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Online since: January 2020
Authors: Saeid Mohsenizadeh, Amran Alias, Zaini Ahmad
Ghani: International Journal of Mechanical Sciences 25(9-10) (1983) 687-696
Alias: International Journal of Materials Research 107(10) (2016) 916-924
Prawoto: Computational Materials Science 58 (2012) 140-153
Ahmad:Materials & Design 88 (2015) 258-268
Rad:Journal of Fundamental and Applied Sciences 10(3S) (2018) 446-456
Alias: International Journal of Materials Research 107(10) (2016) 916-924
Prawoto: Computational Materials Science 58 (2012) 140-153
Ahmad:Materials & Design 88 (2015) 258-268
Rad:Journal of Fundamental and Applied Sciences 10(3S) (2018) 446-456
Online since: July 2013
Authors: Monica Enescu, Cătălin Alexandru
The main purpose of the paper is to obtain materials with controlled properties by spray pyrolysis, using a simple algorithm.
Material deposition raster trajectory.
The specific parameters of the spray pyrolysis deposition have been varied in order to obtain materials with different morphologies, as it is presented in table 1.
Advanced Materials Research, Vol. 463-464 (2012), p. 1116-1119
Journal of Electroceramics, Vol. 14 (2005), p. 103-111
Material deposition raster trajectory.
The specific parameters of the spray pyrolysis deposition have been varied in order to obtain materials with different morphologies, as it is presented in table 1.
Advanced Materials Research, Vol. 463-464 (2012), p. 1116-1119
Journal of Electroceramics, Vol. 14 (2005), p. 103-111
Online since: January 2012
Authors: Okechukwu Anopuo, Petra Maier, Gerhard Tober
Lead as Test Rolling Material for Hot Complex Rolling of Steel
Gerhard Tobera, Okechukwu Anopuob and Petra Maierc
Fachhochschule Stralsund - University of Applied Sciences,
Zur Schwedenschanze 15, 18435 Stralsund, Germany
aGerhard.Tober@fh-stralsund.de, bOkechukwu.Anopuo@fh-stralsund.de,
cPetra.Maier@fh-stralsund.de
Keywords: Complex Rolling, Hot Forming, Lead, Pb 99.94 Cu.
Again, both materials have a face centred cubic crystal structure at forming temperature and also recrystallise during forming operations [1,2].
Baines: Lead as a model material to simulate mandrel rolling of hot steel tube, in: Journal of Materials Processing Technology, Vol. 118, 2001, p. 422 – 428 [2] J.H.
Blazynski: Lead as a model material in the investigation of shear-type metal flows, in: Journal of Mechanical Working Technology, Vol. 15, Issue 3, (December 1987), p. 309-317 [3] Anton Schneider Söhne GmbH & Co.
Certain Aspects of the Recrystallization of Lead and Dilute Lead Alloys, in: The Journal of the Institute of Metals, edited by N.B.
Again, both materials have a face centred cubic crystal structure at forming temperature and also recrystallise during forming operations [1,2].
Baines: Lead as a model material to simulate mandrel rolling of hot steel tube, in: Journal of Materials Processing Technology, Vol. 118, 2001, p. 422 – 428 [2] J.H.
Blazynski: Lead as a model material in the investigation of shear-type metal flows, in: Journal of Mechanical Working Technology, Vol. 15, Issue 3, (December 1987), p. 309-317 [3] Anton Schneider Söhne GmbH & Co.
Certain Aspects of the Recrystallization of Lead and Dilute Lead Alloys, in: The Journal of the Institute of Metals, edited by N.B.
Online since: January 2013
Authors: Hong Lei An, Ruo Yu Zhang, Xiao Liang Li, Za Kan, Ying Lan Jiang
Due to the difference of physical characteristics between unginned cotton materials and granular and powdery materials, the air-lock valves was used to separate film remnant from unginned cotton usually fail to work properly.
Journal of Agricultural Science YanBian University, 2011,33(1):54-55, In Chinese
Journal of Anhui Agri Sci, 2009, (22):10696-10697, In Chinese
Journal of Zhengzhou Grain College, 1995, (3):25-29, In Chinese
Journal of Zhengzhou Grain College, 1993, (02):55-58, In Chinese.
Journal of Agricultural Science YanBian University, 2011,33(1):54-55, In Chinese
Journal of Anhui Agri Sci, 2009, (22):10696-10697, In Chinese
Journal of Zhengzhou Grain College, 1995, (3):25-29, In Chinese
Journal of Zhengzhou Grain College, 1993, (02):55-58, In Chinese.
Online since: January 2017
Authors: Chun Yu Hua, Xian Jun Lyu, Hui Chao Chu, Yan Zhang, Hui Li
Experimental Program
Materials.
Different materials in this amount were adjusted based on the study and various situation foam-cement which has been performed.
Journal of Xuzhou Institute of Technology (Natural Sciences Edition), Vol. 26 (2011) No.2, p.1-6.
Journal of Wuhan University of Technology: Materials Science Edition, Vol. 22 (2007) No.2, p.295-298
Journal of Materials and Civil Engineering, Vol. 26 (2014), p.143-151
Different materials in this amount were adjusted based on the study and various situation foam-cement which has been performed.
Journal of Xuzhou Institute of Technology (Natural Sciences Edition), Vol. 26 (2011) No.2, p.1-6.
Journal of Wuhan University of Technology: Materials Science Edition, Vol. 22 (2007) No.2, p.295-298
Journal of Materials and Civil Engineering, Vol. 26 (2014), p.143-151
Online since: May 2012
Authors: Anish Roy, Vaibhav A. Phadnis, Farrukh Makhdum, Vadim V. Silberschmidt
Journal of Materials Processing Technology, 2003. 140(1-3): p. 335-339
Materials & Design, 2008. 29(9): p. 1768-1776
Journal of Materials Processing Technology, 1999. 92-93: p. 135-140
Computational Materials Science.
Journal of composite materials, 2000. 34(1): p. 69-87 [16] Abaqus 6.10 User Documentation manual, Dassault Systems, 2010
Materials & Design, 2008. 29(9): p. 1768-1776
Journal of Materials Processing Technology, 1999. 92-93: p. 135-140
Computational Materials Science.
Journal of composite materials, 2000. 34(1): p. 69-87 [16] Abaqus 6.10 User Documentation manual, Dassault Systems, 2010
Online since: December 2013
Authors: Ehsan Mohammadpour, Mokhtar Awang
Yao, Molecular mechanics of binding in carbon-nanotube–polymer composites, Journal of Materials Research, 15 (2000) 2770-2779
Hwang, The effect of van der Waals-based interface cohesive law on carbon nanotube-reinforced composite materials, Composites Science and Technology, 67 (2007) 2941-2946
Kalaitzidou, Tensile modulus of carbon nanotube/polypropylene composites – A computational study based on experimental characterization, Computational Materials Science, 50 (2011) 2347-2353
Rümmeli, Dispersion and diameter separation of multi-wall carbon nanotubes in aqueous solutions, Journal of Colloid and Interface Science, 345 (2010) 138-142
Liu, Square representative volume elements for evaluating the effective material properties of carbon nanotube-based composites, Computational Materials Science, 29 (2004) 1-11
Hwang, The effect of van der Waals-based interface cohesive law on carbon nanotube-reinforced composite materials, Composites Science and Technology, 67 (2007) 2941-2946
Kalaitzidou, Tensile modulus of carbon nanotube/polypropylene composites – A computational study based on experimental characterization, Computational Materials Science, 50 (2011) 2347-2353
Rümmeli, Dispersion and diameter separation of multi-wall carbon nanotubes in aqueous solutions, Journal of Colloid and Interface Science, 345 (2010) 138-142
Liu, Square representative volume elements for evaluating the effective material properties of carbon nanotube-based composites, Computational Materials Science, 29 (2004) 1-11
Online since: December 2014
Authors: Ján Slota, Miroslav Tomáš, Miroslav Jurčišin, Emil Spišák
These parameters are obtained using material parameter identification software.
Lee, Advanced Issues in Spraingback, International Journal of Plasticity. 45 (2013) 3-20
Uemori, A model of large-strain cyclic plasticity and its application to springback simulation, International Journal of Mechanical Sciences. 10 (2003) 1687 – 1702
Chung, Continuous, large strain, tension/compression testing of sheet material, International Journal of Plasticity. 21 (2005) 2319-2343
Jirathearanat, Springback prediction in sheet metal forming of high strength steels, Materials and Design. 50 (2013) 253 – 266
Lee, Advanced Issues in Spraingback, International Journal of Plasticity. 45 (2013) 3-20
Uemori, A model of large-strain cyclic plasticity and its application to springback simulation, International Journal of Mechanical Sciences. 10 (2003) 1687 – 1702
Chung, Continuous, large strain, tension/compression testing of sheet material, International Journal of Plasticity. 21 (2005) 2319-2343
Jirathearanat, Springback prediction in sheet metal forming of high strength steels, Materials and Design. 50 (2013) 253 – 266
Online since: March 2013
Authors: Hua Yong Zhang, Xiao Jian Liu, Tian Duo Li, Yong Mei Xia
China
alitianduo@163.com, bheadingzhy@126.com, cymxia@jiangnan.edu.cn, dlxj@spu.edu.cn
Keywords: XRD, slit width, diffraction pattern
Abstract: X-ray diffraction analysis is a convenient and important route to investigate crystalline materials.
It is the first method to investigate the microstructure of a material, has been applied in physics, chemistry, earth science, materials science and so on.
Yang, The development and application of X-ray diffraction, Journal of Shanxi Normal University (Natural Science Edition). 21 (2007) 72-76
Liang, Powder diffraction method of crystal structure, first ed., Science press, Beijing, 2003
Tang, Study on Experimental Conditions of Small-angle X-ray Diffraction on Mesoporous Materials, Journal of Instrumental Analysis, 28 (2009) 365-367
It is the first method to investigate the microstructure of a material, has been applied in physics, chemistry, earth science, materials science and so on.
Yang, The development and application of X-ray diffraction, Journal of Shanxi Normal University (Natural Science Edition). 21 (2007) 72-76
Liang, Powder diffraction method of crystal structure, first ed., Science press, Beijing, 2003
Tang, Study on Experimental Conditions of Small-angle X-ray Diffraction on Mesoporous Materials, Journal of Instrumental Analysis, 28 (2009) 365-367
Online since: May 2012
Authors: Marek Šolc, Štefan Markulik, Eva Grambalová
The wear mechanism of refractory materials depends mainly on the external factors.
Panda: Accompanying phenomena in the cutting zone machinability during turning of stainless steels, International Journal Machining and Machinability of Materials, Inderscience Publisher, Switzerland.
In: Advanced Materials Research, TTP, Zurich, Switzerland, 2011, vol. 340, ISSN 1022-6680, p.30-33
Olejár: Materials on dies for pressure die casting.
Advanced in Computer Science and Education Applications, vol.202, Part 2.
Panda: Accompanying phenomena in the cutting zone machinability during turning of stainless steels, International Journal Machining and Machinability of Materials, Inderscience Publisher, Switzerland.
In: Advanced Materials Research, TTP, Zurich, Switzerland, 2011, vol. 340, ISSN 1022-6680, p.30-33
Olejár: Materials on dies for pressure die casting.
Advanced in Computer Science and Education Applications, vol.202, Part 2.