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Online since: March 2009
Authors: J. Waliszewski, Małgorzata Grądzka-Dahlke
The present work concerns development of porous materials for medicine applications.
The porous materials are recently considered to be the prospective biomaterials for restorative medicine [1,2].
Materials The porous materials were manufactured from the powders of 316L stainless steel with the particle size of 125÷250 µm.
Specification of investigated materials is given in Table 1.
The magnetization of porous materials significantly increased with the step of their plastic deformation.
Online since: November 2021
Authors: Ning Ning Li, Xiao Yuan Xie, Jing Miao Li, Qiang Dai, Zhi Juan Zhao, Bo Zhao
Therefore, the chemical composition of this material cannot meet the needs of materials.
Jsme International Journal.ser Solid Mechanics Strength of Materials, 1991, 34(514):1269-1274
Strength of Materials, 2011, 43(3):276-281
Applied Surface Science, 2003, 207(1-4):69-85
Journal of Materials Processing Tech, 2011, 211(6):1117-1125
Online since: January 2014
Authors: Xiao Jie Song, Qua Nan Li, Lei Lei Chen
Introduction Magnesium alloys have been identified as ideal materials for lightweight structures in automotive, aerospace and railway industries with great development potential because of their low density, high specific and stiffness, good electromagnetic shielding characteristic and good machine-ability[1].These properties can be enticed for automobile manufacturers to replace denser materials.
Material Science and Engineering, A, Vol 523(2009), p, 1-6 [2] B.
Materials Science and Engineering, A, Vol 302(2001), p, 47-52 [3] M.
Journal of north university of China(Natural science edition), Vol 30(2009), p, 192-196 [9] F.B.
Materials Science and Engineering, Vol 800(2013), p, 225-228 [15] J.
Online since: May 2012
Authors: Yi Yang Zhao, Jia Li Shen Tu, Kun Bai Chen
Materials and methods Soil characteristion.
[3] Pan HM, Li FQ, Ye W, Wang JJ: Journal of Zhejiang Nor-mal University (Natural Science), Vol. 30 (2007), pp. 103-108 (in Chinese)
[5] Liu J, Xiong ZT, Li TY: Journal of Agro-Environment Science, Vol. 22 (2003), p.272 (in Chinese)
[11] Babalonas D: Journal of Vegetation Science, Vol. 8 (1997), pp. 601-604
[18] Huan DQ, Wang YJ, Wang P, Zhou DM: Journal of Agro-Environment Science, Vol. 27 (2008), pp. 46-49 (in Chinese)
Online since: November 2011
Authors: Tony Halim, Kanesan Muthusamy
The model aims to minimize the cost of rejecting orders, failing to meet promised orders and inventory holding cost of the finished products and supply materials.
The company produces N numbers of products from a total of M number of supply materials.
The materials are supplied by a total of S suppliers.
Zipkin: Customer-Order Information, Lead-times, and Inventories, Management Science Vol. 41 (1995), pp. 1599–1607
Production and Inventory Management Journal Vol. 40 (1999), pp. 50–56
Online since: April 2015
Authors: Nurul Aimi Ghazali, Nur Hashimah Alias, Sawai Anak Jantan, Effah Yahya, Sitinoor Adeib binti Idris, Noorsuhana binti Mohd Yusof
Methodology Materials and methods Experimental Materials The fresh tamarind seed is obtained from local market Shah Alam.
Journal of Saudi Chemical Society
Pharmacognosy Journal Vol 3(20)
Journal of Pharmaceutical and Biomedical Sciences, 8 (20):5
International Journal Chemistry Science 8, 729-743 [10] Jose L.
Online since: January 2011
Authors: Meng Long Li, Hong Jian Peng
Teaching Materials of Chinese Universities.
When skill course teachers of P.E. specialty in Chinese universities utilizes the multimedia teaching technology, the selective theory and technical analysis in the teaching materials can separately take up a proportion of 58.06% and 31.45%, while skill courses only account for 7.26%.
The investigation results have shown to us that, the section of multimedia teaching materials in skill courses of P.E. colleges is mainly based on theoretical courses and technical analysis courses.
Students may also look up teachers’ teaching courseware and materials through the network, as well as communicating in all aspects with their teachers and classmates concerning the contents of what they have learned, achieving the effect of classroom expansion.
Journal of Chengdu Sports University.
Online since: December 2011
Authors: Jin Ling Song
ACKNOWLEDGEMENT This project is financially supported by Fujian Natural Science Fund(2010J01295)and by Xiamen Science and Technology Project Fund (3502Z20093031),Ph.D.
International Journal of machine Tools and Manufature.Oct, 2004
International Journal of Machine Tools and Manufacture.
Modeling of material removal rate in rotary ultrasonic machining: designed experiments.
Journal of Material Processing Technology, 2002, 129: 339- 344.
Online since: October 2011
Authors: Jun Zhang, Qin Gao, Jian Zhong Wu, Juan Tao
The beam size and material parameters as shown in Table 1.
Acknowledgements This research was supported by National Natural Science Foundation of China(project No.51175005 and the Natural Science Foundation Key Project in Anhui Education Department(project No.KJ2011A094) References [1] Liang C., Sun F.
Journal of Intelligent Material Systems and Structures, 1994,5(1):12~20
Journal of Intelligent Material Systems and Structures, 1994,21(3):232~252
Journal of Coal Mine Machinery, 2011(3):86~89.
Online since: May 2011
Authors: Yan Qing Lu, Guo Dong Zhang, Mao Fa Jiang
Effects of B2O3 on Properties of Low Fluoride Content Mould Flux for Thin Slab Continuous Casting Yanqing Lu1,2,a, Guodong Zhang1,b and Maofa Jiang2,c 1School of Materials and Metallurgy, University of Science and Technology Liaoning, China 2School of Materials and Metallurgy, Northeastern University, China aluyanqing77@163.com, baszhangguodong@sina.com, c5223apple@163.com Keywords: B2O3, low content fluoride, mould flux, thin slab continuous casting Abstract.
Materials and methods According to mould flux used in thin slab CC practice, the industrial material, such as synthetic calcium silicate, wollastonite, sintering diatomite, cement and insulation brick powder were used in experiment.
Acknowledgements The present work was financially supported by Liaoning province Natural Fund (20082190), and the science and technology funds from Liaoning Province Education Department (2009T051).
Zhu: Journal of Iron and Steel Research, 12 (2000), p. 46 [2] Y.
He: Journal of University of Science and Technology Beijing, 11 (2006), p. 1019