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Online since: September 2013
Authors: Ali Ramazani, Alexander Schwedt, Ulrich Prahl, Anke Aretz
Reynaert, SAE Transactions Journal of Materials & Manufacturing 110 (2001) 37-47
Zuidema, SAE Transactions Journal of Materials & Manufacturing 110 (2001) 976-983
Akhtar, Journal of Materials Engineering and Performance, 9(3) (2000) 306-310
Bleck, Computational Materials Science 54 (2012) 271-279
Bleck, Materials Science and Engineering A 560 (2013) 129-139
Online since: July 2011
Authors: Wei Dong Jin
During ultraprecision grinding of hard and brittle materials, wheel’s specialties, such as types of abrasive material, grain size, concentration of abrasiver, hardness of wheel, types of bond, orgnization structure and so on, wouled be very important to reducing roughness value on the workpiece surface.
And so, for ELID ultraprecision grinding of hard and brittle materials, there is higher demand for homogeneous concentration distribution along wheel circumference.
Conclusions During ELID ultraprecision grinding of hard and brittle materials, there are lots of influence factors and technical principles are quite complicated.
References [1] B.P.Bandyopadhyay, H.Ohmori and I.Takahashi: Journal of Material Process Technology, Vol.66 (1997), p.18-24 [2] P.
Wang: Study on Mechanism & Technique of ELID Precision Mirror Grinding for Hard Brittle Materials (Harbin Institute of Technology, 1995, In Chinese) [3] C.
Online since: October 2011
Authors: Jian Hui Yang, Zhen Zhuan Xiong, Ling Yan Lv
The research and application of the high performance inorganic insulation materials are solicited, because the traditional organic insulation materials representative with polystyrene have some defects, such as poor fire resistance, poor durability, short service and no synchronous with the life of structure, and environmental pollution.
The equation may be written as (1) where R is thermal resistance of multi-material layer; δi is material thickness; λi is thermal conductivity of the i layer materials.
References [1] Ji lin Ke Long decoration Engineering:Computer Knowledge and Technology(Natural Science) Vol. 33 (2006), p. 92,in chinese
Kowsary:Journal of Building Physics Vol.32 (3) (2008), p. 243–260
Cabeza:Journal of Solar Energy Engineering Vol. 131 (4) (2009), p.1006
Online since: January 2006
Authors: Gai Fei Peng, Sammy Yin Nin Chan, Quan Xin Yi, Qi Ming Song
Fiorato: Fire endurance of high-strength concrete slabs, ACI Materials Journal, 1988, Mar-Apr, pp. 102-108
Stocks: Spalling of high-strength silica fume concrete in fire, ACI Materials Journal, 1993, Mar-Apr, pp. 170-173
Powers-Couche: Microstructures of fire-damaged concrete, ACI Materials Journal, 92 (1996), pp. 199-205
Yi: Journal of Materials Science and Technology, Vol. 21 (2005), pp. 118-122
Nomura: Journal of Materials Science, Vol. 34 (1999), pp. 629-636
Online since: April 2014
Authors: Jun Wu
Acknowledgements This material is based upon work supported by the National Science Foundation under Grant No.
Any opinions, findings, and conclusions or recommendations expressed in this material are those of the investigators and do not necessarily reflect the views of the National Science Foundation and Chang’an University.
Journal of Structural Engineering, 122(7), 716-725
Journal of Sound and Vibration, 248(4), 745-761
Journal of Applied Mechanics, 12, A159–A164.
Online since: January 2002
After the manuscripts were reviewed, 97 were accepted for publication in this special issue of Materials Science Forum I Journal of Metastable and Nanocrystalline Materials.
The strong international participation is an indication of the interest in the field of metastable and nanocrystalline materials.
The mechanical, electrochemical and magnetic properties of metastable and nanocrystalline materials were the subjects of many of the papers.
Paul Warren of the University of Oxford has received the ISMANAM Junior Scientist award for his research on rapidly solidified materials.
National Science Foundation, U.S.
Online since: February 2011
Authors: Hai Tao Zhang, Jian Zhong Cui, Bao Mian Li
Effect of Electromagnetic Field on the Solidification Structure of HMn084 Brass Baomian Li1,a , Haitao Zhang1,b and Jianzhong Cui1,c 1Key Laboratory of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University, Shenyang, Liaoning, 110819, China abmlee@epm.neu.edu.cn, bhaitao_zhang@epm.neu.edu.cn, cjzcui@epm.neu.edu.cn Keywords: Manganese Brass; Electromagnetic Field; Solidification Structure; Silicide.
Journal of Materials Science Vol. 29 (1994), P. 1692
Journal of Achievements in Materials and manufacturing Engineering Vol. 34 (2009), P. 95
Journal of Phase Equilibria Vol. 15 (1994), P. 619
Online since: May 2011
Authors: Yu He Li, Xiao Shan Deng, Bing Bai
According to the materials provided by the client, the earthquake intensity in the area is VII degrees, earthquake peak acceleration 0.1g.
The materials used in the aqueduct body is concrete C50, with a density 2500kg/m3, elastic modulus 34.5GPa and Poisson's ratio 0.167.
The materials for aqueduct pier is concrete C30, its density 2500kg/m3, elastic modulus 39.0GPa and Poisson's ratio 0.167.
Lou: Journal of Hydraulic Engineering, Vol. 31(2000), p46 [4] W.S.
Wang: Journal of Zhengzhou University of Technology, Vol.45 (1999), p67
Online since: June 2012
Authors: Tian Lin Song, Ya Ping Lu, Zhi Yao Li
Figure 7 The overall assembly of the snake robot Conclusion This paper is a preliminary research of Jiangsu Province Natural Science Foundation named “research on active and passive hybrid walking intelligent artificial leg based on stable limit cycle"(BK2010266).
References [1] Tianlin Song,Yaping Lu,Lei Shi: bio-design and develop of robot fish, submitted to key Engineering Materials Vol.464,(2011), Pages 225-228 [2] Tianlin Song,Zhiyao Li :The Research on Snake-like Robot Design based on Single Chip Microprocessor,Advanced Materials Research :Materials Processing Technology PART4 Vol. 291-294,(2011), Pages2737-2741 [3] Tianlin Song , ling zhao,shen xuanxuan:The research on remote control robot snake driving by servo,Procedia Engineering, Volume 15,(2011), Pages 762-766 [4] Changlong Ye: the development of three-dimensional snake-like robot visitor II ,submitted to Journal of Mechanical Engineering, Vol. 45.5 (2009) (In Chinese) [5] Liang Xu, Xingsong Wang: Bionic creeping snake design and motion analysis, submitted to Journal of Electrical Engineering Technology,Vol.36.12(2007) (In Chinese) [6] Tianlin Song, liJun Wang: Research and Development of snake-like robot, submitted to Journal of Machinery Manufacturing and Automation,vol.34.5
Online since: February 1998
Preface Zirconia ceramics fonn a truly remarkable group of materials.
These have inspired the well-known series of 5 international conferences "Science and Technology of Zirconia 1-V" and the published proceedings of the same name.
Those proceedings and the journal literature plot the progress of the field from the very early phase stability work to modern work developing quite sophisticated models for the transfonnation toughening associated with the tetragonal (t) to monoclinic (m) phase transfonnation.
It would appear then that in making rapid technical advances, the technology of zirconia has outstripped the science of zirconia, leaving many important questions unanswered.
The volume is structured (somewhat arbitrarily) to begin with the more basic sciences, followed by a consideration of some of the science underpinning zirconias mechanical and physical properties, and concludes with chapters dealing with the production of quality zirconia ceramics.