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Online since: April 2013
Authors: Mohd Khir Mohd Nor, James Campbell, Rade Vignjevic
In addition, it should be noted that becomes when dealing with isotropic materials.
Using the given material properties, the compliance matrix of these materials was then calculated.
Furthermore, the formulation is capable of describing the isotropic behaviour of materials.
Conclusion The capability of the new stress tensor decomposition generalised for orthotropic materials to capture the plasticity behaviour of orthotropic materials were examined in this paper.
Julean, Non-Quadratic Yield Criterion for Orthotropic Sheet Metals Under Plane-Stress Conditions, Journal of Mechanical Sciences July, 45 (2003), 797-811
Using the given material properties, the compliance matrix of these materials was then calculated.
Furthermore, the formulation is capable of describing the isotropic behaviour of materials.
Conclusion The capability of the new stress tensor decomposition generalised for orthotropic materials to capture the plasticity behaviour of orthotropic materials were examined in this paper.
Julean, Non-Quadratic Yield Criterion for Orthotropic Sheet Metals Under Plane-Stress Conditions, Journal of Mechanical Sciences July, 45 (2003), 797-811
Online since: November 2013
Authors: Mitsugu Todo, Phanny Yos
Materials and Methods
Materials and Fabrication.
Stelling, Potential of ceramic materials as permanently implantable skeletal prostheses, Journal of Biomedical Materials Research. 4 (1970) 433-456
Journal of materials science: Materials in medicine. 14 (2003) 103-107
Kim, Macrochanneled poly (ε-caprolactone)/ hydroxyapatite scaffold by combination of bi-axial machining and lamination, Journal of Materials Science: Materials in medicine. 17 (2006) 773-778
Hench, Regeneration of trabecular bone using porous ceramics, Current Opinion in Solid State and Materials Science. 7 (2003) 301-307
Stelling, Potential of ceramic materials as permanently implantable skeletal prostheses, Journal of Biomedical Materials Research. 4 (1970) 433-456
Journal of materials science: Materials in medicine. 14 (2003) 103-107
Kim, Macrochanneled poly (ε-caprolactone)/ hydroxyapatite scaffold by combination of bi-axial machining and lamination, Journal of Materials Science: Materials in medicine. 17 (2006) 773-778
Hench, Regeneration of trabecular bone using porous ceramics, Current Opinion in Solid State and Materials Science. 7 (2003) 301-307
Online since: December 2012
Authors: Mohamad Rusop, Azlinda Ab Aziz, Zuraida Khusaimi
Materials and Methodology
Zinc nitrate hexahydrate (Zn(NO3)2.6H2O) mixed with urea (CH4N2O) (molar ratio 1:4) were used as a precursor and stabilizer respectively.
Lamia: Materials Science and Engineering: B Vol. 174 (2010), p. 18-30
Chandrasekaran: Materials Science in Semiconductor Processing Vol. 14 (2011), p. 179-183
Nwankwo: Journal Of Optoelectronics and Biomedical Materials Vol. 1 (2010), p. 167 - 173
Zou: Materials Letters Vol. 66 (2012), p. 72-75
Lamia: Materials Science and Engineering: B Vol. 174 (2010), p. 18-30
Chandrasekaran: Materials Science in Semiconductor Processing Vol. 14 (2011), p. 179-183
Nwankwo: Journal Of Optoelectronics and Biomedical Materials Vol. 1 (2010), p. 167 - 173
Zou: Materials Letters Vol. 66 (2012), p. 72-75
Online since: January 2026
Authors: Nour Ibrahem Dawood, Sahar Naji, Zahraa AL Wahab
Tikrit Journal for Dental Sciences, 2023. 11(1): p. 57-68
Materials, 2024. 17(5): p. 997
Journal of the mechanical behavior of biomedical materials, 2014. 29: p. 126-137
Tikrit Journal for Dental Sciences, 2023. 11(1): p. 109-121
Journal of the mechanical behavior of biomedical materials, 2015. 47: p. 49-56
Materials, 2024. 17(5): p. 997
Journal of the mechanical behavior of biomedical materials, 2014. 29: p. 126-137
Tikrit Journal for Dental Sciences, 2023. 11(1): p. 109-121
Journal of the mechanical behavior of biomedical materials, 2015. 47: p. 49-56
Online since: November 2016
Authors: Tetsuo Aida, Mitsuaki Furui, Masayuki Yamamoto, Shouyou Sakashita, Masayuki Ohta, Shougo Suzuki, Yuusuke Ishisaka
References
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[4] L.Yu, K.Nakata, N.Yamamoto and J.Liao, Journal of Materials Letters. 63 (2009) 870-872
[6] A.Yamashita, Z.Horita and T.G.Langdon, Materials Science and Engineering A. 300 (2001) 142-147
[7] H.Watanabe, T.Mukai and K.Ishikawa, Journal of Material Science. 39 (2004) 1477-1480
[3] R.S.Coelho, A.Kostka, H.Pinto, S.Riekehr, M.Kocak and A.R.Pyzalla, Materials Science and Engineering A. 485 (2008) 20-30
[4] L.Yu, K.Nakata, N.Yamamoto and J.Liao, Journal of Materials Letters. 63 (2009) 870-872
[6] A.Yamashita, Z.Horita and T.G.Langdon, Materials Science and Engineering A. 300 (2001) 142-147
[7] H.Watanabe, T.Mukai and K.Ishikawa, Journal of Material Science. 39 (2004) 1477-1480
Online since: September 2013
Authors: Yin Juan Zhang
the density of the slab material, (kg/m3), c is the specific heat of the slab material, (J/(kg•oc)).
Journal of University of Science and Technology Beijing, 2005, 12(2): 123-127
Journal of Iron and Steel Research,International, 2008,15(2): 43-45
Journal of University of Science and Technology Beijing, 2004, 11(1): 18-22
Journal of Kunming University of Science and Technology(Science and Technology), 2003, 28(1): 77-79
Journal of University of Science and Technology Beijing, 2005, 12(2): 123-127
Journal of Iron and Steel Research,International, 2008,15(2): 43-45
Journal of University of Science and Technology Beijing, 2004, 11(1): 18-22
Journal of Kunming University of Science and Technology(Science and Technology), 2003, 28(1): 77-79
Online since: January 2013
Authors: Jong Jin Park
Acknowledgement
This research was supported by Basic Science Research Program through the National Research Foundation of Korea funded by the Ministry of Education, Science and Technology (2011-0026891).
Stahlberg, A study of pore closure in the manufacturing of heavy rings, Journal of Materials Processing Technology 84 (1998) 25-37
Stahlberg, A new pore closure concept for the manufacturing of heavy rings, Journal of Materials Processing Technology 110 (2001) 324-333
Stefanik, Theoretical and laboratory modeling of the closure of metallurgical defects during forming of a forging, Journal of Materials Processing Technology 177 (2006) 238-242
Li, A criterion for void closure in large ingots during hot forging, Journal of Materials Processing Technology 209 (2009) 1950-1959.
Stahlberg, A study of pore closure in the manufacturing of heavy rings, Journal of Materials Processing Technology 84 (1998) 25-37
Stahlberg, A new pore closure concept for the manufacturing of heavy rings, Journal of Materials Processing Technology 110 (2001) 324-333
Stefanik, Theoretical and laboratory modeling of the closure of metallurgical defects during forming of a forging, Journal of Materials Processing Technology 177 (2006) 238-242
Li, A criterion for void closure in large ingots during hot forging, Journal of Materials Processing Technology 209 (2009) 1950-1959.
Online since: January 2014
Authors: Yin Cheng, Hai Jun Yang, Wei Wei Zhou, Xi Hu, Zhong Qing Wu
Pan: Journal of Energetic Materials Vol. 19(2011), p.483-490
[2]X.M.
Wang: Journal of Energetic Materials Vol. 16(2008), p. 298-300 [3] X.H.
Zhao: Journal of Explosive Materials Vol. 37(2008), p. 33-35 [4] P.
Qian: Journal of The Safety Science and Technology of China Vol. 4(2008), p. 63-66 [5] S.P.
Chen: Journal of Polymer Materials Science & Engineering Vol. 28(2012), p. 179-182 [8]Y.
Wang: Journal of Energetic Materials Vol. 16(2008), p. 298-300 [3] X.H.
Zhao: Journal of Explosive Materials Vol. 37(2008), p. 33-35 [4] P.
Qian: Journal of The Safety Science and Technology of China Vol. 4(2008), p. 63-66 [5] S.P.
Chen: Journal of Polymer Materials Science & Engineering Vol. 28(2012), p. 179-182 [8]Y.
Online since: May 2011
Authors: Yan Qin, Jian Li, Liang Zhao
Mechanical Properties of UP Resin from Soybean Oil
Jian Li1,a Yan Qin2,b Liang Zhao2,c
1Department of Materials Engineering, Hubei Automotive Industries Institute, Shiyan, 442002;
2School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, 430070;
aemail:lijian_0711@qq.com; bemail: qinrock@163.com; cemail: zl1982@yahoo.com
Keywords:Unsaturated polyester; soybean oil; monoglyceride; mechanical property
Abstract.
In this paper, a kind of unsaturated polyester resin (UPR) was prepared by using renewable soybean oil, glycerol, propylene glycol and anhydride as raw materials.
Introduction With the increasing consumption of un-renewable fossil resources, seeking efficient, cheap and renewable materials to prepare green polymers has become a top priority.
Journal of Applied Polymer Science Vol. 97(2005), p. 825-836
Journal of Applied Polymer Science Vol. 90(2003), p. 197-202.
In this paper, a kind of unsaturated polyester resin (UPR) was prepared by using renewable soybean oil, glycerol, propylene glycol and anhydride as raw materials.
Introduction With the increasing consumption of un-renewable fossil resources, seeking efficient, cheap and renewable materials to prepare green polymers has become a top priority.
Journal of Applied Polymer Science Vol. 97(2005), p. 825-836
Journal of Applied Polymer Science Vol. 90(2003), p. 197-202.