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Online since: August 2010
Authors: Xiao Peng Yan, Nian Mei Zhang, Gui Tong Yang, Wei Min Liang, Yong Gang Zhao
Introduction
Metal foams are a new class of engineering materials integrated with physical function and structure.
And the closed-cell aluminium foams material has higher protective value from projectiles than open-cell aluminium foams material.
Fleck, "High strain rate compressive behavior of aluminum foam alloy foams",International Journal of Impact Engineering,vol.24,2000, p.277-292 [4] M.
,vol.16,1978, p.1-99 [5] Weichang Qian, Armor-piercing Mechanics (National Defence Industry Press,1984) [6] Guitong Yang, Soil Dynamics (China Building Material Industry Publishing House , 2000) [7] Guitong Yang, Dynamic Theory of Plasticity (-ew Edition)(Higher Education Press , 2000) [8] Yuzhao Song, Guitong Yang, "Penetration analysis of an axisymmetric projectile to a semiinfinite target", Chinese Journal of Theoretical and Applied Mechanics,vol.17,1985, p.56-63 [9] M.J.
Ong, "Dynamic indentation and penetration of aluminium foams", Mechanical Sciences, vol.50, 2008, p.932-943
And the closed-cell aluminium foams material has higher protective value from projectiles than open-cell aluminium foams material.
Fleck, "High strain rate compressive behavior of aluminum foam alloy foams",International Journal of Impact Engineering,vol.24,2000, p.277-292 [4] M.
,vol.16,1978, p.1-99 [5] Weichang Qian, Armor-piercing Mechanics (National Defence Industry Press,1984) [6] Guitong Yang, Soil Dynamics (China Building Material Industry Publishing House , 2000) [7] Guitong Yang, Dynamic Theory of Plasticity (-ew Edition)(Higher Education Press , 2000) [8] Yuzhao Song, Guitong Yang, "Penetration analysis of an axisymmetric projectile to a semiinfinite target", Chinese Journal of Theoretical and Applied Mechanics,vol.17,1985, p.56-63 [9] M.J.
Ong, "Dynamic indentation and penetration of aluminium foams", Mechanical Sciences, vol.50, 2008, p.932-943
Online since: July 2011
Authors: Xiao Ling Hu, Yong Ouyang, Xiong Zhou, Wen Bo Luo
Naito: International Journal of Mechanical Sciences, 50 (2008), p.856
Furutani: International Journal of Mechanical Sciences, 48 (2006), p.108
El-Sebaie: Materials & Design, 30 (2009), p. 1785
Baran: Materials Science and Engineering A, 332 (2002), p.362
Uskokovic: Materials Letters, 58 (2004), p.2437
Furutani: International Journal of Mechanical Sciences, 48 (2006), p.108
El-Sebaie: Materials & Design, 30 (2009), p. 1785
Baran: Materials Science and Engineering A, 332 (2002), p.362
Uskokovic: Materials Letters, 58 (2004), p.2437
Online since: January 2013
Authors: Lei Lin Zhang, Yi Lu, Bo Tao Qin
Materials and Methods
Materials: Thickener, crosslinker, self-made type F3 foaming agent, fly ash (mud), water.
Shukla: International Journal of Coal Geology.
Rosario Rodriguez Niño: Advances in Colloid and interface Science.
Garcia-Ochoa: Journal of the Science of Food and Agriculture.
Chu: Safety Science.
Shukla: International Journal of Coal Geology.
Rosario Rodriguez Niño: Advances in Colloid and interface Science.
Garcia-Ochoa: Journal of the Science of Food and Agriculture.
Chu: Safety Science.
Online since: May 2014
Authors: Hai Bo Lu, W.J.T. Bill Daniel, Zhao Bing Liu, Yan Le Li, Paul A. Meehan
Filice, Shape and dimensional accuracy in Single Point Incremental Forming: State of the art and future trends, Journal of Materials Processing Technology, 191 (2007) 390-395
Micari, A force measuring based strategy for failure prevention in incremental forming, Journal of Materials Processing Technology, 177 (2006) 413-416
Iseki, An approximate deformation analysis and FEM analysis for the incremental bulging of sheet metal using a spherical roller, Journal of Materials Processing Technology, 111 (2001) 150-154
Vanherck, Experimental study on force measurements for single point incremental forming, Journal of Materials Processing Tech, 189 (2007) 65-72
Dixit, An analytical approach for the prediction of forming limit curves subjected to combined strain paths, International Journal of Mechanical Sciences, 53 (2011) 365-373
Micari, A force measuring based strategy for failure prevention in incremental forming, Journal of Materials Processing Technology, 177 (2006) 413-416
Iseki, An approximate deformation analysis and FEM analysis for the incremental bulging of sheet metal using a spherical roller, Journal of Materials Processing Technology, 111 (2001) 150-154
Vanherck, Experimental study on force measurements for single point incremental forming, Journal of Materials Processing Tech, 189 (2007) 65-72
Dixit, An analytical approach for the prediction of forming limit curves subjected to combined strain paths, International Journal of Mechanical Sciences, 53 (2011) 365-373
Online since: February 2009
Authors: Er Liang Liu, Hui Ping Zhang, Chao Zhang
So, breaking chips into suitable lengths in the
continuous machining of structural materials such as steel, iron and nonferrous metals has been an
important subject in manufacturing [1].
Fowle: Journal of Manufacturing Science and Engineering, Vol. 120(1998), p.1-12
Grzesik: International Journal of Machine Tools and Manufacture, Vol.37 (1997), No.5, p. 569-577
Fang: International Journal of Advanced Manufacturing Technology, Vol.10 (1995), p.225-239
Rong: Journal of Machining Science and Technology, Vol.3(1999)No.1, p.25-48
Fowle: Journal of Manufacturing Science and Engineering, Vol. 120(1998), p.1-12
Grzesik: International Journal of Machine Tools and Manufacture, Vol.37 (1997), No.5, p. 569-577
Fang: International Journal of Advanced Manufacturing Technology, Vol.10 (1995), p.225-239
Rong: Journal of Machining Science and Technology, Vol.3(1999)No.1, p.25-48
Online since: December 2012
Authors: Yi Lin Ding, Su Su Ding, Guo Fang Ding
Preparation and Characterization of Cyclophosphamide-loaded Chitosan Microspheres
Yilin Ding1,a Susu Ding2,b Guofang Ding2,c,*
1Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA, USA, 90007.
2Zhejiang Provincial Key Engineering Technology Research Center of Marine Biomedical Products, Zhejiang Ocean University, Zhoushan, Zhejiang, China, 316004.
Materials and methods Materials.
-J. (2006), Enhanced bone formation by transforming growth factor-β1-releasing collagen/chitosan microgranules, Journal of Biomedical Materials Research Part A, 76A: 530–539
Miller, Extended immunosuppression with cyclophosphamide using controlled-release polymeric implants, International Journal of Immunopharmacology, 1985, 7(4): 443-448
Durmaz, Preparation and evaluation of cross-linked chitosan microspheres containing furosemide, International Journal of Pharmaceutics, 1994-10-27; 111(3):217-222
Materials and methods Materials.
-J. (2006), Enhanced bone formation by transforming growth factor-β1-releasing collagen/chitosan microgranules, Journal of Biomedical Materials Research Part A, 76A: 530–539
Miller, Extended immunosuppression with cyclophosphamide using controlled-release polymeric implants, International Journal of Immunopharmacology, 1985, 7(4): 443-448
Durmaz, Preparation and evaluation of cross-linked chitosan microspheres containing furosemide, International Journal of Pharmaceutics, 1994-10-27; 111(3):217-222
Online since: November 2005
Authors: Zuo Cheng Wang, Cai Nian Jing, Yun Li, Fu Tao Han
Hodgson: Materials Science and Engineering A, Vol. 367,
(2004), pp. 282
[2] W.
Wang: Journal of Materials Processing Technology, Vol. 128, (2002), pp. 73 [4] C.
Wilshire: Journal of Materials Processing Technology, Vol. 122, (2002), pp.56 [5] J.
Jonas: Journal of Materials Processing Technology, Vol. 117, (2001), pp. 293 [6] V.
Pero-Sanz: Materials Characterization, Vol. 46, (2001), pp. 45 [7] G.
Wang: Journal of Materials Processing Technology, Vol. 128, (2002), pp. 73 [4] C.
Wilshire: Journal of Materials Processing Technology, Vol. 122, (2002), pp.56 [5] J.
Jonas: Journal of Materials Processing Technology, Vol. 117, (2001), pp. 293 [6] V.
Pero-Sanz: Materials Characterization, Vol. 46, (2001), pp. 45 [7] G.
Online since: February 2011
Authors: Shou Peng Wan, Jian Ming Wang, Lei Jia, Yuan Yuan Zhang, Xing Da Lu
Materials and methods
Materials
Soybean were purchased from supermarket, P.camemberti,Actinomucor elegans and Rhizopus, were persevered in the laboratory
Selection of the mold strains
The mold strains were prepared into spore suspension and inoculated into 13% soybean milk at the concentration of 1.0×108cfu/mL.
Acknowledgements This work was supported by Tianjin Municipal Science and Technology Commission, P.
-Z., Rombouts, F.M., Nout, M.J.R., A Chinese fermented soybean food, International Journal of Food Microbiology. 65 (2001) 1–10
International dairy journal. 8(1):17-23
International Journal of Food Microbiology.65:1-10
Acknowledgements This work was supported by Tianjin Municipal Science and Technology Commission, P.
-Z., Rombouts, F.M., Nout, M.J.R., A Chinese fermented soybean food, International Journal of Food Microbiology. 65 (2001) 1–10
International dairy journal. 8(1):17-23
International Journal of Food Microbiology.65:1-10
Online since: July 2011
Authors: Xu Zhang, Nan Sheng Deng
Reference material was synthesized using the same procedures but omitting cyclodextrin.
Eichen: Journal of the American Chemical Society Vol. 109(1987), p. 6862–6863
Saponjic, et al.: The Journal of Physical Chemistry B Vol. 108(2004), p. 9105 –9110
Deng: Journal of Hazardous Materials Vol. 185(2011), p. 117–123
Fujitsuka, et al.: Chemistry-A European Journal Vol. 12(2006), p. 7585–7594.
Eichen: Journal of the American Chemical Society Vol. 109(1987), p. 6862–6863
Saponjic, et al.: The Journal of Physical Chemistry B Vol. 108(2004), p. 9105 –9110
Deng: Journal of Hazardous Materials Vol. 185(2011), p. 117–123
Fujitsuka, et al.: Chemistry-A European Journal Vol. 12(2006), p. 7585–7594.
Online since: June 2015
Authors: Azizah Hanom Ahmad, M.K. Omar, Mohamad Rusop
Journal of Power Sources, 196.pp 3342-3345
[2] M.
Glassy materials for lithium batteries: electrochemical properties and devices performances.
Journal of Power and Sources,97-98.pp 610-615 [3] T.
Journal of Non-Crystalline Solids, 176.pp 105-115 [4] A.H.
Journal of Power Sources, 146.pp 51-57 [9] W.O.
Glassy materials for lithium batteries: electrochemical properties and devices performances.
Journal of Power and Sources,97-98.pp 610-615 [3] T.
Journal of Non-Crystalline Solids, 176.pp 105-115 [4] A.H.
Journal of Power Sources, 146.pp 51-57 [9] W.O.