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Online since: September 2013
Authors: Tatacipta Dirgantara, Sahril Afandi Sitompul, Annisa Jusuf, Leonardo Gunawan, Ichsan Setya Putra
Quasi static (0.001 /s strain rate) and dynamic (from 0.1, 1, 10 and 100 /s) tensile tests were conducted in order to obtained accurate stress – strain curves of the materials at different strain rates.
Advanced Materials Research: Vols. 33-37, pp 387-394, 2008
Key Engineering Materials, Vols.462-463, pp.1308-1313, 2011
International Journal of Engineering and Technology IJET–IJENS, Vol. 11:06, 120–126, 2011
Journal of Mechanical Engineering, Vol.9, No.2, 2012
Advanced Materials Research: Vols. 33-37, pp 387-394, 2008
Key Engineering Materials, Vols.462-463, pp.1308-1313, 2011
International Journal of Engineering and Technology IJET–IJENS, Vol. 11:06, 120–126, 2011
Journal of Mechanical Engineering, Vol.9, No.2, 2012
Online since: February 2011
Authors: Xian Jun Lu, Wei Mo, Shuai Zhang, Gui Fang Wang, Shao Jian Ma, Jin Lin Yang
Their proven applications in the field of heterogeneous catalysis and adsorption open up interesting perspectives for the production of these materials on laboratory or industrial scale[1,2].
Experimental Materials.The raw montmorillonite samples used in this study were selected from Weifang bentonite deposits in Shandong of China.
The raw materials were purified by sedimentation and Na+ exchanged by Na2CO3, and the Na+ exchanged samples were used as starting materials for the preparation of Al-pillared montmorillonite.
This also means that Na-M and Al-PILM are of porous materials with fractal characteristic and surface roughness.
Davies: Journal of Materials Chemistry Vol. 34(1993),P. 381-387 [3] G.W.Brindley, R.E.Sempels: Clay Minerals Vol. 12(1977).
Experimental Materials.The raw montmorillonite samples used in this study were selected from Weifang bentonite deposits in Shandong of China.
The raw materials were purified by sedimentation and Na+ exchanged by Na2CO3, and the Na+ exchanged samples were used as starting materials for the preparation of Al-pillared montmorillonite.
This also means that Na-M and Al-PILM are of porous materials with fractal characteristic and surface roughness.
Davies: Journal of Materials Chemistry Vol. 34(1993),P. 381-387 [3] G.W.Brindley, R.E.Sempels: Clay Minerals Vol. 12(1977).
Online since: May 2022
Authors: Francesco La Via, Danilo Crippa, Ruggero Anzalone, Simona Boninelli, Annalisa Cannizzaro, Viviana Scuderi, Cristiano Calabretta, Marco Mauceri
New approaches and understandings in the growth of cubic silicon carbide, Materials, 14(18), 2021, 5348
Zimbone et al. 3C-SiC growth on inverted silicon pyramids patterned substrate, Materials, 2019, 3407
Latha et al., Microstructure and electrical properties of nitrogen doped 3C–SiC thin films deposited using methyltrichlorosilane, Materials Science in Semiconductor Processing, 29,2015, 117-123
Effect of Nitrogen and Aluminum Doping on 3C-SiC Heteroepitaxial Layers Grown on 4° Off-Axis Si (100), Materials, 14(16), 2021, 4400
Impact of nitrogen doping on the selective closure of Stacking Faults in 3C-SiC, Journal of Materials Science (submitted).
Zimbone et al. 3C-SiC growth on inverted silicon pyramids patterned substrate, Materials, 2019, 3407
Latha et al., Microstructure and electrical properties of nitrogen doped 3C–SiC thin films deposited using methyltrichlorosilane, Materials Science in Semiconductor Processing, 29,2015, 117-123
Effect of Nitrogen and Aluminum Doping on 3C-SiC Heteroepitaxial Layers Grown on 4° Off-Axis Si (100), Materials, 14(16), 2021, 4400
Impact of nitrogen doping on the selective closure of Stacking Faults in 3C-SiC, Journal of Materials Science (submitted).
Online since: May 2014
Authors: Dermot Brabazon, Asnul Hadi Ahmad, Sumsun Naher
Progress in Materials Science (2005), 50, 341-412
Materials Science and Engineering A (2005), A390, 3-12
Materials Science and Engineering A (2002), A326, 370-381
Journal of Materials Processing Technology (2007), 182, 229-240
Materials Science and Engineering A (2009), 507, 87-92
Materials Science and Engineering A (2005), A390, 3-12
Materials Science and Engineering A (2002), A326, 370-381
Journal of Materials Processing Technology (2007), 182, 229-240
Materials Science and Engineering A (2009), 507, 87-92
Online since: October 2010
Authors: Jing Wang, Xi Hong Li, Ling Yan Ge, Sen Wan
PVC films with different thicknesses and woven bag were used as the package materials for rice samples.
Materials and methods Xiaozhan rice used in this experiment were purchased from Ninghe, Tianjin.
In this experiment, the polyvinyl chloride(PVC)was used as the main packaging materials.
In ‘Rice Science and Technology’, (W.E.
Journal of Cereal Science 35 (2002) [4] Nishiba, Y., Sato, T. and Suda, I.
Materials and methods Xiaozhan rice used in this experiment were purchased from Ninghe, Tianjin.
In this experiment, the polyvinyl chloride(PVC)was used as the main packaging materials.
In ‘Rice Science and Technology’, (W.E.
Journal of Cereal Science 35 (2002) [4] Nishiba, Y., Sato, T. and Suda, I.
Online since: September 2013
Authors: Ya Dong Gong, Lian Jie Ma, Yuan Ji Bao
Through examination of grinding debris for various brittle materials[3], suggests material removal mainly by brittle fracture.
The mica glass ceramic was used for the experimentical material in processing.
So the material fracture will be more easily, but is not the atomic bond fracture as the hypothetical crystal.
Acknowledgements This study was supported by National Science Foundation of China (Grant No. 51275083 ).
International Journal of Sustainable Manufacturing, Vol.1(2008), p.203
The mica glass ceramic was used for the experimentical material in processing.
So the material fracture will be more easily, but is not the atomic bond fracture as the hypothetical crystal.
Acknowledgements This study was supported by National Science Foundation of China (Grant No. 51275083 ).
International Journal of Sustainable Manufacturing, Vol.1(2008), p.203
Online since: December 2013
Authors: Sufizar Ahmad, H. Taib, Z. Kamdi, A. Ismail, M.I.M. Zain, K.R. Jamaludin, R. Hussin, Fazimah Mat Noor
Kumar, “High-porosity titanium foams by powder coated space holder compaction method,” Materials Letters, vol. 83, pp. 17–19, Sep. 2012
Gupta, “Titanium-cenosphere syntactic foam made through powder metallurgy route,” Materials & Design, vol. 34, pp. 82–89, Feb. 2012
Amaranan, “Effects of replacing metal powder with powder space holder on metal foam produced by metal injection moulding,” Journal of Materials Processing Technology, vol. 210, no. 3, pp. 529–535, Feb. 2010
Sulong, “Processing titanium foams using tapioca starch as a space holder,” Journal of Materials Processing Technology, vol. 212, no. 1, pp. 83–89, Jan. 2012
Bor, “Characterization of Ti–6Al–4V alloy foams synthesized by space holder technique,” Materials Science and Engineering: A, vol. 528, no. 7–8, pp. 3200–3209, Mar. 2011
Gupta, “Titanium-cenosphere syntactic foam made through powder metallurgy route,” Materials & Design, vol. 34, pp. 82–89, Feb. 2012
Amaranan, “Effects of replacing metal powder with powder space holder on metal foam produced by metal injection moulding,” Journal of Materials Processing Technology, vol. 210, no. 3, pp. 529–535, Feb. 2010
Sulong, “Processing titanium foams using tapioca starch as a space holder,” Journal of Materials Processing Technology, vol. 212, no. 1, pp. 83–89, Jan. 2012
Bor, “Characterization of Ti–6Al–4V alloy foams synthesized by space holder technique,” Materials Science and Engineering: A, vol. 528, no. 7–8, pp. 3200–3209, Mar. 2011
Online since: July 2022
Authors: Ivan Kniazkin
Journal of Materials Processing Technology.
Journal of Materials Processing Technology.
Study of surface cracking during extrusion of aluminium alloy AA 2014, Materials Science and Technology, 20:9, 1179-1191 (2004)
Materials & Design.
Creus, Simulation of 3D metal-forming using an arbitrary Lagrangian–Eulerian finite element method, Journal of Materials Processing Technology, Vol. 110, Issue 2, 2001, Pages 218-232
Journal of Materials Processing Technology.
Study of surface cracking during extrusion of aluminium alloy AA 2014, Materials Science and Technology, 20:9, 1179-1191 (2004)
Materials & Design.
Creus, Simulation of 3D metal-forming using an arbitrary Lagrangian–Eulerian finite element method, Journal of Materials Processing Technology, Vol. 110, Issue 2, 2001, Pages 218-232
Online since: December 2010
Authors: Li Du, Ying Hua Wang, Bin Chen, Yu Qiang Wang
(2)Comprehensiveness
This course refers to mechanics, surveying, Material science, Structure, ground foundation and systemic management theory.
It adopts elite education teaching materials and many are for undergraduate education.
(2)Use diversified teaching materials.
Teaching materials are main basis of teaching organization and the main tools.
Abundant modern storing methods should replace the single teaching materials.
It adopts elite education teaching materials and many are for undergraduate education.
(2)Use diversified teaching materials.
Teaching materials are main basis of teaching organization and the main tools.
Abundant modern storing methods should replace the single teaching materials.
Online since: August 2013
Authors: M.E. Haque, K.V. Sudhakar
Pure titanium and Ti-6Al-4V alloy have been mainly used as implant materials.
As a result, they are now recognized as advanced materials for orthopedic applications.
Yashiro, Design and mechanical properties of new β type titanium alloys for implant materials, Mater.
Sudhakar, Kallen Konen, Keeley Floreen, Beta-titanium biomedical alloy: Effect of thermal processing on mechanical properties, Journal of Archives of Metallurgy and Materials, 57(3), (2012), 753-757 [14] M.
Sudhakar, ANN-based Prediction Model for Fatigue Crack Growth in DP Steel, International Journal of Fatigue & Fracture of Engineering Materials and Structures, 24 (1), (2001), p 63-68 [16] S.E.
As a result, they are now recognized as advanced materials for orthopedic applications.
Yashiro, Design and mechanical properties of new β type titanium alloys for implant materials, Mater.
Sudhakar, Kallen Konen, Keeley Floreen, Beta-titanium biomedical alloy: Effect of thermal processing on mechanical properties, Journal of Archives of Metallurgy and Materials, 57(3), (2012), 753-757 [14] M.
Sudhakar, ANN-based Prediction Model for Fatigue Crack Growth in DP Steel, International Journal of Fatigue & Fracture of Engineering Materials and Structures, 24 (1), (2001), p 63-68 [16] S.E.