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Online since: August 2014
Authors: Feng Yang, Ning Zhang, Ji Nan Niu, Xu Jiang
Introduction
Metal Matrix composites (short for MMCs) which is one of the largest high performance structural materials in 21st century has the the biggest developmental potent.
Because the WC content of the experimental materials was higher, so the WC particles under the load had a clear shielding effect on the steel substrate.
Advanced Materials Research, 2014,886: 97-100
Journal of Xuzhou Istitute of Technology (Natural Sciences Edition), 2013, 28(1): 30-33
Transactions of materials and heat treatment, 2013, 34(3): 40-43
Because the WC content of the experimental materials was higher, so the WC particles under the load had a clear shielding effect on the steel substrate.
Advanced Materials Research, 2014,886: 97-100
Journal of Xuzhou Istitute of Technology (Natural Sciences Edition), 2013, 28(1): 30-33
Transactions of materials and heat treatment, 2013, 34(3): 40-43
Online since: July 2007
Authors: L. De Napoli, M. Muzzupappa, Luigino Filice, Giuseppina Ambrogio
On the contrary, the varying effect was assigned to the
material behaviour; more in detail, three different materials were considered, namely two
aluminium alloys (AA 1050 - O and AA 5754 - H22) and one deep drawing steel (DC04), and each
of them was utilised to manufacture the specified shapes.
The chemical properties of the above said materials are highlighted in Table 1.
J. of Mechanical Science, vol. 42, 2000, 1271-1286
Muzzupappa, Application of Incremental Forming process for high customised medical product manufacturing, International Journal of Materials Procesind Technology, vol. 162-163, 2005, 156-162
Micari, The evaluation of springback in 3D and coining processes, J. of Materials Processing Technology, vol. 80-81, 1998, 108-112
The chemical properties of the above said materials are highlighted in Table 1.
J. of Mechanical Science, vol. 42, 2000, 1271-1286
Muzzupappa, Application of Incremental Forming process for high customised medical product manufacturing, International Journal of Materials Procesind Technology, vol. 162-163, 2005, 156-162
Micari, The evaluation of springback in 3D and coining processes, J. of Materials Processing Technology, vol. 80-81, 1998, 108-112
Online since: March 2014
Authors: Zheng Guo Song, Xiu Li Diao
Research on the Key Techniques on 3D Virtual Campus System
Xiuli Diao1,a Zhengguo Song2,b
1,2College of Information Science and Engineering Shandong University of Science and Technology
Shandong Qingdao, China
ae-mail: dxlszg@126.com, be-mail: szgdxl@126.com
Key words: Virtual campus; Modeling; Map; Model; Construction
Abstract. 3D virtual campus construction mainly includes several key techniques and links, such as material resources collection and processing (including campus CAD graphic design and material texture image), preliminary modeling of 3D building, model’s optimization and texture mapping, scene integration and rendering baking derived of 3D building and system integration platform and so on.
As the three-dimensional modeling needs more texture materials and detailed processing, it requires much work in texture picture collection, sorting and processing.
It is on the base of the prepared material images and CAD maps to build primitive modeling in 3Dmax.
The first step is drawing the outline, then squeezing out with basic tools, and labeling green material.
Journal of Shandong University of Technology, 2008.5.
As the three-dimensional modeling needs more texture materials and detailed processing, it requires much work in texture picture collection, sorting and processing.
It is on the base of the prepared material images and CAD maps to build primitive modeling in 3Dmax.
The first step is drawing the outline, then squeezing out with basic tools, and labeling green material.
Journal of Shandong University of Technology, 2008.5.
Online since: June 2014
Authors: Shu Ming Wen, Dan Dan Wu, Jiu Shuai Deng, Cui Cui Ji
Material and methods
Materials.
XRD experiments were performed using a Japan Science D/max-R diffractometer apparatus with CuKα radiation (λ = 1.5406 Å) at an operating voltage of 40 kV and a current of 40 mA.
Material and methods Effect of reaction temperature.
Acknowledgements This work was financially supported by the National Natural Science Foundation of Key Research Projects of China (u0837602) and Analysis and Testing Foundation of Kunming University of Science and Technology (2011464), and the authors are grateful to Sciencepaper Online for pre-review to this manuscript.
Chen: Journal of Central South University of Technology, Vol. 19 (2012), p. 903.
XRD experiments were performed using a Japan Science D/max-R diffractometer apparatus with CuKα radiation (λ = 1.5406 Å) at an operating voltage of 40 kV and a current of 40 mA.
Material and methods Effect of reaction temperature.
Acknowledgements This work was financially supported by the National Natural Science Foundation of Key Research Projects of China (u0837602) and Analysis and Testing Foundation of Kunming University of Science and Technology (2011464), and the authors are grateful to Sciencepaper Online for pre-review to this manuscript.
Chen: Journal of Central South University of Technology, Vol. 19 (2012), p. 903.
Online since: June 2013
Authors: Di Bo Hou, Guang Xin Zhang, Ping Jie Huang, Lu Feng, Jin Hui Cai
Acknowledge
This study was supported by the National Nature Science Foundation of China under the Grand (41101508), the Fundamental Research Funds for the Central Universities under the Grand (2012FZA5016), the Quality inspection public welfare industry research project under the Grant (200910181), the Nature Science Foundation of Zhejiang Province under the Grant (Y1110171) and the Doctoral Fund under the Grant (20110101110063).
Zhang, Materials for terahertz science and technology, J.
Coutaz, A reliable method for extraction of material parameters in Terahertz time-domain spectroscopy, J.
IEEE Journal of Selected Topics in Quantum Electronics. 2 (1996) 739-746
Mittleman, Material parameter estimation with Terahertz time-domain spectroscopy, J.
Zhang, Materials for terahertz science and technology, J.
Coutaz, A reliable method for extraction of material parameters in Terahertz time-domain spectroscopy, J.
IEEE Journal of Selected Topics in Quantum Electronics. 2 (1996) 739-746
Mittleman, Material parameter estimation with Terahertz time-domain spectroscopy, J.
Online since: July 2014
Authors: Fu Cai Zhang, Qing Wang, Ru Yang
Analysis to Milling Force Base on AdvantEdge Finite Element Analysis
Fucai Zhang1,a, Qing Wang2,b, Ru Yang3,c
1Heilongjiang University of Science and Technology, Harbin, Heilongjiang Province, China
2Shaanxi Institute of Technology, Xi’an, Shaanxi Province, China
3Harbin University of Science and Technology, Harbin, Heilongjiang Province, China
aqingtengzfc@yeah.net, b510132156@qq.com, c78020327@qq.com
Keywords: Spherical milling cutter; Milling force modeling; Finite element analysis; Experimental verification
Abstract.
In order to improve the reliability of simulation, election of ball end cutter geometrical parameters and work piece material and simulation analysis is the same.
International Journal of Machine Tools& Manufacture [J], 2006,46(12/13):1478-1488
Mechanical science and technology, 2005, 24(3):269-272.
Mechanical Science and Technology [J]. 2007, (06), 746-750 [10] Longtai Wang, Denglin Zhu, Guohong Dai, Aiping Song.
In order to improve the reliability of simulation, election of ball end cutter geometrical parameters and work piece material and simulation analysis is the same.
International Journal of Machine Tools& Manufacture [J], 2006,46(12/13):1478-1488
Mechanical science and technology, 2005, 24(3):269-272.
Mechanical Science and Technology [J]. 2007, (06), 746-750 [10] Longtai Wang, Denglin Zhu, Guohong Dai, Aiping Song.
Online since: March 2020
Authors: Hazim E. Elsorogy, Ahmed G. Soliman, Amr E. Abdelhakeem, Mai M. Elshahidy, Nour M. Elmahdy
Elmahdy1,e
1Department of Chemistry and Advanced Materials, Science and Technology Center of Excellence (STCE), El-Salam City, Cairo, Egypt.
Cui, Nanoscale photon management in silicon solar cells, Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 30 (2012) 1-11
Bertomeu, Aluminum induced texturing of glass substrates with improved light management for thin film solar cells, Solar Energy Materials and Solar Cells, 147 (2016) 276-280
Kumar, Glass surface etching with Aluminium-induced texture process for thin film solar cell applications, Materials Letters, 221 (2018) 305-308
Green, Developments in the aluminium induced texturing (AIT) glass process, Glass Technology-European Journal of Glass Science and Technology Part A, 53 (2012) 158-165.
Cui, Nanoscale photon management in silicon solar cells, Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 30 (2012) 1-11
Bertomeu, Aluminum induced texturing of glass substrates with improved light management for thin film solar cells, Solar Energy Materials and Solar Cells, 147 (2016) 276-280
Kumar, Glass surface etching with Aluminium-induced texture process for thin film solar cell applications, Materials Letters, 221 (2018) 305-308
Green, Developments in the aluminium induced texturing (AIT) glass process, Glass Technology-European Journal of Glass Science and Technology Part A, 53 (2012) 158-165.
Online since: July 2015
Authors: Yose Fachmi Buys, Nor Afiza Syafina Lokman
In addition, the impact strength of the composites was also characterized, as a part to evaluate the toughness of the materials.
2.
Experimental Materials.
Journal of Materials Science, 42(10), 3408-3418. [3] Pei, A.H., Zhou, Q., Berglund, L.
Materials Chemistry and Physics, 129(3), 823-831
Colloid Polymer Science, 283 (4), 367-374.
Experimental Materials.
Journal of Materials Science, 42(10), 3408-3418. [3] Pei, A.H., Zhou, Q., Berglund, L.
Materials Chemistry and Physics, 129(3), 823-831
Colloid Polymer Science, 283 (4), 367-374.
Online since: July 2022
Authors: Sholihun Sholihun, Sri Hidayati
For broadening the research in two-dimensional materials, many strategies have been employed to design new single-layer materials such as silicon carbide [7], molybdenum disulfide [8], and group III-nitrides.
Materials of Group III-nitrides have been explored using chemical vapor deposition [9].
Because of the special characters in semiconductors, the III-nitrides such as BN, AlN, GaN, InN, and TiN are promising materials for developing of both laser diodes and high-frequency transistors [9,10].
Gautam, Strain-tunable energy band parameters of graphene-like GaN, Condensed Matter, Material Science (2015)1-10
Nurwantoro, Density-functional-theory calculations of formation energy of the nitrogen-doped diamond, Indonesian Journal of Chemistry, 18(4), (2018) 749–754
Materials of Group III-nitrides have been explored using chemical vapor deposition [9].
Because of the special characters in semiconductors, the III-nitrides such as BN, AlN, GaN, InN, and TiN are promising materials for developing of both laser diodes and high-frequency transistors [9,10].
Gautam, Strain-tunable energy band parameters of graphene-like GaN, Condensed Matter, Material Science (2015)1-10
Nurwantoro, Density-functional-theory calculations of formation energy of the nitrogen-doped diamond, Indonesian Journal of Chemistry, 18(4), (2018) 749–754
Online since: January 2005
Authors: Lin Liu, Heng Zhi Fu, Jun Zhang, Taiwen Hang
Thumann: Journal of Materials Processing Technology, 2001, 117, 386
Grafe: Materials Science and Engineering, 1999, A270, 339
Davami: Materials Science and Technology, 2000, 16, 579
Geng: Science and Technology of Advanced Materials, 2001, 2, 197
McLean, Directional Solidified Materials for High Temperature Service, The Metals Society, London, 1983, Ch.4
Grafe: Materials Science and Engineering, 1999, A270, 339
Davami: Materials Science and Technology, 2000, 16, 579
Geng: Science and Technology of Advanced Materials, 2001, 2, 197
McLean, Directional Solidified Materials for High Temperature Service, The Metals Society, London, 1983, Ch.4