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Online since: November 2006
Authors: Leszek Adam Dobrzański, Marek Piec, Krzysztof Labisz, Józef Lelątko, Andrzej Klimpel
Piec
1, A.J.Lelątko
2, Klimpel 3
1Division of Materials Processing Technology and Computer Techniques in Materials Science
Institute of Engineering Materials and Biomaterials, Silesian University of Technology
ul.
Konarskiego 18a, 44-100 Gliwice, Poland 2University of Silesia, Faculty of Computer and Materials Science 12 Bankowa Str.40-007 Katowice, Poland 3Division of Materials Processing Technology and Computer Techniques in Materials Science Welding Department, Silesian University of Technology, ul.
Dobrzański L.A.: Basics of material sciences and metal science Materiały inŜynierskie z podstawami projektowania materiałowego.
Dobrzański L.A., Mazurkiewicz J., Hajduczek E.: Journal of Mat.
Yang L.J.: Wear coefficient of tungsten carbide against hot-work tool steel disc with two different pin settings., Science Direct - 2004 [8].
Konarskiego 18a, 44-100 Gliwice, Poland 2University of Silesia, Faculty of Computer and Materials Science 12 Bankowa Str.40-007 Katowice, Poland 3Division of Materials Processing Technology and Computer Techniques in Materials Science Welding Department, Silesian University of Technology, ul.
Dobrzański L.A.: Basics of material sciences and metal science Materiały inŜynierskie z podstawami projektowania materiałowego.
Dobrzański L.A., Mazurkiewicz J., Hajduczek E.: Journal of Mat.
Yang L.J.: Wear coefficient of tungsten carbide against hot-work tool steel disc with two different pin settings., Science Direct - 2004 [8].
Online since: January 2010
Authors: Pai Shan Pa
The material of workpiece uses SKS93.
Maqableh: Journal of Materials Processing Technology Vol.102 (2000), p. 115
Ahujab: Indian Journal of Engineering & Materials Sciences Vol.11(2004)No. 5, p. 391
Hocheng: Materials Science Forum Vol.505-507 (2006), p.793
Pa: Key Engineering Materials Vols. 329 (2006), p.231
Maqableh: Journal of Materials Processing Technology Vol.102 (2000), p. 115
Ahujab: Indian Journal of Engineering & Materials Sciences Vol.11(2004)No. 5, p. 391
Hocheng: Materials Science Forum Vol.505-507 (2006), p.793
Pa: Key Engineering Materials Vols. 329 (2006), p.231
Online since: November 2016
Authors: Daiara Floriano-Silva, Nelson Heriberto Almeida Camargo, Maicon Douglas Possamai, Priscila Ferraz Franczak, Marli Baltazar Roesler Eckstein
Gemelli: Materials Research Vol. 10 [2] (2007), p. 135
Muller: Materials Research Bulletin Vol. 42 (2007), p. 1040
Borodajenko: Materials Science, Engineering and Technology.
Disponível em: http://www.intechopen.com/books/infrared-spectroscopy-materials-science-engineering-andtechnology/research-of-calcium-phosphates-using-fourier-transformation-infrared-spectroscopy
Destainville et al.: Materials Chemistry and Physics Vol. 80 (2003), p. 269
Muller: Materials Research Bulletin Vol. 42 (2007), p. 1040
Borodajenko: Materials Science, Engineering and Technology.
Disponível em: http://www.intechopen.com/books/infrared-spectroscopy-materials-science-engineering-andtechnology/research-of-calcium-phosphates-using-fourier-transformation-infrared-spectroscopy
Destainville et al.: Materials Chemistry and Physics Vol. 80 (2003), p. 269
Online since: June 2021
Authors: Yi Dan Zeng, Li Tong He, Jin Zhang
Solidification and Microstructure Simulation of A356 Aluminum Alloy Casting
Li Tong He1,a, Yi Dan Zeng1,b*, Jin Zhang1,c
1Inner Mongolia University of Technology, College of Materials Science and Engineering, Huhehaote,010051, China
atongtong_helen@163.com, bzyidan@sina.com, c1024364179@qq.com
Keywords: Solidification and Microstructure Simulation; A356 Aluminum Alloy; ProCAST software
Abstract.
Li, Tribological Characteristics of Submicron SiC(p)-GR(p)/Zn-35Al-1Mg Composites in Semisolidification Casting process, IOP Conference Series Materials Science and Engineering. 359(2018) 012049
Xiong, J.Q.Peng et al, Simulation and Experiment of Solidification Process for Directionally Solidified Industrial Gas Turbine Hollow Blades, Journal of Materials Engineering. 46(2018) 8-15
Metallurgy and Materials Transactions A. 30(1999) 3153-31604
[8] A.Pineau, G.Guillemot, G.Reinhart et al, Three-dimensional cellular automaton modeling of silicon crystallization with grains in twin relationships, Acta Materialia.191(2020)230-244 [9] T.Zeng, K.Shi, Shukur et al, Modeling of poly-crystalline silicon ingot crystallization during casting and theoretical suggestion for ingot quality improvement, Materials science in semiconductor processing. 53(2016) 36-46
Li, Tribological Characteristics of Submicron SiC(p)-GR(p)/Zn-35Al-1Mg Composites in Semisolidification Casting process, IOP Conference Series Materials Science and Engineering. 359(2018) 012049
Xiong, J.Q.Peng et al, Simulation and Experiment of Solidification Process for Directionally Solidified Industrial Gas Turbine Hollow Blades, Journal of Materials Engineering. 46(2018) 8-15
Metallurgy and Materials Transactions A. 30(1999) 3153-31604
[8] A.Pineau, G.Guillemot, G.Reinhart et al, Three-dimensional cellular automaton modeling of silicon crystallization with grains in twin relationships, Acta Materialia.191(2020)230-244 [9] T.Zeng, K.Shi, Shukur et al, Modeling of poly-crystalline silicon ingot crystallization during casting and theoretical suggestion for ingot quality improvement, Materials science in semiconductor processing. 53(2016) 36-46
Online since: December 2012
Authors: Giorgia Peri, Vincenzo La Rocca, Ferdinando Corriere
This includes rearrangement of product of similar molecular weights to give short chain aldehydes, acid compounds and high molecular weight materials [19].
Performance test of IC engine using karanja biodiesel blending with diesel, Journal of Engineering and Applied Sciences, Volume 2, Issue 5, Start page 32, 2007
Performance test of palm fatty acid biodiesel on compression ignition engine, Journal of Petroleum Technology and Alternative Fuels Vol. 1(1), pp. 1–9, 2010 [11] Oguntola J ALAMU, Opeoluwa DEHINBO, and Adedoyin M SULAIMAN, Production and testing of coconut oil biodiesel fuel and its blend, Leonardo Journal of Sciences (LJS), Issue 16 (January-June), 2010 (9), p. 95-104
Characterization of Biodiesel and Biodiesel Blends Using Comprehensive Two-Dimensional Gas Chromatography, Journal of Separation Science, Volume 31, Issue 14, Pages 2640-2649, 2008
Corriere, Handling under-dispersion in calibrating safety performance function at Urban, four-leg, signalized intersections, Journal of Transportation safety and security, 3 (3), (2011) 174-188.
Performance test of IC engine using karanja biodiesel blending with diesel, Journal of Engineering and Applied Sciences, Volume 2, Issue 5, Start page 32, 2007
Performance test of palm fatty acid biodiesel on compression ignition engine, Journal of Petroleum Technology and Alternative Fuels Vol. 1(1), pp. 1–9, 2010 [11] Oguntola J ALAMU, Opeoluwa DEHINBO, and Adedoyin M SULAIMAN, Production and testing of coconut oil biodiesel fuel and its blend, Leonardo Journal of Sciences (LJS), Issue 16 (January-June), 2010 (9), p. 95-104
Characterization of Biodiesel and Biodiesel Blends Using Comprehensive Two-Dimensional Gas Chromatography, Journal of Separation Science, Volume 31, Issue 14, Pages 2640-2649, 2008
Corriere, Handling under-dispersion in calibrating safety performance function at Urban, four-leg, signalized intersections, Journal of Transportation safety and security, 3 (3), (2011) 174-188.
Online since: February 2011
Authors: Wen Zhong Zhao, Bing Zhi Chen, Zhi Dong Lv, Su Ming Xie
Journal of China Agricultural University in china. 10(1): 81-85(2005)
Energy absorption of structures and materials.
Journal of Changsha Communications University in china, 15(2): 17-21(1999)
International Journal of Impact Engineering. 32: 759-777(2006)
China Railway Science in china. 22(2):55-60(2001).
Energy absorption of structures and materials.
Journal of Changsha Communications University in china, 15(2): 17-21(1999)
International Journal of Impact Engineering. 32: 759-777(2006)
China Railway Science in china. 22(2):55-60(2001).
Online since: May 2012
Authors: Xiao Long Lv, Shi Chun Yang
Scanned by FT-IR, the main ingredients in the neutralizer indicate the existence of amino acid kind materials.
Through glutaminic acid bacterium, used starch whom first raw materials fermented.
Journal of biology. 2001, (5), 35-36 [7] WuYongLie [J].
J membrane science and technology, 2003 (5): 67-69 [8]Lawson K W ,LIoyd D R .
[J].Journal of Membrane science ,1997,124:1-25
Through glutaminic acid bacterium, used starch whom first raw materials fermented.
Journal of biology. 2001, (5), 35-36 [7] WuYongLie [J].
J membrane science and technology, 2003 (5): 67-69 [8]Lawson K W ,LIoyd D R .
[J].Journal of Membrane science ,1997,124:1-25
Online since: October 2017
Authors: Azizah Hanom Ahmad, Rosnah Zakaria, MOHD HAMIZAN SELAMAT
International journal of hydrogen energy 39: 2929 -2935
[2] Asim, N.; Sopian, K.; Ahmadi, S.; Saeedfar, K.; Alghoul, M.A.; Saadatian, O.; and Zaidi, A.; 2012: A review on the role of material science in solar cells.
Materials Science and Engineering B 176 :1142–1160 [6] Maçaira, J.; Andrade, L. and Mendes, A.; 2013: Review on nanostructured photoelectrodes for next generation dye-sensitized solar cells.
Materials Science and Engineering B 162 : 32–39 [11] Thavasi, V.,; Renugopalakrishnan, V.; Jose, R. and Ramakrishna, S.; 2012.
Materials Science and Engineering R 63 : 81–99 [12] Wang, Y.; Wei, W.; Liu,X.; Gu,Y.; 2012: Research progress on polymer heterojunction solar cells.
Solar Energy Materials & Solar Cells 98 :129–145 [13] Xia, J. and Yanagida, S.; 2013.
Materials Science and Engineering B 176 :1142–1160 [6] Maçaira, J.; Andrade, L. and Mendes, A.; 2013: Review on nanostructured photoelectrodes for next generation dye-sensitized solar cells.
Materials Science and Engineering B 162 : 32–39 [11] Thavasi, V.,; Renugopalakrishnan, V.; Jose, R. and Ramakrishna, S.; 2012.
Materials Science and Engineering R 63 : 81–99 [12] Wang, Y.; Wei, W.; Liu,X.; Gu,Y.; 2012: Research progress on polymer heterojunction solar cells.
Solar Energy Materials & Solar Cells 98 :129–145 [13] Xia, J. and Yanagida, S.; 2013.
Online since: September 2013
Authors: Pilar Carbonell-Blasco, Jose Miguel Martin-Martinez, Iulian Antoniac
Journal of Applied Polymer Science 84 (2002) 2474–2480
Journal of Applied Polymer Science 84(3) (2002) 598-604
Journal of Adhesion Science and Technology 14 (2000) 1557-1573
Journal of Adhesion Science and Technology 16(11) (2002) 1431-1448
Journal of Applied Polymer Science 82 (2001) 3402-3408.
Journal of Applied Polymer Science 84(3) (2002) 598-604
Journal of Adhesion Science and Technology 14 (2000) 1557-1573
Journal of Adhesion Science and Technology 16(11) (2002) 1431-1448
Journal of Applied Polymer Science 82 (2001) 3402-3408.
Online since: June 2013
Authors: Lin Gao, Hong Juan Dong
Finite Element Analysis for Pendulum Rod Support Based on ANSYS
Lin Gao1, a, Hongjuan Dong2,b
1School of Mechanical Engineering, Inner Mongolia University of Science & Technology, China
2School of Mining Engineering, Inner Mongolia University of Science & Technology, China
adongao521922@163.com, bdonghongjuan1983@163.com
Keywords: ANSYS; Support; Finite Element; Modal
Abstract.The force status of pendulum rod support in cooling bed carrying plate device is analyzed.
The analysis results dedicate that the support has bigger comparatively safety coefficient and have some material waste.
Steel plate material is all Q235A.
Corresponding material peculiarity parameters list as follows.
Journal of Mechanical Transmission, 2011,(8):81-84(In Chinese)
The analysis results dedicate that the support has bigger comparatively safety coefficient and have some material waste.
Steel plate material is all Q235A.
Corresponding material peculiarity parameters list as follows.
Journal of Mechanical Transmission, 2011,(8):81-84(In Chinese)