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Online since: October 2017
Authors: Kanwal Jit Singh, Jatinder Kapoor, Inderpreet Singh Ahuja
Harder tool materials gives the better MRR.
International Journal of Machining and Machinability of Materials, 5(2/3): 347-365. http://dx.doi.org/10.1504/IJMMM.2009.023399
Physics of Amorphous Materials.
DOI: 10.1021/ed080p813 [54] Phillips D.C, Sambell R.A.J, Bowen D.H, (1972), “The mechanical properties of carbon fiber reinforced pyrex glass”, Journal of Material Science, 7 (12), 1454-1464.
Foundation of material science and engineering, 4tg Ed.
Online since: April 2013
Authors: Bing Tao Tang, Yun Ming Wang, Shu Fen Zhang
Zhang, Solar Energy Materials and Solar Cells, 105 (2012), 242-248
Meng, Journal of Power Sources, 195 (2010), 7684-7690
Cheng, Solar Energy Materials and Solar Cells, 102 (2012), 36-43
Biçer, Solar Energy Materials and Solar Cells, 101 (2012), 114-122
Lu, Solar Energy Materials and Solar Cells, 96 (2012), 202-209
Online since: September 2013
Authors: Ming Hua Huang, Hui Dong, Di Ru Xu, Duan Cheng Wang, Yong Shun Cui, Qing Hua Chen
KGM and Collagen II were selected as the main raw materials and ammonia served as the crosslinking agent to prepare the porous KGM / COLII composite cartilage scaffolds by blending method and freeze-drying method.
Numerous studies have shown that KGM can serve as skin scaffold materials, the cartilage scaffold materials and other scaffold materials of tissue engineering [9, 10-12].
Feng: Biological Materials Science (Tsinghua University Press, Beijing 2004, In chinese) [2] Mierisch CM, Wilson HA, Turner MA et al: J Bone Joint Surg Am Vol. 85(2003), p. 1757–1767 [3] G.Sh.
Sun: Chinese Journal of Tissue Engineering Research Vol. 11(1)(2007), p.
Kang et al: Polymer Materials Science Engineering Vol. 19(6)(2003), p. 216–219 [13] B.
Online since: July 2012
Authors: G. Venkatachalam, S. Narayanan, Narayanan C. Sathiya
[7] J.Lian and B.Baudelet: Material Science and Engineering, Vol.86, (1987), p.137-144
[9] F.K.Chen: Journal of Materials Processing Technology, Vol.37, (1993), p.175–188
[13] Y.C.Lee and F.K.Chen: Journal of Materials Processing Technology, vol.103, (2000), p.353–361
[14] K.Elangovan, C.Sathiya Narayanan and R.Narayanasamy: Computational Materials Science, Vol.47, (2010), p.1072-1078
[15] S.C.Baik, K.H.Oh and D.N.Lee: Journal of Materials Processing Technology, Vol.58, (1996), p.139-144.
Online since: October 2013
Authors: X.C. Li, J.H. Li, J.L. Ma, Y.J. Zhang, H.Y. Li
Zhang1 1Department of material processing Technology, School of materials, Beijing Institute of Technology, Beijing, 100081, China 2School of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing, 401331, China Email*: lihongyang@bit.edu.cn Keywords: TRIP steel, Molecular dynamics, Residual austenite, Stacking fault Abstract.
Metals and Materials International, 2010, Vol.16, No.4: 533-541 [3] J.
International Journal of Material Forming, 2008, Suppl 1: 221-224 [4] Lin Li, Yi Gao, NaQiong Zhu, YanLin He, RenDong Liu.
Journal of Mechanical Science and Technology, 2012, Vol.26: 1841-1847 [13] Young-suk Kim, Jun-young Park.
Journal of Computer-Aided Materials Design, 1996, 3: 183-186 [16] D.
Online since: December 2010
Authors: Li Li, Zong Wei Niu, Li Ling Qi
Electro-discharge machining (EDM) is a non-conventional process that removes superfluous materials by thermal erosion mechanisms such as melting and vaporizing.
Acknowledgements The work was supported by the Shandong Province Natural Science Foundation(ZR2009FQ030).
Luis:A study on the machining parameters optimization of electrical discharge machining, Journal of Materials Processing Technology, Vol.143-144 (2003), p.521 [3] C.J.
Villa:Material removal rate and electrode wear study on the EDM of silicon carbide, Journal of Materials Processing Technology, Vol.164-165 (2005),p.889 [4] W.S.
Wei:Ultrasonic and electrical discharge machining to deep and small hole on titanium alloy, Journal of Materials Processing Technology Vol.20 (2002), p.101
Online since: September 2012
Authors: Yu Jing Jia, Guang Zhen Cheng, Jian Ou Pan
Introduction Mechanics of materials is a science about researching carrying capacity of component, while mechanics of materials experiment is an important practical links for its teaching.
Liu: Mechanics of Materials (Higher Education Press, China 2004) (in Chinese)
Zhang: Mechanics of Materials discussion on teaching method, journal of agricultural mechanization research. 2004 (5) pp 283-284 (in Chinese)
Liu: Journal of Changsha Railway University (social science edition) 2004(12), pp.147-148 (in Chinese)
Shan: Mechanics of Materials (Higher Education Press, China 2008) (in Chinese)
Online since: December 2011
Authors: Xiao Bing Xu, Tian Kai Xiong, Qiang Guan, Li Jun Tan
Journal of Materials Processing Technology, 2004, (151): 63-69 [3] He Yang, Yan Lin, Zhichao Sun.
Journal of Manufacturing Science and Engineering, 2001, (123):258-265
International Journal of Mechanical Sciences, 2003, (45): 115-140
Journal of Engineering Materials and technology, 2000, (121): 320-326
Journal of Materials Processing Technology, 2002, (127):401-408
Online since: June 2007
Authors: Takayuki Kitamura, Kittikorn Ngampungpis, Hiroyuki Hirakata
Introduction Since some applications of bonded dissimilar materials operate at elevated temperature, the stress field near the interface edge between dissimilar elements under creep regime becomes a critical issue.
Analytical Procedure The creep analysis for bonded dissimilar materials with an interface edge has been conducted under the plane-strain condition by a FEM code, ABAQUS 6.5.1.
The perfectly bonding condition is assumed on the interface between elastic and creeping materials.
Bogy: Journal of Applied Mechanics Vol. 35 (1968), p. 146-154 [7] D.B.
Bogy: Journal of Applied Mechanics Vol. 38 (1971), p. 377-386
Online since: June 2014
Authors: Jing Guo, Yu Mei Gong, Yi Wen Li, Shuai Zhang, Hong Zhang, Na Zhao
Introduction In recent years, TiO2 and TiO2-based materials have been demonstrated as promising materials[1].
Kim, ect: Applied materials and interfaces 2010, 2, 2046-2052
Bang,ect: Materials Chemistry and Physics 2012,134, 814-820
Shang, ect: Journal of Colloid and Interface Science 2013, 403, 22-28
Lee: Journal of Material Science 2011, 46, 7240-7246.
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