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Online since: October 2010
Authors: Sérgio Neves Monteiro, Guerold Sergueevitch Bobrovinitchii, Marcello Filgueira, Ana Lúcia Diegues Skury, Rômulo Crespo Tardim
Novikov, et al.: Journal of Superhard Materials Vol. 6 (2004), p. 3.
5.
:Journal of Materials Science Vol. 17 (3) (1982), p. 193. 6.
Dewar: Journal of Materials Science Vol. 10 (11) (1975), p. 1933. 7.
Vovtchanovsky: Journal of Superhard Materials Vol. 2 (1983), p. 3. 10.
Mitlikin: Journal of Superhard Materials Vol. 5 (1980), p. 29. 20.
:Journal of Materials Science Vol. 17 (3) (1982), p. 193. 6.
Dewar: Journal of Materials Science Vol. 10 (11) (1975), p. 1933. 7.
Vovtchanovsky: Journal of Superhard Materials Vol. 2 (1983), p. 3. 10.
Mitlikin: Journal of Superhard Materials Vol. 5 (1980), p. 29. 20.
Online since: October 2006
Authors: Ji Ming Zhou, Guo Ding Chen, Le Hua Qi
Acknowledgment
The authors thank the financial supports from the National Nature Science Foundation of
China(50575185) and Aeronautic Science Foundation of China(05G53048).
Sheppard: Journal of Materials Processing Technology Vol. 150 (2004), p. 100 [2] H.J.
Ryan: Materials Science and Engineering A Vol. 322 (2002), p. 43 [4] J.P.
Chen: Mechanical Science and Technology Vol. 24 (2005), p. 212 [8] W.H.
Chen et al: Journal of Plasticity Engineering Vol. 12 (2005), p. 58
Sheppard: Journal of Materials Processing Technology Vol. 150 (2004), p. 100 [2] H.J.
Ryan: Materials Science and Engineering A Vol. 322 (2002), p. 43 [4] J.P.
Chen: Mechanical Science and Technology Vol. 24 (2005), p. 212 [8] W.H.
Chen et al: Journal of Plasticity Engineering Vol. 12 (2005), p. 58
Online since: April 2019
Authors: Chaiwut Gamonpilas, Sujarinee Sinchai, Natnicha Nuampakdee
Effect of Alumina Addition on the Rheological Behavior of Shear Thickening Fluids
Natnicha Nuampakdee1,a, Sujarinee Sinchai1,b* and Chaiwut Gamonpilas2,c
1Department of Materials Science, Faculty of Science, Chulalongkorn Univesity, Phyathai Road, Pathumwan, Bangkok, Thailand
2National Metal and Materials Technology Center, 114 Thailand Science Park, Phahonyothin Road, Khlong 1, Khlong Luang, Pathum Thani, Thailand
anatnicha.nuam@gmail.com, bsujarinee.k@chula.ac.th, cchaiwutg@mtec.or.th
Keywords: Shear thickening fluid, rheology, alumina additive, body armor
Abstract.
Acknowledgements This research was supported by Department of Materials Science, Faculty of Science, Chulalongkorn University and National Metal and Materials Technology Center, Thailand.
Wagner, The ballistic impact characteristics of Kevlar® woven fabrics impregnated with a colloidal shear thickening fluid, Journal of Materials Science 38 (2003) 2825-2833
Hong, Rheological Behavior of Concentrated Silica Suspension and Its Application to Soft Armor, Journal of Applied Polymer Science 124 (2012) 1534-1541
Mottaghitalab, The Role of Shear-Thickening Fluids (STFs) in Ballistic and Stab-Resistance Improvement of Flexible Armor, Journal of Materials Engineering and Performance 23(4) (2014) 1182-1196.
Acknowledgements This research was supported by Department of Materials Science, Faculty of Science, Chulalongkorn University and National Metal and Materials Technology Center, Thailand.
Wagner, The ballistic impact characteristics of Kevlar® woven fabrics impregnated with a colloidal shear thickening fluid, Journal of Materials Science 38 (2003) 2825-2833
Hong, Rheological Behavior of Concentrated Silica Suspension and Its Application to Soft Armor, Journal of Applied Polymer Science 124 (2012) 1534-1541
Mottaghitalab, The Role of Shear-Thickening Fluids (STFs) in Ballistic and Stab-Resistance Improvement of Flexible Armor, Journal of Materials Engineering and Performance 23(4) (2014) 1182-1196.
Online since: October 2014
Authors: Krzysztof Jamroziak, Mariusz Kosobudzki, Miroslaw Bocian
THE ANALYSIS OF ENERGY CONSUMPTION OF A BALLISTIC SHIELDS IN SIMULATION OF MOBILE CELLULAR AUTOMATA
Miroslaw Bocian1,a, Krzysztof Jamroziak2,b and Mariusz Kosobudzki2,c
1 Wroclaw University of Technology, The Institute of Materials Science and Applied Mechanics.
The rapid development of materials science introduced to the ballistic protection a wide range of composite materials.
Jamroziak, Criteria of material selection for ballistic shields in the context of chosen degenerated models, Journal of Achievements in Materials and Manufacturing Engineering. 31 (2008) 505-509
Scheffler, Impact effects in multilayered plates, International Journal of Solids and Structures. 38 (2001) 3321-3328
Czopor, The influence of defects on strength of ceramics modeled with Movable Cellular Automata, Computational Materials Science. 51 (2012) 151-155
The rapid development of materials science introduced to the ballistic protection a wide range of composite materials.
Jamroziak, Criteria of material selection for ballistic shields in the context of chosen degenerated models, Journal of Achievements in Materials and Manufacturing Engineering. 31 (2008) 505-509
Scheffler, Impact effects in multilayered plates, International Journal of Solids and Structures. 38 (2001) 3321-3328
Czopor, The influence of defects on strength of ceramics modeled with Movable Cellular Automata, Computational Materials Science. 51 (2012) 151-155
Online since: December 2025
Authors: Mylsamy Bhuvaneshwaran, Sureshkumar Theivasigamani, Senthilkumar Chinnappan, R. Bhuvaneshwaran, K. Ajay, K. Jagadeep
Materials letters, 62(14), pp.2143-2145
Materials & design, 26(1), pp.65-71
Future Journal of Pharmaceutical Sciences, 7(1), p.101
Materials Testing, 62(1), pp.61-67
Journal of Materials Research and Technology, 9(6), pp.16423-16434
Materials & design, 26(1), pp.65-71
Future Journal of Pharmaceutical Sciences, 7(1), p.101
Materials Testing, 62(1), pp.61-67
Journal of Materials Research and Technology, 9(6), pp.16423-16434
Online since: January 2013
Authors: Fu Qiang Hu, Jian Fei Sun, Yong Zhang, Jun Qi Wei, Yan Dong Jia, Yue Rui Zhao, Ting Yi Liu
Therefore, Si-Al alloy becomes one of the most potential electronic packaging materials [1-3].
Different materials in the process of Micro-EDM have different material erosion mechanisms, and the processing principles are different [4, 5].
Zhaofeng Zhou: Materials Review, Vol. 18(6) (2004), p. 79-82 [2] Hogg S.
C: Scripta Material La, Vol. 55 (2006), p. 111-114 [3] Qiang Huang: Materials Review, Vol. 14(9) (2000), p. 28-32 [4] Baoxian Jia.
Fuqiang Hu: Journal of Harbin Institute of Technology, Vol. 38(3) (2006), p. 402-405 [5] Zhaoqi Z.
Different materials in the process of Micro-EDM have different material erosion mechanisms, and the processing principles are different [4, 5].
Zhaofeng Zhou: Materials Review, Vol. 18(6) (2004), p. 79-82 [2] Hogg S.
C: Scripta Material La, Vol. 55 (2006), p. 111-114 [3] Qiang Huang: Materials Review, Vol. 14(9) (2000), p. 28-32 [4] Baoxian Jia.
Fuqiang Hu: Journal of Harbin Institute of Technology, Vol. 38(3) (2006), p. 402-405 [5] Zhaoqi Z.
Online since: June 2020
Authors: Liang Chen, Jian Guang Zhao, Ping Zhu, Yan Zhang Liu, Jian Lu Shang
References
[1] X-J Zhang, S-Y Tang, H-Y Zhao, et al, Research status and key technologies of 3D printing[J], Journal of Materials Engineering, (44)2016:122~128;
[2] Sun J-F, Yang Z, Yang Y-Q, et al, Microstructures and properties of porous filter parts of selective laser melted 316L stainless steel [J], Journal of South China Agricultural University, 2016, 37( 4) : 124-127;
[3] R.Casati, J.Lemke, M.Vedani, et al, Microstructure and Fracture Behavior of 316L Austenitic Stainless Steel Produced by Selective Laser Melting[J], Journal of Materials Science & Technology: 32 (2016) 738–744;
[4] Sun Z, Tan X, Tor S B, et al.
Materials Science and Technology, 2019, 27(02):7-21; [7] SHEN Q, YU S, NIU J-L, etal.
Selective Laser Melting of Magnesium-based Materials: a Review[J], Materials Reports, 2019(S1); [8] LIU J,GU D-D,CHEN H-Y, et al.
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Journal of Materials Processing Technology, 2009, 209(17):5793-5801; [13] Xie J.
Materials Science and Technology, 2019, 27(02):7-21; [7] SHEN Q, YU S, NIU J-L, etal.
Selective Laser Melting of Magnesium-based Materials: a Review[J], Materials Reports, 2019(S1); [8] LIU J,GU D-D,CHEN H-Y, et al.
Journal of Nuclear Materials[J], 470 (2016) 170~178; [10] YANG J-M, TANG Y, GU H, et al.
Journal of Materials Processing Technology, 2009, 209(17):5793-5801; [13] Xie J.
Online since: May 2007
Authors: En Gang Wang, Qiang Wang, Chun Jiang Wang, Ji Cheng He, Hai Tao Zhang
On the other hand, the contrary conclusions can be derived for
diamagnetic materials.
And part of this work was performed at high field laboratory for super-conducting materials, Institute for Materials Research, Tohoku University.
Iwai and S.Asai: Materials Transactions, Vol.42(2001), p.275 [12] H.O.
Lindroos: Scandinavian Journal of Metallurgy, Vol.10(1981), p.3 [13] Z.
Mater., Vol.43(2000), p.221 [17] K.Watanabe and M.Motokawa: Materials Science in Static High Magnetic Fields, (Springer, Berlin 2001)
And part of this work was performed at high field laboratory for super-conducting materials, Institute for Materials Research, Tohoku University.
Iwai and S.Asai: Materials Transactions, Vol.42(2001), p.275 [12] H.O.
Lindroos: Scandinavian Journal of Metallurgy, Vol.10(1981), p.3 [13] Z.
Mater., Vol.43(2000), p.221 [17] K.Watanabe and M.Motokawa: Materials Science in Static High Magnetic Fields, (Springer, Berlin 2001)
Online since: January 2026
Authors: Komda Saharja, Juwairiah Juwairiah, Faudunasokhi Telaumbanua, Pengawet Panjaitan, Hanna Efraim Waruwu
There are several types of fabric materials, including cotton.
Collect hyget and triblend cotton materials for screen printing. 6.
Journal of Sustainable Materials and Technologies, 6(4), 178-189
International Journal of Textile Science, 11(2), 101-110
Journal of Advanced Materials Science, 72(1), 45-57.
Collect hyget and triblend cotton materials for screen printing. 6.
Journal of Sustainable Materials and Technologies, 6(4), 178-189
International Journal of Textile Science, 11(2), 101-110
Journal of Advanced Materials Science, 72(1), 45-57.
Online since: October 2017
Authors: Md Supar Rohani, Azim Fikri Mhd Subre
Brightness scan system was proven to be reliable non-destructive testing method in ultrasonic for inspection of structural bonded materials.
Kundu, Material hardness and ageing measurement using guided ultrasonic waves , Journal of Ultrasonics, 52, 506– 510 (2013)
Sangsaraki, The Influences of Rotational and Welding Speeds on Microstructures and Mechanical Properties of Friction Stir Welded Aluminum 5083 and Commercially Pure Copper Sheets Lap Joints, Journal of Materials and Design 43 80–88 (2013)
Taşdemir, Nondestructive Testing of Materials and Structures,p 414-417, First Ed.
Rabroker, Characterizing defects in multi-layer materials using guided ultrasonic waves., Optical and Lasers in Engineering, 40, 371–378 (2003)
Kundu, Material hardness and ageing measurement using guided ultrasonic waves , Journal of Ultrasonics, 52, 506– 510 (2013)
Sangsaraki, The Influences of Rotational and Welding Speeds on Microstructures and Mechanical Properties of Friction Stir Welded Aluminum 5083 and Commercially Pure Copper Sheets Lap Joints, Journal of Materials and Design 43 80–88 (2013)
Taşdemir, Nondestructive Testing of Materials and Structures,p 414-417, First Ed.
Rabroker, Characterizing defects in multi-layer materials using guided ultrasonic waves., Optical and Lasers in Engineering, 40, 371–378 (2003)