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Online since: March 2015
Authors: Jef Vleugels, Joost R. Duflou, Dimos Paraskevas, Wim Dewulf, Kim Vanmeensel
Materials and experimental set-up An uncoated 5182 aluminium alloy sheet, with thickness 1.2mm, was used as starting material.
Herrmann, Field-assisted sintering technology/spark plasma sintering: Mechanisms, materials, and technology developments.
Materials 7 (2014) 5664-5687
Materials Science and Engineering A 270(2) (1999) 278-282
Materials Science and Engineering A 287(2) (2000) 171-177
Online since: January 2014
Authors: Yi Ren Lu, T. Ling, X.W. Du, P.F. Yin, H. Zhang, X.Y. Chen
Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin University, Tianjin, 300072, P.
School of Environmental Science and Engineering, Tianjin University, Tianjin, 300072, P.
Yang,Advanced Materials, 2003, 15, 5: 353–389 [3] Pan AL, Liu RB, Yang Q, JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109, 51: 24268-24272 [4] Junwei Hou, Xiuchun Yang, Applied Surface Science, 2011, 257:7684–7688 [5] Zhiyong Fan, Haleh Razavi, Jae-won Do, Nature Materials,2009,8, 648-653 [6] Zhiyong Fan, Daniel J.
C, 2009, 113, 16951–16953 [20] Tianyou Zhai, Xiaosheng Fang, ACS Nano, 2009, 3, 4:949–959 [21] Lifeng Dong, Jun Jiao, Michael Coulter,Chemical Physics Letters, 2003, 376: 653–658 [22] Weifeng Liu, Chong Jia, Journal of Crystal Growth, 2004, 269, 304–309 [23] Nava Shpaisman, ACS Nano, 2010, 4, 4: 1901–1906 [24] Liang Xu, Yong Su, Dong Cai, Materials Letters, 2006, 60:1420– 1424 [25] Muhammad Iqbal Bakti Utama , Nanoscale, 2012, 4, 1422-1435 [26] S Neretina1, R A Hughes, J F Britten, Nanotechnology, 2007, 18:275301 [27] C.
C, 2007, 111, 15: 5588–5591 [28] Peng P; Milliron DJ,NANO LETTERS, 2005,5,9: 1809-1813 [29] Duan XF, Lieber CM, Advanced Materials, 2000,12,4:298-302 [30]  Guozhen Shen, Cheol-Jin Lee, Crystal Growth & Design, 2005,5(3):1085-1089
Online since: October 2015
Authors: Ioan Milosan, Flavius Aurelian Sarbu
., Brasov, 500036, Romania 2 Transilvania University of Brasov, Department of Materials Science, 29 Eroilor Bld., Brasov, 500036, Romania asflavius@unitbv.ro, bmilosan@unitbv.ro Keywords: heat treatment, phase transformation, retained austenite, bainite, analysis of variance Abstract: The paper presents an example of calculation for the one-way repeated measures applied for the results of an austempered ductile iron.
Rimmer, ADI solutions aid vehicle design, The Foundry Trade Journal, March, (2004), 54-56
Bhadeshia, Model for the maximum fraction of retained austenite in austempered ductile cast iron, Materials Science and Engineering A, 333, (2002), 60-66
MacKay, Estimation of the amount of retained austenite in austempered ductile iron using neural networks, Materials Science and Engineering A, 311, (2001), 162-173
Balos, Effect of austempering temperature on cavitation behaviour of unalloyed ADI material, Materials Characterization, 82 (2013), 66-72
Online since: March 2015
Authors: Yan Yan Hu, Xian Zhe Zhang, Ting Shu He
The dose was 1.9% of cementitious materials.
The mass ratio of cementitious materials and gravel was 0.4.The water-cement ratio was 0.45.
After stirring cementitious materials and coarse aggregate (diameter 4.75~9.5 mm), they were vibrated in 40×40×160 mm3 of steel molds.
Journal of the Chinese ceramic society, 2012, 40(2): 186–193
Construction and Building Materials, 2011(25): 2298-2303
Online since: May 2010
Authors: Hiroshi Suzuki, Nishida Masayuki, Hanabusa Takao, Tatsuya Matsue
Introduction The internal stress distribution of the casting materials is one of the most important factors for its material properties such as material strength, fatigue life, dimensional stability and so on.
Therefore, the neutron stress measurement is an effective method to estimate the internal stresses in the case of casting materials.
However the casting materials usually include coarse crystal grains.
Refai MUSLIH, Takao Hanabusa: Ti-2007 Science and Technology, (2007), pp.793-796 [2] Masayuki Nishida, M Refai Muslih, Yasukazu Ikeuchi, Nobuaki Minakawa and Takao Hanabusa: Materials Science Forum Vols. 490-491 (2005), pp239-244
Rifai Muslih, Yasukazu Ikeuchi, Nobuaki Minakawa, Takao Hanabusa: International Journal of Modern Physics B,Vol.20, No. 25,26 & 27 Part 1 of 3(2006), pp.3668-3673
Online since: September 2011
Authors: Da Yong Li, Ying Hong Peng, Ding Tang, Qing Qing Zhang
Journal of Materials Processing Technology., Vol.201, pp.53-59
Journal of Materials Science.
International Journal of Fatigue.
[8] Donati, L., Tomesani, L., Minak, G.(2007) Characterization of seam weld quality in AA6082 extruded profiles, Journal of Materials Processing Technology.
Materials and Manufacturing Processes.
Online since: September 2019
Authors: Mohammed Amine Belyamna, Abdelmoumene Guedri, Racim Boutelidja
Zeghloul, Reliability analysis of low alloy ferritic piping materials, in Damage and Fracture Mechanics.
Failure Analysis of Engineering Materials and Structures, Springer Netherlands, 2009, pp. 33-42
Journal of Mechanical Engineering Science – Proceedings of the IMechE (Part C) 219 (7) (2005) 607-626
[8] American Society of Materials.
USA: Materials Information Society International, 1996
Online since: November 2011
Authors: Xiao Ping Liao, Jun Yan Ma, Liu Lin Li, Wei Xia, Ting Ruan
The material of the part is ABS.
Acknowledgements This work is supported by National Natural Science Foundation of China (Grants No. 50965003) and Open Foundation of the Kay Lab of New Processing Technology for Nonferrous Metals and Materials (GXKFJ09-09).
Journal of materials processing technology, Vol. 103(2000), p. 411-416
Journal of Materials Processing Technology, Vol. 183(2007), p. 412-418
Journal of Materials Processing Technology, Vol. 171(2006), p. 437-445
Online since: May 2004
Authors: Fevzi Yilmaz, Uğur Şen, Şaduman Şen
Scripta Materials, 44, 2001, 707-712
Materials Park, Ohio, 1991
[10] U.Sen, PhD Thesis, İ.T.Ü., Science Institute, 1997
Marx, Dental Materials, 18, 2002, 12-19
Mazza, Journal of Mater.
Online since: January 2018
Authors: Carlos Maurício Fontes Vieira, Lucas Fonseca Amaral, G.C.G. Delaqua, M. Nicolite
However, these deficiencies can be overcome with the addition of other raw materials in the ceramic body.
Romero: Applied Clay Science Vol. 48 (2010), p. 307
Worral: Ceramic Raw Materials.
Monteiro: Materials Science Forum Vols. 798-799 (2014), p. 15
Journal of the american ceramic society 14 (1930) 767 - 779