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Online since: January 2012
Authors: C.W.M. Yuen, C.W. Kan, C.W. Cheng
Laser allows short-time surface engraving of the patterns of desired variety, size, and intensity on a wide range of textile surfaces with precision and without much damaging the texture of the materials.
As a result, more fiber materials together with the blue indigo could be removed from the fabric surface giving finally a paler shade.
Lau: Applied Surface Science. 253 (2006) 2637
Suzuki, Journal of Applied Polymer Science. 92 (2004) 1454
Suzuki, Journal of Applied Polymer Science. 92 (2004) 1534.
Online since: November 2014
Authors: Adam Lipski, Zbigniew Lis
Skibicki, Variations Of The Specimen Temperature Depending On The Pattern Of The Multiaxial Load - Preliminary Research, Materials Science Forum, 726 (2012), 162-168
Boroński, Use of Thermography for the Analysis of Strength Properties of Mini-Specimens, Materials Science Forum, 726 (2012), 156-161
Risitano, Thermographic methodology for rapid determination of the fatigue limit of materials and mechanical components, International Journal of Fatigue, 22, 1 (2000), 65–73
Ait-Amokhtar et al., The dynamics of Portevin–Le Chatelier bands in an Al–Mg alloy from infrared thermography, Materials Science and Engineering: A, 488, 1-2 (2008), 540–546
Arrieux, Thermal observations associated with the Portevin–Le Châtelier effect in an Al–Mg alloy, Materials Science and Engineering: A, 404, 1-2 (2005), 188–196
Online since: December 2006
Authors: Su Juan Hua, Liu Ping, Dong Qi Ming, Li He Jun, Xu Ying Ying
Numerical Simulation of Residual Stress in Cu-Fe-P Alloy Su Juan Hua 1,2 *, Liu Ping1 , Dong Qi Ming1, Li He Jun2 , Xu Ying Ying1 1 College of Material Science and Engineering, Henan University of Science and Technology, Luoyang 471003,China; 2 College of Materials Science and Engineering, Northwestern Polytechnical University, Xi'an 710072, China *sujh@mail.haust.edu.cn Keywords: fe particle density, cu-fe-p alloy, finite element method, residual stress Abstract.
Refrtences [1] J H Su and Q M Dong, Materials Science and Enineering A392, 422 (2005) [2] F X Huang ,J S Ma and H L Ning, Materials Letters57, 2135(2003) [3] H.Y.
Lee, Materials Science and Engineering A311, 217 (2001) [4] M Motohisa, Journal of the Japan Copper and Brass Research Association29, 224(1990)
[5] E.Batawi, D.G.Morris, M.A.Morris, Materials Science and Technology6, 892(1999) [6] N.Y.Tang, N.M.Taplin, G.L.Dunlop, Materials Science and Technology1, 270(1985) [7] P Zhao, M Pecht, Microelectronics Reliability43, 775(2003) [8] G.
Chung, Engineering Structures26, 1249 (2004) [10] J L Bobet, J Lamon, Journal of Alloys and Compounds259, 260 (1997) [11] Y B Guo; M E Barkey, International Journal of Mechanical Sciences 46, 371 (2004) [12] Z H Jiang, J Lian, D Z Yang, Materials Science and Engineering A248, 256 (1998)
Online since: February 2014
Authors: Song Li Liu, Jun Yi Xiang
It can be directly used as welding-rod coatings, a raw materials for chlorination process to produce titanium dioxide pigments or sponge materials, and so on.
This process enjoys more favourable economics and consume small amounts of reagents, but only use high grade ores as a raw materials can manufacture high quality synthetic rutile.
Becher process presently enjoys more favourable economics and generates less waste materials.
Acknowledgements This work was financially supported by the SiChuan province Natural Science Foundation (2010JY0112), Innovation Program of Panzhihua Municipal Science Technology Commission (2010CY-G-9).
[16] WANG Yun-hua: Materials Review.
Online since: August 2022
Authors: Basappa C. Yallur, Vinayak Adimule, M.R. Ambika, S.R. Usharani, Maalathi Challa
Journal of Science: Advanced Materials and Devices. 5, 2 (2020) 185-191
IOP Conference Series: Materials Science and Engineering. 872, 1 (2020) 012099
Journal of Materials Science: Materials in Electronics. 32, 9 (2021) 12164-12181
Journal of Materials Science: Materials in Electronics. 29, 10 (2018) 8535-8546
IOP Conference Series: Materials Science and Engineering. 434, 1 (2018) 012079
Online since: May 2005
Authors: G. van der Heyd, Wolfgang Hussnätter, Manfred Geiger, Marion Merklein
Ishikawa: International Journal of Plasticity Vol. 14 (1998), p. 301-318 [5] E.
De Maré: Journal of Materials Processing Technology Vol. 80-81 (1998), p. 545-550 [6] M.C.
Comsa: Journal of Materials Processing Technology Vol. 125-126 (2002), p. 281-286 [7] D.
Pöhlandt: UTF science Vol. 4 (2001), p. 19-27 [13] M.
Chakraborty: Materials and Design Vol. 24 (2003), p. 471-481 [15] H.
Online since: August 2012
Authors: Vicente Amigó, F. Devesa, J.J. Candel, Concepción Tojal
Stover: Journal of Material Science-Materials in Medicine Vol. 20 (8) (2009), p. 1763
Sasaki: Materials Science and Engineering C Vol. 25 (3) (2005), p. 330
Moreno: Journal of Materials Processing Technology Vol. 141 (2003), p. 117 [8] S.
Weatherly: Journal of biomedical materials research, Vol. 18 (9) (1984), p. 1043
Mortensen: Materials Science and Engineering A Vol. 374 (2004), p. 250
Online since: May 2016
Authors: Roman Koleňák, Daniel Dřímal, Igor Kostolný, Andrej Rabatin
In Journal of Electronic Materials, Vol. 23, No. 8, 1994, pp. 701-707 [2] SHU, M.H., HSU, B.M., HU, M.C.
In Materials Science and Engineering B55, 1998, pp. 5-13
In Journal of Materials Science Letters, Vol. 19, Is. 14, 2000, pp. 1241-1242
In Materials Science and Engineering B25, 1994, pp. 39-46
In Materials Science and Engineering, roč. 44, č. 1, 1-44 s., 2004.
Online since: January 2019
Authors: Zhi Tang Song, San Nian Song, Yong Wang, Kun Ren
In recent years, Sb2Te3-based materials start to attract the attention of researchers.
Ielmini, Phase change materials and their application to nonvolatile memories, Chem.
Atwood, Phase-change materials for electronic memories, Science 321 (2008), 210-211
Pop, Phase change materials and phase change memory, MRS Bull. 39 (2014), 703-710
Taubner, Phase-change materials for non-volatile photonic applications, Nat.
Online since: December 2011
Authors: Yao Hui Lv, Dan Xia, Cun Long Liu, Bin Shi Xu, Yi Jiang
Powders of Fe314 and base plates of R235 steel were taken as sample materials.
References [1] Shanping Lu, Hidetoshi Fujii , Kiyoshi Nogi: Marangoni convection and weld shape variations in Ar–O2 and Ar–CO2 shielded GTA welding Materials Science and Engineering A. 380 (2004) ,290–297
[2] wang hong, Yaowu Shi, Shuili Gong: Effect of pressure gradient driven convection in the molten pool during the deep penetration laser welding.Journal of Materials Processing Technology.184(2007), 386—392
Materials Science and Engineering A. 379 (2004), 313–320
Journal of Materials Processing Technology 74 (1998), 89–95
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