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Online since: May 2023
Authors: Tahir A. Rizvi, Mushtaq Khan, Muhammad Nazir, Waleed Ahmed, Essam Zaneldin, Ali H. Al-Marzouqi
Journal of Hazardous Materials. 2016;312:1-7
Journal of Materials Chemistry. 2011;21(10):3350-2
Journal of Composites Science. 2020;4(3):113
Materials. 2016;9(9):736
International journal of molecular sciences. 2021;22(22):12315
Online since: September 2019
Authors: Dalibor Vojtěch, Drahomír Dvorský, Jaroslav Čapek, Jiří Kubásek, Jan Pinc
Experiment Materials and methods.
International Journal of Materials, Mechanics and Manufacturing 6 (2018) 142-146
Materials Science and Engineering: C 84 (2018) 67-79
Materials Science and Engineering: C 68 (2016) 198-204
Bioactive Materials 4 (2019) 8-16
Online since: September 2017
Authors: Fu Zhen Xuan, Ming-Liang Zhu, De Qiang Wang
Materials and Experimental Materials and Microstructures.
Suresh: Fatigue of Materials, (Cambridge University Press, 1998) [2] S.T.
Zhang: Reference Module in Materials Science and Materials Engineering, (2016) [3] H.
Mughrabi: Metallurgical and Materials Transactions A,Vol. 40 (2009), P. 1257
Xuan: Mechanics of Materials, Vol. 100 (2016), p. 198 [9] M.
Online since: October 2009
Authors: Xue Feng Wu, Hong Zhi Zhang, Chao Xie, Yang Wang
Laser assisted machining (LAM) is an effective method machining difficult-to-machine materials such as ceramics which uses a high power laser to focally heat a workpiece prior to material removal with a traditional cutting tool.
Laser assisted machining (LAM), an alternative to conventional machining of difficult-to-process materials, uses laser to heat local area prior to material removal with a traditional cutting tool.
[2] P.A.Rebro, Y.C.Shin and Incropera F P: Journal of Manufacturing Science and Engineering 124(2002), P. 875-885
[3] J.C.Rozzi, F.E.Pfefferkorn, Y.C.Shin, et al: Journal of Manufacturing Science and Engineering. 122(2000), p. 666-670
[6] Y.Tian and Y.C.Shin: Journal of Manufacturing Science and Engineering 128(2006), P. 425-434
Online since: January 2014
Authors: Hu Ping Li, Liang Hu, Yi Su, Guo Bin Li, Meng Meng Du
Fan, Journal of Materials Chemistry, 2003, 13: 1817-1821
Fu and so on, Journal of Sichuan University of Science & Engineering (Natural Science Edition), 2012, (25): 38-40
Zhan and so on, Journal of Sichuan University of Science & Engineering: Natural Science Editton, 2012, 25(5): 19-21
Kang et al, Materials Review: nano and new material album, 2011, 25: 118-120
Gu, Journal of Qiqihar Teachers College (Natural Science), 1996, 16(2): 45-47.
Online since: June 2021
Authors: Jian Xun Zhang, Wen Lan Wei, Qun Bing Zhang
Ni-based alloy welding material has been widely used in the welding and post-welding repair of high-temperature materials.
Ye, D.K.L.Tsang, et al.Welding solidification cracking susceptibility and behavior of a Ni-28W-6Cr alloy, Journal of Materials Science & Technology, 35 (2019) 29-35
Microstructure characteristics and temperature-dependent high cycle fatigue behavior of advanced 9%Cr/CrMoV dissimilarly welded joint, Materials Science and Engineering A, 615 (2014) 98-106
Zhang, Fatigue crack growth behavior of a new type of 10%Cr martensitic steel welded joints with Ni-based weld metal, Journal of Materials Engineering and Performance, (2017) 1-8
International Journal of Fatigue, 88 (2016) 78-87.
Online since: September 2014
Authors: Lin Fan, Song Rong Qian, Teng Fei Ma
The numerical methods of peridynamics theory used in failure analysis of materials Lin Fan1,a* Song-rong Qian1,b Teng-fei Ma1,c 1.
If a material point through a close curve around point ,and their net work is zero.We called this material as a microelastic material
From the derivation process of the peridynamics force function,We can see that the peridynamics force function include the constitutive information of the material,also it description the damage and crack in the material.
Acknowledgements The corresponding author of this paper is Lin Fan.This paper is supported by Projects of Guizohu International Science and Technology Cooperation(Department of Science & Technology of Guizhou province International Cooperation Projects G[2013]7006.Use peridynamics theory to research the reliability of material).
Reformulation of elasticity theory for discontinuities and long-range forces[J].Journal of the Mechanics and Physics of Solids 48(2000)175-209 [2] S.A.Silling.A meshfree method based on the peridynamic model of solid mechanics[J].
Online since: May 2013
Authors: Ji Chuan Huo, Qiu Ru Wang, Wei Ai, Yong Lin Lei
[2] Dachuan Chen , Liping He, Shouping Shang: Journal of Materials Science and Engineering Vol. 348 (2003), p. 29-35
Venkatathri: Journal of Material Letter Vol. 58 (2003), p. 241-244
Kimura: Journal of Microporous and Mesoporous Materials Vol. 77 (2005), p. 97-107
Keranen, et al: Journal of Materials Science and Engineering Vol. 323 (2002), p. 1-8
Chung: Journal of Materials Science, Vol. 28 (1993), p. 1435-1487
Online since: September 2011
Authors: Zdeněk Knésl, Pavel Hutař, Luboš Náhlík, Michal Zouhar
In the field of polymer materials crack behaviour at the bi-material interface is described in paper [9].
Kaddouri et al.: Computational Material Science, Vol. 35 (2006), p. 53
Sadowski : Computational Material Science, Vol. 44 (2009), p. 941
Hutař: Key Engineering Materials, Vol. 417-418 (2010), p. 301
Hutař: Computational Materials Science, Vol. 46 (2009), p. 614
Online since: July 2011
Authors: Bi Sang Chen, Zi Shan Zheng, Yan Mei Lin, Guo Liang Chen, Liang Zhou, Hong Xu Guo, Ling Feng Huang
The raw materials Si(OC2H5)4, Ca(NO3)2, MnCO3, Al(NO3)3, boric acid as flux are of analytical purity.
Zhang, et al: Materials Letters Vol. 58(2004), p. 3308-3311
Kim: Journal of Luminescence Vol. 128(2008), p. 2004-2007
Ju, et al: Journal of sol-gel science and technology Vol. 50(2009), p. 368-371
Chang et al. : Chemistry of Materials Vol. 15(2003), p. 3966-3968
Showing 5271 to 5280 of 97165 items