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Online since: January 2022
Authors: Ya Nan Zhang, Hao Chen, Si Cheng Li, Ren Guo Guan, Feng Guo Liu
Materials and Methods Materials and Preparation.
Advanced materials, 22 (2010) 3906-3924
Materials Science and Engineering: A, 2016, 667: 16-32
Materials & Design, 2016, 94: 54-60
Materials & Design, 2014, 63: 620-632
Online since: December 2009
Authors: Bora Derin, Mustafa Bakkal, Veli Nakşiler
Reimschuessel: Journal of Materials Science 9 (1974) p. 718 [5] C.J.
[14] N.Lopezdelacalle ,J.Perez, J.I.Llorente, .A.Sanchez: Journal of Materials Processing Technology 100 (2000) p.1
Seo: Journal of Materials Processing Technology187-188 (2007) p.250 [16] Altintas, Y.
Altintas: Journal of Manufacturing Science and Engineering, 118 (1996) p.514 [18] M.
Petzoldt: Materials Science and Engineering, 481 (2008) p. 672 [20] S.
Online since: June 2014
Authors: Nurul Shuhada Mohd Makhtar, Ku Halim Ku Hamid, Noorhazila Hamdan, Miradatul Najwa Muhd Rodhi, Mohibah Musa
Introduction Thermoplastic elastomers (TPE) are a class of polymeric materials that are low-modulus and flexible materials, wherein their building-block polymers vary and can include styrenic block copolymers, olefins, thermoplastics, and other materials.
Materials and Methods.
Raw Materials.
International Journal of Polymer Science (2013)
Reis, “Thermal properties of thermoplastic starch/synthetic polymer blends with potential biomedical applicability.,” Journal of materials science.
Online since: September 2013
Authors: Mohammed Sarvar Rasheed, Mustufa H. Abidi, Abdulaziz M. El-Tamimi, A.M. Al-Ahmari
Micro Electric Discharge Machining (µ-EDM) is a non-traditional machining process which is used for drilling micro holes in a high strength-to-weight ratio advanced engineering materials like shape memory alloys that have many applications in the field of aerospace and medical sciences.
The electrode (tool) materials used were tungsten and brass cylindrical rod with a diameter of 100μm.
Lecheheb, Micro electro-discharge machining ink jet nozzles: Optimum selection of material and machining parameters, Journal of Materials Processing Technology, 58 (1996). 53-66
Chen, A study on the machining characteristics of TiNi shape memory alloys, Journal of Materials Processing Technology, 105 (2000) 327-332
Saha, Optimization of process parameters in micro electro- discharge drilling [µ-EDM-Drilling]: A taguchi approach, Advanced Materials Research: Manufacturing Science and Technology III, 622-623 (2012) 30-34
Online since: October 2015
Authors: Sukhdeo R. Karade
International Journal of Polymeric Materials 57.7 (2008): 635-656
Journal of materials science 35, no. 8 (2000): 1891-1900
Materials 2, no. 3 (2009): 776-789
Journal of Materials Science 26.2 (1991): 341-348
Journal of materials science 27, no. 20 (1992): 5629-5634
Online since: October 2012
Authors: Shao Qing Zhang, Wei Min Sun, Shi Ru Hao
Human Movement Science, Volume 24, Issue 3, June 2005, Pages 326-344
Journal of Biomechanics, Volume 39, Issue 6, 2006, Pages 1001-1009
Comprehensive Composite Materials, Volume 6, 2000, Pages 787-809
Materials for sports.
A perspective view of composite materials development.
Online since: February 2008
Authors: Jing Zhou, Guo Qiang Luo, Qiang Shen, Lian Meng Zhang, Ying Hu Liu
Preparation of Mg-W Graded Materials by Spark Plasma Sintering Qiang Shena, Yinghu Liu, Jing Zhou, Guoqiang Luo and Lianmeng Zhang State Key Lab of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, P.
Finally, the Mg-W density graded materials with a density change from 1.74g/cm3 to 10.55g/cm3 have been successfully prepared.
Baker: Alloy Phase Diagrams (ASM Handbook, The Materials Information Society, USA 1992)
Zhao: Journal of Aloys and Cmpounds Vol. 354 (2003), p. 236 [7] H.G.
Zhang: Science in China E Vol. 35 (2005), p. 459 [10] X.Y.
Online since: April 2011
Authors: Xiao Hui Zeng, Wen Lang Luo, Man Hua Li
Research on a Remote Network Monitoring Model for Large-scale Materials Manufacturing Xiaohui ZENG1, 2, a, Manhua LI1, b, Wenlang LUO1,c 1Department of Computer Science and Technology, Jinggangshan University, China 2The Key Laboratory of Embedded System and Service Computing, Ministry of Education, Tongji University, China azeng_xhui@163.com, blimanhua@jgsu.edu.cn, clwl@jgsu.edu.cn Key words: remote network monitoring, data storage, fault alarm, materials manufacturing Abstract.
Network monitoring is widespread in the field of the materials manufacturing [1-3], and the field of the large-scale materials manufacturing adopts remote network monitoring relatively rarely [4-6].
But in some cases, remote network monitoring is very important for the large-scale materials manufacturing.
In order to monitor large-scale materials manufacturing in time, a remote network monitoring model for large-scale materials manufacturing is designed based on our previous studies [7,8], and according to the model, a remote network monitoring platform is implemented.
The main role of the platform is to monitor materials manufacturing machines and devices.
Online since: January 2013
Authors: Jing Long Bu, Rong Lin Wang, Yi Cui, Qian Wang, Li Ren Wang
Effects of Recycling Ladle Lining Materials on Phase Composition and Microstructure of Al2O3-SiC-C Castable for Iron Runner Yi Cui1, a, Ronglin Wang1, b,*,Liren Wang1, c, Jinglong Bu1, d and Qian Wang2, e 1Hebei Provincial Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei United University, Tangshan 063009, Hebei, China 2Hebei Tangyin Iron and Steel Company Limited, Tangshan 063000, Hebei, China a627445252@qq.com, bwrl@heuu.edu.cn, cnaihuowangliren@163.com, dbjl@heuu.edu.cn, e1281584803@qq.com Keywords: ladle lining; recycling materials; castable for iron runner; phase composition; microstructure Abstract.
So the research about recycling of spent refractory materials has great significance [4-8].
In Table 1, the items of SiC, CA75-cement and C, etc materials were merged into excipient.
References [1] TATEDA Masafumi, FUJITA Masanori: Journal of Environmental Sciences Vol. 19 (2007), p.1146
Xue,: Refractory Materials(Chinese) Vol. 41 (2007), p. 460
Online since: March 2014
Authors: Jun Song Peng, Ying Jun Pan, Heng Zhang
The influence of Heat Treatment on the Interface and Properties of Mo2FeB2 cermets-steel clad material Junsong Peng1,a, Yingjun Pan2,b, Heng Zhang3,c 1,2,3Wuhan Science & Technique University , WuHan, 430081, China apeng_junsong@yeah.net, bhbwhpyj@163.com,c493838630@qq.com Keywords: cladding material; heat treatment; interface; microstructure Abstract.
Using B, Mo, and Fe powders as raw materials, Mo2FeB2 cermets-steel clad material has been prepared on steel 45 substrate by means of in-situ reaction vacuum and liquid phase sintering technology, and the influence of heat treatment on microstructure and properties has been studied.
Then subject the cladding materials to normalizing and normalizing + quenching at temperature of 910℃ for 15 minutes.
Takagi, Development of high strength complex boride base hard materials produced by reaction boronizing sintering, J.
The International Journal of Powder Metallurgy, 1987,23(3):157-161.
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