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Online since: January 2011
Authors: Zhi Bin Liu, Chao Yang, Shou Chun Zhao
Introduction
β-cyclodextrin (β-CD) have been reported as the most widespread environmental materials in the last twenty years[1,2,3].
Acknowledgements We acknowledge financial support from Heilongjiang Education Department under contract number 11531073.This work was financially supported by the Natural Science Foundation of Heilongjiang Province NO.200806.
[J].Chinese Journal of Applied Chemistry,2003,20(2):108 ~111
[J].Environmental Science Technology,1995,29:2 632 ~2 635
Commun. ,1996,2: 185~187 [4] An W T,Guo X L,Shuang S M,Dong C.; Effect of Microscopic Environment on the Self-Stacking Binding of Porphyrin to DNA [J] [M];Journal of Photochemistry and Photobiology A:Chemistry,2005
Acknowledgements We acknowledge financial support from Heilongjiang Education Department under contract number 11531073.This work was financially supported by the Natural Science Foundation of Heilongjiang Province NO.200806.
[J].Chinese Journal of Applied Chemistry,2003,20(2):108 ~111
[J].Environmental Science Technology,1995,29:2 632 ~2 635
Commun. ,1996,2: 185~187 [4] An W T,Guo X L,Shuang S M,Dong C.; Effect of Microscopic Environment on the Self-Stacking Binding of Porphyrin to DNA [J] [M];Journal of Photochemistry and Photobiology A:Chemistry,2005
Online since: December 2013
Authors: Wen Zhi He, Shu Guang Zhu
It is reported that renovated LiCoO2 may indeed provide high quality grade recycled materials [1, 10].
Materials and methods Materials.
Han: Journal of Power Sources.
Fouad: Journal of Materials Processing Technology.
Lee: Journal of Power Sources.
Materials and methods Materials.
Han: Journal of Power Sources.
Fouad: Journal of Materials Processing Technology.
Lee: Journal of Power Sources.
Online since: July 2011
Authors: Hang Yao, Ming Li Cao
Experiment
Materials.
At present, the main toughening mechanisms of fibrous reinforcing materials on composite materials are pullout effect, crack bridging and crack deflection, etc. [8,9].
References [1] Qiaozhen Yu and Jie Xiong: Journal of Zhejiang Institute of Science and Technology.
Vol. 38(8) (2010), p. 11-13 (In Chinese) [4] Mingli Cao and Jianqiang Wei: submitted to Journal of Wuhan University of Technology -Materials Science Edition (2010) [5] Mingli Cao and Jianqiang Wei: submitted to Journal of Wuhan University of Technology -Materials Science Edition (2011) [6] Wu Yao, Yiping Ma, Muhua Tan and Keru Wu: Journal of Building Materials.
Vol. 40(1) (2009), p. 34-37 (In Chinese) [8] Erfan Chen and Chen Dong: Polymer Materials Science and Engineering.
At present, the main toughening mechanisms of fibrous reinforcing materials on composite materials are pullout effect, crack bridging and crack deflection, etc. [8,9].
References [1] Qiaozhen Yu and Jie Xiong: Journal of Zhejiang Institute of Science and Technology.
Vol. 38(8) (2010), p. 11-13 (In Chinese) [4] Mingli Cao and Jianqiang Wei: submitted to Journal of Wuhan University of Technology -Materials Science Edition (2010) [5] Mingli Cao and Jianqiang Wei: submitted to Journal of Wuhan University of Technology -Materials Science Edition (2011) [6] Wu Yao, Yiping Ma, Muhua Tan and Keru Wu: Journal of Building Materials.
Vol. 40(1) (2009), p. 34-37 (In Chinese) [8] Erfan Chen and Chen Dong: Polymer Materials Science and Engineering.
Online since: September 2011
Authors: Yong Qi Liu, Rui Xiang Liu, Bin Zheng, Jian Meng
The results show that the exposed destructive position is the crankpin and the transition circular bead location of main journal.
Model Building The material of crankshaft is QT800-2.
The results show that the value of stress is the biggest at the crankpin and the transition circular bead location of main journal.
Fig.3 Deformation of crankshaft at maximum compression condition Conclusions At maximum compression condition, the value of stress is the biggest at the crankpin and the transition circular bead location of main journal.
Acknowledgment This work was financially supported by the National High Technology Research and Development Program("863"Program) of China (No.2009AA063202), Shandong Natural Science Foundation (No.Y2006F63) and Zibo Research Programme (No.20062502).
Model Building The material of crankshaft is QT800-2.
The results show that the value of stress is the biggest at the crankpin and the transition circular bead location of main journal.
Fig.3 Deformation of crankshaft at maximum compression condition Conclusions At maximum compression condition, the value of stress is the biggest at the crankpin and the transition circular bead location of main journal.
Acknowledgment This work was financially supported by the National High Technology Research and Development Program("863"Program) of China (No.2009AA063202), Shandong Natural Science Foundation (No.Y2006F63) and Zibo Research Programme (No.20062502).
Online since: November 2011
Authors: Lan Chen
Journal of Materials Processing Technolog,149(2004): 246–249
Journal of Materials Processing Technology,140 (2003):332–334
Journal of Materials Processing Technology,149 (2004):134–138
Journal of Materials Processing Technology, 149(2004):112–116
Journal of Materials Processing Technology, 10(2004):304-309
Journal of Materials Processing Technology,140 (2003):332–334
Journal of Materials Processing Technology,149 (2004):134–138
Journal of Materials Processing Technology, 149(2004):112–116
Journal of Materials Processing Technology, 10(2004):304-309
Online since: January 2013
Authors: Chun Ling Xiao, Qiong Jie Li, Yuan Yuan Xue, He Qing Chai, Yan Fang Zhang, Xin Jia
This experiment using black beans as raw materials, with the optimization method to study it the best extraction technology to DPPH· own base, OH · and reducing power three oxidation system to study the antioxidant ability,for find the black beans in natural peptide of antioxidant parameters.
1.Material and Methods
1.1 Experimental material and reagents
Black beans; Petroleum ether, Three methyl amino methane (tris), glutathione, Xi.
Corresponding author: Chunling Xiao,Tel:+86 13546189256; References [1].Y Chen, W Xu.Journal of Anhui Agricultural Science, 2008,4 (34) : 14928-14929, in Chinese
Journal of grain and oil. 2011 (12):42 - 45 [4].
Food science, 2011 (19):255-259 [6].JG Xin, HM Rui.
Food science and technology, 2009, 34 (6) :158-162
Corresponding author: Chunling Xiao,Tel:+86 13546189256; References [1].Y Chen, W Xu.Journal of Anhui Agricultural Science, 2008,4 (34) : 14928-14929, in Chinese
Journal of grain and oil. 2011 (12):42 - 45 [4].
Food science, 2011 (19):255-259 [6].JG Xin, HM Rui.
Food science and technology, 2009, 34 (6) :158-162
Online since: October 2015
Authors: S. Alexraj, P. Vijaya Rajan, A. Saravanapandi Solairajan, Godwin Jose
International Journal of Engineering, Science and Technology, Vol. 3, No. 4, pp. 103-118
International Journal of Engineering, Science and Technology, Vol. 3, No. 6, pp. 161-171
‘Modeling and analysis for surface roughness and material removal rate inmachining of UD-GFRP using PCD tool’. .International Journal of Engineering, Science and Technology, Vol. 3, No. 8, pp. 248-270
International Journal of Materials Processing Technology, Vol. 36, No. (1-2), pp. 19-27
Composite Materials,5, 94-106
International Journal of Engineering, Science and Technology, Vol. 3, No. 6, pp. 161-171
‘Modeling and analysis for surface roughness and material removal rate inmachining of UD-GFRP using PCD tool’. .International Journal of Engineering, Science and Technology, Vol. 3, No. 8, pp. 248-270
International Journal of Materials Processing Technology, Vol. 36, No. (1-2), pp. 19-27
Composite Materials,5, 94-106
Online since: October 2015
Authors: Xiao Wang, Tao Jiang, Dong Dong Meng, Yan Wei Wu, Hui Xia Liu
Liu: Journal Of Materials Processing Technology, Vol. 210 (2010) No. 13, pp.1767-1771
Ali: Journal Of Thermoplastic Composite Materials, Vol. 17 (2004) No. 4, pp.303-341
Bates: Journal Of Materials Processing Technology, Vol. 211 (2011) No. 1, pp.43-47
Baylis: Journal Of Thermoplastic Composite Materials, Vol. 19 (2006) No. 4, pp.427-439
Bates: Journal of Manufacturing Science and Engineering, Vol. 132 (2010) No. 5, pp.51002
Ali: Journal Of Thermoplastic Composite Materials, Vol. 17 (2004) No. 4, pp.303-341
Bates: Journal Of Materials Processing Technology, Vol. 211 (2011) No. 1, pp.43-47
Baylis: Journal Of Thermoplastic Composite Materials, Vol. 19 (2006) No. 4, pp.427-439
Bates: Journal of Manufacturing Science and Engineering, Vol. 132 (2010) No. 5, pp.51002
Online since: September 2016
Authors: Gap Yong Kim, Mina M.H. Bastwros
Weinkamer, Nature’s hierarchical materials, Progress in Materials Science, 52 (2007) 1263-1334
Seki, Biological materials: Structure and mechanical properties, Progress in Materials Science, 53 (2008) 1-206
Wielage, Nanocrystalline Al–Al2O3p and SiCp composites produced by high-energy ball milling, Journal of Materials Processing Technology, 205 (2008) 111-118
Ito, Processing of carbon nanotube reinforced aluminum composite, Journal of Materials Research, 13 (1998) 2445-2449
Kim, Carbon nanotube reinforced aluminum composite fabricated by semi-solid powder processing, Journal of Materials Processing Technology, 211 (2011) 1341-1347
Seki, Biological materials: Structure and mechanical properties, Progress in Materials Science, 53 (2008) 1-206
Wielage, Nanocrystalline Al–Al2O3p and SiCp composites produced by high-energy ball milling, Journal of Materials Processing Technology, 205 (2008) 111-118
Ito, Processing of carbon nanotube reinforced aluminum composite, Journal of Materials Research, 13 (1998) 2445-2449
Kim, Carbon nanotube reinforced aluminum composite fabricated by semi-solid powder processing, Journal of Materials Processing Technology, 211 (2011) 1341-1347
Online since: March 2015
Authors: Jian Jun Li, Rong Zeng, Liang Huang
In: Journal of Materials Processing Technology 120, 2002, pp. 37-44
In: Journal of Materials Processing Technology 140, 2003, pp. 29-42
In: Journal of Engineering Materials and Technology 100, 1978, pp.279-286
In: Journal of Materials Processing Technology 187-188, 2007, pp. 358-362
In: Journal of Engineering Materials and Technology 108, 1986, pp. 245-249
In: Journal of Materials Processing Technology 140, 2003, pp. 29-42
In: Journal of Engineering Materials and Technology 100, 1978, pp.279-286
In: Journal of Materials Processing Technology 187-188, 2007, pp. 358-362
In: Journal of Engineering Materials and Technology 108, 1986, pp. 245-249