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Online since: April 2011
Authors: Izabel Fernanda Machado, Patrícia Alves Barbosa
Guo: Journal of Materials Processing Technology Vol.142 (2003), p.72
[3] S.
Guo: International Journal of Mechanical Sciences Vol.49 (2007), p.909 [4] N.
Horstemeyer: International Journal of Mechanical Sciences Vol.47 (2005), p.1423 [6] D.
Chan: Journal of Materials Processing Technology Vol.129 (2002), p. 101 [13] J.
Gray III: Materials Science and Engineering A Vol.410-411 (2005), p. 252 [15] L.
Guo: International Journal of Mechanical Sciences Vol.49 (2007), p.909 [4] N.
Horstemeyer: International Journal of Mechanical Sciences Vol.47 (2005), p.1423 [6] D.
Chan: Journal of Materials Processing Technology Vol.129 (2002), p. 101 [13] J.
Gray III: Materials Science and Engineering A Vol.410-411 (2005), p. 252 [15] L.
Online since: November 2014
Authors: Zhao Yang Zeng, Heng Liu, Yi Min Guo
Introduction
Two targets exist in the microwave absorbing research: one target is looking for new materials with special high permittivity and permeability, the other is focus on the best way to use the presently available microwave absorbing materials.
In the point of materials, most existing materials are not good enough because the matching property is unsatisfactory.
The reason for this is these materials are either electric loss or magnetic loss.
Effective Medium Almost all microwave absorbing samples are made of composite materials: the matrix material usually is polymer, while the reinforce is microwave absorber.
Liu: Journal of Alloys and Compounds Vol.234 (2006), p.1429–1433.
In the point of materials, most existing materials are not good enough because the matching property is unsatisfactory.
The reason for this is these materials are either electric loss or magnetic loss.
Effective Medium Almost all microwave absorbing samples are made of composite materials: the matrix material usually is polymer, while the reinforce is microwave absorber.
Liu: Journal of Alloys and Compounds Vol.234 (2006), p.1429–1433.
Online since: September 2013
Authors: Yi You Tu, De Zhong Zhang
Hunt, Journal of Materials Processing Technology, vol. 55 (1995), p. 76-84
Hunt, Materials Science and Engineering: A, vol. 280 (2000), p. 116-123
Hunt, Journal of Materials Processing Technology, vol. 169 (2005), p. 156-163
Birol, Journal of Materials Processing Technology, vol. 209 (2009), p. 506-510
Humphreys, Materials Science and Technology, vol. 19 (2003), p. 20-29
Hunt, Materials Science and Engineering: A, vol. 280 (2000), p. 116-123
Hunt, Journal of Materials Processing Technology, vol. 169 (2005), p. 156-163
Birol, Journal of Materials Processing Technology, vol. 209 (2009), p. 506-510
Humphreys, Materials Science and Technology, vol. 19 (2003), p. 20-29
Online since: August 2015
Authors: Prakash Malaiyappan, Natarajan Elumalai
It employs construction materials, viz, plastic, glass and wood etc and sunlight which is a renewable energy making it cheaper and affordable to everybody.
The solar still coupled with various basin materials decrease the preheating time [16].
The top of the mini solar pond is covered by transparent material (2-mm thick glass).
Natarajan, Solar still integrated with porous material, Journal of Chemical and Pharmaceutical Sciences.
Natarajan, Rain device with step wise basin enhanced condensation performance evaluation, Journal of Chemical and Pharmaceutical Sciences.
The solar still coupled with various basin materials decrease the preheating time [16].
The top of the mini solar pond is covered by transparent material (2-mm thick glass).
Natarajan, Solar still integrated with porous material, Journal of Chemical and Pharmaceutical Sciences.
Natarajan, Rain device with step wise basin enhanced condensation performance evaluation, Journal of Chemical and Pharmaceutical Sciences.
Online since: April 2011
Authors: Zhong Hai Liu, Hu Jun Wang, Ming Hai Wang
During the sealing materials, the IPG has excellent such as compact structure, small grain size and uniform performances.
With the development of science and technology, the diamond and ultra-precision turning machine manufacturing technology have developed very high level; it makes precision machining of brittle materials possible.
Li: Aerospace Materials & Technology, Vol. 4 (2006), P.12
Voyiadjis: International Journal of Plasticity, Vol. 20 (2004), P.1139
Farris: Journal of Applied Mechanics, Vol. 67, (2000), P.128
With the development of science and technology, the diamond and ultra-precision turning machine manufacturing technology have developed very high level; it makes precision machining of brittle materials possible.
Li: Aerospace Materials & Technology, Vol. 4 (2006), P.12
Voyiadjis: International Journal of Plasticity, Vol. 20 (2004), P.1139
Farris: Journal of Applied Mechanics, Vol. 67, (2000), P.128
Online since: May 2010
Authors: Jing Feng Wang, Mei Bao Chen, Jian Peng, Aitao Tang, Fu Sheng Pan
Gutman: Materials Science and Engineering Vol.
ELIEZER: Journal of Materials Processing Technology Vol. 117 (2001), p.381
[5] ZHANG Ya, ZENG Xiao-qin, LIU Liu-fa, LU Chen, ZHOU Han-tao, LI Qiang and ZHU Yan-ping: Materials Science and Engineering Vol.
[7] MA Yan-long, ZUO Ru-lin, TANG Ai-tao, ZHANG Jing and PAN Fu-sheng: Journal of Chongqing University (Natural Science Edition) Vol. 2 (2005), p.51
Chen: Materials Science and Engineering Vol.
ELIEZER: Journal of Materials Processing Technology Vol. 117 (2001), p.381
[5] ZHANG Ya, ZENG Xiao-qin, LIU Liu-fa, LU Chen, ZHOU Han-tao, LI Qiang and ZHU Yan-ping: Materials Science and Engineering Vol.
[7] MA Yan-long, ZUO Ru-lin, TANG Ai-tao, ZHANG Jing and PAN Fu-sheng: Journal of Chongqing University (Natural Science Edition) Vol. 2 (2005), p.51
Chen: Materials Science and Engineering Vol.
Online since: June 2019
Authors: Yan Wang, Jun Rong Yu, Zu Ming Hu, Jing Zhu, Xing Ke Zhang, Na Li
Introduction
With the rapid development of modern science and technology, polymer materials play an increasingly important role in modern life[1-3].
Qin Wang et al.[6] prepared a series of novel poly(p-phenylene terephthalamide)-based materials containing controllable graft density of long-chain tertiary amine.
Experiment Section Materials.
Meng, Poly(p-phenylene terephthamide) embedded in a polysulfone as the substrate for improving compaction resistance and adhesion of a thin film composite polyamide membrane, Journal of Materials Chemistry A, 5 (2017)
Wang, Environment-friendly synthesis of long chain semiaromatic polyamides, Journal of Applied Polymer Science, 3 (2009) 2036-2042
Qin Wang et al.[6] prepared a series of novel poly(p-phenylene terephthalamide)-based materials containing controllable graft density of long-chain tertiary amine.
Experiment Section Materials.
Meng, Poly(p-phenylene terephthamide) embedded in a polysulfone as the substrate for improving compaction resistance and adhesion of a thin film composite polyamide membrane, Journal of Materials Chemistry A, 5 (2017)
Wang, Environment-friendly synthesis of long chain semiaromatic polyamides, Journal of Applied Polymer Science, 3 (2009) 2036-2042
Online since: November 2015
Authors: A Arockia Selvakumar, S. Amudhan, M. Arul Kumar
Both gear are made up of Teflon material, comparing to the metallic gear Teflon material gear will be less and cheaper in cost.
Item Materials Dimensions 1 Base Mild steel 1.6mm*515mm 2 Link 1 AL6061 35cm*60mm*38mm 3 Link 2 AL 6061 46.6cm*2cm 4 Gripper AL6061 100mm*8 sq mm The overall design of robotic arm can be categorized into two parts, which are the mechanical design and the electrical components.
The mechanical parts are designed by choosing aluminium because it strong and light material compare to Perspex or other material.
In material handlingsystem, repetitive motion is important.
Srikanth, Stability Enhancement of DC Motor using IMC Tuned PID Controller, international journal of advanced engineering sciences and technologies, (2011)
Item Materials Dimensions 1 Base Mild steel 1.6mm*515mm 2 Link 1 AL6061 35cm*60mm*38mm 3 Link 2 AL 6061 46.6cm*2cm 4 Gripper AL6061 100mm*8 sq mm The overall design of robotic arm can be categorized into two parts, which are the mechanical design and the electrical components.
The mechanical parts are designed by choosing aluminium because it strong and light material compare to Perspex or other material.
In material handlingsystem, repetitive motion is important.
Srikanth, Stability Enhancement of DC Motor using IMC Tuned PID Controller, international journal of advanced engineering sciences and technologies, (2011)
Online since: August 2022
Authors: Lam Vi Phong, Nguyen Huu Loc
Along with the interference fit parameters, the consideration of materials is mentioned as well.
Principally, the selection of materials for an interference fit is usually a consideration of both shaft and hub, as a pair of materials.
A typical study of different mating materials in interference fitted assemblies was carried out by Udupa and Sogalad, the paper presented the experimental results of different mating pairs of materials [9].
A new analytical method for press-fit curve prediction of interference fitting parts, Journal of Materials Processing Technology, Volume 250, December 2017, Pages 16-24
Indian Journal of Engineering & Materials Science, vol.13, pp. 397-404
Principally, the selection of materials for an interference fit is usually a consideration of both shaft and hub, as a pair of materials.
A typical study of different mating materials in interference fitted assemblies was carried out by Udupa and Sogalad, the paper presented the experimental results of different mating pairs of materials [9].
A new analytical method for press-fit curve prediction of interference fitting parts, Journal of Materials Processing Technology, Volume 250, December 2017, Pages 16-24
Indian Journal of Engineering & Materials Science, vol.13, pp. 397-404
Online since: November 2014
Authors: Hardinna Wirda Kahar, A.M. Zetty Akhtar, Siti Rabiatull Aisha Idris, Mahadzir Ishak
Journal of Electronic Materials, 2003. 32(12): p. 1414-1420
Materials Science and Engineering: B, 2006. 135(2): p. 134-140
Journal of Materials Science, 2005. 40(3): p. 761-766
Materials Science and Engineering: A, 2006. 420(1–2): p. 55-62
Advances in Materials Science and Engineering, 2013. 2013: p. 11
Materials Science and Engineering: B, 2006. 135(2): p. 134-140
Journal of Materials Science, 2005. 40(3): p. 761-766
Materials Science and Engineering: A, 2006. 420(1–2): p. 55-62
Advances in Materials Science and Engineering, 2013. 2013: p. 11