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Online since: January 2014
Authors: Hai Tian Pan, Meng Fei Zhou, Qian Hu, Xiao Fang Sun
Intelligent Modeling of Injection Molding Process Based on PLS-NN
Xiaofang Suna,*, Qian Hub, Mengfei Zhouc, Haitian Pand
College of Chemical Engineering and Materials Science, Zhejiang University of Technology, Hangzhou 310014, China
azgdsxf@zjut.edu.cn, bhgzdhhq@126.com, cmfzhou@zjut.edu.cn, dhtpan@zjut.edu.cn
Keywords: Injection molding; Quality prediction; Partial least-squares regression; Neural networks; Mean absolute percentage error
Abstract.
As we known that the molding parameters determine the flow state of melt in the molding chamber, defects of properties of molding materials, injection machine and mold design could be compensated by appropriate parameter set.
Next section lists the materials used in experiment and describes the experiment design.
Experiment Design Materials.
Cho: International Journal of Production Research Vol. 43(2005), p.3209 [13] D.
As we known that the molding parameters determine the flow state of melt in the molding chamber, defects of properties of molding materials, injection machine and mold design could be compensated by appropriate parameter set.
Next section lists the materials used in experiment and describes the experiment design.
Experiment Design Materials.
Cho: International Journal of Production Research Vol. 43(2005), p.3209 [13] D.
Online since: September 2014
Authors: Xiao Hui Ni
Introduction
Rock is a multiphase material composed of several kinds of mineral grains, cements, micro-pores and cracks.
Mechanics of Materials, Vol.37(2005), p.231-259
Chinese Journal of Rock Mechanics and Engineering, Vol.22(2003), p.1581-1585
International Journal of Rock Mechanics and Mining Sciences, Vol.37(2000), p.143-160
Chinese Journal of Rock Mechanics and, Engineering, Vol.21(2001), p.940-947.
Mechanics of Materials, Vol.37(2005), p.231-259
Chinese Journal of Rock Mechanics and Engineering, Vol.22(2003), p.1581-1585
International Journal of Rock Mechanics and Mining Sciences, Vol.37(2000), p.143-160
Chinese Journal of Rock Mechanics and, Engineering, Vol.21(2001), p.940-947.
Online since: November 2012
Authors: Xiao Yi Bi, Hai Yan Yang, Pei Shi Sun
Acknowledgements
The authors wish to thank Science and Technology Foundation of Yunnan Province (No. 2009CD004) and Foundation of Yunnan Educational Committee (No. 09Y0038) for the financial support.
Materials Research Bulletin, 2007, 42(7) : 1188- 1194
Journal of Photochemistry and Photobiology A: Chemistry. 2007,185: 32-37
Journal of Hazardous Materials, 2009, 165:511-517
Journal of Supercritical Fluids, 2010, 52(1):113-124
Materials Research Bulletin, 2007, 42(7) : 1188- 1194
Journal of Photochemistry and Photobiology A: Chemistry. 2007,185: 32-37
Journal of Hazardous Materials, 2009, 165:511-517
Journal of Supercritical Fluids, 2010, 52(1):113-124
Online since: January 2012
Authors: Hou Yong Yu, Zong Yi Qin
Effect of Cellulose nanocrystal on Crystallization Behavior of Poly(3–hydroxybutyrate–co–3–hydroxyvalerate)
Houyong Yu1,a, Zongyi Qin1, b *
1College of Materials Science and Engineering and State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai, 201620, China
ayuhouyong@mail.dhu.edu.cn, bphqin@dhu.edu.cn
Keywords: Poly(3–hydroxybutyrate–co–3–hydroxyvalerate), Cellulose Nanocrystals, Crystallization Behavior, Non-isothermal crystallization kinetics.
PHBV has more commercial potential applications to replace the petroleum–based synthetic polymers, and also can be used as various biomedical materials [1,2].
[2] Z.Zhou, H.Yu, M.Zhu, et al.: Advanced Materials Research Vol. 284–286(2011), p. 1778–1781
[3] A.Buzarovska, G.Bogoeva–Gaceva, A.Grozdanov et al.: Journal of Materials Science Vol. 42(2007), p. 6501–6509
[4] L.Jiang, E.Morelius, J.Zhang et al.: Journal of Composite Materials Vol. 42(2008), p. 2629–2645
PHBV has more commercial potential applications to replace the petroleum–based synthetic polymers, and also can be used as various biomedical materials [1,2].
[2] Z.Zhou, H.Yu, M.Zhu, et al.: Advanced Materials Research Vol. 284–286(2011), p. 1778–1781
[3] A.Buzarovska, G.Bogoeva–Gaceva, A.Grozdanov et al.: Journal of Materials Science Vol. 42(2007), p. 6501–6509
[4] L.Jiang, E.Morelius, J.Zhang et al.: Journal of Composite Materials Vol. 42(2008), p. 2629–2645
Online since: October 2011
Authors: Hao Hao, Guang Hua Zhang, Jun Feng Zhu
A number of petroleum products as raw materials such as naphthalene dispersant of coal-water slurry(CWS)[1-3] will face a shortage of raw materials.
Therefore, developing renewable resources as raw materials of CWS dispersants have been profound.
This dispersant have wide source of raw materials, low cost, good performance, and would be use widely.
Materials and Methods Materials.
Journal of Fuel Chemistry and Technology(in Chinese) Vol. 25(1997)213-217 [4] Schnitzer, M.Khan,S.U.
Therefore, developing renewable resources as raw materials of CWS dispersants have been profound.
This dispersant have wide source of raw materials, low cost, good performance, and would be use widely.
Materials and Methods Materials.
Journal of Fuel Chemistry and Technology(in Chinese) Vol. 25(1997)213-217 [4] Schnitzer, M.Khan,S.U.
Online since: January 2012
Authors: Yan Ling Wang
Logistics supply chain is a network of suppliers, factories, warehouses, distribution centers and retailers where the raw materials are acquired, manufactured to products, which then are delivered to consumers.
Multi Agent Logistics Coordination A logistics supply chain is referred to as an integrated system which synchronizes a series of inter-related business processes in order to: (1) acquire raw materials and parts, (2) transform these raw materials and parts into finished products, (3) add value to these products, (4) distribute and promote these products to either retailers or customers, (5) facilitate information exchange among various business entities (e.g. suppliers, manufacturers, distributors, third-party logistics providers, and retailers).
Acknowledgments This work was supported in part by the National Soft Science Foundation of China (No. 2010GXS5D214), the Natural Science Foundation of Zhejiang Province (No.
Y6090357), the Science Foundation of Zhejiang Wanli University.
Chan, “Effect of information sharing in supply chain with flexibility”, International Journal of Production Research, Vol. 47, No. 1, pp. 213–232, 2009
Multi Agent Logistics Coordination A logistics supply chain is referred to as an integrated system which synchronizes a series of inter-related business processes in order to: (1) acquire raw materials and parts, (2) transform these raw materials and parts into finished products, (3) add value to these products, (4) distribute and promote these products to either retailers or customers, (5) facilitate information exchange among various business entities (e.g. suppliers, manufacturers, distributors, third-party logistics providers, and retailers).
Acknowledgments This work was supported in part by the National Soft Science Foundation of China (No. 2010GXS5D214), the Natural Science Foundation of Zhejiang Province (No.
Y6090357), the Science Foundation of Zhejiang Wanli University.
Chan, “Effect of information sharing in supply chain with flexibility”, International Journal of Production Research, Vol. 47, No. 1, pp. 213–232, 2009
Online since: May 2013
Authors: Naeem Shahzad, Qiao Chen
More recently, different nano-sized materials are being extensively investigated because of many advantages such as enhanced active sites and larger surface areas.
Materials and methods All analytical reagents were used.
Ramkumar, Electrospinning of Nanofibers, Journal of Applied Polymer Science, 96 (2005) 557-569
Ramaseshan, Electrospun nanofibers: solving global issues, Materials Today, 9 (2006) 40-50
Yoshikawa, Photocatalytic activity for hydrogen evolution of electrospun TiO2 nanofibers, Applied Materials and Interfaces, 1 (2009) 1140–1143.
Materials and methods All analytical reagents were used.
Ramkumar, Electrospinning of Nanofibers, Journal of Applied Polymer Science, 96 (2005) 557-569
Ramaseshan, Electrospun nanofibers: solving global issues, Materials Today, 9 (2006) 40-50
Yoshikawa, Photocatalytic activity for hydrogen evolution of electrospun TiO2 nanofibers, Applied Materials and Interfaces, 1 (2009) 1140–1143.
Online since: August 2014
Authors: Yong Yin, Chao Yong Zhang, De Jun Chen
Applied Mechanics and Materials(2014), 526 (2014) pp 222-229
[3] A.
Science(2005)., 308(29), pp 639-641 [4] M E J Newman.
Modeling strategic alliances in the wide-body long-range aircraft market, Journal of Air Transport Management(2007), 13(3): 139-148
Journal of Operations Management (2001),19: 351-366
A Network Approach to Define Modularity of Components in Complex Products, Journal of Mechanical Design (2007), 129: 1118
Science(2005)., 308(29), pp 639-641 [4] M E J Newman.
Modeling strategic alliances in the wide-body long-range aircraft market, Journal of Air Transport Management(2007), 13(3): 139-148
Journal of Operations Management (2001),19: 351-366
A Network Approach to Define Modularity of Components in Complex Products, Journal of Mechanical Design (2007), 129: 1118
Online since: September 2013
Authors: Xiao Wei Jiang, Qiu Lei Du
Acknowledgement
This study is supported by the Key Self-Service Subject of the Twelfth Five-Year Plan of Educational Science of Jilin Province under the grant No.
References [1] Haijun Zhu: Journal of Chengdu University Vol. 18 (1999), p. 62 [2] Zejun Chen, Zheng Zhou and Xiaofang Yang: Higher Architectural Education (2011), p. 142 [3] Ying Peng: Journal of Guilin University of Electronic Technology Vol. 28 (2008), p. 171 [4] Hongxian Zhang, Bing Li and Xuexiao Geng: Science and Technology Information (2011), p. 247 [5] Li Wang: China Science and Technology Information Vol. 12 (2011), p. 158 [6] Jiang Xiaowei and Cheng Xianchun: Applied Mechanics and Materials Vol. 252 (2012), p. 394 [7] Jianian Liang, Li Zeng and Xinping Yuan: Journal of Higher Education Research (2012), p.80 [8] Xiaowei Jiang: Advance Journal of Food Science and Technology, Vol. 5(2013), p. 926
References [1] Haijun Zhu: Journal of Chengdu University Vol. 18 (1999), p. 62 [2] Zejun Chen, Zheng Zhou and Xiaofang Yang: Higher Architectural Education (2011), p. 142 [3] Ying Peng: Journal of Guilin University of Electronic Technology Vol. 28 (2008), p. 171 [4] Hongxian Zhang, Bing Li and Xuexiao Geng: Science and Technology Information (2011), p. 247 [5] Li Wang: China Science and Technology Information Vol. 12 (2011), p. 158 [6] Jiang Xiaowei and Cheng Xianchun: Applied Mechanics and Materials Vol. 252 (2012), p. 394 [7] Jianian Liang, Li Zeng and Xinping Yuan: Journal of Higher Education Research (2012), p.80 [8] Xiaowei Jiang: Advance Journal of Food Science and Technology, Vol. 5(2013), p. 926
Online since: October 2013
Authors: Jian She Liu, Guo Ri Dong
Effects of Cr3+ on COD Changes of SBR Activated Sludge System with Different Chromium Loads and Different Initial SVIs
Dong Guori1,2,a , Liu Jianshe2,b
1Department of Environmental Science and Engineering , Northeastern University at Qinhuangdao , Qinhuangdao 066004, Hebei , China
2School of Resources Processing and Bioengineering , Central South University, Changsha 410083 , Hunan, China
a dgrcsu@163.com, b ljscsu@263.net
Keywords: chromium, SBR, tolerance range, non-tolerance range, chromium load, initial SVI
Abstract.
Materials and Methods Source and Quality of Experimental Water.
(in chinese) [3] Wang Hongqin: operation control and maintenance management of Urban sewage treatment plant (Beijing: Science Press,China 1999).
:Journal of Bacteriology ,Vol.182-17 (2000) ,p.4899 [7] Ye Jinshao, Yin Hua, Peng Hui:Techniques and Equipment for Environmental Pollution Control,Vol.3-4 (2002) ,p.1(in chinese) [8] WANG Fadong, HUANG Yong, GAO Hong:Journal of Shenyang Archit Civil Eng Univ: Nat Sci, Vol.19-2 (2003) ,p.154(in chinese) [9] CHEN Guo-wei, XI Peng-ge, CHEN Hui:Journal of Hefei University of Technology(Natural Science), Vol.28-2 ( 2005) ,p.150(in chinese) [10] CHEN Chun , HE Zhan-hang: Henan Chemical Industry, Vol.22(2005), p.17(in chinese) [11] MCDERMOTT GN,MOOREWA, ETTINGERMB:J Wat Control Fed , Vol.36(1965),p.226 [12] Dong Guori, Liu Jianshe, Zhou Hongbo, et al: Chinese Journal of Environmental Engineering, Vol.4-4(2010),p.847(in chinese) [13] SHEN Xiang-xin,LI Xiao-ming,ZENG Guang-ming, et al: Industrial Water & Wastewater, 2006,Vol.37-4(2006),p.7 (in chinese) [14] Chen Yuehui, Zhang Wei , Wang Aihe:Science & Technology Information,Vol.21(2010), p.385.
Materials and Methods Source and Quality of Experimental Water.
(in chinese) [3] Wang Hongqin: operation control and maintenance management of Urban sewage treatment plant (Beijing: Science Press,China 1999).
:Journal of Bacteriology ,Vol.182-17 (2000) ,p.4899 [7] Ye Jinshao, Yin Hua, Peng Hui:Techniques and Equipment for Environmental Pollution Control,Vol.3-4 (2002) ,p.1(in chinese) [8] WANG Fadong, HUANG Yong, GAO Hong:Journal of Shenyang Archit Civil Eng Univ: Nat Sci, Vol.19-2 (2003) ,p.154(in chinese) [9] CHEN Guo-wei, XI Peng-ge, CHEN Hui:Journal of Hefei University of Technology(Natural Science), Vol.28-2 ( 2005) ,p.150(in chinese) [10] CHEN Chun , HE Zhan-hang: Henan Chemical Industry, Vol.22(2005), p.17(in chinese) [11] MCDERMOTT GN,MOOREWA, ETTINGERMB:J Wat Control Fed , Vol.36(1965),p.226 [12] Dong Guori, Liu Jianshe, Zhou Hongbo, et al: Chinese Journal of Environmental Engineering, Vol.4-4(2010),p.847(in chinese) [13] SHEN Xiang-xin,LI Xiao-ming,ZENG Guang-ming, et al: Industrial Water & Wastewater, 2006,Vol.37-4(2006),p.7 (in chinese) [14] Chen Yuehui, Zhang Wei , Wang Aihe:Science & Technology Information,Vol.21(2010), p.385.