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Study on Effect of Particle Size of Matrix and Reinforcement on Properties of Iron Matrix Composites
Online since: June 2012
Authors: Kang Ju Li, Yu Fang Yang
Experimental
Raw Materials.
References [1]Suryanarayana C, Yoo S H, Groza J R: Journal of Materials Science Letters.
[3]Groza J R, Zavaliangos A: Materials Science and Engineering.Vol. 27 (2000), p.171
[4]Yang Y F, Zong Y P, Wang G, Xu N: Chinese journal of materials research(in Chinese).Vol. 27 (2007), p.69
[5]Yang Y F, Zong Y P, Xu N, Mu Q: Journal of Materials and Metallurgy(in Chinese).
References [1]Suryanarayana C, Yoo S H, Groza J R: Journal of Materials Science Letters.
[3]Groza J R, Zavaliangos A: Materials Science and Engineering.Vol. 27 (2000), p.171
[4]Yang Y F, Zong Y P, Wang G, Xu N: Chinese journal of materials research(in Chinese).Vol. 27 (2007), p.69
[5]Yang Y F, Zong Y P, Xu N, Mu Q: Journal of Materials and Metallurgy(in Chinese).
Online since: January 2020
Authors: Boris M. Goltsman, Lyubov A. Yatsenko, Natalia S. Goltsman
Production of Foam Glass Materials from Silicate Raw Materials by Hydrate Mechanism
Boris M.
Almost the only type of materials that meets all the listed requirements are foamed materials obtained using foam glass technology.
Synthesis of foam glass materials was to be carried out by single-stage technology directly from raw materials [12-13].
Then the prepared raw materials were mixed for 30 minutes in a drum mill.
Lu et al, Preparation of sintered foam materials by alkali-activated coal fly ash, Journal of Hazardous Materials. 174 (2010) 108-112
Almost the only type of materials that meets all the listed requirements are foamed materials obtained using foam glass technology.
Synthesis of foam glass materials was to be carried out by single-stage technology directly from raw materials [12-13].
Then the prepared raw materials were mixed for 30 minutes in a drum mill.
Lu et al, Preparation of sintered foam materials by alkali-activated coal fly ash, Journal of Hazardous Materials. 174 (2010) 108-112
Online since: February 2024
Authors: Gurjeet Singh, Neeraj Agarwal, Rohit Sahu, Jitendra Malviya, Mritunjay Kumar Singh, Anil Singh Yadav, Preeti Chincholkar, Ramesh Bokade
Advanced Materials Research 1119 (2015): 201-206
In IOP Conference Series: Materials Science and Engineering, vol. 1136, no. 1, p. 012012.
In International Journal of Management and Applied Science, vol. 4, pp. 73-75. 2018
In IOP Conference Series: Materials Science and Engineering, vol. 406, no. 1, p. 012018.
Journal of the mechanical behavior of biomedical materials 63 (2016): 303-313.
In IOP Conference Series: Materials Science and Engineering, vol. 1136, no. 1, p. 012012.
In International Journal of Management and Applied Science, vol. 4, pp. 73-75. 2018
In IOP Conference Series: Materials Science and Engineering, vol. 406, no. 1, p. 012018.
Journal of the mechanical behavior of biomedical materials 63 (2016): 303-313.
Online since: April 2022
Authors: Tien Chien Jen, Lesego M. Mohlala, Nonhlanhla Precious Cele, Peter Apata Olubambi
Saraswathi, Recent Advancements in Electrode Materials for the High-performance Electrochemical Supercapacitors: A Review, International Journal of Electrochemical Science, 9 (2014) 4072-4085
Shen, Ternary oxide nanostructured materials for supercapacitors: a review, Journal of Materials Chemistry A, 3 (2015) 10158-10173
Dong, Binary metal oxide: advanced energy storage materials in supercapacitors, Journal of Materials Chemistry A, 3 (2015) 43-59
Yisong, Advanced Electrode Materials for Electrochemical Supercapacitors in: Materials Science & Engineering, McMaster University, 2015, pp. 254
Sobhani-Nasab, Preparation and characterization of MnTiO3, FeTiO3, and CoTiO3 nanoparticles and investigation various applications: a review, Journal of Materials Science: Materials in Electronics, 31 (2020) 6511-6524
Shen, Ternary oxide nanostructured materials for supercapacitors: a review, Journal of Materials Chemistry A, 3 (2015) 10158-10173
Dong, Binary metal oxide: advanced energy storage materials in supercapacitors, Journal of Materials Chemistry A, 3 (2015) 43-59
Yisong, Advanced Electrode Materials for Electrochemical Supercapacitors in: Materials Science & Engineering, McMaster University, 2015, pp. 254
Sobhani-Nasab, Preparation and characterization of MnTiO3, FeTiO3, and CoTiO3 nanoparticles and investigation various applications: a review, Journal of Materials Science: Materials in Electronics, 31 (2020) 6511-6524
Online since: January 2012
Authors: Jin Bao Liu, Jian Rong Xue, Wei Zhu
The material model was based on nonlinear fracture mechanics and assumes a bilinear softening response [3].
(3) Damage degradation of concrete dam related with material properties and earthquake intensity.
Jafaar, Two dimensional seismic analysis of Kinta RCC dam, International Journal on Hydropower and Dams 15 (2008) 96-101
Van Rensburg, Cracking in concrete using smeared cracking finite element modeling, South African Journal of Science 102 (2006) 548-556
Hesari, Dynamics analysis of the arch concrete dam under earthquake force with ABAQUS, Journal of Applied Sciences 8 (2008) 2648-2658
(3) Damage degradation of concrete dam related with material properties and earthquake intensity.
Jafaar, Two dimensional seismic analysis of Kinta RCC dam, International Journal on Hydropower and Dams 15 (2008) 96-101
Van Rensburg, Cracking in concrete using smeared cracking finite element modeling, South African Journal of Science 102 (2006) 548-556
Hesari, Dynamics analysis of the arch concrete dam under earthquake force with ABAQUS, Journal of Applied Sciences 8 (2008) 2648-2658
Online since: August 2014
Authors: Zhi Bo Yang, Zhen Peng Qu
Raw materials are liquid photosensitive resin.
So the hotosensitive resin was used as molding materials of rapid prototyping curved blade.
Liu: Journal of Hubei Polytechnic University, Vol. 18 (2003), pp. 32.
Liu: Journal of Hunan University (Natural Sciences Edition), Vol. 26 (1999), pp. 39.
Song: Journal of Zhejiang University of Technology, Vol. 36 (2008), pp. 316.
So the hotosensitive resin was used as molding materials of rapid prototyping curved blade.
Liu: Journal of Hubei Polytechnic University, Vol. 18 (2003), pp. 32.
Liu: Journal of Hunan University (Natural Sciences Edition), Vol. 26 (1999), pp. 39.
Song: Journal of Zhejiang University of Technology, Vol. 36 (2008), pp. 316.
Online since: April 2015
Authors: Afza Shafie, Beh Hoe Guan, Prengki Pransisco
The nanostructure materials Ni0.5Zn0.35Cu0.15Fe2O4 was synthesized by sol-gel method.
Bera, Journal of Material Processing Technology 197, 279–283 (2008)
Bera, Journal of Material Processing Technology 7, 279–283 (2007)
Jing, Material Science Engineering B 162, 22–25 (2009)
Jiang, Journal Magnetic and Magnetic Material 323, 1717–1721 (2011) [10] M.
Bera, Journal of Material Processing Technology 197, 279–283 (2008)
Bera, Journal of Material Processing Technology 7, 279–283 (2007)
Jing, Material Science Engineering B 162, 22–25 (2009)
Jiang, Journal Magnetic and Magnetic Material 323, 1717–1721 (2011) [10] M.
Online since: September 2007
Authors: Chuan Zhen Huang, Jun Wang, Hong Tao Zhu, Quan Lai Li, Cui Lian Che
Although, there are a large amount of research work have been
carried out on the machining ability of machining such materials as metal [5], ceramics [6], glass [7]
and so forth, so far, there is little report on the AWJ machining of quartz crystals.
Acknowledgements This project is supported by Outstanding Young Scholar Science Foundation of NSFC-International Collaborative Research Foundation (No.50328505), Key Project of Shandong Natural Science Foundation (Z2005F02) and J.
Hashish: Journal of Engineering Materials and Technology Vol. 106, p. 88-100 [6] Y.X.
Wang: Key Engineering Materials Vol. 329(2007), p. 335-340 [7] H.T.
Wong: International Journal of Machine Tools & Manufacture Vol.39 (1999), p. 855-870
Acknowledgements This project is supported by Outstanding Young Scholar Science Foundation of NSFC-International Collaborative Research Foundation (No.50328505), Key Project of Shandong Natural Science Foundation (Z2005F02) and J.
Hashish: Journal of Engineering Materials and Technology Vol. 106, p. 88-100 [6] Y.X.
Wang: Key Engineering Materials Vol. 329(2007), p. 335-340 [7] H.T.
Wong: International Journal of Machine Tools & Manufacture Vol.39 (1999), p. 855-870
Online since: March 2015
Authors: Hui Zhao, Hua Ming Lei, Kai Jiang
Therefore, there is a need to develop a simple, economic and reliable methods to detect the low conductivity materials which can apply in the medical area.
In summary, the probe can be used to detect the low conductivity materials and the experiment results indicates that it has a good linear detection performance.
References [1] Weiwen Liu, Kai Jiang, Localization and Recognition of Different Vertebra Tissues based on Eddy Current Detection Method[J].Advanced Materials Research. vol 740(2013),p.128-133 [2] Hideo Matsui,Hirofumi Anno.
Journal of Magnetic Materials and Devices,32(2) 2001, p.40-44,49
Study on Method of Materials Identification Based on Eddy Current Sensor with Three Serial Reversed Coils[J].
In summary, the probe can be used to detect the low conductivity materials and the experiment results indicates that it has a good linear detection performance.
References [1] Weiwen Liu, Kai Jiang, Localization and Recognition of Different Vertebra Tissues based on Eddy Current Detection Method[J].Advanced Materials Research. vol 740(2013),p.128-133 [2] Hideo Matsui,Hirofumi Anno.
Journal of Magnetic Materials and Devices,32(2) 2001, p.40-44,49
Study on Method of Materials Identification Based on Eddy Current Sensor with Three Serial Reversed Coils[J].
Online since: August 2022
Authors: Rajeev Ranjan, Anil Kumar Das
Ishida, Formation of stainless steel layer on mild steel by welding arc cladding, Journal of materials science, 26(23) (1991) 6431-6435
Baker, Overlapping tracks processed by TIG melting TiC preplaced powder on low alloy steel surfaces, Materials Science and Technology, 31.3 (2015) 337-343
Baker, Microstructural aspects of wear behaviour of TiC coated low alloy steel, Materials Science and Technology, 32.4 (2016) 303-307
Kumar, Surface modification of AISI 4340 steel by multi-pass TIG arcing process, Journal of Materials Processing Technology, 249 (2017) 394-406
Masanta, NiTi coating on Ti-6Al-4V alloy by TIG cladding process for improvement of wear resistance, Journal of Materials Processing Technology, 262 (2018) 551-561
Baker, Overlapping tracks processed by TIG melting TiC preplaced powder on low alloy steel surfaces, Materials Science and Technology, 31.3 (2015) 337-343
Baker, Microstructural aspects of wear behaviour of TiC coated low alloy steel, Materials Science and Technology, 32.4 (2016) 303-307
Kumar, Surface modification of AISI 4340 steel by multi-pass TIG arcing process, Journal of Materials Processing Technology, 249 (2017) 394-406
Masanta, NiTi coating on Ti-6Al-4V alloy by TIG cladding process for improvement of wear resistance, Journal of Materials Processing Technology, 262 (2018) 551-561