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Online since: March 2014
Authors: Long Bang Qing, Huan Huan Liu
(6) where, c1, c2, wc are material parameters.
Kaplan, ACI Journal Proceedings, 58 (1961) 591-609
Yang, Journal of Hydraulic Engineering, 38 (2007) 46-52.
Guan, Journal of Hydraulic Engineering, SUP (2012) 38-43.
Wang, Journal of Hydraulic Engineering, 7 (1999) 12-16.
Online since: June 2015
Authors: Mohd Khairul bin Ahmad, Wan Suhaimizan Wan Zaki, Noor Sakinah Khalid
Applied Surface Science. 257 (2011) 8850-8856
Journal of Advanced Research in Physics. 3 (2012) 1-4
Applied Surface Science. 258 (2011) 431-435
Open Materials Science Journal, (2010) [7] Z.
Journal of The Electrochemical Society. 154 (2007) D34-D37.
Online since: May 2014
Authors: Tao Meng
Economic Science Press, 2011: 45-62
Magnetic materials and devices, 2011(1): 59-61
Journal of electronic, 2011, 35(5): 900-905
Journal of software, 2011, 17(9): 1969-1979
Journal of software, 2011, 18(2): 177-184
Online since: March 2012
Authors: C.D. Naiju, K. Annamalai, P.K. Manoj, K.M. Ayaz
In the mentioned composition (Direct Metal 50) Nickel is the structural material and bronze is the binder material.
Laser sintered materials are always porous and in addition a study conducted states that the porosity of material fabricated by DMLS is near 30%.
Upendra Sravan: Functional Testing of Direct Metal Laser Sintered (DMLS) Components for Automotive Application, Advanced Materials Research, Vols. 383-390, (2012), p. 6242-6246
Pohl: On the development of direct metal laser sintering for rapid tooling, Journal of Material Processing Technology, Vol. 141 (2003), p. 319-328
Haider: Laser Sintered rapid tools with improved surface finish and strength using plating technology, Journal of Materials Processing Technology, Vol. 121 (2002), p. 318-322
Online since: June 2025
Authors: Ming Huwi Horng, Lien Kai Chang, Tsung Wei Chang, Jhih Cheng Huang, De Qian Liu, Mi Ching Tsai
Materials and Methods The metal powder used in this study is Fe-50Ni (collected from Chung Yo Materials company, Taichung, Taiwan).
*Materials & Design, 231, 112004
Journal of Materials Processing Technology, 271, 152-161
Materials Science and Engineering: A, 843, 143135
International Journal of Engineering and Mathematical Sciences, 1(1), 1-7.
Online since: November 2011
Authors: Yu Zhong Shi, Feng He Tian, Jun He Zhang, Wei Na Jin, Bao Bao Zhang, Yan Yu Jia
Materials and Methods Plant Material.
Acknowledgement This work was financially supported by the Foundation of Henan Educational Committee (2011A550006) and the Science and Technology Plan of Henan Institute of Science and Technology (08002).
[5] Yuqun Gao, Lei Wu and Yao Liu: Science and Technology of Food Industry.
Oladebeye: Pakistan Journal of Nutrition.
Radhikac, Archana Mukherjeed: International Journal of Food Properties.
Online since: February 2014
Authors: Ming Hung Shu, Bi Min Hsu, Jen Bing Ou, Pei Yi Hao, Jen Hsin Ou
The material NAK80, one type of plastic mold steels, possessing excellent resistance and dimensional stability is used as experimental test specimens.
Moreover, Soo et al. [4] constructed a model for the 3D ball tool and used the finite element method to analyze its cutting force when machining Inconel 718, one of the most difficult-to-machine materials.
The material NAK80 possessing excellent resistance and dimensional stability is used as experimental workpieces.
Soo: International Journal of Machine Tools & Manufacture, Vol. 47 (2007), pp. 1839–1846
Hassan: Journal of Materials Processing Technology, Vol. 145 (2004), pp. 84–92
Online since: November 2011
Authors: Xin Tan, Yu Qing Li, Xue Jie Liu, Yan Hui Xie
Wu, “The deposition and wear properties of cathodic arc plasma deposition TiAIN deposits,” Materials Chemistry and Physics, Volume 46, Issue 1, pp. 77-83 October 1996
Suzuki, “Metastable Ti1-xAlxN films with different Al content” Journal of Materials Science Letters, Vol. 19, pp. 601-602, 2000
Chiou, “Materials informatics for the design of novel coatings,” Surface and Coatings Technology, Vol. 200, pp. 1595-1599, November 21, 2005
Veprek, “Metastable phases and spinodal decomposition in Ti1−xAlxN system studied by ab initio and thermodynamic modeling, a comparison with the TiN–Si3N4 system,” Materials Science and Engineering A, Vol. 448, pp. 111–119, March 2007
Vieira, “Effect of ductile layers in mechanical behaviour of TiAlN thin coatings,” Journal of Materials Processing Technology, Vol. 143-144, pp. 352-357, 20 December 2003
Online since: March 2026
Authors: Chizoma Nwakego Adewumi, Temitayo Samson Ogedengbe, Jakada Khaleel, Nur Abubakar Isa, Fauziya Ramzy, Farouk Garba, Osasu Enoma Fountain
Furthermore, dye-doped biopolymeric materials with potential uses in random lasing generation can be created using starch as a matrix.
Journal of Petroleum Science and Engineering, 222, 111226
Journal of Petroleum Science and Engineering, 111, 128–138. https://doi.org/10.1016/J.PETROL.2013.07.003 [26] Hendraningrat, L., Torsæter, O., & Li, S. (2013).
Journal of Petroleum Science and Engineering, 157, 451–465
British Journal of Earth Sciences Research, 12(1), 22–35. https://journals.eajournals.org/index.php/BJESR/article/view/114 [43] Onyekachi, O.
Online since: March 2006
Authors: Besim Ben-Nissan, R. Roest, Bruno A. Latella, Greg Heness
Materials Division, ANSTO, PMB1, Menai, NSW, 2560, Australia * g.heness@uts.edu.au Keywords: Thin Film, Fracture Toughness, Nanoscale, Hydroxyapatite, Sol-gel Abstract: In the biomedical field, the surface modification of titanium aims to inhibit wear, reduce corrosion and ion release, and promote biocompatibility.
References 1 Kirk, P.B., Filiaggi, M., Sodhi, R., Pilliar, R., Journal of Biomedical Materials Research (USA), 48(4) (1999), p. 424 2 Chen, Y. and Liu, W., Materials Letters, 55(6) (2002, p. 407 3 Filiaggi, M.J., Pilliar, R.M. and Abdullah, D., Journal of Biomedical Materials Research, 33(4) (1996), p. 239 4 Kirk, P. and Pilliar, R., J.
Sci., 34 (16) (1999), p. 3967 5 Jaffe, W.L. and Scott, D.F., The Journal of Bone and Joint Surgery (American Volume), 78A(12) (1996) p. 1918 6 Brunette, D.M., Titanium in Medicine - Material Science, Surface Science, Engineering, Biological Responses and Medical Applications, (Springer Heidelberg, 2001, p. 1000) 7 Oonishi, H., Bioceramics. in Proceedings of 1st International Bioceramic Symposium. 1988.
(Wiley - Interscience. 1974 p. 801. 12 Critchlow, G.W. and Brewis, D.M., International Journal of Adhesion and Adhesives,. 15(3): (1995) p. 161 13 Arsov, L.D., Electrochimica Acta, 30(12) (1985). p. 1645 14 Aladjem, A., Journal of Materials Science, 8 (1973) p. 688 15 Delplancke, J.L. and Winand, R., Electrochimica Acta, 33 (1988) p. 1539 16 Blondeau, G., Froelicher, M., Froment, M. and.
Davis: ASM. p. 1521 21 Hu, M.S. and Evans, A.G., Acta Metallurgica,. 37(3) (1989). p. 917 22 Ignat, M., Key Engineering Materials, 116-117 (1996). p. 279 23 Beuth, J.L. and Klingbeil, N.W., J.