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Online since: October 2012
Authors: Yan Chen
In EPC projects, various kinds of materials are usually procured by centralized purchasing pattern.
Although this pattern improves the efficiency of the procurement, material suppliers are responsible for the transportation of the materials.
Because material suppliers often lack professional logistics transportation technology, it is difficult for them to guarantee the timely delivery of materials and to achieve economy of scale in the transportation.
Third Party logistics provides us with an effective way to achieve the scale economy of materials transportation.
Salem: Journal of Management in Engineering, Vol.22 (2006), No. 4, pp.168-175
Online since: August 2011
Authors: Shou Hong Han, Yong Jin Liu, Zhen Hua Lu
Unfortunately, there exist only a few experimental data for multi-axial yield surfaces of any type of cellular solids, and standard experimental equipments and methods for hydrostatic compression on foam materials are few.
Journal Of High Pressure Physics, Vol. 20 , No. 1, 2006.
Journal of Beijing University of Aeronautics and Astronautics, Vol. 29, No. 11, 2003.
Mechanical Sciences, Vol. 44 (2002), p. 359~406
A simple elastoplastic model for foam materials.
Online since: January 2015
Authors: B.P. Chandra, V.K. Chandra, Piyush Jha
During this time most of the papers merely recorded new ML materials whereby the interest shifted away from natural minerals towards organic materials.
Among these materials are: ZnS:Mn, MAl2O4:Re (M = alkaline materials, Re = rare earth metals) and SrMgAl10O17:Eu.
Materials 388 (2009) 265-268
Bourhill, Triboluminescent materials for structural damage monitoring, J.
Inabe, Sonoluminescence of X-ray irradiated KCl:Ca2+ during deformation, Materials Science and Engineering A442 (2006) 67–70 [105] P.
Online since: December 2012
Authors: R. Jayaganthan, V.K. Tewari, V.N. Shukla
Tewari Department of Metallurgical and Materials Engineering, Indian Institute of Technology Roorkee, Roorkee-247667, India *email: vnshuklamtech@gmail.com Keywords: High velocity oxy fuel, Microhardness, Microstructure, High temperature oxidation.
The nominal chemical composition of the substrate material is given in Table 1.
Prakash, Mechanical and metallurgical properties of plasma sprayed and laser remelted Ni3Al coatings on boiler tube steels, materials Science and Engineering A, 368 (2004) 149-158
Berndt, Ed., Materials Park, OH, USA: ASM International, (1992) 735-742
Sampath, Eds., Materials Park, OH, USA: ASM International, (1994) 121-126
Online since: June 2014
Authors: Xi Bo Wang, Ya Lin Lei, Min Yao
Thermal power provides an important material basis for the development of the national economy.
Resources Science,2009, 31(2): 238e42
Journal of Oil.1995. 16 (1): 79-86 (in Chinese)
Resources Science, 2009, 31(2).
Resources Science,2009, 31(2): 238e42
Online since: November 2014
Authors: Dariusz Boroński, Tomasz Marciniak, Damian Ledziński, Mirosław Maszewski
Robot actions planning algorithms in multi-agent system Damian Ledziński,1,a Tomasz Marciniak,1,b Mirosław Maszewski,1,c Dariusz Boroński2,d 1 University of Technology and Life Sciences, Faculty of Telecommunications, Computer Science and Electrical Engineering, al.
Kaliskiego 7, 85-791 Bydgoszcz, Poland 2 University of Technology and Life Sciences, Faculty of Mechanical Engineering, al.
The available literature indicates that this is an important topic in modern science.
Dobrilović, Shortest-path algorithms as a tools for inner transportation optimization, International Journal of Industrial Engineering and Management (IJIEM), Vol.3 No 1, (2012) pp. 39-45 [3] T.
Czajka, Dual-Band Experimental System For subsurface Cracks Testing, Materials Science Forum Vol. 726 - Fatigue Failure and Fracture Mechanics, Trans Tech Publications, (2012) pp. 222-226 [4] B.
Online since: June 2012
Authors: Qi Li, Dong Sheng Xu, Shu Ling Huang
Materials and methods 1.1 Sample collection and testing According to the functional zoning of Suzhou, the samples were selected in industrial area, business district, the station around, residential areas and urban green space.
Chinese Journal of Applied Ecology, 2004,15(1):123-126
Science of the Total Environment, 2002, 299: 1-19
Earth Science Front iers, 2006, 13(1):216-223
Environmental Science, 2011,32(9): 2661-2668
Online since: February 2004
Authors: K. Cheng, X.C. Luo
The potential and application of abrasive nanometric machining techniques to a variety of engineering materials for electronic, automotive and optical industries are investigated.
The advantages of abrasive nanometric machining have made it successfully applied in machining a variety of engineering materials for electronic, automotive and optical applications, etc.
The technique is promising for various engineering materials in electronic, automotive and optical industries in particular, although the productivity of the technique needs to be further researched.
Sutherland: Transactions of the ASME - Journal of Manufacturing Science and Engineering, Vol. 123 (2001), p. 576
Mcgeough: Micromachining of Engineering Materials (Marcel Dekker Inc., New York 2002)
Online since: March 2011
Authors: Shou Ren Wang, Li Ying Yang, Yan Jun Wang, Bin Wang
Introduction Nowadays, sintered high-speed steel (HSS) are no longer the primary materials used in cutting tools.
In many high-speed cutting applications, HSS has been replaced by new, superior ceramic materials.
Unfortunately, the mechanical and frictional properties of such materials are very poor in many cases.
Transactions of Materials and Heat Treatment Vol. 29(2008), p. 85-89
Journal of China University of Mining and Technology Vol.18, (2008), p.441-443
Online since: November 2011
Authors: Li Jiao Zhou, Qi Yuan Chen, Zhou Lan Yin, Zheng Ping Wu
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant No. 51104185), Postdoctoral Science Foundation of China (20090451114), Fundamental Research Funds for the Central Universities (2010QZZD003) and Postdoctoral Science Foundation of Central South University.
Walker: Solid State and Materials Science Vol. 1 (1996), p. 506 [10] C.
Meekes: Journal of Crystal Growth Vol. 233 (2001), p. 567 [11] Yitai Qian: Crystal Chemistry (Chinese Science and Technology University Press, China1988).
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