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Online since: March 2013
Authors: Wang Jun Feng, Rui Fan, Peng Fei Hui, Hua Yang, Hui Ling Liu
Introduction With the further development of nano science and technology, people put forward higher and more widely requirements to nanometer materials preparation, property and application .
Journal of Alloys and Compounds,2008,1-6
Materials Science and Engineering B, 2007, 139: 119-123
Journal of the European Ceramic Society, 2002, 22(12): 2039–2045
Advanced Materials Research.2011,(239-242):108-111
Online since: January 2010
Authors: Dariusz Kuc, Grzegorz Niewielski, Jerzy Gawąd
Stoloff: Materials Science and Engineering A 258 (1998), p. 1-14
Baker: Materials Science and Engineering A192/193 (1995), p. 1-13
Froyen: Journal of Materials Processing Technology 146 (2004), p.175-180
Bose: Journal of Materials Processing Technology 115 (2001) p. 413-422
Liu: Progress in Materials Science vol. 42 (1997), p. 177-192.
Online since: February 2016
Authors: Alexsandr I. Kondratev, Andrey V. Balyakin, Natalia Galkina
There are new materials and processing methods [1].
Galkina, N. (2015) Study of Rheological Properties of Materials at the Blade Processing on Example of Milling Nickel-Chromium Alloy 10H11N23T3 MR VD, Applied Mechanics and Materials, vol. 756 (2015) pp 120-125 [3] Komissarov V.
I., investigation of the machinability of titanium and heat-resistant materials in face milling.
Ai, “The assessment of cutting temperature measurements in high-speed machining”, in Materials Science Forum, 2004
Kondratiev, A. (2014) Methodology of rheological material properties phenomenological modeling at high speed cutting by reverse analysis, Research Journal of Applied Sciences 9(11):753-760 http://medwelljournals.com/abstract/?
Online since: October 2014
Authors: David Hui, Zhe Min Jia, Guo Qing Yuan
In order to guarantee the results, we may need a finer mesh and approximately consider the adhesive as completely elastic-plastic materials and composite materials as isotropic materials.
When analyzing the composite materials structures, the interface failure or pre-crack of composite materials may result in reduced strength of the adhesive bonding structures.
IPC Science Technology Press 1978:64–78
Journal of Materials Processing Technology, 2003, 142(3): 587-598
[J] Journal of Adhesion Science and Technology, 2012. 25(18): 2461-2474 [30]P.T.
Online since: August 2019
Authors: Milan Brandt, Dong Qiu, Muhammad Musaddique Ali Rafique
Journal of Materials Science & Technology, 2014. 30(6): p. 566-575
Journal of Materials Science, 1991. 26(3): p. 588-592
Journal of Materials Science Letters, 1982. 1(5): p. 211-213
Journal of Materials Science & Technology, 2013. 29(8): p. 685-701
Journal of Materials Science, 2012. 47(1): p. 55-67
Online since: August 2013
Authors: Ionel Olaru
Yoon-Tae, A study on the springback in the sheet metal flange drawing, Journal of Materials Processing Technology.
Cao, Analysis of microbending of CuZn37 brass foils based on strain gradient hardening models, Journal of Materials Processing Technology.
El-Magd, Behaviour of Cu-Zn alloys in high speed shear tests and in chip formation processes, Materials Science and Engineering.
Vilac, Material flow in heterogeneous friction stir welding of thin aluminium sheets: Effect of shoulder geometry, Materials Science and Engineering.
Yoshida, Role of counterpunch for square-cup drawing of tailored blank composed of thick/thin sheets, Journal of Materials Processing Technology.
Online since: July 2011
Authors: Zi Yang Cao, Hua Li
Micro-cutting process has a unique advantage in creating three-dimensional components using a variety of engineering materials [1-5].
Mishima, Journal of Manufacturing Science and Engineering, Vol. 126 (2004) No. 5, p.837-844 [2] Z.
Li: Journal of Microfabrication Technology, Vol. 11 (2006) No.3, p.1-5 [3] Y.
Kapoor: Journal of Manufacturing Science and Engineering, Vol. 126 (2004) No. 3, p.666-678 [7] M.
Li: Applied Mechanics and Materials, Vol. 10-12 (2008), p. 631-636
Online since: September 2009
Authors: Li Zhang, Ming Sheng Jin, Shi Ming Ji, Qiao Ling Yuan, Guo Da Chen, Xian Zhang
Kawashima: Journal of Materials Processing Technology, Vols. 143-144 (2003) No.1, pp.682-686
Khatri: Journal of Materials Processing Technology, Vol. 190 (2007) No.1-6, pp.282-290
Yamamoto: Journal of Materials Processing Technology, Vol. 201 (2008) No.1-3, pp.536-541
Ramírez: Journal of Colloid and Interface Science, Vol. 316 (2007) No.2, pp.867-876
Yeo: Materials Science and Engineering, Vol. 333 (2002) No.1-2, pp.368-376.
Online since: September 2011
Authors: R. Saravanan, S. Santhosh Kumar Jacob, Saravananakumar S.
The optical band gap of this material has been determined in order to establish a relationship between energy gap of bulk and nano materials.
Cadmium sulphide (CdS) is an important II-VI semiconductor (Eg = 2.42 eV at room temperature) with many excellent physical and chemical properties, which has promising applications in multiple technical fields including photochemical catalysis, gas sensor, detectors for laser and infrared, solar cells, non linear optical materials, optoelectronic devices and so on [2-7].
References [1] Azojomo: Journal of Materials online, synthesis of CdS nanoparticles (ISSN 1833-122X) Volume 1, December 2005
Pramana Journal of physics 71:187-192, 2008
[16] Fujio Izumi, Ruben A.Dilanien, National institute of material science, super fast program, PRIMA, for the maximum entropy method advanced materials laboratory, Japan (2004)
Online since: February 2011
Authors: Yun Ping Pan, Wen Juan Yang, Yi Min Mo
Introduction Carbon fiber composite materials are engineered materials made from constituent materials with significantly different physical or chemical properties which remain separate and distinct on a macroscopic level within the finished structure.
However, the traditional processing and analysis methods which can be used for metallic materials are infeasible for carbon fiber.
IEEE Journal of Quantum Electronics, 1997, 33(10): 1706-1716 [3] Küper S, Stuke M.
Applied Physics A: Materials Science and Processing, 2009, 95(3): 739-746 [7] Kuang Z, Perrie W, Liu D, Edwardso S, Cheng J, Dearden G, Watkins K.
Applied Surface Science, 2004, 233(1-4): 275-287