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Online since: March 2015
Authors: Nan Qiao Zhou, Jun Hu, Ming Yi Wang
Experimental Materials.
Journal of materials processing technology, Vol. 195 (2008), p. 144
Journal of Applied Polymer Science, Vol. 83 (2002), p. 2548
Polymeric Materials Science and Engineering, Vol. 26 (2010), p. 124
Journal of Applied Polymer Science, Vol. 123(2012), p. 2726.
Online since: April 2010
Authors: Małgorzata Grądzka-Dahlke
Deng: Materials Science and Engineering A Vol. 390 (2005), p. 98
Material Science: Materials in Medicine Vol. 8 (1997), p. 793
Dąbrowski: Journal of Material Science: Materials in Medicine Vol. 16 (2005), p. 197
Li: Materials Science and Engineering A Vol. 363 (2003), p. 356 [16] K.H.W.
Nakajama: Journal of Material Science: Materials in Medicine Vol. 19 (2008), p. 3385 [19] M.
Online since: May 2022
Authors: Vincenzo M. Sglavo, Paolo Bosetti, Farid Salari
Experimental Designs, Materials, and Methods Materials.
Cavallini, Influence of curing temperature on the evolution of magnesium oxychloride cement, Journal of Materials Science. 46 (2011) 6726–6733
Kitchens, Kinetic study of the magnesium oxychloride cement cure reaction., Journal of Materials Science. 52 (2017)
Chmielus, Binder jet 3D printing—process parameters, materials, properties, modeling, and challenges, Progress in Materials Science. 119 (2021) 100707
Litster, Modeling the granule formation mechanism from single drop impact on a powder bed, Journal of Colloid and Interface Science. 393 (2013) 369–376
Online since: December 2012
Authors: Hu Ping An, Rui Feng Wang, Zhi Yuan Rui, Zhi Mei Zhang
Deformation of continuous chip for scissile metal materials can be analyzed and controlled by analogous methods that are employed at normal cutting speed.
In HSM the machined materials experience intense extrusion and friction, then chips form due to rapid shearing slippage and plastic deformation, in which generate magnitude heat on account of work wasted in deformation and friction and cause high temperature.
International Journal of Machine Tools & Manufacture, 2008 (48): 1486-1494 [3] G.
International Journal of Machine Tools & Manufacture, 2008 (48 ): 275-288 [5] Zhang S, Guo Y.B..
CIRP Journal of Manufacturing Science and Technology, 2008 (1): 81-85
Online since: January 2012
Authors: Xiu Ying Hu, Cheng Guo Wang, Wen Bo Lu, Qi Fen Wang, Mei Jie Yu
Carbon Fiber Engineering Research Center, Faculty of Materials Science, Shandong University, Jinan 250061, China 3.
A.Podkopayev, et al.: Journal of Materials Science vol. 45(2010), p. 3998–4005
[6] J.X.Li, R.D.Sanderson and E.P.Jacobs: Journal of Membrane Science vol. 205(2002), p. 247-257
[17] G.Hinrichsen: Journal of Polymer Science Part C Polymer Symposia vol. 38(1972), p. 303-314
R.Uhlmann: Journal of Materials Science vol. 14(1979), p. 1893-1900.
Online since: January 2026
Authors: Ahmed N. Abd, Hanan R. Abd, Omar H. Mahmood
Materials Science and Engineering: C, 66, (2016) 278-284
Bulletin of Materials Science, 38, (2015) 945-950
Materials Science and Engineering: B, 69, (2000) 505-509
Journal of Nuclear Materials, 385,2 (2009) 308-311
Korean Journal of Materials Research, 22, 2 (2012)78-81
Online since: September 2012
Authors: Yawar Jamil Adeel, Ahsan Irshad Muhammad, Azmat Zeeshan
Introduction Hyperelastic materials such as rubber are widely used in industrial and household applications.
A number of constitutive models are available for hyperelastic materials in different FEA packages.
Chiappini, D.Amodio, “Characterisation of hyperelastic rubber-like materials by biaxial and uniaxial stretching test based on optical methods
Marco, “Digital Image Correlation used to Analyze the Multiaxial Behavior of Rubber-like Materials”, European Journal of Mechanics [3] Zeeshan Siddiqui,Fawad Tariq,Nausheen Naaz,”Application of a two step digital Image Correlation algorithm in Determining poisson's ratio of metals and composites”, 62nd International Astronautical Congress , Cape Town , South Africa, 3-7 Oct,2011
Sahari A “Review of Constitutive Models for Rubber-Like Materials”, American Journal of Engineering and Applied Sciences 3 (1): 232-239, 2010
Online since: October 2007
Authors: Chul Jin Choi, Xin Fang Zhang, H. Huang, B. Lv, J.P. Sun, X.L. Dong, J.P. Lei
Dong1 and *C.J.Choi2 1 State Key Laboratory for Materials Modification by Laser, Ion and Electron Beams, and School of Materials Science and Engineering, Dalian University of Technology (DUT), Dalian, Liaoning, 116024, China 2 Korea Institute of Machinery and Materials, 66 Sangnam-Dong, Changwon, Kyungnam 641-010, Korea *E-mail address: dongxl@dlut.edu.cn (X.L.
As an inspiration, we found this kind of nanocapsules with a dielectric shell and a ferromagnetic core are very promising for new EM wave absorption materials.
Recent studies on carbon-containing materials, such as carbon nanotubes (CNTs) [5-6], carbon nanofibers (CNFs) [7], have sparked a new arena for developing effective microwave absorption/shielding materials since their excellent EM wave absorption properties.
Yang, Journal of Materials Science 33, 1915 (1998)
Choi, Journal of Physics D: Applied Physics,2007, submitted
Online since: July 2018
Authors: Artem V. Kryukov, Dmitriy P. Il’yaschenko, А.A. Saranchin, Vladimir I. Berg
Computational materials science 54 (2012): 176-s to 182-s
International journal of thermal sciences 48(2009): 936-s to 947-s
Metallurgical and materials transactions 12A: 2025-2030
On Quality of a Weld Bead Using Power Wire 35v9h3sf (2016) IOP Conference Series: Materials Science and Engineering, 125 (1), art. no. 012028
Metallurgical and Materials Transactions B 15(1984), pp. 299-305
Online since: August 2013
Authors: Ming Song Yi, Yan Qiu Xu, Lan Ying Zhang, Guo Hui Yi, Ni Lou
Through experiment and finite element numerical simulation, the article studies the matching problem of block and the grouted concrete to find the best strength combination, so as to make full use of the two materials and improve the compression performance of grouted masonry.
Journal of Hunan University:Natural Sciences, 2010, 37(2): 18-21 [3] ROBERT G D,AHMAD A H.
Behavior of concrete block masonry under axial compression [J].ACI Journal,1979,76(6):707-721 [4] Shi Chuxian.
Compressive Strength of Concrete Masonry Prisms [J].ACI Journal,1986 [6] Yi Guohui.
Journal of Materials in Civil Engineering, 2005, 17(1): 107-115 [9] Ramamurthy, K.