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Online since: June 2012
Authors: Qing Bo Yu
Journal of Materials Engineering, 2009(5): 1-5
Materials Science and Engineering A, 2012, 531(1): 84-90
Journal of Materials Engineering, 2009, (5): 1-2
Journal of Materials Science and Technology, 2010, 26,(9): 803-804 [6] Lee Hakcheol, Koh H.J., Seo Chang-Hyo.
Materials Science Forum, 2010, 638-642: 3520-3525
Materials Science and Engineering A, 2012, 531(1): 84-90
Journal of Materials Engineering, 2009, (5): 1-2
Journal of Materials Science and Technology, 2010, 26,(9): 803-804 [6] Lee Hakcheol, Koh H.J., Seo Chang-Hyo.
Materials Science Forum, 2010, 638-642: 3520-3525
Online since: November 2007
Authors: Serena Best, David Shepherd
Production and Characterisation of Zinc Substituted Hydroxyapatite
David Shepherd1,a and Serena Best2,b
1
Department of Materials Science and Metallurgy, University of Cambridge, Pembroke Street,
Cambridge.
CB3 3QZ 2 Department of Materials Science and Metallurgy, University of Cambridge, Pembroke Street, Cambridge.
References 1.Baranowska, I., Czernicki, K., and Aleksandrowicz, R., The Science of the Total Environment,(1995). 159: p. 155-162. 2.Ronaghy, H.A., Reinhold, J.G., Mahloudji, M., Ghavami, P., Fox, M.R.S., and Halsted, J.A., Am J Clin Nutr,(1974). 27(2): p. 112-121. 3.Holloway, W.R., Collier, F.M., Herbst, R.E., Hodge, J.M., and Nicholson, G.C., Bone,(1996). 19(2): p. 137-142. 4.Moonga, B.S. and Dempster, D.W., Journal of Bone and Mineral Research,(1995). 10(3): p. 453- 457. 5.Yamaguchi, M., The Journal of Trace Elements in Experimental Medicine,(1998). 11(2-3): p. 119- 135. 6.Kawamura, H., Ito, A., Miyakawa, S., Layrolle, P., Ojima, K., Ichinose, N., and Tateishi, T., Journal of Biomedical Materials Research,(2000). 50(2): p. 184-190. 7.Ergun, C., Webster, T.J., Bizios, R., and Doremus, R.H., Journal of Biomedical Materials Research,(2002). 59(2): p. 305-311. 8.Miyaji, F., Kono, Y., and Suyama, Y., Materials Research Bulletin,(2005). 40(2): p. 209-220. 9.
CB3 3QZ 2 Department of Materials Science and Metallurgy, University of Cambridge, Pembroke Street, Cambridge.
References 1.Baranowska, I., Czernicki, K., and Aleksandrowicz, R., The Science of the Total Environment,(1995). 159: p. 155-162. 2.Ronaghy, H.A., Reinhold, J.G., Mahloudji, M., Ghavami, P., Fox, M.R.S., and Halsted, J.A., Am J Clin Nutr,(1974). 27(2): p. 112-121. 3.Holloway, W.R., Collier, F.M., Herbst, R.E., Hodge, J.M., and Nicholson, G.C., Bone,(1996). 19(2): p. 137-142. 4.Moonga, B.S. and Dempster, D.W., Journal of Bone and Mineral Research,(1995). 10(3): p. 453- 457. 5.Yamaguchi, M., The Journal of Trace Elements in Experimental Medicine,(1998). 11(2-3): p. 119- 135. 6.Kawamura, H., Ito, A., Miyakawa, S., Layrolle, P., Ojima, K., Ichinose, N., and Tateishi, T., Journal of Biomedical Materials Research,(2000). 50(2): p. 184-190. 7.Ergun, C., Webster, T.J., Bizios, R., and Doremus, R.H., Journal of Biomedical Materials Research,(2002). 59(2): p. 305-311. 8.Miyaji, F., Kono, Y., and Suyama, Y., Materials Research Bulletin,(2005). 40(2): p. 209-220. 9.
Online since: January 2022
Authors: Ojo Sunday Issac Fayomi, Ifeanyichukwu Okereke Elendu, Jeremiah Oludele Ojediran, Olayemi Abosede Odunlami
Copper has a natural resistant to corrosion and is one of the most robust piping materials available at present [9-11].
The aquaculture sector is one of the world's fastest growing food industries, copper alloys have become important netting materials for the industry [13-15].
The design procedure in Table 1 was follow and all materials were subjected to acidic media at an ambient temperature of 298K, 313K and 323K respectively.
Anti-Corrosion Methods and Materials, vol. 54, no. 4, 219-224 [5] Azhar, M.
Journal of Materials Research and Technology, 8(3), 3088-3096
The aquaculture sector is one of the world's fastest growing food industries, copper alloys have become important netting materials for the industry [13-15].
The design procedure in Table 1 was follow and all materials were subjected to acidic media at an ambient temperature of 298K, 313K and 323K respectively.
Anti-Corrosion Methods and Materials, vol. 54, no. 4, 219-224 [5] Azhar, M.
Journal of Materials Research and Technology, 8(3), 3088-3096
Online since: October 2012
Authors: Jian Hua Du, Yuan Yuan Li, Yi Xu
Experimental raw materials are electrolytic copper powder and nano-SiO2 particles.
Gao, Effect of content of SiO2 particles on tribological behavior of Cu-matrix friction materials, The Chinese Journal of Nonferrous Metals. 19 (2009) 1848-1854
Guo, Nanometer Al2O3-Cu composites with high plasticity and strength, Journal of University of Science and Technology Beijing. 32 (2010) 230-233
Ma, Application of nano powdered rubber in friction materials, Wear. 261 (2006) 225-229
Xie, Effect of nano-SiO2 on tribological properties of Cu-based friction materials, The Chinese Journal of Nonferrous Metals. 18 (2008) 1453-1457.
Gao, Effect of content of SiO2 particles on tribological behavior of Cu-matrix friction materials, The Chinese Journal of Nonferrous Metals. 19 (2009) 1848-1854
Guo, Nanometer Al2O3-Cu composites with high plasticity and strength, Journal of University of Science and Technology Beijing. 32 (2010) 230-233
Ma, Application of nano powdered rubber in friction materials, Wear. 261 (2006) 225-229
Xie, Effect of nano-SiO2 on tribological properties of Cu-based friction materials, The Chinese Journal of Nonferrous Metals. 18 (2008) 1453-1457.
Online since: August 2014
Authors: Benoit Denand, Elisabeth Aeby-Gautier, Sabine Denis, Moukrane Dehmas, Mickael Mourot, Matthieu Salib, Guillaume Geandier, Lilian Vautrot
Composite materials present interesting mechanical properties.
Ward-Close: Materials Science and Engineering: A, Vol. 282, no. 1-2 (2000), p. 240-250 [13] F.
Mauro: Materials Science and Engineering A, Vol 476 (2008), p. 60-68 [14] E.
Denis: Journal of Materials, January (2007), p. 55-58 [15] K.
Specht: Materials Science and Engineering A, vol 391 (2005), p. 104-113
Ward-Close: Materials Science and Engineering: A, Vol. 282, no. 1-2 (2000), p. 240-250 [13] F.
Mauro: Materials Science and Engineering A, Vol 476 (2008), p. 60-68 [14] E.
Denis: Journal of Materials, January (2007), p. 55-58 [15] K.
Specht: Materials Science and Engineering A, vol 391 (2005), p. 104-113
Online since: January 2013
Authors: Jun Lin Tao, Fei Gao
Material model uses the commonly used model in LS-DYNA.
Unite type of projectile is solid 164, while the steel is beam 163 and the material model of projectile and reinforced all is MAT PLASTIC KINEMATIC material model.
Chinese Journal of Theoretical and Applied Mechanics 2009,41(5):739-747 [2] M.J.
International Journal of Impact Engineering[C].2003:479-497 [3] X.W.
Journal of Structure Engineering, 1990, 116(4):1061~1079 [9] Xutao Wu, Yao Li and Heping Li.
Unite type of projectile is solid 164, while the steel is beam 163 and the material model of projectile and reinforced all is MAT PLASTIC KINEMATIC material model.
Chinese Journal of Theoretical and Applied Mechanics 2009,41(5):739-747 [2] M.J.
International Journal of Impact Engineering[C].2003:479-497 [3] X.W.
Journal of Structure Engineering, 1990, 116(4):1061~1079 [9] Xutao Wu, Yao Li and Heping Li.
Online since: April 2014
Authors: Lin Chen, Zheng Wen Huang, Jun Mei Sun
The circulation link of medical waste
The circulation link of medical waste contains purchase raw materials, manufacturing, use and maintenance, waste generation, collection, storage, transportation and treatment, the final disposal[15] (figure 1).
Environmental Protection Science Vol. 36(2010),p.112-114
Shanghai Environmental Sciences Vol. 30(2011),p.47-50
Journal of Shenyang Arch. and Civ.
(Nature science) Vol. 18(2002),p.54-56.
Environmental Protection Science Vol. 36(2010),p.112-114
Shanghai Environmental Sciences Vol. 30(2011),p.47-50
Journal of Shenyang Arch. and Civ.
(Nature science) Vol. 18(2002),p.54-56.
Online since: January 2013
Authors: Jun Xing Chen, Jing Long Bu, Yong Wu He, Zhi Fa Wang, Rui Sheng Wang
A Study on Crystallization of Fused Silica/Zirconia Ceramic Composites
Yongwu He1,a, Ruisheng Wang1, b, Jinglong Bu1,c, Junxing Chen2,d,
Zhifa Wang1,e
1Hebei Provincial Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei United University, Tangshan, 063009, China
2LIRR Engineering Technology Co.
Experimental Raw Materials.
McKinstry: Annual Review of Materials Science, Vol. 19(1989), p. 59-81
M, et al: Advanced Materials Research, Vol. 150-151(2010), p. 1786-1789
Kanno: Journal of Materials Science, Vol. 24(1989), p. 2415-2420
Experimental Raw Materials.
McKinstry: Annual Review of Materials Science, Vol. 19(1989), p. 59-81
M, et al: Advanced Materials Research, Vol. 150-151(2010), p. 1786-1789
Kanno: Journal of Materials Science, Vol. 24(1989), p. 2415-2420
Online since: October 2016
Authors: Yi Wan, Zhen Wang, Zhan Qiang Liu, Rui Zhang
REFERENCES
[1] Rack H J. 1998.Titanium alloys in total joint replacement—a materials science perspective.
The Open materials Science Journal 8:1-17
Dental materials 23(7): 844-854
Materials Science and Engineering 47(3): 49-121
Metals and Materials International 15(6): 949-953
The Open materials Science Journal 8:1-17
Dental materials 23(7): 844-854
Materials Science and Engineering 47(3): 49-121
Metals and Materials International 15(6): 949-953
Online since: November 2023
Authors: Sandry Kesuma, Muhammad Hasan Wattiheluw, Lukky Jayadi
Metode
Materials and tools
The materials used in this study were Nutrient Agar (NA) media, sodium hydroxide, Phosphate Buffer, sodium chloride, distilled water, alcohol, eucalyptus oil extract and Aspergillus niger mushroom culture.
International Journal of Pharmaceutical Science and Research ISSN: 3, no. 4 (2018): 16-18
Critical reviews in food science and nutrition 48, no. 2 (2008): 137-159.
Journal of Pharmacopolium, 3 (2020) 1.
Washing and sanitizing raw materials for minimally processed fruit and vegetable products.
International Journal of Pharmaceutical Science and Research ISSN: 3, no. 4 (2018): 16-18
Critical reviews in food science and nutrition 48, no. 2 (2008): 137-159.
Journal of Pharmacopolium, 3 (2020) 1.
Washing and sanitizing raw materials for minimally processed fruit and vegetable products.