh 55 (1) (2003) 69-76
The research shows that cassava flour has the highest fructose content than other materials.
[3] Aslamyah, Environmental quality and Digestive Enzyme Activity of vannamei (Litopenaeus vannamei) at different concentrations of Probiotic Bacillus Sp., Bioremediation-Fish Scientice, Journal of Fisheries Sciences and Marine. 1(2) (2011) 161-174
Handbook of Cereal Science and Technology.
The Israeli Journal of Aquaculture – Bamidgeh 55 (1) (2003) 69-76
Online since: January 2014
Authors: Li Juan Li, Zhi Qi Liu, Nian Yi Wang, Li Xia Zhu
Experimental
Materials.
[4] Ahmet Akin Sener, Enver Demirhan: Materials and Design Vol. 29 (2008), p. 1376-1379
[5] Xiaolang Chen, Jie Yu and Shaoyun Guo: Journal of Applied Polymer Science Vol. 102(2006), p. 4943-4951
[9] Dongsheng Zhang, Zhiqi Liu, Lijuan Li: Advanced Materials Research Vol. 602-604 (2012), p. 1693-1699
[12] Yuan Yuan, Xiaodong Chu and Gaoxiang Du: Journal of Functional Materials Vol. 7 (2010), p. 1186-1189
[4] Ahmet Akin Sener, Enver Demirhan: Materials and Design Vol. 29 (2008), p. 1376-1379
[5] Xiaolang Chen, Jie Yu and Shaoyun Guo: Journal of Applied Polymer Science Vol. 102(2006), p. 4943-4951
[9] Dongsheng Zhang, Zhiqi Liu, Lijuan Li: Advanced Materials Research Vol. 602-604 (2012), p. 1693-1699
[12] Yuan Yuan, Xiaodong Chu and Gaoxiang Du: Journal of Functional Materials Vol. 7 (2010), p. 1186-1189
Online since: October 2018
Authors: Yvonna Jirásková, Mojmír Šob, Vilma Buršíková, Naděžda Pizúrová, David Holec, Vojtěch Homola, Ivana Miháliková, Martin Friák, Nikola Koutná, Anton Slávik
Study of Local Mechanical Properties of Fe78Al22 Alloy
Vilma Buršíková1,a*, Vojtěch Homola1, Yvonna Jirásková2,
Naděžda Pizúrová2, Ivana Miháliková2, Martin Friák2, Nikola Koutná2,
Anton Slávik2, David Holec3, Mojmír Šob 4,2,5
1Department of Physical Electronics, Faculty of Science, Masaryk University, Kotlářská 2,
CZ-61137 Brno, Czech Republic
2Institute of Physics of Materials, Czech Academy of Sciences, Žižkova 22, CZ-61662 Brno,
Czech Republic
3Department of Physical Metallurgy and Materials Testing, Montanuniversität Leoben, Franz-Josef-Strasse 18, A-8700 Leoben, Austria
4Central European Institute of Technology, CEITEC MU, Masaryk University, Kamenice 5,
62500 Brno, Czech Republic
5Department of Chemistry, Faculty of Science, Masaryk University, Kotlářská 2,
61137 Brno, Czech Republic
avilmab@physics.muni.cz,
Keywords: nanoindentation, Fe78Al22, hardness, elastic modulus, mechanical property mapping, quantum-mechanical calculation, electron
However, the industrial use of these materials depends substantially on understanding of the influence of alloy composition and microstructure on their mechanical properties.
Fe-Al materials for structural applications at high temperatures: Current research at mpie.
Nusair, Canadian Journal of Physics, 58 (1980) 1200
Neugebauer, Materials, 5 (2012)1853
However, the industrial use of these materials depends substantially on understanding of the influence of alloy composition and microstructure on their mechanical properties.
Fe-Al materials for structural applications at high temperatures: Current research at mpie.
Nusair, Canadian Journal of Physics, 58 (1980) 1200
Neugebauer, Materials, 5 (2012)1853
Online since: March 2005
Authors: A. Fernández, J.A. Reglero, Miguel A. Rodríguez-Pérez, D. Lehmhus, M. Windmann, Jose A. de Saja
E., Log, T., Fire and Materials, 19 (43), 1995
Solid State & Materials Science 3:288-303. 1998
Progress in Materials Science 46, pp 559-632. 2001
Journal of Materials Processing Technology 131, pp 202-206. 2003.
Journal of Materials Science, 29, pp 486-498.1994
Solid State & Materials Science 3:288-303. 1998
Progress in Materials Science 46, pp 559-632. 2001
Journal of Materials Processing Technology 131, pp 202-206. 2003.
Journal of Materials Science, 29, pp 486-498.1994
Online since: October 2013
Authors: Zheng Dong He, Jian Shi, Ge Yan Fu
Experimental procedure
Materials
304stainless steel was selected in this study, which always be used in the fields of chemical pump and valves and the high-strength parts.
Enhancement In order to improve the impact resistance of 304stainless steel, combining with depth and strain curve, the exponential gradient coating was chosen to add on the surface of raw materials.
Materials Stellite6 cobalt-base alloy powder contains W and Mo, which can improve wear resistance, corrosion resistance and impact resistance significantly.
Journal of Harbin Engineering University. 29(2008) 1190-1191
JOURNAL OF ZHONGYUAN UNIVERSITY OF TECHNOLOGY. 23(2012) 30-31
Enhancement In order to improve the impact resistance of 304stainless steel, combining with depth and strain curve, the exponential gradient coating was chosen to add on the surface of raw materials.
Materials Stellite6 cobalt-base alloy powder contains W and Mo, which can improve wear resistance, corrosion resistance and impact resistance significantly.
Journal of Harbin Engineering University. 29(2008) 1190-1191
JOURNAL OF ZHONGYUAN UNIVERSITY OF TECHNOLOGY. 23(2012) 30-31
Online since: October 2006
Authors: Chris D.W. Wilkinson, Nikolaj Gadegaard, Matthew J. Dalby, Elena Martines, Kris Seunarine, Mathis O. Riehle, Adam S.G. Curtis
Chen: Chemistry of Materials Vol. 15 (2003), p. 2917
[9] F.
Richards: Journal of Biomedical Materials Research Part A Vol. 75A (2005), p. 541 [15] S.
Nealey: Journal of Vacuum Science & Technology B Vol. 21 (2003), p. 683 [25] P.
Wilkinson: Journal of Cell Science Vol. 99 (1991), p. 73 [26] S.
Affrossman: Advanced Materials Vol. 16 (2004), p. 1857 [37] N.
Richards: Journal of Biomedical Materials Research Part A Vol. 75A (2005), p. 541 [15] S.
Nealey: Journal of Vacuum Science & Technology B Vol. 21 (2003), p. 683 [25] P.
Wilkinson: Journal of Cell Science Vol. 99 (1991), p. 73 [26] S.
Affrossman: Advanced Materials Vol. 16 (2004), p. 1857 [37] N.