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Online since: October 2014
Authors: Wang Cheng, Ayoub Sayhi, Kamal Guendouz
For that, different materials were used as armors such as: kevlar epoxy, polyethylene, glass epoxy, steel-1006 and Al2O3 ceramic.
Table 6: Liner materials density.
The next simulation will be about protective shield materials which can use in armored vehicle (shielding).
Simulation process of protective shield materials into shaped charge jet.
References [1] Marc, A.M., John, W., Dynamic behavior of materials, University of California, 1996
Table 6: Liner materials density.
The next simulation will be about protective shield materials which can use in armored vehicle (shielding).
Simulation process of protective shield materials into shaped charge jet.
References [1] Marc, A.M., John, W., Dynamic behavior of materials, University of California, 1996
Online since: October 2010
Authors: Ting Sun, Hong Nian, Shang Dong Chen
Journal of Materials Protection,2008,41(6):45-49.
Journal of Materials Protection,2009,42(8):34-37.
Materials Science and Engineering.
Materials Science & Technology 2009, 117(12):293~296.
Ordnance Materials Science and Engineering, 2009, 32(5):60~63 [10] Yu Dun-yi, Luo Zhe-yuan, Yang Ji-lin et al.
Journal of Materials Protection,2009,42(8):34-37.
Materials Science and Engineering.
Materials Science & Technology 2009, 117(12):293~296.
Ordnance Materials Science and Engineering, 2009, 32(5):60~63 [10] Yu Dun-yi, Luo Zhe-yuan, Yang Ji-lin et al.
Online since: June 2020
Authors: Hooi Min Yee, Mohd Haris Ridzuan Ooi, Haslinda Abdul Hamid, Nurol Huda Dahalan, M.H. Abdul Mutalib
Despite all the natural materials have been used in construction materials, black rice husk ash is important to be reviewed based on the rationale of availability and growing rice husk production year by year due to high demand of rice supply.
Beside, the high cost of building materials has been one major hindrance to housing ownership.
Materials and Methods Materials.
The rest of the materials were used at the same ratio for all mixes with water cement ratio of 0.5.
Maejo international journal of science and technology 6(3):430-448.(2012) [8] Y.P.Zhou and T.K.Yang.
Beside, the high cost of building materials has been one major hindrance to housing ownership.
Materials and Methods Materials.
The rest of the materials were used at the same ratio for all mixes with water cement ratio of 0.5.
Maejo international journal of science and technology 6(3):430-448.(2012) [8] Y.P.Zhou and T.K.Yang.
Online since: March 2016
Authors: Wei Xia Dong, Ting Luo, Xing Yong Gu, Xin Hao Li
The formation mechanism and influence factors for mullite whiskers materials were discussed.
Introduction Due to the excellent mechanical properties, especially the high temperature mechanical properties, mullite whiskers are often used to toughen high temperature ceramic materials.
Therefore, in this paper, the effects of mullite whisker morphology and length to diameter ratio were studied using different aluminum source, the formation mechanism and influence factors materials were discussed.
Acknowledgements The present work was supported by the National Natural Science Foundation (Grant No. 51462016 and 51562013) and Major Natural Science Foundation of Jiangxi Province (No.20152ACB21022).
Han, New growth technology and mechanism of mullite whiskers, Journal of Inorganic Materials,1 (1996) 101-106
Introduction Due to the excellent mechanical properties, especially the high temperature mechanical properties, mullite whiskers are often used to toughen high temperature ceramic materials.
Therefore, in this paper, the effects of mullite whisker morphology and length to diameter ratio were studied using different aluminum source, the formation mechanism and influence factors materials were discussed.
Acknowledgements The present work was supported by the National Natural Science Foundation (Grant No. 51462016 and 51562013) and Major Natural Science Foundation of Jiangxi Province (No.20152ACB21022).
Han, New growth technology and mechanism of mullite whiskers, Journal of Inorganic Materials,1 (1996) 101-106
Online since: October 2014
Authors: Nicolae Ionescu, Mihai Trifănescu, Alexandra Banu, Aurelian Vişan, Alexandru Paraschiv, Alevandru Savin
In the specialised literature, different authors address the processing of these materials by conventional methods.
Parameter and technological characteristics in EDM on Sodick Work-piece/Tool-electrode materials No. of exp.
Parameter and technological characteristics in EDM on ELER 02 Work-piece/Tool-electrode materials No. of exp.
Hashish, AWJ Milling of Gamma Titanium Aluminide, Journal of Manufacturing Science and Engineering. 132 (2010) 9-13
Sarkar, and Nagahanumaiah, Micro electro discharge machining of γ –titanium aluminide alloy, Machines, Technologies, Materials virtual journal, available at http://mech-ing.com/journal/Archive/2012, accessed: 15.01.2014
Parameter and technological characteristics in EDM on Sodick Work-piece/Tool-electrode materials No. of exp.
Parameter and technological characteristics in EDM on ELER 02 Work-piece/Tool-electrode materials No. of exp.
Hashish, AWJ Milling of Gamma Titanium Aluminide, Journal of Manufacturing Science and Engineering. 132 (2010) 9-13
Sarkar, and Nagahanumaiah, Micro electro discharge machining of γ –titanium aluminide alloy, Machines, Technologies, Materials virtual journal, available at http://mech-ing.com/journal/Archive/2012, accessed: 15.01.2014
Online since: January 2022
Authors: Guang Yu Yang, Wan Qi Jie, He Qin, Shi Feng Luo, Tong Bai
Materials Science & Engineering A, 2002, 327(2): 167-185
Gündüz, Dendritic Growth in an Aluminum-Silicon Alloy, Journal of Materials Engineering & Performance, 16 (2007) 12-21
Journal of Materials Science, 2000, 35(15): 3837-3848
Metallurgical Transactions a-Physical Metallurgy and Materials Science, 1976, 7(6): 811-820
Journal of Materials Science, 1993, 28(21): 5957-62
Gündüz, Dendritic Growth in an Aluminum-Silicon Alloy, Journal of Materials Engineering & Performance, 16 (2007) 12-21
Journal of Materials Science, 2000, 35(15): 3837-3848
Metallurgical Transactions a-Physical Metallurgy and Materials Science, 1976, 7(6): 811-820
Journal of Materials Science, 1993, 28(21): 5957-62
Online since: February 2013
Authors: Wei Li, Peng Lei, Jian Chen, Wei Qiu, Yan Jie Ren, Jian Lin Chen
Materials and methods
Experimental raw materials.
The quality of the materials used in the atomization affect the function of product greatly.
Materials review” ,2007,21(8):380-383 [5] G.Yang, Y.G .Du, J.S.Hu, “Preparation of Porous-metal Nickel.
Development and application of materials”,1999,14(1): 5-7
Materials Science and Engineering,2002,A236: 101-109
The quality of the materials used in the atomization affect the function of product greatly.
Materials review” ,2007,21(8):380-383 [5] G.Yang, Y.G .Du, J.S.Hu, “Preparation of Porous-metal Nickel.
Development and application of materials”,1999,14(1): 5-7
Materials Science and Engineering,2002,A236: 101-109
Online since: December 2011
Authors: Huai Yao, Guang Lin Zhu, Meng Du
This new superhard γ-Si3N4 phase opens considerable industrial scope in materials science.
Raw materials for corrosion tests is γ-Si3N4 sintered bodies[13].
Journal of Inorgamic Materials (in Chinese), 2007, 22(1):159-162 [8] Yao Huai, Qu Q Y, Tang J Y, et al.
Shock synthesis and purification of γ-Si3N4 from impure α–Si3N4 and its implications to facilitating related researches[J].Journal of Materials Science and Engineering, 2007,1(1): 40-43 [10] Yao Huai, Tang J Y, Liu Y S, et al.
Journal of Inorgamic Materials (in Chinese), 2008, 23(4):819-823
Raw materials for corrosion tests is γ-Si3N4 sintered bodies[13].
Journal of Inorgamic Materials (in Chinese), 2007, 22(1):159-162 [8] Yao Huai, Qu Q Y, Tang J Y, et al.
Shock synthesis and purification of γ-Si3N4 from impure α–Si3N4 and its implications to facilitating related researches[J].Journal of Materials Science and Engineering, 2007,1(1): 40-43 [10] Yao Huai, Tang J Y, Liu Y S, et al.
Journal of Inorgamic Materials (in Chinese), 2008, 23(4):819-823
Online since: December 2014
- hydrogen degradation of materials
From 2006: professor in the field of material science, chief of department of hydrogen resistance of materials at the Karpenko Physico-Mechanical Institute, National Academy of Sciences of Ukraine.
Educational activities: courses at the surface engineering, material science, chemical heat treatment, bases of fracture mechanics, cold working treatment, ageing of materials for nuclear, hydrogen and forcible energetic, medical material science and biocompatible electronics
2002-2007: Professor at the Technical University of Szczecin, Institute of Materials Engineering
Reviewer of various associations and international publications in on-line, open access journal in the fields of fracture and solid mechanics and in structural and material engineering, as the International Journal of Fracture, Engineering Fracture Mechanics, Materials Science, Welding Technology Review, Maintenance Problems, Mechanical Fatigue of Metals, Tribology International, Materials Chemistry and Physics, Advances in Mechanical Engineering.
From 2006: professor in the field of material science, chief of department of hydrogen resistance of materials at the Karpenko Physico-Mechanical Institute, National Academy of Sciences of Ukraine.
Educational activities: courses at the surface engineering, material science, chemical heat treatment, bases of fracture mechanics, cold working treatment, ageing of materials for nuclear, hydrogen and forcible energetic, medical material science and biocompatible electronics
2002-2007: Professor at the Technical University of Szczecin, Institute of Materials Engineering
Reviewer of various associations and international publications in on-line, open access journal in the fields of fracture and solid mechanics and in structural and material engineering, as the International Journal of Fracture, Engineering Fracture Mechanics, Materials Science, Welding Technology Review, Maintenance Problems, Mechanical Fatigue of Metals, Tribology International, Materials Chemistry and Physics, Advances in Mechanical Engineering.
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