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Online since: November 2012
Authors: Manoj Kumar Jain, J. Subrahmanyam, Subrata Ray
Petrovic, Mechanical Behaviour of MoSi2 and MoSi2 Composites, Materials Science and Engineering, A192/193 (1995) 31-37
Ichikawa, Work of Fracture of Brittle Materials with Micro-cracking and Crack Bridging, International Journal of Fracture, 55 (1992) 65-79
Chiou, Processing-Microstructure-Property Relationships in Reaction Hot Pressed MoSi2 and MoSi2-SiC Composites, Materials Science and Engineering, A225 (1997) 105-117
Nakayama, Direct Measurement of Fracture Energies of Brittle Heterogeneous Materials, Journal of American Ceramic Society, 48 (1965) 583-587
Tappin, Journal of Material Science, 1 (1966), p. 296.
Online since: November 2014
Authors: K.S. Alhawari, Z. Sajuri, M.N. Mohammed, M.Z. Omar, J. Syarif, Mohd Shukor Salleh
Journal of Materials Processing Technology 208 (2008) 165–170
Kapranos, Microstructural evolution of solid-solution-treated Zn-2Al in the semisolid state, Journal of Materials Science & Technology. 29 (2013) 765-774
Mohammed, An overview of semisolid processing of aluminium alloys, ISRN Materials Science. 2013(2013) 1-9
Material Science. 44 (2009) 869-874
Journal of Materials Science.46 (2011) 7696-7705.
Online since: November 2016
Authors: Saad Waqar, Saad Asad, Shamraiz Ahmad, Ch Asad Abbas, Hassan Elahi
Ramesh et al [4] placed Ti-6Al-4V in difficult to machine materials category.
Materials Characterization, 2003. 51(2): p. 131-139
Journal of the mechanical behavior of biomedical materials, 2009. 2(1): p. 20-32
Materials and Manufacturing Processes, 2008. 23(2): p. 174-181
Journal of materials processing technology, 2000. 101(1): p. 287-291
Online since: May 2014
Authors: Yu Hong Long, You Qun Tong, Tang Gao Feng, Wei Jiang, Zhi Qiang Liao
Used the gauss body heat source to irradiate underwater aluminum target material, in this paper, simulated the process of punching, gauss body heat source equations as follows: (1) Where U is energy on the surface of the aluminum material; a is the optical depth of material; b is the absorptions of material for laser energy; r is 95% of the heat source center to spot radius.
Governing equation of the model can be expressed as a function of temperature: (2) Where is the density of material; is the heat capacity of materials; is time; is the heat source; is changing with temperature coefficient of thermal conductivity.
Acknowledgements This project was funded by National Natural Science Foundation of China (Grant No.61366009), the Guangxi Natural Science Foundation (Grant No. 2012GXNSFAA053202), the director Fund of Guangxi Manufacturing Systems and Advanced Manufacturing Technology Laboratory (Grant No. 13-051-09-004Z), and Guangxi Experiment Center of Information Science, Guilin University of Electronic Technology (Grant No. 20130313) References [1] W.
Peng: China Journal of Lasers, Vol. 36 (2009), No.11, p.3064-3067
Yu: China Journal of Lasers, Vol. 31 (2004), No.12, p.1527-1532
Online since: February 2012
Authors: Mei Zhu Wang, Wei Liu
[3] Ferrer, G., Swaminathan, J.M.: management science.
Elif.: Journal of operations management. 25(2007),P1161-1183
[9] Sibel Alumur.: European Journal of operational research.190(2008).P1-21
Marinov. : European Journal of operational research.200(2010).P28-35
Jayaraman, Raymond A.Patterson, Erik Rolland.: European Journal of Operational Research 150 (2003).P128–149
Online since: June 2017
Authors: Qing Shan Yang, Zu Jian Yu, Wen Jun Liu
Chino, Materials Science and Engineering: A, 538 (2012) 281-287
Pan, Journal of Materials Research, 28 (2013) 1148-1154
Pan, Materials Science and Engineering: A, 590 (2014) 440-447
Pan, Materials Science and Engineering: A, 612 (2014) 187-191
Pan, Materials Science Forum, 816 (2015) 504-509
Online since: October 2022
Authors: Geng Yuan Liang, Yong Lv He, Bo Wen Lei, Suli Xing, Wen Shu Zhao, Jian Wei Zhang, Ying Xiao
Progress in Materials Science. 2016, 83: 330-382
Materials Today. 2013, 16(5): 166-176
Quantum dot superlattice thermoelectric materials and devices[J]. science. 2002, 297(5590): 2229-2232
Complex thermoelectric materials[M].
Journal of Materials Science & Technology, 2021, 85: 76-86
Online since: February 2016
Authors: Valery I. Bogdanovich, Mikhail G. Giorbelidze
It shall be noted that the process of impact of individual particles against the surface is also a subject of significant theoretical and experimental research works in allied sciences – impact damage of constructional materials [4, 5], determination of properties of constructional materials under dynamic loading [6] and technologies of dynamic pressure processing of materials [7].
These research works determined mechanical damages on contact surfaces and in the bulk of materials, the liquid drop impact was studied in sufficient detail theoretically as applied to the processes of material erosion and plastic yield during pressure processing.
A., Physical and mathematical simulation of mesostructurally arranged plasma coating formation process, Applied Physics Journal, 82 (2) (2012) 105 – 112
[10] Barvinok V., Bogdanjvich V., Dokukina I., Mathematical modelling of spray material acceleration and heating during the formation of plasma cluster coatings, Wulfenia Journal, 21 (2) (2014) 94-103
[11] Klochkov Y., Papic L., Vasileva I., Gazizulina A., Developing a procedure for technical status control of a turbine compressor package blades, Applied Mechanics and Materials, 756 (2015) 652-659.
Online since: March 2006
Authors: Wei Hu Yang, Yi Zuo, Li Zhang, Yuan Hua Mu, Yu Bao Li, Lan Wu
In order to further optimize the present bone substitute materials and develop new bioactive bone substitute materials that are more closer to human bone in compositions, structures and properties, it is necessary to characterize the biomimetic properties of the composite more deeply and comprehensively by comparing it with human bone.
HONGGUO: Materials Letters Vol.58(2004),p.719
YONGGANG: Journal of Materials Science: Materials in Medicine Vol.14(2003),p.1
YI: Journal of Materials Science Vol.38(2003),p.3303
YUBAO: European Polymer Journal Vol.40(2004),p.509
Online since: September 2014
Authors: Chao Cheng Chang, Yao Sheng Hsiao
Wang, Effects of Grain Size on Micro Backward Extrusion of Copper, Advanced Materials Research. 83-86, (2010) 1092-1098
Weroński, Cross-wedge rolling by means of one flat wedge and two shaped rolls, Journal of Materials Processing Technology. 177, 1 (2006) 550-554
Segal, Materials processing by simple shear, Materials science & engineering.
A, Structural materials: properties, microstructure and processing. 197, 2 (1995) 157-164
Segal, Engineering and commercialization of equal channel angular extrusion (ECAE), Materials Science & Engineering A. 386, 1-2 (2004) 269-276.
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