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Online since: February 2013
Authors: Cheng Tun Qu, Xue Yang, Bo Yang, Jing Tian, Xin Wang, Hong Guang Su
The corrosion rates of materials can be arranged as: A3 steel > Aluminum > H62 copper > 304stainless steel.
The corrosion rates of the materials can be arranged as: A3 steel > Aluminum > H62 copper > 304 stainless steel.
Corrosion Science.2007, 49:1878-1894P [5] Baril G.
Journal of the Electrochemical Society. 2001, 148:B489-B496P [6] Song G., Atrens A., Wu X. et al.
Corrosin Science.2001,43(3):471-484P [8] Liang LIU, Lei MIU, Ji-cheng HAN, et al.
Online since: April 2021
Authors: Khushdeep Goyal, Gagandeep Singh, Baljinder Ram, Bal Krishan
Materials were properly stirred in the stir zone and sufficient mixing of materials obtained to join the materials.
Sanders Jr., “ Technology innovation in aluminum products”, Journal of Materials 53, (2001), vol. 2, pp. 21-25
Jung, S.B., “ The Mechanical Properties related to the Dominant Microstructure in the Weld Zone of Dissimilar formed Al Alloys joints by Friction Stir Welding”, Journal of Material Science, (2003), vol. 38, pp. 4183-4191
Journal of Materials Processing Technology 170.3 (2005): 586-592
Archives of Metallurgy and Materials 52.1 (2007): 67
Online since: October 2011
Authors: Akrajas Ali Umar, J. Ridha Noor, Muhammad Yahya, Muhamad Mat Salleh, Mohammad Hafizuddin Haji Jumali
With such unique shape and huge Eg, the nanostructured SnO2 materials produced in this work is believed to be suitable for heterojunction solar cell application.
Ravichandran and I Manna: Bulletin of Material Science Vol. 33 (2010), p. 357–364 [9] X.
Wang: Materials Letters Vol. 61 (2007), p. 3705 [10] Z.L.
Wang: Advanced Materials Vol. 15 (2003), p. 432- 436 [11] X.
Min: Materials Science and Engineering Vol.
Online since: October 2010
Authors: Li Chen, Wen Zhi Zheng, Xiang Hua Huang, Lei Fu
Materials Letters.
Journal of Materials Processing Technology Vol. 199(2008), p.10 [10] WANG LI-jiu, ZHAO Shan-yu, YANG Mei.
Materials Chemistry and Physics Vol. 113(2009), p.485
Materials Science and Engineering C Vol.27 (2007) , p.1291 [16] A.
Journal of Materials Processing Technology Vol.209 (2009) , p. 5601 [20] Emel I.
Online since: June 2017
Authors: Yu Qin Li, X.D. Wang, F.L. Song, Y. Jao, S.H. Luo
He et al, Thermostablity Study on Microstructure and Microhardness of Laser Shock Processed Ti-6Al-2.5Mo-1.5Cr-0.5Fe-0.3Si, Materials Science Forum. 697-698(2011) 440-444
Li, et al, Characterization of Ti-6.5Al-3.5Mo-1.5Zr-0.3Si Titanium Alloy by Laser Shock Peening, Materials Science Forum. 697-698(2011)466-469
Smyth et al, Effect of laser shock peening on residual stress and fatigue life of clad 2024 aluminium sheet containing scribe defects, Materials Science and Engineering A. 548(2012)142-151
[12] M Kumagai, K Akita, Y Itano, et al, X-ray diffraction study on microstructures of shot/laser-peened AISI316 stainless steel, Journal of Nuclear Materials. 443 (2013)107-111
Ledion, et al, Corrosion Reactivity of Laser-Peened Steel Surfaces, Journal of Materials Engineering and Performance.9(2000)656-662.
Online since: February 2011
Authors: Yun Hui Xu, Xin Liu, Wei Wei Zhang
The resulting CMBPFF is a nonpolluting and eco-friendly fabric product through the method of natural raw materials and no additives, which not only increase the added value of the product but also achieve natural ecological fabrics.
Experimental Materials.
Tang, et al: Construction and Building Materials Vol. 22 (2008), p.1532 [6] K.S.
Singhaboonponp: Journal Applied Polymer Science Vol. 100 (2006), p.1372 [8] A.
Ntloedibe, et al: South African Journal of Botany Vol. 73 (2007), p.378
Online since: May 2014
Authors: Qi Shen Chen, Wan Li Xing, An Jian Wang
The results also show that the longer heat treatment the materials, the more irregular of the materials’ form.
Avoid materials became crushed and lose effectiveness for the excessive expansion.
“A numerical stress based approach for predicting failure in NBG-18 nuclear graphite components with verification problems,” Journal of Nuclear Materials, Amsterdam, Volume 436, pp. 175–184, May 2013
“Oxidation rate of nuclear-grade graphite NBG-18 in the kinetic regime for VHTR air ingress accident scenarios,” Journal of Nuclear Materials, Amsterdam, Volume 438, pp. 77–87, July 2013
Microstructural evolution of nuclear grade graphite induced by ion irradiation at high temperature environment,” Journal of Nuclear Materials, Amsterdam, Volume 434, pp. 17–23, March 2013.
Online since: June 2015
Authors: Suyamburajan Vijayananth, V. Jayaseelan, G. Shivasubbramanian
Formability of aluminium alloy sheets, ASME DC Journal of Engg Material
Institute of Production Technologies, Department of Forming, Faculty of Materials Science and Technology
[7] STNEN ISO 12004-2 (2008) Metallic materials.
[8] Jieshi Chen and Xianbin Zhou,(2005) A new curve fitting for forming limit experimental data Journal of Material Science Technology, Vol. 2
[9] Pepelnjak T, Kuzman, K. ,(2007), Numerical determination of the forming limit diagrams, Journal of Achievements in Materials and Manufacturing Engineering, Vol. 20
Online since: September 2013
Authors: Han Wu Liu, Zhi Ping Zhang, Li Lu, Yan Fang Luo
Development of sliding bearing materials started late in China.
In order to meet the development requirements of automobile, the performances of bushing materials are required that the bushing sleeve fit the cycle.
Journal of Material Processing Technology, 2000, 100: 224-228
Journal of Materials Processing Technology, 2003.141(3): 313-318
Journal of Material Processing Technology, 2001.11: 59-63.
Online since: September 2016
Authors: Rui Yu Chen, Shou Xiang Lu, Siu Ming Lo, Chang Hai Li
Ignition time is one of the important parameters to characterize the fire hazard of the materials [4, 15].
Mouritz, Post-fire flexural properties of fibre-reinforced polyester, epoxy and phenolic composites, Journal of Materials Science, vol. 37, pp. 1377-1386, 2002
Liew, Experimental study on ignition and combustion characteristics of typical oils, Fire and Materials, vol. 38, pp. 409-417, 2014
Bhargava, Flammability properties for charring materials,” Fire Safety Journal, vol. 38, pp. 219-228, 2003
Quintiere, A theoretical basis for flammability properties, Fire and Materials, vol. 30, pp. 175-214, 2006