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Online since: May 2013
Authors: Kai Ping Yu, Feng Wang, Rong Gang Chen, Jun Jun Zong
For the wide range of materials, plasma surface treatment process of the different materials are also many, which consists the right temperature plasma, different temperature plasma surface treatment process principle applies different materials[2].
Journal of Hubei Institute for Nationalities (Natural Science Edition).
Journal of Southeast University (Natural Science Edition).
(In Chinese) [3] Bo Zhang: Surface Modification of Materials by Low-temperature Plasma.
(In Chinese) [4] Kai ping Yu, Jinkai Mo:Research and Application on the surface plasma treatment of metal materials.
Online since: July 2014
Authors: Wei Hong Liu, Feng Xia Wang
Journal of economic geography, 2001,21 (1): 0095-0100
Journal of Shangrao Normal University,2004,24 (3): 0089-0094
Guangxi Agricultural Sciences, 2008,23 (3): 0042-0044
Journal of geographical science, 1997 (4) : 356-364
Beijing: Science Press, 2010:92-146.
Online since: December 2013
Authors: Anika Zafiah M. Rus, Noor Quratul Aine Adnan
Experimental Raw Materials.
Part 2; Thermal Degradation And Materials Properties, Prog React Kinetic And Mechanism, Science Reviews, vol 34, pp 1-43,
Rus, (April 2009)Effect of Titanium Dioxide on Material Properties for Renewable Rapeseed and Sunflower Polyurethane, International Journal of Integrated Engineering (Issues on Mechanical, Materials and Manufacturing Engineering), Volume 1, No 1,: ISSN:1985-854X [5] Anika Zafiah M.
Rus, (2010) Polymer from Renewable Materials, Science Progress, vol 3, 93, 1-16 available online; www.scilet.com/DB/SPROG
Acoustical Materials Workshop.
Online since: November 2012
Authors: Mei Qin Shi, Chun An Ma, Ning Ning Chen, Ai Ping Wei
Dehydro-aromatization of n-Hexane over Zinc Modified WC/HZSM-5 Catalysts Aiping Wei1, a, Meiqin Shi2,b, Chun’an Ma3,c, Ningning Chen4,d State Key Laboratory Breeding Base of Green Chemistry Synthesis Technology, College of Chemical Engineering and Materials Science 1, 2, 3,4Zhejiang University of Technology, International Sci & Tech Cooperation Base of Energy Materials and Application, Hangzhou 310032, Zhejiang, China E-mail: amagua1988@163.com, bsmq@zjut.edu.cn, cscience@zjut.edu.cn, dchnn000000@163.com Keywords: Zn-WC/HZSM-5 catalysts, Tungsten carbide, Acidity, Aromatization, N-hexane Abstract.
Boudart: Science 181 (1973), p.547
Iglesia: Journal of Catalysis, Vol. 130 (1991) No.2, p.86
Boudart: Journal of Catalysis, Vol. 131 (1991) No.2, p.523
Iglesia: Journal of Catalysis, Vol. 130 (1991) No.2, p.498
Online since: January 2014
Authors: Nattadon Rungruangkitkrai, Nattaya Punrattanasin, Rattanaphol Mongkholrattanasit, Nitaya Tubtimthai, Nuttanan Sasivatchutikool
Experimental Materials A commercially produced plain-weave silk fabric was scoured with an aqueous nonionic surfactant solution at a temperature of 45°C for 30 minutes, thoroughly rinsed and air dried at room temperature.
Akmci: Journal of New Results in Science (2013), p. 19
Lee: Journal of Applied Polymer Science Vol. 103 (1) (2007), p.251
Vikov´a: The Journal of the Textile Institute.
Suesat: Advanced Materials Research.Vol. 486 (2012), p. 384.400 ∑ Eλ Sλ Δλ 290 400 ∑ Eλ Sλ Tλ Δλ 290 UPF = 400 ∑ Eλ Sλ Δλ 290 400 ∑ Eλ Sλ Tλ Δλ 290 UPF =
Online since: September 2013
Authors: Tao Chen, Xiao Dong Liu, Jia Jin, De Guang Shang, Li Hong Zhang, Yu Bo Guo
In recent years, studies on the methods [1, 2] of heal for damaged materials have been extensively attentions.
Laser is widely used in the field of strengthening of metallic materials [7, 8].
At present, lots of scholars applied to heal materials by laser shock processing (LSP).
References [1] C.S.Shin, C.M.Wang, P.S.Song: International Journal of Fatigue.Vol.18 (1996) p.535-546 [2] J.E.Rodríguez-Sánchez, A.Rodríguez-Castellanos, F.Pérez-Guerrero: Fatigue and Fracture of Engineering Materials and Structures.Vol.34 (2010) p.487-497 [3] L.L.Ding, J.Hu, B.X.Guo: Advanced Materials Research, Vol.287-290(2011) p.223-226 [4] A.Alsaran, I.Kaymaz, A.Celik: Surface & Coatings Technology Vol.186 (2004) p.333-338 [5] E.Altus, E.Konstantino: Materials Science and Engineering.Vol.302 (2001) p.100-105 [6] Q.C.Liu, Janardhana: International Journal of Structural Integrity.
Vol.22 (2006) p.153-156 [8] P.Peyre, R.Fabbro, P.Merrieni: Materials Science and Engineering.210 (1996) p.102-113 [9] P.K.Sharp, Q.Liu, S.A.Barter: Fatigue and Fracture of Engineering Materials and Structures.
Online since: October 2010
Authors: En Yang Wang, Masaki Omiya
s s sln( ) ' C C σ ε= +� (10) where Cs and Cs' are proportional coefficients of matrix materials, ε� is the nominal strain rate, and σs is the yield stress of matrix materials.
Genna, International Journal of Solids and Structures, Vol. 38 (2001), p. 7235-7260
Kishimoto, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, Vol. 477 (2008), p. 168-178
Chabert, Composites Science and Technology, Vol. 66 (2006), p. 2700-2708
Wierzbicki, Journal of the Mechanics and Physics of Solids, Vol. 46 (1998), p. 645-669.
Online since: November 2020
Authors: Sunday Albert Lawal, Oladiran Kamardeen Abubakre, Ambali Saka Abdulkareem, Rasheed Aremu Muriana, Rasaq Olawale Medupin
Materials and Methods 2.1.
Translational Materials Research, 2 026001 (2015)
Lockwood, Dispersion of carbon nanotubes in liquids, Journal of Dispersion Science and Technology. 24(1) (2013) 1-41
Journal, 26 (2017) 453-466
Rieumont, Mechanical properties of epoxy networks based on OGEBA and aliphatic amines, Journal of Applied Polymer Science, 106 (2007) 2047-2055
Online since: January 2016
Authors: Monita Olivia, Chrisfela Wulandari, Iskandar R. Sitompul, Lita Darmayanti, Zulfikar Djauhari
Aziah: Construction and Building Materials Vol 43 (2013): p. 80
Palomo: Journal Materials Science Vol 42 (2007): p. 3055
Journal of Materials in Civil Engineering (2015)
Aziz: American Journal of Environmental Sciences Vol 3 (2007): p. 259
Construction and Building Materials Vol 20 (2006): p. 634
Online since: June 2015
Authors: Nur Hidayah Ahmad, Mohd Ikmar Nizam Mohamad Isa
Journal of Polymer Science. 10(1002), 880-885.
Materials Science Forum, 517, 97-100 [6] Nik Aziz, N.A., Idris, N.K. & Isa, M.I.N. (2010).
International Journal of Latest Research in Science and Technology, 2, 70-75
Materials Letters, 59, 2741
Solar Energy Materials & Solar Cells, 92, 228–233.