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Online since: December 2014
Authors: Wen Hui Ma, Xiu Hua Chen, Wen Jie Zhu, Yong Yin Xiao, Jiao Li, Hui Zhang, Jia Li He
Materials Characterization and Measurements.
Kim: Journal of Colloid and Interface Science, Vol. 286 (2005) No.2, p.536
Kim: Journal of Colloid and Interface Science, Vol. 286 (2005) No.2, p.536
Xie: Materials Letters, Vol. 92 (2013), p.129
Rocca: Journal of Separation Science, Vol.29 (2006) No.6, p.844
Kim: Journal of Colloid and Interface Science, Vol. 286 (2005) No.2, p.536
Kim: Journal of Colloid and Interface Science, Vol. 286 (2005) No.2, p.536
Xie: Materials Letters, Vol. 92 (2013), p.129
Rocca: Journal of Separation Science, Vol.29 (2006) No.6, p.844
Online since: March 2024
Authors: Jiří Kolisko, Marek Foglar, Radek Hajek, Adam Citek, Vojtech Sulc, Karel Hurtig
Two materials and 6 types of specimens were subjected to blast loading.
Construction and Building Materials 94: 536-546
Construction and Building Materials 120: 54-64
Development of Ultra-High Performance Concrete Against Blasts: From Materials to Structures.
Inertial effect on concrete-like materials under dynamic direct tension.
Construction and Building Materials 94: 536-546
Construction and Building Materials 120: 54-64
Development of Ultra-High Performance Concrete Against Blasts: From Materials to Structures.
Inertial effect on concrete-like materials under dynamic direct tension.
Online since: June 2014
Authors: John Charles Walmsley, Jon Holmestad, Martin Ervik, Calin D. Marioara
Journal of Materials Science, 2000. 35(1): p. 179-189
Metallurgical and Materials Transactions A, 2005. 36(3): p. 691-702
Journal of Materials Science, 2006. 41(2): p. 471-478
Progress in Materials Science, 2004. 49(3-4): p. 389-410
Materials & Design, 1997. 18(1): p. 25-28
Metallurgical and Materials Transactions A, 2005. 36(3): p. 691-702
Journal of Materials Science, 2006. 41(2): p. 471-478
Progress in Materials Science, 2004. 49(3-4): p. 389-410
Materials & Design, 1997. 18(1): p. 25-28
Online since: March 2016
Authors: Xiao Yang Guo, Ming Li, Fei Meng
Results have shown that the introduction of rubber particles significantly increases the strain capacity of the materials[5].
Material and methods Raw materials.
[2] Mohammadmehdi Choolaei, Ali Morad Rashidi, Mehdi Ardjmand, The effect of nanosilica on the physical properties of oil well cement, Materials Science and Engineering A. 538(2012) 288-294
[15] Jun Wang, Baoliang Chen, Adsorption and coadsorption of organic pollutants and a heavy metal by graphene oxide and reduced graphene materials, Chemical Engineering Journal. 281(2015) 379-388
[16] Er-fan Chen, Dong Chen, The development of whisker-reinforced polymer composites mechanisms, Polymer Materials Science and Engineering. 22(2006) 20-24
Material and methods Raw materials.
[2] Mohammadmehdi Choolaei, Ali Morad Rashidi, Mehdi Ardjmand, The effect of nanosilica on the physical properties of oil well cement, Materials Science and Engineering A. 538(2012) 288-294
[15] Jun Wang, Baoliang Chen, Adsorption and coadsorption of organic pollutants and a heavy metal by graphene oxide and reduced graphene materials, Chemical Engineering Journal. 281(2015) 379-388
[16] Er-fan Chen, Dong Chen, The development of whisker-reinforced polymer composites mechanisms, Polymer Materials Science and Engineering. 22(2006) 20-24
Online since: July 2011
Authors: Jie Sun, Guo You Yin
It containes a lot of carbohydrate, protein, soybean oligosaccharide, soybean isoflavone, soybean saponin and other functional materials [1,2], Treatment of soybean whey effluent has always been a difficult problem faced by soybean protein isolate enterprises.
This topic uses soybean whey effluent to make a study of new soybean whey drinks, which can not only make the full use of the functional materials from the wastewater, but also achieve the effect of the wastewater treatment.
According to fig.4,Compared with raw materials, milk, soybean milk powder and soybean food, activity of trypsin inhibitor in soybean whey was the lowest, which was in line with the standard for drinking.
Reference [1].Pouliot Y,Wijers M C,Gauthier S E,et al.Fractionation of whey protein hydrolysates using charged UF/NF membranes[J].Journal of Membrane Science,1999,158(1/2):105-114
A composite protein beverage development and some technical parameter [J].journal of shenyang agriculture college journal, 1998,29(1):44-46.
This topic uses soybean whey effluent to make a study of new soybean whey drinks, which can not only make the full use of the functional materials from the wastewater, but also achieve the effect of the wastewater treatment.
According to fig.4,Compared with raw materials, milk, soybean milk powder and soybean food, activity of trypsin inhibitor in soybean whey was the lowest, which was in line with the standard for drinking.
Reference [1].Pouliot Y,Wijers M C,Gauthier S E,et al.Fractionation of whey protein hydrolysates using charged UF/NF membranes[J].Journal of Membrane Science,1999,158(1/2):105-114
A composite protein beverage development and some technical parameter [J].journal of shenyang agriculture college journal, 1998,29(1):44-46.
Online since: December 2011
Authors: Chong Hai Xu, Gao Feng Wei, Guo Yong Liu, Xiao Qiang Sun
Introduction
Structural reliability of composite materials can be strongly affected by the fracture properties of the interface between fiber and matrix [1,2].
The load-bearing capacity of composite materials depends on the efficiency of stress transfer at the bonded and debonded interfaces, which are mainly controlled by the mechanical properties of fiber and matrix and by the nature of the bonding.
Materials and Structures, Vol. 42 (2009), p765
Journal of Zhejiang University, 6A (Suppl.
Journal of American Ceramic Society, Vol. 78 (1995), p560
The load-bearing capacity of composite materials depends on the efficiency of stress transfer at the bonded and debonded interfaces, which are mainly controlled by the mechanical properties of fiber and matrix and by the nature of the bonding.
Materials and Structures, Vol. 42 (2009), p765
Journal of Zhejiang University, 6A (Suppl.
Journal of American Ceramic Society, Vol. 78 (1995), p560
Online since: May 2011
Authors: Guo Dong Zheng
The internal forces and the stress of all kinds of materials in the reinforcement section and the deformation of the beam can be calculated
In the calculation the elastic modulus of various materials are: ordinary steel Es= 210GPa = 210 × 103MPa, FRP materials Ecf = 230MPa and the concrete at the initial moment Ec(t0) = 2.55 × 104MPa.The protective layer thickness of the beam is 15mm.
It can be seen that the stress changes of a variety of materials with time are quite different when the initial stress are different greatly.
Journal of Tongji University (Natural Science) .1991,19(1):23-32
Journal of Structural Engineering, 1994, 120(3): 1016-1042.
In the calculation the elastic modulus of various materials are: ordinary steel Es= 210GPa = 210 × 103MPa, FRP materials Ecf = 230MPa and the concrete at the initial moment Ec(t0) = 2.55 × 104MPa.The protective layer thickness of the beam is 15mm.
It can be seen that the stress changes of a variety of materials with time are quite different when the initial stress are different greatly.
Journal of Tongji University (Natural Science) .1991,19(1):23-32
Journal of Structural Engineering, 1994, 120(3): 1016-1042.
Online since: February 2009
Authors: A.V. Ikujenlola, S.V. Omosuli
Materials and Methods
Materials:
The fresh cassava roots used for this study were supplied by Agro-Bim Farms Limited Owo, Ondo
State .
Advanced Materials Research, Vols 1819(2007) p.166
Wang and J.E, Kinsella, Functional Property of Novel Protein, Alfalfa leaf Protein, Journal of Food Science (1976) 4, p. 286
Nigerian Food Journal (2004) Vol. 22, p.78
Journal of Science, Food and Agriculture (1988) 42, p. 612
Advanced Materials Research, Vols 1819(2007) p.166
Wang and J.E, Kinsella, Functional Property of Novel Protein, Alfalfa leaf Protein, Journal of Food Science (1976) 4, p. 286
Nigerian Food Journal (2004) Vol. 22, p.78
Journal of Science, Food and Agriculture (1988) 42, p. 612
Online since: December 2006
Authors: Xian Li Liu, Tao Chen, Yu Wang, Fu Gang Yan, Hong Min Pen, Jing Shu Hu
Workpiece Material.
Aspinwall: International Journal of Machine Tools & Manufacture, Vol.39 (1999), pp.885-903
Stahl: International Journal of Machine Tools & Manufacture, Vol.43 (2003), pp.301-305
Li: Science Forum, Vol.471-472 (2004), pp.307-311
Li: Journal of Materials Processing Technology, Vol.129 (2002), pp.217-221.
Aspinwall: International Journal of Machine Tools & Manufacture, Vol.39 (1999), pp.885-903
Stahl: International Journal of Machine Tools & Manufacture, Vol.43 (2003), pp.301-305
Li: Science Forum, Vol.471-472 (2004), pp.307-311
Li: Journal of Materials Processing Technology, Vol.129 (2002), pp.217-221.
Online since: January 2012
Authors: Azdiar Gazder, Elena V. Pereloma, Sujoy S. Hazra
Lowe, Journal of Materials Research 17 (2002) 5-8
Chang, Materials Science and Engineering A 366 (2004) 310-317
Huh, Materials Science and Engineering A 271 (1999) 371-381
Pereloma, Materials Science and Engineering: A 524 (2009) 158-167
Grabski, Materials Science and Engineering 56 (1982) 197-200.
Chang, Materials Science and Engineering A 366 (2004) 310-317
Huh, Materials Science and Engineering A 271 (1999) 371-381
Pereloma, Materials Science and Engineering: A 524 (2009) 158-167
Grabski, Materials Science and Engineering 56 (1982) 197-200.