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Online since: December 2014
Authors: J. Debbarma, Ruma Sen, P. Charkraborti
Reference
[1] Hari Singh and Rohit Garg, Optimization of process parameters in wire cut electro discharge machining using Taguchi’s DOE approach, Indian Journal of Engineering and Material Sciences (2010)
[2] K.H Ho, S.T Newman, International Journal of Machine Tools and Manufacture, Volume43, Issue13, October2003, (2003) pp 1287-1300
Chandarana, Machining of low electrical conductive materials by wire electrical discharge machining (WEDM) process, Journal of Materials Processing Technology, (2004)149, pp 266-276
Processing of advanced ceramics using the wire-cut EDM process, Journal of Materials Processing Technology, (1997), 63 (1-3), pp 839- 843
Wang,Study on modelling of wire EDM process, Journal of Materials Processing Technology,( 1997), 69, pp 8- 28
[9] Chi-Cheng Fang, Chia-Xuan Chang, Development of a prototype Micro-Wire-EDM machine, Journal of Materials Processing Technology, (2004) Volume 149.
Chandarana, Machining of low electrical conductive materials by wire electrical discharge machining (WEDM) process, Journal of Materials Processing Technology, (2004)149, pp 266-276
Processing of advanced ceramics using the wire-cut EDM process, Journal of Materials Processing Technology, (1997), 63 (1-3), pp 839- 843
Wang,Study on modelling of wire EDM process, Journal of Materials Processing Technology,( 1997), 69, pp 8- 28
[9] Chi-Cheng Fang, Chia-Xuan Chang, Development of a prototype Micro-Wire-EDM machine, Journal of Materials Processing Technology, (2004) Volume 149.
Online since: January 2019
Authors: Jun Li, Shi Dong Ding, Yi Jin Zeng, Xue Li Guo, Xu Zhang
The thermal and mechanical properties of different materials are presented in Table 1.
Journal of Petroleum Science and Engineering, 2016, 150:22-29
Journal of Natural Gas Science and Engineering, 2014, 20:285-291
Journal of Petroleum Science and Engineering, 2015, 135:146-151
Journal of Natural Gas Science and Engineering, 2015, 25:347-358
Journal of Petroleum Science and Engineering, 2016, 150:22-29
Journal of Natural Gas Science and Engineering, 2014, 20:285-291
Journal of Petroleum Science and Engineering, 2015, 135:146-151
Journal of Natural Gas Science and Engineering, 2015, 25:347-358
Online since: April 2022
Authors: Hong Li Hu, Min Dong, Yu Lie Duan
Materials Science & Engineering C.41(2014)100-118
Materials Science & Engineering C.41(2014)100-118
Materials Research Express. 5(2018) 075509
Journal of colloid and interface science. 2019; 550:180-189
Journal of Materials Chemistry B.2017; 5:5549-5555
Materials Science & Engineering C.41(2014)100-118
Materials Research Express. 5(2018) 075509
Journal of colloid and interface science. 2019; 550:180-189
Journal of Materials Chemistry B.2017; 5:5549-5555
Online since: June 2020
Authors: Chao Sheng Lin, Gao Sheng Fu, Kai Huai Yang, Gui Qing Chen
Study on the Modification Effect of Al-Sr Master Alloy on A356
Aluminum Alloy
Guiqing Chen1, Gaosheng Fu2,*, Kaihuai Yang1, Chaosheng Lin2
1Department of Mechanical Engineering, Fujian Chuanzheng Communications College,
Fuzhou 350007, China
2College of Materials Science and Engineering, Fuzhou University, Fuzhou 350108, China
*fugaosheng@fzu.edu.cn
Keywords: Al-Sr master alloy, A356 aluminum alloy, modification treatment, eutectic silicon phase.
Journal of Materials Science, 2004, 39(6): 2023-2032
Materials and technology, 2018, 52(6): 787-793
Materials and technology, 2018, 52(5): 583-589
Modification-related porosity formation in hypoeutectic aluminum-silicon alloys, Metallurgical and Materials Transactions B, 2004, 35(6): 1097-1106
Journal of Materials Science, 2004, 39(6): 2023-2032
Materials and technology, 2018, 52(6): 787-793
Materials and technology, 2018, 52(5): 583-589
Modification-related porosity formation in hypoeutectic aluminum-silicon alloys, Metallurgical and Materials Transactions B, 2004, 35(6): 1097-1106
Online since: November 2014
Authors: M. Tahriri, Majid Raz, S. Solgi, M. Shahrezaee, A. Zamanian, T.S. Jafarzadeh Kashi, K. Khoshroo
Hench and Polak named these bioactive materials as third generation of biomaterials, following the first generation of bioinert materials, and the second generation of more interactive materials such as bioactive ceramics and biodegradable polymers[2].
In the quest for this new generation of materials, bioactive glasses with various compositions hold promise.
Delben, Journal of Non-Crystalline Solids 361 (2013) 119-123
Guo, Materials Science and Engineering: C 41 (2014) 196-205
Balossier, Materials Letters 60 (2006) 3752-3757
In the quest for this new generation of materials, bioactive glasses with various compositions hold promise.
Delben, Journal of Non-Crystalline Solids 361 (2013) 119-123
Guo, Materials Science and Engineering: C 41 (2014) 196-205
Balossier, Materials Letters 60 (2006) 3752-3757
Online since: November 2023
Authors: Megawati Megawati, Zuhriyan Ash Shiddieqy Bahlawan, Bayu Triwibowo, Junaidah Jai, Pradipta Sadewa, Yuni Parastuti
Materials and Methods
The kaffir lime being used was obtained from traditional market.
IOP Conference Series: Materials Science and Engineering 991 (2020)
International Journal of Engineering Science and Computing 9 (2019) 24300–24308
Materials 14 (2021) 2569
Journal of Cleaner Production 137 (2016) 598–605
IOP Conference Series: Materials Science and Engineering 991 (2020)
International Journal of Engineering Science and Computing 9 (2019) 24300–24308
Materials 14 (2021) 2569
Journal of Cleaner Production 137 (2016) 598–605
Online since: February 2011
Authors: Qing Zhang, Quan An Li, Xiao Tian Jing, Chang Qing Li
Materials Science and Engineering A, Vol. 302 (2001) , p. 37
[2] A.A.
Materials Science Forum, Vol. 419-422 (2003), p. 57 [3] D.
Frontier Materials Science of China, Vol. 2(2008), p. 1 [5] J.L.
Journal of Materials Science, Vol. 43(2008), p. 6952 [6] M.
Materials Science and Engineering A, Vol. 428(2006), p. 295 [10] D.Q.
Materials Science Forum, Vol. 419-422 (2003), p. 57 [3] D.
Frontier Materials Science of China, Vol. 2(2008), p. 1 [5] J.L.
Journal of Materials Science, Vol. 43(2008), p. 6952 [6] M.
Materials Science and Engineering A, Vol. 428(2006), p. 295 [10] D.Q.
Online since: July 2025
Authors: Indra Lasmana Tarigan, Nindita Clourisa Amaris Susanto, Selpa Kasandera, Nelson Nelson, Ratih Dyah Puspitasari
Nanoparticles have a nanometer scale size, and nanometer-sized materials' properties differ from larger materials (bulk).
Where nano-sized materials have chemical, physical and biological properties that are superior to large-sized materials [8].
Materials and Methods Material and Instrumentation The material used in this research was avocado leaves (Persea americana Mill.).
Sci, 9(1), 139-147. http://journal.unnes.ac.id/sju/index.php/ijcs [24] Üzer, A., Can, Z., Akin, Ii., Erçaǧ, E., & Apak, R. (2014). 4-aminothiophenol functionalized gold nanoparticle-based colorimetric sensor for the determination of nitramine energetic materials.
Journal of Applied Pharmaceutical Science, 8(1), 073–079. https://doi.org/10.7324/JAPS.2018.8111 [35] Taba, P., Parmitha, N.
Where nano-sized materials have chemical, physical and biological properties that are superior to large-sized materials [8].
Materials and Methods Material and Instrumentation The material used in this research was avocado leaves (Persea americana Mill.).
Sci, 9(1), 139-147. http://journal.unnes.ac.id/sju/index.php/ijcs [24] Üzer, A., Can, Z., Akin, Ii., Erçaǧ, E., & Apak, R. (2014). 4-aminothiophenol functionalized gold nanoparticle-based colorimetric sensor for the determination of nitramine energetic materials.
Journal of Applied Pharmaceutical Science, 8(1), 073–079. https://doi.org/10.7324/JAPS.2018.8111 [35] Taba, P., Parmitha, N.
Online since: October 2010
Authors: Xiong Gang Lu, Wei Zhong Ding, Yong Hui Gao, Kang Deng, Zhong Ming Ren, Chong He Li
Metal and Materials International,Vol.7 (2001), p.587-604
[2] X.
Dring, Materials Science and Technology, Vol.22 (2006), p.881-887 [4] D.
Journal of Metals, Vol.38 (1986), p.51-54
Journal of the European ceramic society.
Materials Transactions, Vol.43 (2002), p.745-750
Dring, Materials Science and Technology, Vol.22 (2006), p.881-887 [4] D.
Journal of Metals, Vol.38 (1986), p.51-54
Journal of the European ceramic society.
Materials Transactions, Vol.43 (2002), p.745-750
Online since: September 2013
Authors: Qing Song Yan, Bai Ping Lu, Gang Lu, Bo Wen Xiong, Yang Zhen
Dahle, Microstructure Formation in AlSi4MgMn and AlMg5Si2Mn High-Pressure Die Castings, Metallurgical and Materials Transactions A. 40A (2009) 1645-1659
Wang, Elevated temperature mechanical properties and microstructures of high pressure die cast magnesium AZ91 alloy cast with different section thicknesses, Materials Science and Engineering A. 523 (2009) 282-288
Jordon, Fatigue crack growth mechanisms in high-pressure die-cast magnesium alloys, Metallurgical and Materials Transactions A. 39A (2008) 190-205
Momchilov, Influence of some technological parameters of counter pressure casting on the structural homogeneity and mechanical characteristics of aluminum alloy castings, Journal of Materials Science and Technology. 2 (1994) 3-12
[9] S.M.Xiong, X.L.Liu, Microstructure, Composition, and Depth Analysis of Surface Films Formed on Molten AZ91D Alloy under Protection of SF6 Mixtures, Metallurgical and Materials Transactions A. 38A (2007) 428-434.
Wang, Elevated temperature mechanical properties and microstructures of high pressure die cast magnesium AZ91 alloy cast with different section thicknesses, Materials Science and Engineering A. 523 (2009) 282-288
Jordon, Fatigue crack growth mechanisms in high-pressure die-cast magnesium alloys, Metallurgical and Materials Transactions A. 39A (2008) 190-205
Momchilov, Influence of some technological parameters of counter pressure casting on the structural homogeneity and mechanical characteristics of aluminum alloy castings, Journal of Materials Science and Technology. 2 (1994) 3-12
[9] S.M.Xiong, X.L.Liu, Microstructure, Composition, and Depth Analysis of Surface Films Formed on Molten AZ91D Alloy under Protection of SF6 Mixtures, Metallurgical and Materials Transactions A. 38A (2007) 428-434.