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Online since: December 2013
Authors: Yong Xue, Feng Juan Wu, Guo Yun Li, Lei Du, Chang Hu Xue, Yu Ming Wang
Isolation, structural characterization and cell proliferation activity of abalone polysaccharide from different regions
Fengjuan Wu 1,a, Guoyun Li 1,b, Lei Du 1, 2,c, Yong Xue 1,d, Changhu Xue 1,e and Yuming Wang 1,f
1College of Food Science and Engineering, Ocean University of China (No.5 Yushan Road, Qingdao, Shandong Province, 266003, P.R.China)
2Division of Marine Life Science, Faculty of Fisheries Sciences, Hokkaido University (Hakodate, 041-8611, Japan)
awarmth_hut@126.com, blgybjh@126.com, csupernova_no.1@163.com, dxueyong@ouc.edu.cn, exuech@ouc.edu.cn, f wangyuming@ouc.edu.cn
Keywords: abalone; polysaccharide; composition analysis; proliferation
Abstract.
Materials and methods Materials.
Murata: Journal of Food Processing and Preservation, 36, 126-132 (2012)
Xue: International Journal of Biological Macromolecules, 49, 1160-1166 (2011)
Zhang: Journal of Biotechnology, 2, 196-199(2008)
Materials and methods Materials.
Murata: Journal of Food Processing and Preservation, 36, 126-132 (2012)
Xue: International Journal of Biological Macromolecules, 49, 1160-1166 (2011)
Zhang: Journal of Biotechnology, 2, 196-199(2008)
Online since: December 2012
Authors: Tien Wei Shyr, Chia Hsin Tung, Jung Yang, Chun Chieh Hu, Jian Ren Wang
The reflection profile was deconvoluted using Jade 6.0 software, Materials Data, with a peak search method.
Yano: Composites Science and Technology 69 (2009), pp. 1187-1192 [3] M.
Liu: Journal of Applied Polymer Science Vol. 121 (2011), pp. 858-860 [6] S.Y.
Hamada: Journal of Applied Polymer Science Vol. 101 (2006), pp. 1816-1825 [9] W.
Park: International Journal of Molecular Sciences Vol. 10 (2009), pp. 5381-5397 [10] J.
Yano: Composites Science and Technology 69 (2009), pp. 1187-1192 [3] M.
Liu: Journal of Applied Polymer Science Vol. 121 (2011), pp. 858-860 [6] S.Y.
Hamada: Journal of Applied Polymer Science Vol. 101 (2006), pp. 1816-1825 [9] W.
Park: International Journal of Molecular Sciences Vol. 10 (2009), pp. 5381-5397 [10] J.
Online since: September 2012
Authors: Young Jae Choi, Seok Woo Lee, Hon Jong Choi, Kyeong Tae Kim, Yun Hyuck Hong, Kyung Hee Park
Introduction
An ultrasonic grinding can be a promising method for grinding of difficult-to-cut materials, such as ceramics, titanium, etc., because ultrasonical vibration in longitudinal direction can reduce the grinding forces compared to conventional grinding [1-3].
Ho11, "Ultrasonic Assisted Grinding of Ceramics", Journal of Materials Processing Technology 62 (1996) 287-293
Raslan, "A Comparative Study on Ultrasonic Machining of Hard and Brittle Materials", J. of the Braz.
Guo, "UVAG of Brittle Materials : DoE with a Cutting Force Model" Proceedings of the 2010 Industrial Engineering Research Conference [6] Q.
H., Ahmed, M., and Youssef, H.A., “Computer-aided design of acoustic horns for ultrasonic machining using finite-element analysis” Journal of Materials Processing Technology, Vol.55, (1995) pp. 254∼260
Ho11, "Ultrasonic Assisted Grinding of Ceramics", Journal of Materials Processing Technology 62 (1996) 287-293
Raslan, "A Comparative Study on Ultrasonic Machining of Hard and Brittle Materials", J. of the Braz.
Guo, "UVAG of Brittle Materials : DoE with a Cutting Force Model" Proceedings of the 2010 Industrial Engineering Research Conference [6] Q.
H., Ahmed, M., and Youssef, H.A., “Computer-aided design of acoustic horns for ultrasonic machining using finite-element analysis” Journal of Materials Processing Technology, Vol.55, (1995) pp. 254∼260
Online since: June 2011
Authors: Xiao Lan Zhang, Na Li, Ming Juan Zhao, Long Zhi Zhao, Hong Yan
Introduction
The novel type of SiC/Al co-continuous composites with the excellent integrate properties, such as light weight, high strength ratio, fatigue resistance, thermal shock resistance and low coefficient of thermal expansion, becomes the investigation focus in the field of materials science [1, 2].
So it is necessary to understand the mechanical behavior of the composites essentially when they were used as the engineering materials [3, 4].
Among them, the transformation behavior of the composites with the volume fraction 12% is the most obvious, which is the representative characteristics of the plastic materials.
Luan: Journal of Materials Science, Vol. 1 (2009) , p. 20
Jia: Journal of Beijing University of Aeronautics and Astronautics, Vol. 3 (1996) , p. 259
So it is necessary to understand the mechanical behavior of the composites essentially when they were used as the engineering materials [3, 4].
Among them, the transformation behavior of the composites with the volume fraction 12% is the most obvious, which is the representative characteristics of the plastic materials.
Luan: Journal of Materials Science, Vol. 1 (2009) , p. 20
Jia: Journal of Beijing University of Aeronautics and Astronautics, Vol. 3 (1996) , p. 259
Online since: January 2011
Authors: Ming Duo Yang, Hong Fang Ji, Ling Wen Zhang, Yuan Zhang, Hai Yan Zhang
Extracts
Hongfang Ji 1, a, Haiyan Zhang 2,b, Lingwen Zhang 1, 3,c, Mingduo Yang 3,d and Yuan Zhang 1, e
1 School of Food Science, Henan Institute of Science and Technology, Xinxiang, P.
China 2 College of Life Science, Henan University, Kaifeng, P.
Materials and methods Materials.
Tang et al.: Food Science, Vol.25 (2004), p.114- 117 [11] Z.G.
Kodama et al.: the Biochemical Journal Vol. 312 (1995), p. 947- 953
China 2 College of Life Science, Henan University, Kaifeng, P.
Materials and methods Materials.
Tang et al.: Food Science, Vol.25 (2004), p.114- 117 [11] Z.G.
Kodama et al.: the Biochemical Journal Vol. 312 (1995), p. 947- 953
Online since: October 2022
Authors: Tao Wang, Wan Jun Jin, Zhao Li, Shu Hong Fu
Advanced Materials and Processes, 1995, 147(2): 33
Materials Science and Engineering A, 2012, 534: 547
Materials Science and Engineering A, 2010, 527(27-28): 7313
Materials Science and Engineering A, 2008, 480(1-2): 434
Journal of Aeronautical Materials, 2019, 39 (3): 44
Materials Science and Engineering A, 2012, 534: 547
Materials Science and Engineering A, 2010, 527(27-28): 7313
Materials Science and Engineering A, 2008, 480(1-2): 434
Journal of Aeronautical Materials, 2019, 39 (3): 44
Online since: December 2013
Authors: Ali Zamanian, Farnaz Ghorbani, Hanieh Nojehdehian
Morphological Comparison of PLGA/Gelatin Scaffolds Produced by Freeze Casting and Freeze Drying Methods
Ali Zamanian1,a*, Farnaz Ghorbani2,b, Hanieh Nojehdehian3,c
1Nanotechnology and advanced materials Department, Materials and Energy Research Center, Karaj, Iran.
2Biomedical Engineering Department, Science and Research Branch, Islamic Azad University, Tehran, Iran.
3Department of Dental Materials, Dental School, Shahid Beheshti University of Medical Science, Tehran, Iran
aa-zamanian@merc.ac.ir, bFarnaz_ghorbani.1991@yahoo.com,
chanieh.nojehdehyan@gmail.com
Keywords: Lactic -co- Glycolic Acid; Gelatin; Scaffold; Freeze Casting; Freeze Drying.
Lemons, "Biomaterials Science", An Introduction to Materials in Medicine, 2nd Ed
Zheng, "Electrospinning of PLGA / Gelatin Randomly Oriented and Aligned Nanofibers as Potential Scaffold in Tissue Engineering", Materials Science and Engineering C 30, 2010, 1204-1210
Qian, H. zhang, "Controlled Freezing and Freeze Drying: a Versatile Route for Porous and Micro-/Nano - Structured Materials", Journal of Chemical Technology and Biotechnology, 172-184, 2010 [10] K.
[12] Deville, S. (2010) Materials 3(3), 1913–1927
Lemons, "Biomaterials Science", An Introduction to Materials in Medicine, 2nd Ed
Zheng, "Electrospinning of PLGA / Gelatin Randomly Oriented and Aligned Nanofibers as Potential Scaffold in Tissue Engineering", Materials Science and Engineering C 30, 2010, 1204-1210
Qian, H. zhang, "Controlled Freezing and Freeze Drying: a Versatile Route for Porous and Micro-/Nano - Structured Materials", Journal of Chemical Technology and Biotechnology, 172-184, 2010 [10] K.
[12] Deville, S. (2010) Materials 3(3), 1913–1927
Online since: August 2020
Authors: Violeta Togobytska, Ihor Rolin, Evgeniy Rybka, Andrii Kovalov, Tatiana Kovalevska, Yurii Otrosh
It uses a small amount of new materials and saves time.
In [6], destructive and non-destructive tests for structural materials were applied to evaluate the strength of concrete bridge structures supports after exposure to high temperatures.
[4] Y Otrosh, O Semkiv, E Rybka and A Kovalov, About need of calculations for the steelframework building in temperature influences conditions, Materials Science and Engineering. 708 (2019) 012065
Konoval, Effect of residual deformation of a steel column on its fire resistance under combined exposure “explosion-fire”, Materials Science Forum. 968 (2019) 288–293
Kovalevska, Experimental and computer researches of ferroconcrete floor slabs at high-temperature influences, in Materials Science Forum. 968 (2019) 361–367
In [6], destructive and non-destructive tests for structural materials were applied to evaluate the strength of concrete bridge structures supports after exposure to high temperatures.
[4] Y Otrosh, O Semkiv, E Rybka and A Kovalov, About need of calculations for the steelframework building in temperature influences conditions, Materials Science and Engineering. 708 (2019) 012065
Konoval, Effect of residual deformation of a steel column on its fire resistance under combined exposure “explosion-fire”, Materials Science Forum. 968 (2019) 288–293
Kovalevska, Experimental and computer researches of ferroconcrete floor slabs at high-temperature influences, in Materials Science Forum. 968 (2019) 361–367
Online since: October 2011
Authors: Hai Rui Zhai, Han Lin Zhou, Jin Song Yang, Qian Wang, Hai Sheng Tan, Mao Li, Yi Min Cai
Materials and methods
Materials.
Acknowledgements The work was supported by the key scientific and technological project of Hainan province (090103), the fund transferring projects of agricultural science technology project (2010GB23260578) and the Spark Program of the Ministry of Science and Technology of the People's Republic of China Project Number 2008GA800015, the Science Planning Project of Haikou city (Supporting national projects funded).
Vol. 82(1999a), p. 520~526 [3] Jinsong Yang,Yang Cao,Yimin Cai,et al.Natural Populations of Lactic Acid Bacteria Isolated from Vegetable Residues and Silage Fermentation[J].Journal of Dairy Science.
International Journal of Food Microbiology.
Journal of the Science of Food and Agriculture.
Acknowledgements The work was supported by the key scientific and technological project of Hainan province (090103), the fund transferring projects of agricultural science technology project (2010GB23260578) and the Spark Program of the Ministry of Science and Technology of the People's Republic of China Project Number 2008GA800015, the Science Planning Project of Haikou city (Supporting national projects funded).
Vol. 82(1999a), p. 520~526 [3] Jinsong Yang,Yang Cao,Yimin Cai,et al.Natural Populations of Lactic Acid Bacteria Isolated from Vegetable Residues and Silage Fermentation[J].Journal of Dairy Science.
International Journal of Food Microbiology.
Journal of the Science of Food and Agriculture.
Online since: August 2012
Authors: Yu Dong Huang, Li Liu, Bing Liu
The natural properties of prepregs are tested by method “Test method for physical properties of composite material prepreg (Part5: Determination of resin content)”.
Acknowledgement This work was supported by "the Fundamental Research Funds for the Central Universities", DL10BB19; “the Natural Science Foundation of Heilongjiang Province, China(Grant No.ZD200914); the Chang Jiang Scholars Program and the National Natural Science Foundation of China (No. 51073047 and No. 91016015).
Journal of Thermoplastic Composite Materials, 2009, 22(1), 51-61 [2] Pantelakis, S., C.
Journal of Polymer Engineering, 2011, 31(2-3),159-166 [3] Li Liu, Xiang Zhang, Yudong Huang, Zhiqian Zhang.
Journal of Aeronautical Materials, 2003, 23(1) , 49-52
Acknowledgement This work was supported by "the Fundamental Research Funds for the Central Universities", DL10BB19; “the Natural Science Foundation of Heilongjiang Province, China(Grant No.ZD200914); the Chang Jiang Scholars Program and the National Natural Science Foundation of China (No. 51073047 and No. 91016015).
Journal of Thermoplastic Composite Materials, 2009, 22(1), 51-61 [2] Pantelakis, S., C.
Journal of Polymer Engineering, 2011, 31(2-3),159-166 [3] Li Liu, Xiang Zhang, Yudong Huang, Zhiqian Zhang.
Journal of Aeronautical Materials, 2003, 23(1) , 49-52