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Online since: September 2013
Authors: Yong Zheng Zhou, Han Jun Wu, Qìng Yu
Introduction
Ordinary household ceramics commonly use the quartz, feldspar and clay as the basic composition of the raw materials.
It is characterized by rich source of raw materials and excellent processing processing properties, good chemical and physical properties of products, low prices of raw material.
Testing process The raw materials in the test are selected from the commonly raw materials used in ordinary daily-use ceramics, the chemical composition of various raw materials are shown in table 1.
Funded projects Natural Science Foundation of Jiangxi Province (20122BAB201016),Jingdezhen city science and technology program ( industrial support )( 2012JGY-1-11).
Ceramic Studies Journal.1991(03) [5] Zheng Meiyun.
It is characterized by rich source of raw materials and excellent processing processing properties, good chemical and physical properties of products, low prices of raw material.
Testing process The raw materials in the test are selected from the commonly raw materials used in ordinary daily-use ceramics, the chemical composition of various raw materials are shown in table 1.
Funded projects Natural Science Foundation of Jiangxi Province (20122BAB201016),Jingdezhen city science and technology program ( industrial support )( 2012JGY-1-11).
Ceramic Studies Journal.1991(03) [5] Zheng Meiyun.
Online since: November 2022
Authors: Toshio Haga
[6] T.Haga, K.Takahashi, H.Watari, Semisolid strip casting using a vertical type twin roll caste, Materials Science Forum, 426(2003)477-482
[7] T.Haga, Casting of Clad Strip Consisting of Al-Sn Alloy and Pure Aluminum, Materials Science Forum Volume 1007(2020)23-28
[8] T.Haga, S.Suzuki, Casting of aluminum alloy ingot for thixoforming using a cooling slope, Journal of Materials Processing and Technology, 118(2001)169-172
Kapranos, Billetless simple thixoforming process, Journal of Materials Processing and Technology, 130(2002)581-586
Kapranos, Thixoforming of laminate made from semisolid cast strips, Journal of Materials Processing and Technology, 157(2004)508-512.
[7] T.Haga, Casting of Clad Strip Consisting of Al-Sn Alloy and Pure Aluminum, Materials Science Forum Volume 1007(2020)23-28
[8] T.Haga, S.Suzuki, Casting of aluminum alloy ingot for thixoforming using a cooling slope, Journal of Materials Processing and Technology, 118(2001)169-172
Kapranos, Billetless simple thixoforming process, Journal of Materials Processing and Technology, 130(2002)581-586
Kapranos, Thixoforming of laminate made from semisolid cast strips, Journal of Materials Processing and Technology, 157(2004)508-512.
Online since: January 2013
Authors: Yang Zhang, Zhen He, Tian Yu Chen, Min Zhang
The factors which affect product capacity include equipment capacity, material/information flow, equipment layout, wastes in the process, and manpower.
Che: Journal of Tianjin University (Social Sciences) Vol. 7 (2005), p. 321, In Chinese [2] S.L.
Gao: Journal of Xidian University (Social Science Edition), Vol. 16 (2006), p. 13, In Chinese [4] Z.
Zhang: Science of Science and Management of S. & T., Vol. 2 (2008), p. 82, In Chinese [5] H.de Koning, J.P.S.
Does: Journal of Healthcare Quality, Vol. 28 (2006), p. 4 [6] J. van den Heuvel, R.J.M.M.
Che: Journal of Tianjin University (Social Sciences) Vol. 7 (2005), p. 321, In Chinese [2] S.L.
Gao: Journal of Xidian University (Social Science Edition), Vol. 16 (2006), p. 13, In Chinese [4] Z.
Zhang: Science of Science and Management of S. & T., Vol. 2 (2008), p. 82, In Chinese [5] H.de Koning, J.P.S.
Does: Journal of Healthcare Quality, Vol. 28 (2006), p. 4 [6] J. van den Heuvel, R.J.M.M.
Online since: September 2014
Authors: Pei Wei Bao, Li Jun Guo, Shu Ming Xing
Advanced Materials Research. 535-537:2606-2609 (2012)
Applied Mechanics and Materials. (2012) 148-149 603-607
Journal of Wuhan University of Technology-Materials Science Edition. 23 (2008) 54-59
JOURNAL OF XI AN JIAOTONG UNIVERSITY. 37 (2003) 971-974
Journal of Materials Science and Technology. 23 (2007) 801-805
Applied Mechanics and Materials. (2012) 148-149 603-607
Journal of Wuhan University of Technology-Materials Science Edition. 23 (2008) 54-59
JOURNAL OF XI AN JIAOTONG UNIVERSITY. 37 (2003) 971-974
Journal of Materials Science and Technology. 23 (2007) 801-805
Online since: February 2023
Authors: Isam M. Ibrahim, Manal Midhat Abdullah, Zaydoon M. Noori, Hussam Muhsin Hwail
Methodology
Silicon wafer is used as a substrate material.
H., Lever, P., WoWongeung, J. and Jagadish, Production and Processing of Semiconductor Nanocrystals and Nanostructures for Photonic Applications, Institute of Materials Engineering, 26 (2002) 74-80
Mohammed et.al., Silicon Nanocrystals on the Surface of Standard Si Wafers: A Micro-Raman Investigation, Journal of Materials Science and Chemical Engineering, vol.6 no. 7, juJuly2018) 104-116
Journal of Applied Physics, 91 9, (2002)
S38-S49 [15] Veikko Lindroos, Markku Tilli, Ari Lehto, Teruaki Motooka, Handbook of Silicon-Based MEMS Materials and Technologies, Elsevier, William Andrew (2010) 375–407
H., Lever, P., WoWongeung, J. and Jagadish, Production and Processing of Semiconductor Nanocrystals and Nanostructures for Photonic Applications, Institute of Materials Engineering, 26 (2002) 74-80
Mohammed et.al., Silicon Nanocrystals on the Surface of Standard Si Wafers: A Micro-Raman Investigation, Journal of Materials Science and Chemical Engineering, vol.6 no. 7, juJuly2018) 104-116
Journal of Applied Physics, 91 9, (2002)
S38-S49 [15] Veikko Lindroos, Markku Tilli, Ari Lehto, Teruaki Motooka, Handbook of Silicon-Based MEMS Materials and Technologies, Elsevier, William Andrew (2010) 375–407
Online since: July 2014
Authors: Yi Nan Lai, Chong Xun Wang, Wen Juan Zheng, Hui Ping Zhang
Experimental equipment and related materials
This experiment machine uses the model for vertical lifting platform milling machine XW5032, handle is the Sandvik model for the R290-080Q27-12H handle, blade type is R290-12T308M-PM.
The experimental materials are the heated treatment bar of the 300M ultra high strength steel, milling cutter and workpiece size are shown in Fig.1.
The Development of Structural Materials of Advanced Aircraft..Journal of Materials Engineering, (1995), 1: 4-8, 11
Journal of Shandong University. (2006), 36(1):1-5
Journal of Shandong University of Science and Technology, (2002), 24(3):9-13
The experimental materials are the heated treatment bar of the 300M ultra high strength steel, milling cutter and workpiece size are shown in Fig.1.
The Development of Structural Materials of Advanced Aircraft..Journal of Materials Engineering, (1995), 1: 4-8, 11
Journal of Shandong University. (2006), 36(1):1-5
Journal of Shandong University of Science and Technology, (2002), 24(3):9-13
Online since: March 2017
Authors: Ludmila Kučerová, Zbyněk Bunda, Jan Procházka
Many works have focused on the studies of initiation and continuous propagation of microcracks in materials.
Guo, et al., Materials Science and Engineering A580 (2013) 159-168
Sidhom, et al., Journal of Materials Engineering and Performance 24 (2015) 2586-2596
Tu, Materials Science and Engineering A 618 (2014) 86-95
Jirková et al., The Materials Today: Proceedings 2S3F (2015) 627-630
Guo, et al., Materials Science and Engineering A580 (2013) 159-168
Sidhom, et al., Journal of Materials Engineering and Performance 24 (2015) 2586-2596
Tu, Materials Science and Engineering A 618 (2014) 86-95
Jirková et al., The Materials Today: Proceedings 2S3F (2015) 627-630
Online since: September 2015
Authors: Mariusz Kłonica
Bonding technology constantly develops due to advances in the field of chemistry of adhesive materials.
Such is the relevance of adhesives and ‘adhesive’ materials in modern economy.
The SFE value was determined in order to verify whether the materials have been properly prepared for bonding.
Satoh, Comparative analysis of energetic properties of Ti6Al4V titanium and EN-AW-2017A(PA6) aluminum alloy surface layers for an adhesive bonding application, Ozone: Science & Engineering: The Journal of the International Ozone Association, 35 (2013) 220-228
Żenkiewicz, Methods for the calculation of surface free energy of solids, Journal of Achievements in Materials and Manufacturing Engineering, 24 (2007) 137-145
Such is the relevance of adhesives and ‘adhesive’ materials in modern economy.
The SFE value was determined in order to verify whether the materials have been properly prepared for bonding.
Satoh, Comparative analysis of energetic properties of Ti6Al4V titanium and EN-AW-2017A(PA6) aluminum alloy surface layers for an adhesive bonding application, Ozone: Science & Engineering: The Journal of the International Ozone Association, 35 (2013) 220-228
Żenkiewicz, Methods for the calculation of surface free energy of solids, Journal of Achievements in Materials and Manufacturing Engineering, 24 (2007) 137-145
Online since: July 2008
Authors: J.M. Sandoval Pineda, E.A. Merchán-Cruz, G. Urriolagoitia-Sosa, Juan Alfonso Beltrán-Fernández, R.G. Rodríguez-Cañizo, G. Urriolagoitia-Calderón, Luis Héctor Hernández-Gómez
References
[1] Urriolagoitia-Sosa, G, Analysis of prior strain history effect on mechanical properties and
residual stress in beams, Thesis Ph D, Oxford Brooks University, pp 129-142. (2005)
[2] Cheng, W. and Finnie, I., A method for measurement of axisymmetric residual stresses in
circumferentially welded thin-walled cylinders, J of Enginnering Materials and Technology, Vol.
107, pp 181-185. (1985)
[3] Cheng.
European conference on residual stresses, Cluny, France, pp 509-517. (1997) [5] Cheng, W. and Finnie, I., Measurement of residual hoop stress in cylinders using the compliance method, Journal of engineering materials and technology, Vol.108, pp 87-92, (1986) [6] Nowell, D., Tochilin, S. and Hills, D.
H., Residual stress measurement in cracked components: Capabilities and limitations of the cut compliance method, Materials science forum, Vols 347-349, pp 150-155
J., Cheng, W. and Finnie, I., Experimental determination of stress intensity factors due to residual stresses, Journal of experimental mechanics, Vol. 37, No. 3, pp 272-277
Y., A method for the measurement of residual stresses using a fracture mechanics approach, Journal of strain analysis, Vol. 24, 23-30. (1989) [14] Wu, X.
European conference on residual stresses, Cluny, France, pp 509-517. (1997) [5] Cheng, W. and Finnie, I., Measurement of residual hoop stress in cylinders using the compliance method, Journal of engineering materials and technology, Vol.108, pp 87-92, (1986) [6] Nowell, D., Tochilin, S. and Hills, D.
H., Residual stress measurement in cracked components: Capabilities and limitations of the cut compliance method, Materials science forum, Vols 347-349, pp 150-155
J., Cheng, W. and Finnie, I., Experimental determination of stress intensity factors due to residual stresses, Journal of experimental mechanics, Vol. 37, No. 3, pp 272-277
Y., A method for the measurement of residual stresses using a fracture mechanics approach, Journal of strain analysis, Vol. 24, 23-30. (1989) [14] Wu, X.
Online since: September 2020
Authors: Andrey V. Nomoev, E.Ch. Khartaeva, V.V. Syzrantsev, E.L. Dzidziguri, N.S. Khiterkheeva, S.P. Bardakhanov, E.V. Batueva, S.V. Kalashnikov
Introduction
Currently, nanoparticles of various materials, including metals, are attracting increasing attention of scientists and specialists in various fields of science and technology in connection with their special properties of nanoparticles in comparison with "micro-scale" particles.
These properties are then manifested in the materials and structures containing them.
Dizajghorbani Aghdama et al., Ablation time and laser fluence impacts on the composition, morphology and optical properties of copper oxide nanoparticles, Optical Materials, 91 (2019) 433–438
Vikulina et al., Determining the Degree of Nanopowders Hydrophilicity by the Ratio Fractal Dimension to the Specific Surface, Advanced Materials Research, 1085 (2015) 44-49
Cherepkov: producing nanopowders by evaporation the raw materials at the electron accelerator at atmospheric pressure, Reports of the Russian Academy of Sciences (in Rusian). 409 (3) (2006) 320-323
These properties are then manifested in the materials and structures containing them.
Dizajghorbani Aghdama et al., Ablation time and laser fluence impacts on the composition, morphology and optical properties of copper oxide nanoparticles, Optical Materials, 91 (2019) 433–438
Vikulina et al., Determining the Degree of Nanopowders Hydrophilicity by the Ratio Fractal Dimension to the Specific Surface, Advanced Materials Research, 1085 (2015) 44-49
Cherepkov: producing nanopowders by evaporation the raw materials at the electron accelerator at atmospheric pressure, Reports of the Russian Academy of Sciences (in Rusian). 409 (3) (2006) 320-323