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Online since: March 2012
Authors: Jian Lin Chen, Long Wan
Development of a phenolic resin-bonded CBN wheel for precision grinding of ferrous materials JianLin Chen 1,a, Long Wan2 1Key Laboratory of Regenerative Energy Electric-Technology of Hunan Province, Changsha University of Science & Technology, Changsha 410004, China; 2College of Materials Science & Engineering, Hunan University, Changsha 410082, China acjlinhunu@tom.com Key words: Cubic boron nitride; Grinding wheel; Ferrous material; Phenolic resin Abstract.
Furushiro, et al, Development of ultra-fine-grain binderless cBN tool for precision cutting of ferrous materials, Journal of Materials Processing Technology, 209 (2009) 5646-5652
Mills, High-speed grinding with CBN grinding wheel – applications and future technology, Journal of Materials Processing Technology 110 (2001) 78-88
[3] Xiaoping Li, A free-abrasive machining approach to dressing of resin-bonded CBN grinding wheels, Journal of Materials Processing Technology 48 (1995) 223-230
Isono, New development of a grinding wheel with resin cured by ultraviolet light, Journal of Materials Processing Technology 113 (2001) 385-391.
Online since: October 2025
Authors: Ester Angula, Junestus Negongo, Kalola Ferdinand, Surendra Kumar Saini
Materials Science and Engineering 1305 (2024) 012017
International Journal of Mechanical and Materials Engineering 5 (2010) 182-190
Arabian Journal for Science and Engineering 44 (2019) 5801-5809
Journal of Engineering and Applied Science 70 (2023) 145
Journal of Survey in Fisheries Sciences 10 (2023) 2106-2122
Online since: October 2012
Authors: Yang Sun
Application and Perspective of Intelligent Materials Yang Sun 1Institute of Art&Fashion, Tianjin Polytechnic University, Tianjin, 300387 a874195639@qq.com Key words: intelligent costume materials, clothing design,garment cloth Abstract.The rapid development of science and technology shows a profound impact to the development of clothing.
If this material is appropriately applied to the medical care clothing design, it can greatly reduce the stimulation and injury to the patients caused by environmental temperature change.
To solve this problem, we can consider using some composite materials to produce this intelligent waterproof breathable fabric.
Medical care clothing design with intelligent thermal-sensitive shape memory fabric Shape memory material includes alloy and polymer.
Conclusion Implantation of intelligent materials has become an inevitable trend in the field of clothing design, bringing more innovation and more value, playing a positive role to promote the development of the clothing.
Online since: July 2017
Authors: Vladimir N. Sanin, V.I. Yukhvid, Vladimir A. Gorshkov, M.I. Alymov, Dmitrii Andreev
Alymove Institute of Structural Macrokinetics and Materials Science, Russian Academy of Sciences, Chernogolovka, Moscow, 142432 Russia a*yukh@ism.ac.ru, bade@ism.ac.ru, csvn@ism.ac.ru, dgorsh@ism.ac.ru, edirector@ism.ac.ru Keywords: SHS metallurgy, composite material (CM), heat-resistant material (HM), hard alloy (HA).
These composite materials include hard alloys and heat-resistant materials.
Tretyakov, Foundations of materials science and production technology of sintered hard alloys, Moscow, Metallurgiya, 1976
Cao, Combination of mechanochemical activation and self-propagating behaviour for the synthesis of Ti aluminides, Materials Science and Engineering, A361, (2003) 23-28
Journal of Refractory Metals and Hard Materials. 50 (2015) 113-119
Online since: July 2014
Authors: Jian Hui Yang, Lin Lv
Research on Biological Materials with Effect of Constant Magnetic Field Intervention on Bone Growth and Development in Rabbits Lin Lv1,a, Jianhui Yang 2,b 1.Department of Physical Education, Yanshan University, Qinhuangdao 066004, China 2.Harbour Vocational & Technical College of Building Materials, Qinhuangdao 066004, China amghllin@163.com Keywords: Biological materials, Constant magnetic field, Rabbit bone growth and development, Experimental model Abstract.
Biological materials with effect of constant magnetic field were attached to the hind legs of rabbits in the experimental group for a period of 4 months.
Research Method 2.1 Experiment Materials and Subjects Sixteen inbred strains of Japanese white rabbits of clean grade (male), all 7 years old and (2.5±0.3)kg of weight, were provided by the Department of Animal Science of Hebei Normal University of Science Technology.
Conclusion In this study, the designed biological materials with effect of constant magnetic field intervention display obvious effect on bone growth.
China Science.
Online since: October 2008
Authors: Sarah Leach, R. Edwin Garcia
Computational Materials Science 41, 242-246
Journal of Materials Science 41, pp. 199-210
Computational Materials Science 37, pp. 178-186
Computational Materials Science 39 pp, 896-902
Current Opinion in Solid State and Materials Science 9, pp 128-139
Online since: November 2012
Authors: Zhong Yong Xu, Zhi Fang Liu, Li Xiong Gu
is the fracture toughness of the materials.
International Journal of Fatigue 30, 834-849.(2008)
Advanced Materials Research, New and Advanced Materials, v 197-198(2011), p 1452-1459.
ASME Journal of Basic Engineering D85, 528-534.(1963)
Philadelphia: American Society for Testing and Materials, pp.491-504. (1988)
Online since: November 2012
Authors: Yun Tao Cai, Jian Xun Liang
Advanced composite material not only is widely applied in aerospace, automobile and other industry fields, but also is one of the best materials for developing sport equipments.
Carbon fiber composite material has become one of essential novel materials for developing modern sport equipments.
Continuous innovations of vaulting pole materials cause frequent breaking of the world record.
Damping performance of carbon fiber composite materials is prominent.
[3] CH.P.Shen: Synthetic Fiber in China,Vol.40(2011)No.10,P.11( in chinese) [4] CH.Y.Li,X.L.Liu and Y.F.Xiao:Zhe Jiang Sport Science,Vol.33(2011)No.5,P.99( in chinese) [5] Lu C,Chen P,Yu Q:Journal of Applied Polymer Science,Vol.106(2007),P.1733( in chinese) [6] Z.SH.Li: Acta Materiae Compositae Sinica,Vol.28(2011)No.5,P.192( in chinese) [7] W.Chen,Y.Bai: Technical Textiles,Vol.251(2011)No.8,P.35( in chinese) [8] ZH.Ni,Y.L.Lin: Journal of Functional Materials,Vol.42(2011)No.6,P.1004( in chinese) [9] H.Y.Zhu,B.CH.Wu: Acta Materiae Compositae Sinica,Vol.27(2010)No.6,P.32( in chinese) [10] Q.Feng,M.Li:Journal of Physical Education,Vol.27(2010)No.6,P.16( in chinese) [11] J.G.Zhao: Transactions of Materials and Heat Treatment,Vol.31(2010)No.10,P.1( in chinese) [12] X.ZH.Wang,X.R.Song: Nonferrous Metals,Vol.62(2009)No.1,P.56( in chinese) [13] Q.Q.G.WuYun:Engineering Plastics Application,Vol.37(2009)No.10,P.37( in chinese) [14] Q.L.Mei,F.L.Wang: Journal of Wuhan University of Technology
Online since: September 2013
Authors: Xiao Dong Li
Biomimetic materials and industrial design Biomimetic materials refer to materials that imitate various biological characteristics or features to develop.
Usually those that modeled on the operation of the living system and the structure law of biological materials to design and manufacture of artificial materials called biomimetic materials.
Human modified materials by imitation and innovation of biological function, through the combination of science and nature, create more new materials for human.
[2] Lang Li-juan,Jiang Wen, Innovative Production Design Based on M aterial Characteristics, Journal of Guangdong University of Technology (Social Sciences Edition), 12(2012) 77-78
The leading journal for enterprise, (2011) 263-264
Online since: June 2014
Authors: Tamba Jamiru, Dawood A. Desai, Rotimi Sadiku, Pius Bamidele Mogaji
Introduction Ceramics engineering can be defined as the science and the technology of forming objects from non-metallic and inorganic materials.
The Journal of Mechanics of Materials..Vol. 34.p 411-422.
,Prange, ThyssenTechnischeBerichte, Heft 1. pp. 97 – 106(1992) [16] P.N., Anyalebechi,Essentials of Materials Science &Engineering, p. 94.(2005) [17] N., Hieu,Manufacturing Processes and Engineering materials used in Automotive Engine Blocks.
Journal of materials Letters.
Journal of Material Science and Engineering, A 387-389. (2004)Elsevier Publication ltd
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