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Online since: August 2014
Authors: Li Zhi Gu, Peng Li, Tie Ming Xiang
It is able to cut a hundred of plates at the same time. (2) Low percentage of the waste materials.
Liao: Journal of stone material, Vol. 9 (2011)
[3] X.G Liu: Journal of stone material, Vol. 9 (2004)
Jungsun: Chinese Journal of Aeronautics, Vol. 26 (2013) NO.1, p. 112-121
Peng: Journal of Mechanical Engineering, Vol. 49 NO.3, p. 153-162.
Liao: Journal of stone material, Vol. 9 (2011)
[3] X.G Liu: Journal of stone material, Vol. 9 (2004)
Jungsun: Chinese Journal of Aeronautics, Vol. 26 (2013) NO.1, p. 112-121
Peng: Journal of Mechanical Engineering, Vol. 49 NO.3, p. 153-162.
Online since: September 2015
Authors: Hynek Hadraba, Martin Stodola
These data are necessary to determine the material mechanical properties and must be suitably processed.
These data from an experimental measurement were used to determine the mechanical material properties.
The material model (material parameters) is optimized by following successive FEM simulations before reaching the required minimum deviation (accuracy).
Sun, Determining elastic-plastic properties from indentation data obtained from FE simulations and experimental results, International Journal of Mechanical Sciences 62 (2012) 34-46
Oliveira, Comparison between Berkovich, Vickers and conical indentation tests: A three-dimensional numerical simulation study, International Journal of Solid and Structures 46 (2009) 1095-1104.
These data from an experimental measurement were used to determine the mechanical material properties.
The material model (material parameters) is optimized by following successive FEM simulations before reaching the required minimum deviation (accuracy).
Sun, Determining elastic-plastic properties from indentation data obtained from FE simulations and experimental results, International Journal of Mechanical Sciences 62 (2012) 34-46
Oliveira, Comparison between Berkovich, Vickers and conical indentation tests: A three-dimensional numerical simulation study, International Journal of Solid and Structures 46 (2009) 1095-1104.
Online since: February 2011
Authors: Jian Bo Dai, She Liang Wang, Xiang Zhao, Lu Lu Miao
Acknowledgements
This work is supported by the grants from General Planned Research Program of the National Natural Science Foundation of China (Grant No.90715003); National Natural Science Foundation of China (Grant No.10972168); Ph.D.
Preparation of giant magnetostrictive materials and devices design.
Beijing: Science press, 2003(in Chinese) [3] Zhifeng Tang, Zhanqin Xiang, FuzaiLü.
Characteristics of giant magnetostrictive materials and their engineering application [J].
Journal of Ordnance Engineering, 2007, 19:2, 63-69(in Chinese) [5] M.D.
Preparation of giant magnetostrictive materials and devices design.
Beijing: Science press, 2003(in Chinese) [3] Zhifeng Tang, Zhanqin Xiang, FuzaiLü.
Characteristics of giant magnetostrictive materials and their engineering application [J].
Journal of Ordnance Engineering, 2007, 19:2, 63-69(in Chinese) [5] M.D.
Online since: June 2009
Authors: Zhen Fang Liang, Yan Zhao, Yue Xin Duan
Experimental
Materials.
References [1] Zeng Aixiang, Xiong Weihao, Xu Jian, Materials Letters 59 (2005) 524-528
Rahman, Applied Surface Science 181 (2001) 35-50
Materials Letters 57 (2002) 151-156
[4] Sung-Soo Kim, Seon-Tae Kim, Joon-Mo Ahn, Keun-Hong Kim, Journal of Magnetism and Magnetic Materials 271 (2004) 39-45
References [1] Zeng Aixiang, Xiong Weihao, Xu Jian, Materials Letters 59 (2005) 524-528
Rahman, Applied Surface Science 181 (2001) 35-50
Materials Letters 57 (2002) 151-156
[4] Sung-Soo Kim, Seon-Tae Kim, Joon-Mo Ahn, Keun-Hong Kim, Journal of Magnetism and Magnetic Materials 271 (2004) 39-45
Online since: July 2016
Authors: Sunil Prasad, Vikas Kr Vyas, Md Ershad, Ram Pyare
It has been found that the new BG/HA bio-composite materials have high bioactivity properties.
Greenlee, Bonding mechanisms at the interface of ceramic prosthetic materials.
Pe´rez-Amor, Hydroxyapatite coatings: a comparative study between plasma-spray and pulsed laser deposition techniques, Journal of Material Science: Materials in Medicine 1997;8: 861–865
Ababou,Microstructure and related mechanical properties of hot pressed hydroxyapatite ceramics, Journal of Material Science: Materials in Medicine 1994;5: 563–568
Titanium alloys in total joint replacementFa materials science perspective.
Greenlee, Bonding mechanisms at the interface of ceramic prosthetic materials.
Pe´rez-Amor, Hydroxyapatite coatings: a comparative study between plasma-spray and pulsed laser deposition techniques, Journal of Material Science: Materials in Medicine 1997;8: 861–865
Ababou,Microstructure and related mechanical properties of hot pressed hydroxyapatite ceramics, Journal of Material Science: Materials in Medicine 1994;5: 563–568
Titanium alloys in total joint replacementFa materials science perspective.
Online since: September 2011
Authors: Jiu Hong Zhang, Na Wang, Xu Guo
Explore the physical properties of materials effect on the microclimate and draw the appropriate conclusions.
The thermophysical properties of different materials determine the difference in the same environment.
After the highest, all material surface temperatures begin to decline, and at 16:30 in the afternoon, snow surface temperature is the lowest among the materials, the order of other materials from low to high is: bush, lawn, granite, asphalt, clay brick, and tree.
Because of the inner heat, pump house wall surface temperature is always higher than other materials.
Xian Architecture Technology University Journal, 2001.9.
The thermophysical properties of different materials determine the difference in the same environment.
After the highest, all material surface temperatures begin to decline, and at 16:30 in the afternoon, snow surface temperature is the lowest among the materials, the order of other materials from low to high is: bush, lawn, granite, asphalt, clay brick, and tree.
Because of the inner heat, pump house wall surface temperature is always higher than other materials.
Xian Architecture Technology University Journal, 2001.9.
Online since: May 2016
Authors: Tian Yu Xie, Togay Ozbakkaloglu
Construction and Building Materials, 22(7), 1305-1314
Journal of Materials Processing Technology, 209(12), 5276-5280
Materials Science and Engineering A, 528(3), 1472-1477
Journal of Materials Processing Technology, 209(12), 5276-5280
Journal of hazardous materials, 167(1), 82-88.
Journal of Materials Processing Technology, 209(12), 5276-5280
Materials Science and Engineering A, 528(3), 1472-1477
Journal of Materials Processing Technology, 209(12), 5276-5280
Journal of hazardous materials, 167(1), 82-88.
Online since: July 2014
Authors: M.R. Chitthaarth, K. Manivannan
bSchool of Mechanical and Building Science, VIT University, Vellore-632014, TamilNadu, India.
Materials properties of the piston, bond coat and ceramic top coat [5,6] MATERIALS Piston (aluminium alloy ) Bond coat (NiCrAl) Ceramic coat (YZS) Young’s modulus [GPa] 90 80 11.25 Poisson’s ratio 0.33 0.28 0.25 Thermal expansion 10e-6 [1/°C] 21 19 10.9 Specific heat [J/kg °C] 910 452 620 Thermal conductivity [W/m °C] 155 15 1.4 Density [kg/m3] 2700 8000 5650 analysis.
Coating materials The zirconium is the common ceramic material used as the thermal barrier coatings for their low thermal conductivity properties.
Stoever., Ceramic materials for thermal barrier coatings, Journal of the European Ceramic Society 24 (2004) 1–10
[7] Muhammet Cerit., Mehmet Coban., Temperature and thermal stress analyses of a ceramic-coated aluminum alloy piston used in a diesel engine, International Journal of Thermal Sciences 77 (2014) 11-18
Materials properties of the piston, bond coat and ceramic top coat [5,6] MATERIALS Piston (aluminium alloy ) Bond coat (NiCrAl) Ceramic coat (YZS) Young’s modulus [GPa] 90 80 11.25 Poisson’s ratio 0.33 0.28 0.25 Thermal expansion 10e-6 [1/°C] 21 19 10.9 Specific heat [J/kg °C] 910 452 620 Thermal conductivity [W/m °C] 155 15 1.4 Density [kg/m3] 2700 8000 5650 analysis.
Coating materials The zirconium is the common ceramic material used as the thermal barrier coatings for their low thermal conductivity properties.
Stoever., Ceramic materials for thermal barrier coatings, Journal of the European Ceramic Society 24 (2004) 1–10
[7] Muhammet Cerit., Mehmet Coban., Temperature and thermal stress analyses of a ceramic-coated aluminum alloy piston used in a diesel engine, International Journal of Thermal Sciences 77 (2014) 11-18
Online since: February 2016
Authors: Morgan E. Ware, Oksana Lytvyn, Alexander A. Efremov, Peter M. Lytvyn, Igor V. Prokopenko, Yurii I. Mazur, D. Fologia, Gregory J. Salamo
Atwater, Plasmonics – a route to nanoscale optical devices, Advanced Materials 13 (2001) 1501-1505
Journal of Vacuum Science & Technology B, 14(4), (1996) 2456-2461
Loginova, Macro- and Nanoscopic Capillary Effect on Nanosructured Real Surface, Journal of Superhard Materials 34 (2012) P. 81-94
Oulevey, Scanning Local-acceleration Microscopy, Journal Vacuum Science and Technology B 14 (1996) 794-799
Lemaitre, Rearangements and Dilatancy for Sheared Dense Materials, Physical Review Letters 89 (2002) 4153-4165
Journal of Vacuum Science & Technology B, 14(4), (1996) 2456-2461
Loginova, Macro- and Nanoscopic Capillary Effect on Nanosructured Real Surface, Journal of Superhard Materials 34 (2012) P. 81-94
Oulevey, Scanning Local-acceleration Microscopy, Journal Vacuum Science and Technology B 14 (1996) 794-799
Lemaitre, Rearangements and Dilatancy for Sheared Dense Materials, Physical Review Letters 89 (2002) 4153-4165
Online since: April 2019
Authors: Lázaro Humberto Suárez Lisca, Daynier Rolando Delgado Sobrino, Norge Isaias Coello Machado
Camajuaní road, 54 830, Santa Clara, Villa Clara, Cuba
2Slovak University of Technology in Bratislava, Faculty of Materials Sciences and Technology in Trnava, J.
Considering that this is one of the most raw materials-consuming industries, any decrease in consumption of these has great relevance.
Industry 4.0, Logistics 4.0 and Materials - Chances and Solutions, Materials Science Forum 919 (2018) 307-314.
International Journal of Advance Manufacturing Technology. 55 (2011) 23-34
Materials processing technology. 209 (2009) 1209-1219
Considering that this is one of the most raw materials-consuming industries, any decrease in consumption of these has great relevance.
Industry 4.0, Logistics 4.0 and Materials - Chances and Solutions, Materials Science Forum 919 (2018) 307-314.
International Journal of Advance Manufacturing Technology. 55 (2011) 23-34
Materials processing technology. 209 (2009) 1209-1219