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Online since: June 2015
Authors: P. Gunasekar
Deep drawing can be used in both ferrous and non ferrous materials.
References: [1] Dinesh Damodaran, Rajiv Shivpuri, Prediction and control of part distortion during the hot extrusion of titanium alloys, Journal of Materials Processing Technology, 2004, Volume 150, Issues 1–2, Pages 70–75
[2] M.S Yeh, J.H Huang, Hydrogen-induced subcritical crack growth in Ti–6Al–4V alloy, Materials Science and Engineering: A, 1998, volume 242, Pages 96-107
Danckert, Development of hydro-mechanical deep drawing, Journal of Materials Processing Technology, 1998, Volume 83, Issues 1–3, Pages 14–25
Johnson, The buckling of annular plates in relation to the deep-drawing process, International Journal of Mechanical Sciences, 1982, Volume 24, Issue 3,Pages 175–188
References: [1] Dinesh Damodaran, Rajiv Shivpuri, Prediction and control of part distortion during the hot extrusion of titanium alloys, Journal of Materials Processing Technology, 2004, Volume 150, Issues 1–2, Pages 70–75
[2] M.S Yeh, J.H Huang, Hydrogen-induced subcritical crack growth in Ti–6Al–4V alloy, Materials Science and Engineering: A, 1998, volume 242, Pages 96-107
Danckert, Development of hydro-mechanical deep drawing, Journal of Materials Processing Technology, 1998, Volume 83, Issues 1–3, Pages 14–25
Johnson, The buckling of annular plates in relation to the deep-drawing process, International Journal of Mechanical Sciences, 1982, Volume 24, Issue 3,Pages 175–188
Online since: June 2011
Authors: Yao Xiang Li, Li Chun Jiang
X-ray diffraction (XRD) is a well-established method for determining the crystallinity of partially crystalline materials.
It is a rapid, accurate, low-cost, nondestructive, and nonpolluting optimal technique, which has been widely used to characterize chemical and physical properties of a wide range of materials.
Materials and Methods Samples.
Forest Science.
Submitted to the New Zealand Journal of Forestry Science (2010)
It is a rapid, accurate, low-cost, nondestructive, and nonpolluting optimal technique, which has been widely used to characterize chemical and physical properties of a wide range of materials.
Materials and Methods Samples.
Forest Science.
Submitted to the New Zealand Journal of Forestry Science (2010)
Online since: September 2013
Authors: Leily Nurul Komariah, Susila Arita, Sumardi Novia, Soni Solistia Wirawan, Muhammad Yazid
Materials and Methods
Biodiesel used in this study were transesterified palm oil and its blends with petroleum diesel oil No.2.
Cetane number of biodiesel is higher than diesel oil and among other biodisel from different raw materials.
Annamalai : Journal of Thermal Science and Technology, (2011), pp. 71-75
Munawir Z : Indonesian Journal of Materials Science, (2006), pp. 135 – 139 [14] V.
[15] K.Sivaramakrishnan, and P.Ravikumar : ARPN Journal of Engineering and Applied Sciences, February (2012). pp 205-211
Cetane number of biodiesel is higher than diesel oil and among other biodisel from different raw materials.
Annamalai : Journal of Thermal Science and Technology, (2011), pp. 71-75
Munawir Z : Indonesian Journal of Materials Science, (2006), pp. 135 – 139 [14] V.
[15] K.Sivaramakrishnan, and P.Ravikumar : ARPN Journal of Engineering and Applied Sciences, February (2012). pp 205-211
Online since: October 2012
Authors: Hai Yun Jiang, Ruo Mei Wu, Wei Li Zhang, Qi Long Liu, Wei Weng
Experimental
2.1 Raw materials
A commercial PLA (Toyolac, Japan) was used to prepare the casting film plasticized by triacetin (TAC).
2.2 Preparing the casting film
A proportion of PLA particles were dissolved in chloroform solution at 48 °C.
Whiteside: Journal of Food Engineering Vol.100 (2010) p.239 [4] E.
Gundogdu: Journal of Surgical Research Vol.147 (2008) p.148 [5] J.
Dan: Polymer Materials Science and Engineering Vol.26 (2010) p.12 [8] L.
Zhou: Journal of Applied Polymer Science Vol.91 (2004) p.274 [9] O.
Whiteside: Journal of Food Engineering Vol.100 (2010) p.239 [4] E.
Gundogdu: Journal of Surgical Research Vol.147 (2008) p.148 [5] J.
Dan: Polymer Materials Science and Engineering Vol.26 (2010) p.12 [8] L.
Zhou: Journal of Applied Polymer Science Vol.91 (2004) p.274 [9] O.
Online since: October 2013
Authors: Zheng Yao, Chang Liang Zheng
Journal of Applied Physics, 1983, 54(9):4703-4710
Ghatu, A nonlocal formulation based on a novel averaging scheme applicable to nanostructured materials.
Mechanics of materials, 2003, 35(3-6): 281-294
International Journal of Engineering Science, 2000, 38(4): 453-486
International Journal of Engineering Science, 2007, 45(2-8): 288-307
Ghatu, A nonlocal formulation based on a novel averaging scheme applicable to nanostructured materials.
Mechanics of materials, 2003, 35(3-6): 281-294
International Journal of Engineering Science, 2000, 38(4): 453-486
International Journal of Engineering Science, 2007, 45(2-8): 288-307
Online since: July 2014
Authors: Wei Wang, Ji Yuan Liu
Derivation of a Multidimensional Constitutive Model for SMAs
The deformation of SMA materials is not only related to the final state of stress and temperature, it is also particular concern with loading paths.
Acknowledgements This work was financially supported by the Youth Foundation of National Natural Science (51308357) and the Science and Technology Planning Project of ministry of housing and urban-rural development (2013-K2-38).
Journal of Intelligent Material Systems and Structures, Vol. 5, No.3(1994), p. 382~390
Journal of Intelligent Material Systems and Structures, Vol.4, No.2 (1993), p. 229~242
One-dimensional thermomechanical constitutive relations for shape memory materials[J].
Acknowledgements This work was financially supported by the Youth Foundation of National Natural Science (51308357) and the Science and Technology Planning Project of ministry of housing and urban-rural development (2013-K2-38).
Journal of Intelligent Material Systems and Structures, Vol. 5, No.3(1994), p. 382~390
Journal of Intelligent Material Systems and Structures, Vol.4, No.2 (1993), p. 229~242
One-dimensional thermomechanical constitutive relations for shape memory materials[J].
Online since: January 2013
Authors: Mohammed Rafiq Abdul Kadir, Azli Yahya, Andromeda Trias, Safura Hashim Nor Liyana, Mahmud Nazriah
Journal of Materials Processing Technology, 2007. 191(1–3): p. 141-144
Journal of Materials Processing Technology, 2003. 140: p. 303-307
The Open Materials Science Journal, 2010. 4: p. 113-116
Journal of the Mechanical Behavior of Biomedical Materials, 2011. 4(8): p. 1955-1962
Journal of the Mechanical Behavior of Biomedical Materials, 2011. 4(3): p. 417-422
Journal of Materials Processing Technology, 2003. 140: p. 303-307
The Open Materials Science Journal, 2010. 4: p. 113-116
Journal of the Mechanical Behavior of Biomedical Materials, 2011. 4(8): p. 1955-1962
Journal of the Mechanical Behavior of Biomedical Materials, 2011. 4(3): p. 417-422
Online since: June 2012
Authors: Yu Fang Yang, Jing Yao Zhang
References
[1]Suryanarayana C, Yoo S H, Groza J R: Journal of Materials Science Letters.
Chinese Journal of Materials Research (in Chinese) .Vol. 137 (2002), p. 245
[3] Groza J R, Zavaliangos A: Materials Science and Engineering.Vol. 27 (2000), p.171
[4]Yang Y F, Zong Y P, Wang G, Xu N: Chinese journal of materials research(in Chinese).Vol. 27 (2007), p.69
[5]Yang Y F, Zong Y P, Xu N, Mu Q: Journal of Materials and Metallurgy(in Chinese).
Chinese Journal of Materials Research (in Chinese) .Vol. 137 (2002), p. 245
[3] Groza J R, Zavaliangos A: Materials Science and Engineering.Vol. 27 (2000), p.171
[4]Yang Y F, Zong Y P, Wang G, Xu N: Chinese journal of materials research(in Chinese).Vol. 27 (2007), p.69
[5]Yang Y F, Zong Y P, Xu N, Mu Q: Journal of Materials and Metallurgy(in Chinese).
Online since: February 2013
Authors: Ya Li, Jing Kuan Duan, Chang Xiu Fan, Pei De Han, Shuang Xi Shao
Experimental Section
Materials.
The structures of the raw materials are given in Fig. 1.
Trada, Fracture toughness of phenol formaldehyde composites reinforced with E-spheres, Journal of Composite Materials. 43 (2009) 741-754
Partridge, Rubber-toughened epoxy loaded with carbon nanotubes: structure-property relationships, Journal of Materials Science. 45 (2010) 2633-2639
Feng, et al., Structure and properties of fibrillar silicate/SBR composites by direct blend process, Journal of materials science. 38 (2003) 4917-4924
The structures of the raw materials are given in Fig. 1.
Trada, Fracture toughness of phenol formaldehyde composites reinforced with E-spheres, Journal of Composite Materials. 43 (2009) 741-754
Partridge, Rubber-toughened epoxy loaded with carbon nanotubes: structure-property relationships, Journal of Materials Science. 45 (2010) 2633-2639
Feng, et al., Structure and properties of fibrillar silicate/SBR composites by direct blend process, Journal of materials science. 38 (2003) 4917-4924
Online since: March 2016
Authors: Zhi Min Zhang, Xu Bin Li, Jian Min Yu, Qiang Wang, Yao Jin Wu, Jun Wang
References
[1] S.SCHUMANN, H.FRIEDRICH, Current and future use of magnesium in the automobile industry, Materials Science Forum. 419(2003)51-56
The Minerals Metals & Materials Society, Australia,1997,121-131
[17] Y.J.WU, D.L.LIN,X.Q.ZENG, L.M.PENG, W.J.Ding, Formation of a lamellar 14H-type long period stacking ordered structure in an as-cast Mg-Gd-Zn-Zr alloy, Journal of Materials Science, 44(2009)1607-1612
[18] Y.J.WU, L.M.PENG, D.L.LIN, X.Q.ZENG, W.J.DING, A high-strength extruded Mg-Gd-Zn-Zr alloy with superplasticity, Journal of Materials Research, 24(2009)3596-3602
PRASAD, B.HAWBOLTE, Study of fractional softening in multi-stage hot deformation, Journal of Materials Processing Technology, 77(1998)166-174
The Minerals Metals & Materials Society, Australia,1997,121-131
[17] Y.J.WU, D.L.LIN,X.Q.ZENG, L.M.PENG, W.J.Ding, Formation of a lamellar 14H-type long period stacking ordered structure in an as-cast Mg-Gd-Zn-Zr alloy, Journal of Materials Science, 44(2009)1607-1612
[18] Y.J.WU, L.M.PENG, D.L.LIN, X.Q.ZENG, W.J.DING, A high-strength extruded Mg-Gd-Zn-Zr alloy with superplasticity, Journal of Materials Research, 24(2009)3596-3602
PRASAD, B.HAWBOLTE, Study of fractional softening in multi-stage hot deformation, Journal of Materials Processing Technology, 77(1998)166-174