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Online since: December 2004
Authors: Yu Ying Yang, W. Liu, Z.W. Xing
Materials Science Forum Vols. *** (2004) pp.895-899
online at http://scientific.net
Ó 2004 Trans Tech Publications, Switzerland
Study on Process Decision Methodology for Sheet Metal Stamping by
Case Based Technology
W.
Advances in Materials Manufacturing Science and Technology 896 This paper describes case based process decision support software, developed by the authors, for the stamping of auto body panels.
This information Advances in Materials Manufacturing Science and Technology 898 warns designers to pay attention to these potential defects.
Materials Science Forum Vols. *** 899 References [1] A.
Altan: Journal of Materials Processing Technology Vol. 57 (1996), p. 241 [3] W.L.
Advances in Materials Manufacturing Science and Technology 896 This paper describes case based process decision support software, developed by the authors, for the stamping of auto body panels.
This information Advances in Materials Manufacturing Science and Technology 898 warns designers to pay attention to these potential defects.
Materials Science Forum Vols. *** 899 References [1] A.
Altan: Journal of Materials Processing Technology Vol. 57 (1996), p. 241 [3] W.L.
Online since: February 2014
Authors: Mao Fa Jiang, Cheng Jun Liu, Pei Yang Shi, Bo Zhang, Wen Hai Chi
Sodium dichromate and chromium anhydride could be prepared by electrolytic method, when sodium chromate were used as raw materials.
Cooper et al.[30] used ferrochrome alloy as raw materials to produce the qualified sodium chromate and sodium dichromate.
Journal of Hazardous Materials.
Journal of Environmental Quality.
Journal of Ecotechnology Research.
Cooper et al.[30] used ferrochrome alloy as raw materials to produce the qualified sodium chromate and sodium dichromate.
Journal of Hazardous Materials.
Journal of Environmental Quality.
Journal of Ecotechnology Research.
Online since: November 2010
Authors: Zhi Hong Li, Ji Min Wu, Shu Jie Huang, J. Guan, Xi Zheng Zhang
Several methods have been introduced to fabricate strontium-substituted calcium phosphate ceramics and bone cements [12-14].The chemical composition, crystal size and lattice structural, Solubility, biological and bone repair properties of these materials were also studied[14-20].Strontium-substituted cements exhibited stronger soluble properties than pure HA [15, 17].
But The osteoplastic ability of Sr-HA has no positive relationship with proportion of Strontium increasing in the materials[19].
Experimental 1.1.Materials Sr(NO3)2 (211.63,AR) were purchased from Chemical Reagent Co.Ltd.
Acknowledgements This project is financially supported by the National Science Foundation of Tianjin, China (09JCYBJC14100); and the National Natural Science Foundation of China (10832012;30970724).
Kolthoff: Bone Vol.20(1997),p.47 [16]Li ZY,Lam WM ,Yang C ,Xu B, Ni GX ,Abbah SA ,Cheung KM , Luk KD,Lu WW: Biomaterials Vol.28 (2007),p.1452 [17]CHEN DM,FU YF,GU GZ, QIAN YF, GU YF: Chinese Journal of Biomedical Engineering Vol.20 (2001),p.278 [18]YUE J,GUO DG,SUN X, LEI DL,MAO TQ:Journal Of Xi'an Jiaotong University(Medical Sciences) Vol.29(2008),p.522 [19] LIAO DP, ZHOU ZY, GU YF,CHEN DM: Chinese Journal Of Oral And Maxillofacial Surgery, Vol.11(2001),p.122 [20]Wong CT, Lu WW, Chan WK: J Biomed Mater Res A Vol.68(2004),p.513 [21]Quanzu Yang, TomT roczynski, Dean-MoLiu: Biomaterials Vol.23 (2002),p.2751 [22]CAI S, YAO KD, GUAN YH: Journal Of The Chinese Ceramic Society Vol.31(2003),p.108 [23]Sadat-Shojai M, Atai M, Nodehi A, Khanlar LN: dental materials Vol.26(2010),p.471
But The osteoplastic ability of Sr-HA has no positive relationship with proportion of Strontium increasing in the materials[19].
Experimental 1.1.Materials Sr(NO3)2 (211.63,AR) were purchased from Chemical Reagent Co.Ltd.
Acknowledgements This project is financially supported by the National Science Foundation of Tianjin, China (09JCYBJC14100); and the National Natural Science Foundation of China (10832012;30970724).
Kolthoff: Bone Vol.20(1997),p.47 [16]Li ZY,Lam WM ,Yang C ,Xu B, Ni GX ,Abbah SA ,Cheung KM , Luk KD,Lu WW: Biomaterials Vol.28 (2007),p.1452 [17]CHEN DM,FU YF,GU GZ, QIAN YF, GU YF: Chinese Journal of Biomedical Engineering Vol.20 (2001),p.278 [18]YUE J,GUO DG,SUN X, LEI DL,MAO TQ:Journal Of Xi'an Jiaotong University(Medical Sciences) Vol.29(2008),p.522 [19] LIAO DP, ZHOU ZY, GU YF,CHEN DM: Chinese Journal Of Oral And Maxillofacial Surgery, Vol.11(2001),p.122 [20]Wong CT, Lu WW, Chan WK: J Biomed Mater Res A Vol.68(2004),p.513 [21]Quanzu Yang, TomT roczynski, Dean-MoLiu: Biomaterials Vol.23 (2002),p.2751 [22]CAI S, YAO KD, GUAN YH: Journal Of The Chinese Ceramic Society Vol.31(2003),p.108 [23]Sadat-Shojai M, Atai M, Nodehi A, Khanlar LN: dental materials Vol.26(2010),p.471
Online since: December 2006
Authors: Byeong Soo Lim, Bum Joon Kim, C.S. Jeong
DiMelfi: Materials Science and Engineering A 158 (1992), p. 53
[3] C.S.
Lim: Key Engineering Materials 297-300 (2005) p. 1858 [4] C.Y.
Nam: Materials Letters 49 (2001) p. 20 [5] S.B.
Biner: Material Science and Engineering A 208 (1996) p. 239 [6] H.C.
Le May: Material Science and Engineering A 234 (1997) p. 87 [7] B.
Lim: Key Engineering Materials 297-300 (2005) p. 1858 [4] C.Y.
Nam: Materials Letters 49 (2001) p. 20 [5] S.B.
Biner: Material Science and Engineering A 208 (1996) p. 239 [6] H.C.
Le May: Material Science and Engineering A 234 (1997) p. 87 [7] B.
Online since: January 2012
Authors: Ping Chen, Jun Qiu, Xian Jun Lu
Bentonite is a kind of cheap and easily obtained natural mineral materials, and the main mineral composition is montmorillonite with 2:1 type layer structure.
Materials and methods Materials.
N: Applied Clay Science, Vol.19,(2001), p.11-26
You: Journal of the Chinese Ceramic Society, Vol.32,(2004), p.970 - 974
[14]Adnanzcan, et al: Journal of Hazardous Materials, Vol.140,(2007), p.173-179
Materials and methods Materials.
N: Applied Clay Science, Vol.19,(2001), p.11-26
You: Journal of the Chinese Ceramic Society, Vol.32,(2004), p.970 - 974
[14]Adnanzcan, et al: Journal of Hazardous Materials, Vol.140,(2007), p.173-179
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.
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: December 2011
Authors: Yan Zeng, Feng Lan Li, Chang Yong Li
Zhang: New Building Materials, No. 7 (2006), p 1-3
Hu: Journal of Building Materials, No. 4 (2006), p. 381-387
Wang: Journal of Building Materials, No. 4 (2010), p. 529-534
Hu: Journal of Building Materials, No. 9 (2006), p. 381-387 [17] H.
Liu: Journal of Railway Science and Engineering, No. 2 (2006), p. 15-20
Hu: Journal of Building Materials, No. 4 (2006), p. 381-387
Wang: Journal of Building Materials, No. 4 (2010), p. 529-534
Hu: Journal of Building Materials, No. 9 (2006), p. 381-387 [17] H.
Liu: Journal of Railway Science and Engineering, No. 2 (2006), p. 15-20
Online since: January 2014
Authors: Yan Jun Wu, Shi Dong Ji, Li Jiang Jia
Acknowledgements
This work was supported by Ministry of Education, Humanities and Social Sciences Project (No. 13YJA630016); Natural Science Foundation of Heilongjiang Province (No.
QC2011C076); Heilongjiang Province Natural Science Foundation (No.
[2] Bernstein J I, “The structure of Canadian inter-industry R&D spillovers and the rates of return to R&D”,The Journal of Industrial Economics,vol. 37, no. 3, pp. 3125–3328, 1998
[4] Kumbhakar S C, “Production Frontiers,Panel Data and Time-Varing Technical Inefficiency”, Journal of Econometrics,vol. 46, no. 8, pp. 201-211, 1990
Formulation and Estimation of Stochastic Frontier Production Models”, Journal of Econometrics,vol. 6, no. 1, pp. 21-37,1997
QC2011C076); Heilongjiang Province Natural Science Foundation (No.
[2] Bernstein J I, “The structure of Canadian inter-industry R&D spillovers and the rates of return to R&D”,The Journal of Industrial Economics,vol. 37, no. 3, pp. 3125–3328, 1998
[4] Kumbhakar S C, “Production Frontiers,Panel Data and Time-Varing Technical Inefficiency”, Journal of Econometrics,vol. 46, no. 8, pp. 201-211, 1990
Formulation and Estimation of Stochastic Frontier Production Models”, Journal of Econometrics,vol. 6, no. 1, pp. 21-37,1997
Online since: February 2014
Authors: Jing Liu, Liang Mei, Wen Min Han
The Resource Conflict Resolution Problem for Virtual Cellular Manufacturing Inter-cell Scheduling Under the Conditions of Resource Sharing
Wenmin Han1,a,Jing Liu1,b and Liang Mei1,c
1School of Economics and Management, Jiangsu University of Science and Technology, 2 Mengxi Road, Zhenjiang, Jiangsu, 212003, China
awlmh63@163.com, blj88just@163.com,cjskdml@126.com
Keywords: virtual cellular inter-cell scheduling, resource sharing, resource conflict resolution, particle swarm optimization algorithm
Abstract.
Acknowledgments This work was supported by the National Natural Science Foundation of China (71271105), Ministry of Education, Humanities and Social Sciences Planning Fund(12YJA630036) .
References [1] R.Jayachitra: International Journal of Engineering Science and Technology.Vol.2(6),2010,P.1708 [2] K.L.Mak, J.S.K.Lau, X.X.Wang:International Journal of Production Research.Vol.43(12),2005, P.2423 [3] Tavakkoli Moghaddam, R.
Gholipour Kanani:Expert Systems with Applications.Vol.37(3),2010,P.2661 [4] Atabak Elmi:Computers & Industrial Engineering.Vol.61(1),2011,P.171 [5] Tang Jiafu, Wang Xiaoqing:Journal of Intelligent Manufacturing.Vol.21(4),2009 [6] Wenmin Han, Juan Chen, Xiangzun Bu:The 2012 International Conference on Information Technology and Management Innovation,Guangzhou(2012) [7] Wenmin Han, Xiangzun Bu, Juan Chen:The 3rd International Conference on Advanced in Materials and Manufacturing Processes, Beihai(2012) [8] Pohsian H:Computer and Electrical Engineering.Vol.29(7),2003,P.757 [9] Chen J:Journal of Intelligent and Robotic Systems.Vol.37(3),2003,P.307 [10]H.Rezazadeh,M.Ghazanfari,S.J.Sadjadi:Journal of Applied Research and Technology.Vol. 7(1),2009,P.83 [11]Qie He, Ling Wang:Engineering Applications of Artificial Intelligence.Vol.20(2),2007,P.89
Acknowledgments This work was supported by the National Natural Science Foundation of China (71271105), Ministry of Education, Humanities and Social Sciences Planning Fund(12YJA630036) .
References [1] R.Jayachitra: International Journal of Engineering Science and Technology.Vol.2(6),2010,P.1708 [2] K.L.Mak, J.S.K.Lau, X.X.Wang:International Journal of Production Research.Vol.43(12),2005, P.2423 [3] Tavakkoli Moghaddam, R.
Gholipour Kanani:Expert Systems with Applications.Vol.37(3),2010,P.2661 [4] Atabak Elmi:Computers & Industrial Engineering.Vol.61(1),2011,P.171 [5] Tang Jiafu, Wang Xiaoqing:Journal of Intelligent Manufacturing.Vol.21(4),2009 [6] Wenmin Han, Juan Chen, Xiangzun Bu:The 2012 International Conference on Information Technology and Management Innovation,Guangzhou(2012) [7] Wenmin Han, Xiangzun Bu, Juan Chen:The 3rd International Conference on Advanced in Materials and Manufacturing Processes, Beihai(2012) [8] Pohsian H:Computer and Electrical Engineering.Vol.29(7),2003,P.757 [9] Chen J:Journal of Intelligent and Robotic Systems.Vol.37(3),2003,P.307 [10]H.Rezazadeh,M.Ghazanfari,S.J.Sadjadi:Journal of Applied Research and Technology.Vol. 7(1),2009,P.83 [11]Qie He, Ling Wang:Engineering Applications of Artificial Intelligence.Vol.20(2),2007,P.89
Online since: December 2012
Authors: Xiao Ling Liang, Yu Wang, Wen Xing Wu
Introduction
Mass customization (MC) supply chain network system is composed of nodes of suppliers, manufacturers, distributors, retailers and customers, raw materials along each node converted into personalized products for customers.
International Journal of Production Research, 2000,38 (17):4061–4070
International Journal of Agile.Management Systems, 2000, 2 (1), 54–61
International Journal of Production Economics, 2008, 113(2):943~956
International Journal of Production Research. 2011, 52(4): 1–15
International Journal of Production Research, 2000,38 (17):4061–4070
International Journal of Agile.Management Systems, 2000, 2 (1), 54–61
International Journal of Production Economics, 2008, 113(2):943~956
International Journal of Production Research. 2011, 52(4): 1–15