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Online since: April 2023
Authors: Ahmed M. El Basyoni, Ahmed H. Hassanin, Mohamed G.A. Nassef, Alaa A. Badr, Ashraf Alnahrawy
Materials and Methods
Mat Specimens Preparation.
Pašek: Advanced Materials Research Vol. 1041 (2014), p. 87–91
Purohit: Materials Today: Proceedings Vol. 4 (2017), p. 3807–3815
Hameedi: Construction and Building Materials Vol. 214 (2019), p. 709–735
Bos et al.: Journal of Materials Science Vol. 39 (2004), p. 2159–2168.
Pašek: Advanced Materials Research Vol. 1041 (2014), p. 87–91
Purohit: Materials Today: Proceedings Vol. 4 (2017), p. 3807–3815
Hameedi: Construction and Building Materials Vol. 214 (2019), p. 709–735
Bos et al.: Journal of Materials Science Vol. 39 (2004), p. 2159–2168.
Online since: August 2014
Authors: Yi Huang, Feng Miao, Xin You, Chuan Wu Zhang
Arlinghaus, Journal of Physics and Chemistry of Solids 35 (1974) 931
Dmitriev, Materials Science and Engineering B56 (1999) 195–204
Rius, Gas sensors based on nanostructured materials, Analyst 132 (2007) 1083–1099
Guillén, Solar Energy Materials & Solar Cells 94 (2010) 612–616
Henan Institute of science and technology journal(2011) 78-81
Dmitriev, Materials Science and Engineering B56 (1999) 195–204
Rius, Gas sensors based on nanostructured materials, Analyst 132 (2007) 1083–1099
Guillén, Solar Energy Materials & Solar Cells 94 (2010) 612–616
Henan Institute of science and technology journal(2011) 78-81
Online since: September 2013
Authors: Jin Quan Guo, Hui Chao Shi, Wu Zhou Meng
An estimation method to predict creep performances of high temperature structural materials has been proposed.
The technique invokes high costs in term of energy, manpower, and materials and is inefficient.
This is a major obstacle to the development of new or improved materials.
[5] D A Woodford.Test methods for accelerated development design and life assessment of high-temperature materials.Materials & Design,Vol. 14 (1993)No.4,pp.231-242
Materials Science and Technology, Vol. 20(2004)No.5, pp.1290-1296
The technique invokes high costs in term of energy, manpower, and materials and is inefficient.
This is a major obstacle to the development of new or improved materials.
[5] D A Woodford.Test methods for accelerated development design and life assessment of high-temperature materials.Materials & Design,Vol. 14 (1993)No.4,pp.231-242
Materials Science and Technology, Vol. 20(2004)No.5, pp.1290-1296
Online since: August 2013
Authors: Wei Xiang Liu
Nano-ceramic materials had high hardness and wear resistance.
Introduction With the development of science and technology, the existing general material has been difficult to meet the requirements, it is very important to develop and use effectively new materials.
Nano-ceramic thermal spray refers to those spraying materials whose particle size distribute in the range of 1~100nm, those spraying materials have high performance on a substrate. at present, thermal spraying technology has become a very active subject in the field of metal surface science.
References [1] Zhang B.Surface Integrity in Machining Hard-brittle Materials.Journal of Japan Society for Abrasive Technology,2008,47(3)
International Journal of Advanced Manufacturing Technology.
Introduction With the development of science and technology, the existing general material has been difficult to meet the requirements, it is very important to develop and use effectively new materials.
Nano-ceramic thermal spray refers to those spraying materials whose particle size distribute in the range of 1~100nm, those spraying materials have high performance on a substrate. at present, thermal spraying technology has become a very active subject in the field of metal surface science.
References [1] Zhang B.Surface Integrity in Machining Hard-brittle Materials.Journal of Japan Society for Abrasive Technology,2008,47(3)
International Journal of Advanced Manufacturing Technology.
Online since: June 2015
Authors: Shamsul Baharin Jamaludin, Mazlee Mohd Noor, M. Madzura
The sand has been screened to eliminate deleterious materials and sieved for size particles 2.0 mm and below.
Shamsul, Sand Replacement Materials (SRM) in Sustainable Cement Composites; A concise review, Advanced Materials Research. 795 (2013), pp. 91-95
Godwin, Compressive strength of concrete using lateritic sand and quarry dust as fine aggregate, Journal of Engineering and Applied Sciences. 7 (2012) 81-91
Materials & Structures. 33 (2000), pp. 38-42
Kala, Effect of Granite Powder on Strength Properties of Concrete, International Journal of Engineering and Science. 2 (2013), pp. 36-50.
Shamsul, Sand Replacement Materials (SRM) in Sustainable Cement Composites; A concise review, Advanced Materials Research. 795 (2013), pp. 91-95
Godwin, Compressive strength of concrete using lateritic sand and quarry dust as fine aggregate, Journal of Engineering and Applied Sciences. 7 (2012) 81-91
Materials & Structures. 33 (2000), pp. 38-42
Kala, Effect of Granite Powder on Strength Properties of Concrete, International Journal of Engineering and Science. 2 (2013), pp. 36-50.
Online since: February 2011
Authors: Xiao Ming Lai, Zhong Jin Wang, Zhe Wang, Qing Xin Cui, Wen Tao Li
Alladi: Journal of Materials Processing Technology Vol.142 (2003), p. 599
[6] P.
Wang: International Journal of Mechanical Sciences Vol.47 (2005), p.1827 [8] Z.
Altan: Journal of Materials Processing Technology Vol.59 (1996), p.49 [12] X.
Wang: Journal of Materials Processing Technology Vol.151 (2004), p.340 [13] Z.
Yue: Journal of Jiangsu University of Science and Technology Vol.17(1996), p.77(in chinese)
Wang: International Journal of Mechanical Sciences Vol.47 (2005), p.1827 [8] Z.
Altan: Journal of Materials Processing Technology Vol.59 (1996), p.49 [12] X.
Wang: Journal of Materials Processing Technology Vol.151 (2004), p.340 [13] Z.
Yue: Journal of Jiangsu University of Science and Technology Vol.17(1996), p.77(in chinese)
Online since: January 2017
Authors: Hui Feng Zhang, Yu Shan Zhang, Hai Huang, Man Zhao
Experimental
Materials.
Hou: Journal of Materials Chemistry A, Vol. 1 (2013) No.37, p.11343
Wang: Journal of Materials Chemistry, Vol. 20 (2010) No.22, p.4551
Schadler: Chemistry of Materials, Vol. 15 (2003) No.16, p.3198
Shi: Journal of Materials Chemistry, Vol. 20 (2010) No.47, p.10622
Hou: Journal of Materials Chemistry A, Vol. 1 (2013) No.37, p.11343
Wang: Journal of Materials Chemistry, Vol. 20 (2010) No.22, p.4551
Schadler: Chemistry of Materials, Vol. 15 (2003) No.16, p.3198
Shi: Journal of Materials Chemistry, Vol. 20 (2010) No.47, p.10622
Online since: September 2011
Authors: Xiao Mei Fan, Xiao Rong Hu
Introduction
The yield characteristics for materials vary significantly due to their complicated microscopic structures, even though for the isotropic homogeneous materials [1-3].
The value of and are concerned with the stress states in materials.
For materials under the stress states, the there principal stresses are (15) .
It shows that this new criterion can reflect the yield characteristics better for different materials.
When materials are in the state of yield, themay be approximately 0.5 [6, 7, 15].
The value of and are concerned with the stress states in materials.
For materials under the stress states, the there principal stresses are (15) .
It shows that this new criterion can reflect the yield characteristics better for different materials.
When materials are in the state of yield, themay be approximately 0.5 [6, 7, 15].
Online since: July 2021
Authors: T.N. Ivanova, Witold Biały, Jacek Sitko, Katarzyna Midor, Alexander Muyzemnek
Grinding of High-Strength Materials
T.N.
Introduction Increased use of heat-resistant steels and alloys, refractory materials and tough-to-machine materials for manufacturing of complex parts of modern equipment demonstrates that the role of abrasive and diamond tools grows.
Metal Working and Material Science. 3 (76) (2017) 17-27
Problems of Mechanics and Materials Science.
Materials Today: Proceedings. https://doi.org/10.1016/j.matpr.2020.08.087 [18] Zeyuan Yang, Yao Chu, Xiaohu Xu, Haojie Huang, Dahu Zhu, Sijie Yan, Han Ding Prediction and analysis of material removal characteristics for robotic belt grinding based on single spherical abrasive grain model International Journal of Mechanical Sciences. 190 (2021) 106005 [19] Lishu Lv, Zhaohui Deng, Tao Liu, Zhongyang Li, Wei Liu Intelligent technology in grinding process driven by data: A review Journal of Manufacturing Processes. 58 (2020) 1039-1051 [20] Sanjay Agarwal, P.
Introduction Increased use of heat-resistant steels and alloys, refractory materials and tough-to-machine materials for manufacturing of complex parts of modern equipment demonstrates that the role of abrasive and diamond tools grows.
Metal Working and Material Science. 3 (76) (2017) 17-27
Problems of Mechanics and Materials Science.
Materials Today: Proceedings. https://doi.org/10.1016/j.matpr.2020.08.087 [18] Zeyuan Yang, Yao Chu, Xiaohu Xu, Haojie Huang, Dahu Zhu, Sijie Yan, Han Ding Prediction and analysis of material removal characteristics for robotic belt grinding based on single spherical abrasive grain model International Journal of Mechanical Sciences. 190 (2021) 106005 [19] Lishu Lv, Zhaohui Deng, Tao Liu, Zhongyang Li, Wei Liu Intelligent technology in grinding process driven by data: A review Journal of Manufacturing Processes. 58 (2020) 1039-1051 [20] Sanjay Agarwal, P.
Online since: January 2022
Authors: Hoang Van Ngoc
Conductivity tensor is an important concept in materials, this work studies conductivity tensors in cylindrical quantum wires with parabolic potential in the presence of two external fields, a linearly polarized electromagnetic wave, and a laser field.
Conclusions Conductivity tensor is an important concept in the study of materials, including low dimensional materials.
Vương, The photon – drag effect in retangular quantum wire with an infinite potential, VNU Journal of Science, Mathematics – Physics. 33 (2017) 53-59
Vuong, The photon – drag effect in cylindrical quantum wire with an infinite potential for the case of electrons – acoustic phonon scattering, VNU Journal of Science, Mathematics – Physics. 33 (2017) 80-86
Uyen, Electric conductivity tensor of semiconductors in a variable magnetic field, VNU journal of science. 1 (1995) 19-23
Conclusions Conductivity tensor is an important concept in the study of materials, including low dimensional materials.
Vương, The photon – drag effect in retangular quantum wire with an infinite potential, VNU Journal of Science, Mathematics – Physics. 33 (2017) 53-59
Vuong, The photon – drag effect in cylindrical quantum wire with an infinite potential for the case of electrons – acoustic phonon scattering, VNU Journal of Science, Mathematics – Physics. 33 (2017) 80-86
Uyen, Electric conductivity tensor of semiconductors in a variable magnetic field, VNU journal of science. 1 (1995) 19-23