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Online since: June 2013
Authors: Qiang Yu, Lan Lan Liu
The quality of materials provided by the suppliers determines the product quality and performance, the green supply chain management should control from the source.
The materials of green packaging must avoid the environment pollution in the process using.
Green packaging refers to adopt the method of saving resource, protecting environment for the packing of the goods, Green packaging materials has the feature of the province, abandoned the least and easy recycling can be recycled. green packaging materials is harmless to human and the ecological environment.
References [1] Dongfei Liu, Wei Lu School of Computer Science and Technology, Wuhan University of Technology Wuhan, Hubei Province 430070, China.
Proceedings of 2007 International Symposium on Distributed Computing and Applications to Business, Engineering and Science(Volume Ⅱ)[C], 2007
The materials of green packaging must avoid the environment pollution in the process using.
Green packaging refers to adopt the method of saving resource, protecting environment for the packing of the goods, Green packaging materials has the feature of the province, abandoned the least and easy recycling can be recycled. green packaging materials is harmless to human and the ecological environment.
References [1] Dongfei Liu, Wei Lu School of Computer Science and Technology, Wuhan University of Technology Wuhan, Hubei Province 430070, China.
Proceedings of 2007 International Symposium on Distributed Computing and Applications to Business, Engineering and Science(Volume Ⅱ)[C], 2007
Online since: February 2008
Authors: Chao Chang Arthur Chen, Wei En Fu, Meng Ke Chen
Introduction
Thin films have become an important topic of material science and it also has been long recognized
that stress state influences the physical properties [1].
The Grazing Incident X-Ray Diffraction (GIXRD) with high precision and capability has been a powerful tool applied to the residual stress analysis for the polycrystalline materials [4].
Goudeau: Journal of Applied Physics.
Ting, McKerrow and J.Andrew: Materials Research Society Symposium Proceedings.
Genzel: Materials Science and Technology.
The Grazing Incident X-Ray Diffraction (GIXRD) with high precision and capability has been a powerful tool applied to the residual stress analysis for the polycrystalline materials [4].
Goudeau: Journal of Applied Physics.
Ting, McKerrow and J.Andrew: Materials Research Society Symposium Proceedings.
Genzel: Materials Science and Technology.
Online since: March 2010
Authors: Ke Shi Zhang, Liang Qin, Xiao Liang Geng
The main reason was that particle clusters
lead to non-uniform deformation behavior of materials and make the grain boundary to brittle.
Strain curve of simulation Assumed that interface exists between particles and matrix, the GTN model was applied to describe the materials properties of the interface.
As the model simulate the structural characteristics of SiCp/Al reasonably, it was able to describe the materials interface damage and its macroscopic mechanical behavior.
Acknowledgments This study is supported by the National Natural Science Foundation of China (10662001 and 90815001) and the Guangxi Natural Science Foundation (0832024), the authors are greatly appreciated.
[2] N.Chawla, R.S.Sidhu, V.V.Ganesh, Acta Materials Vol.54(2006),p.1541 [3] D.Saraev, S.Schmauder, International Journal of Plasticity Vol.19(2003),p.733 [4] H.J.Bohm, A.Eckschlager,W.Han, Computational Materials Science Vol.25(2002),p.42 [5] Leon.L, Mishnaevsky.Jr, , Acta Mater.
Strain curve of simulation Assumed that interface exists between particles and matrix, the GTN model was applied to describe the materials properties of the interface.
As the model simulate the structural characteristics of SiCp/Al reasonably, it was able to describe the materials interface damage and its macroscopic mechanical behavior.
Acknowledgments This study is supported by the National Natural Science Foundation of China (10662001 and 90815001) and the Guangxi Natural Science Foundation (0832024), the authors are greatly appreciated.
[2] N.Chawla, R.S.Sidhu, V.V.Ganesh, Acta Materials Vol.54(2006),p.1541 [3] D.Saraev, S.Schmauder, International Journal of Plasticity Vol.19(2003),p.733 [4] H.J.Bohm, A.Eckschlager,W.Han, Computational Materials Science Vol.25(2002),p.42 [5] Leon.L, Mishnaevsky.Jr, , Acta Mater.
Online since: June 2014
Authors: Cheng Zhi Wang, Yu Xian Jia
The influence of induction heating to remelting temperature radial distribution
Yuxian Jia1,a, Chengzhi Wang1,b
1Department of Material Science and Engineering, Shenyang Li Gong University,
Shenyang, Liaoning, 110159, China
acihrjia@163.com, bwchengzhi@163.com
Key words: semi-solid; induction heating; temperature distribution
Abstract.
Introduction In casting industry, use of semi-solid materials as charge material has become one of the research areas of the recent years.
Journal of Materials Processing Technology 186 (2007) 94–101 [4] H.
Optimal control of induction heating for semi-solid aluminum alloy forming.Journal of Materials Processing Technology 189 (2007) 182–191 [5] C.G.
Journal of Materials Processing Technology 187–188 (2007) 344–348
Introduction In casting industry, use of semi-solid materials as charge material has become one of the research areas of the recent years.
Journal of Materials Processing Technology 186 (2007) 94–101 [4] H.
Optimal control of induction heating for semi-solid aluminum alloy forming.Journal of Materials Processing Technology 189 (2007) 182–191 [5] C.G.
Journal of Materials Processing Technology 187–188 (2007) 344–348
Online since: January 2007
Authors: Elena Gordo Odériz, Elisa Maria Ruiz-Navas, P.G. Esteban
Furthermore, the pore size of the materials
(generally smaller than 10μm) is smaller than the pores
of the materials made from blended powder.
Loretto, Alloy and process development of TiAl, Journal of Materials Science 39 (2004) 3935 - 3940 [4] K.
Froes , Structural evolution of mechanically alloyed Ti-Al alloys, Materials Science and Engineering A, 158, (1992) 93-101 [10] C.Suryanarayana, R.
Froes, TiAl formation by mechanical alloying, Materials Science and Engineering A, 150 (1992) 117-121 [11] C.Suryanarayana, Mechanical alloying and milling, Progress in Materials Science, 46 (2001) 1-184 [12] D.L.
Zhang, Processing of advanced materials using high-energy mechanical milling,49 (2004) 537-560 [13] M.Dahms, Formation of titanium aluminides by heat treatment of extruded elemental powders, Materials Science and Engineering A 110 (1989) L5-L8
Loretto, Alloy and process development of TiAl, Journal of Materials Science 39 (2004) 3935 - 3940 [4] K.
Froes , Structural evolution of mechanically alloyed Ti-Al alloys, Materials Science and Engineering A, 158, (1992) 93-101 [10] C.Suryanarayana, R.
Froes, TiAl formation by mechanical alloying, Materials Science and Engineering A, 150 (1992) 117-121 [11] C.Suryanarayana, Mechanical alloying and milling, Progress in Materials Science, 46 (2001) 1-184 [12] D.L.
Zhang, Processing of advanced materials using high-energy mechanical milling,49 (2004) 537-560 [13] M.Dahms, Formation of titanium aluminides by heat treatment of extruded elemental powders, Materials Science and Engineering A 110 (1989) L5-L8
Online since: July 2013
Authors: George Lampeas, Wei Zhuo Wang, John E. Mottershead, De Zhi Wang
Damage assessment of composite materials is crucial for health monitoring of engineering structures.
A number of types of impact damage in composite materials are known such as splitting, delamination, fibre fracture, and debonding etc.
Due to the highly heterogeneous nature of composite materials and the intricate damage mechanisms, inferring the extent of damage with uncertainty quantification is crucial in real applications.
Statistical Science. 4(4) (1989)
Journal of Global optimization. 13 (1998)
A number of types of impact damage in composite materials are known such as splitting, delamination, fibre fracture, and debonding etc.
Due to the highly heterogeneous nature of composite materials and the intricate damage mechanisms, inferring the extent of damage with uncertainty quantification is crucial in real applications.
Statistical Science. 4(4) (1989)
Journal of Global optimization. 13 (1998)
Online since: June 2014
Authors: Zheng Tong Han, Hong Bo Luo, Gang Yang
After austenization, surface is rapid cooled due to the high conductivity of material.
A piece of workpiece material size of 8mm(wide)×3mm(deep) on the surface is cut off by linear cut machine as sample.
Zarudi, L.C.Zhang: Journal of Materials Science.
Vol.37 (2002),p.3935 [3]G.Chryssolouris,K.Tsirbas, K.Salonitis: Journal of Manufacturing Processes.Vol.7 (2005),p.1 [4] J.H.Zhang, P.Q.Ge: International Journal of Heat and Mass Transfer.
Zaeh: International Journal of Heat and Mass Transfer.
A piece of workpiece material size of 8mm(wide)×3mm(deep) on the surface is cut off by linear cut machine as sample.
Zarudi, L.C.Zhang: Journal of Materials Science.
Vol.37 (2002),p.3935 [3]G.Chryssolouris,K.Tsirbas, K.Salonitis: Journal of Manufacturing Processes.Vol.7 (2005),p.1 [4] J.H.Zhang, P.Q.Ge: International Journal of Heat and Mass Transfer.
Zaeh: International Journal of Heat and Mass Transfer.
Online since: December 2012
Authors: Wei Gao, Rong Fei Zhao, Yong Ning Mi
Test materials
Test earth material is taken from the construction site of test.
Journal of Glaciology and Geocryology, 1996(4): 297-304.
Building Science, 2009, 25(5): 51-54.
Journal of Geotechnical Engineering, 1992,118(7):1083-1097
Chinese Journal of Rock Mechanics and Engineering, 2003, 22(Supp.2):2695-2699.
Journal of Glaciology and Geocryology, 1996(4): 297-304.
Building Science, 2009, 25(5): 51-54.
Journal of Geotechnical Engineering, 1992,118(7):1083-1097
Chinese Journal of Rock Mechanics and Engineering, 2003, 22(Supp.2):2695-2699.
Online since: January 2019
Authors: Bing Bai, Chang Yi Zhang, Pei Pei Zhang, Wen Yang
References
[1] Jui-Hung Wu, Chih-Kuang Lin, Materials Science and Engineering A, 2005, 390(1-2): 291-298
[2] Wen-Tung Chien, Chung-Shay Tsai, Journal of Materials Processing Technology, 2003, 140: 340-345
[4] W.D.You, J.H.Lee, S.K.Shin, B.H.Choe, U.Paik, Materials Science Forum, 2005, 486-487: 241-244
Journal of Nuclear materials, 1994,217(3): 269-278
Gonzalez-Velazquez, Effect of spinodal decomposition on the mechanical behavior of Fe–Cr alloys, Materials Science and Engineering A, 527 (2010) 2910-2914
[2] Wen-Tung Chien, Chung-Shay Tsai, Journal of Materials Processing Technology, 2003, 140: 340-345
[4] W.D.You, J.H.Lee, S.K.Shin, B.H.Choe, U.Paik, Materials Science Forum, 2005, 486-487: 241-244
Journal of Nuclear materials, 1994,217(3): 269-278
Gonzalez-Velazquez, Effect of spinodal decomposition on the mechanical behavior of Fe–Cr alloys, Materials Science and Engineering A, 527 (2010) 2910-2914
Online since: December 2013
Authors: Amran Rasli, Ai Chin Thoo, Abu Bakar Abdul Hamid, Da Wei Zhang
As stated by Chopra and Meindl [2], a typical supply chain includes the following five stages: component/raw material suppliers, manufacturers, retailers, wholesalers/distributors and customers.
Green distribution consists of green packaging with aims to (1) downsize packaging, (2) use “green” packaging materials, (3) promote recycling and reuse programs, (4) cooperate with vendor to standardize packaging, (5) encourage and adopt returnable packaging methods and (6) minimize material uses and time to unpack [5].
Benchmarking: An International Journal, 12(4), pp. 330-353, 2005
International Journal of Physical Distribution and Logistics Management, 39(5), pp. 360-387, 2008
Mosakowski, Entrepreneurial Resource, Organizational Choice, and Competitive Outcomes, Organizational Science, 9(6), pp. 625-643, 1998
Green distribution consists of green packaging with aims to (1) downsize packaging, (2) use “green” packaging materials, (3) promote recycling and reuse programs, (4) cooperate with vendor to standardize packaging, (5) encourage and adopt returnable packaging methods and (6) minimize material uses and time to unpack [5].
Benchmarking: An International Journal, 12(4), pp. 330-353, 2005
International Journal of Physical Distribution and Logistics Management, 39(5), pp. 360-387, 2008
Mosakowski, Entrepreneurial Resource, Organizational Choice, and Competitive Outcomes, Organizational Science, 9(6), pp. 625-643, 1998