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Online since: March 2004
Authors: Jian Guo Yang, Y.Q. Ren, Z.C. Du
(2) Because the materials of the machine structures and workpiece have the same thermal
expansion coefficient for this machine, there will be no thermal error between the tool tip and
workpiece if whole machine has an evenly temperature change.
Liu: Journal of Engineering for Industry Vol. 15 (1993), p. 149 [3] J.S.
Wu: Journal of Engineering for Industry Vol. 114 (1993), p. 472 [4] C.H.
Ziegert: ASME, Manufacturing Science and Engineering Vol. 10 (1993), p. 235 [6] S.
Ni: International Journal of Machine Tools and Manufacture Vol. 36 (1999), p. 1367
Liu: Journal of Engineering for Industry Vol. 15 (1993), p. 149 [3] J.S.
Wu: Journal of Engineering for Industry Vol. 114 (1993), p. 472 [4] C.H.
Ziegert: ASME, Manufacturing Science and Engineering Vol. 10 (1993), p. 235 [6] S.
Ni: International Journal of Machine Tools and Manufacture Vol. 36 (1999), p. 1367
Online since: December 2012
Authors: Y.Q. Ren, M. Liu, X.M. Yuan, T. Liu, N. Zhang
The application of Cu3N thin films as write-once optical recording materials and anode material for Li-ion rechargeable batteries was also presented.
The application of Cu3N thin films as write-once optical recording materials and anode material for Li-ion rechargeable batteries was also presented.
Shimokawa, Modification of electrical and optical properties of metal nitride thin films by hydrogen inclusion, Journal of Alloys and Compounds, 2002;330-332: 348 –351
Surface Science 2009; 603:2283–2289
Boerma, Growth, structure and optical properties of Cu3N films, Surface Science 2004;548:95
The application of Cu3N thin films as write-once optical recording materials and anode material for Li-ion rechargeable batteries was also presented.
Shimokawa, Modification of electrical and optical properties of metal nitride thin films by hydrogen inclusion, Journal of Alloys and Compounds, 2002;330-332: 348 –351
Surface Science 2009; 603:2283–2289
Boerma, Growth, structure and optical properties of Cu3N films, Surface Science 2004;548:95
Online since: June 2013
Authors: Yoshiharu Mutoh, Supachai Surapunt
Sintered materials tend to have low strength and ductility compared to the melted materials due to their low densities [2-4].
Deng: Materials Science and Engineering A 390 (2005), p. 98-112
Chawla: Materials Science and Engineering A308 (2001), p. 180-188
Torralba: Journal of Materials Science and Engineering Vol. 259 Issue 1 (1999), p. 98-104
Fontanari, G Straffelini: Experimental Results and Modeling, Journal of Engineering Materials and Technology Vol. 120 (1998), p. 248-255.
Deng: Materials Science and Engineering A 390 (2005), p. 98-112
Chawla: Materials Science and Engineering A308 (2001), p. 180-188
Torralba: Journal of Materials Science and Engineering Vol. 259 Issue 1 (1999), p. 98-104
Fontanari, G Straffelini: Experimental Results and Modeling, Journal of Engineering Materials and Technology Vol. 120 (1998), p. 248-255.
Online since: December 2012
Authors: Yi Zhong Yu, Xiao Yu Zhou
R. china
2Key Laboratory of Display Materials & Photoelectronic Devices, Ministry of Education, School of Materials Science and Engineering, Tianjin University of Technology, South Hongqi Road Extended Line, Nankai district, Tianjin 300384, P.
Indoor air pollution comes from surface decoration materials and outdoor smoke pollution.
High level of formaldehyde (HCHO) is released from these materials continuously.
Corresponding Author: Xiao Yu Zhou, Key Laboratory of Display Materials & Photoelectronic Devices, Ministry of Education, School of Materials Science and Engineering, Tianjin University of Technology, South Hongqi Road Extended Line, Nankai district, Tianjin 300384, P.
The International Journal of Tuberculosis and lung Disease 14 (2010) 1079-1086
Indoor air pollution comes from surface decoration materials and outdoor smoke pollution.
High level of formaldehyde (HCHO) is released from these materials continuously.
Corresponding Author: Xiao Yu Zhou, Key Laboratory of Display Materials & Photoelectronic Devices, Ministry of Education, School of Materials Science and Engineering, Tianjin University of Technology, South Hongqi Road Extended Line, Nankai district, Tianjin 300384, P.
The International Journal of Tuberculosis and lung Disease 14 (2010) 1079-1086
Online since: September 2014
Authors: Mahmoud Nili-Ahmadabadi, Mohsen Toofaninejad, Hassan Shirazi
Box 14395-731, Tehran, Iran.
2Center of Excellence for High Performance Materials, School of Metallurgy and Materials Engineering, University of Tehran, Tehran, Iran.
Experimental materials and procedures A commercial 304 SS material was used in this study.
Furuhara, Recrystallization behavior of ECAPed A356 alloy at semi-solid reheating temperature, Materials Science and Engineering A. 527 (2010) 4113–4121
Langdon, The processing of NiTi shape memory alloys by equal-channel angular pressing at room temperature, Materials Science & Engineering A. 576 (2013) 178–184
Doherty, Strain hardening regimes and microstructural evolution during large strain compression of low stacking fault energy fcc alloys that form deformation twins, Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science. 28(9) (1997) 1781-1795
Experimental materials and procedures A commercial 304 SS material was used in this study.
Furuhara, Recrystallization behavior of ECAPed A356 alloy at semi-solid reheating temperature, Materials Science and Engineering A. 527 (2010) 4113–4121
Langdon, The processing of NiTi shape memory alloys by equal-channel angular pressing at room temperature, Materials Science & Engineering A. 576 (2013) 178–184
Doherty, Strain hardening regimes and microstructural evolution during large strain compression of low stacking fault energy fcc alloys that form deformation twins, Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science. 28(9) (1997) 1781-1795
Online since: August 2013
Authors: Sawanya Kanjanapaisit, Chaiwat Prapainainar, Paweena Prapainainar
Experimental
Materials and chemicals Nafion was purchased by Zeolyst international.
Vielstich,Methanol crossover effect on the cathode potential of a direct PEM fuel cell, Journal of Applied Electrochemistry, 35 (2005) 1239-1243
Argyropoulos,Performance of the direct methanol fuel cell with radiation-grafted polymer membranes, Journal of Membrane Science, 171 (2000) 119-130
Holmes,Nafion®/mordenite composite membranes for improved direct methanol fuel cell performance, Journal of Membrane Science, 369 (2011) 367-374
Jiang,Surface-modified Y zeolite-filled chitosan membrane for direct methanol fuel cell, Journal of Power Sources, 173 (2007) 842-852
Vielstich,Methanol crossover effect on the cathode potential of a direct PEM fuel cell, Journal of Applied Electrochemistry, 35 (2005) 1239-1243
Argyropoulos,Performance of the direct methanol fuel cell with radiation-grafted polymer membranes, Journal of Membrane Science, 171 (2000) 119-130
Holmes,Nafion®/mordenite composite membranes for improved direct methanol fuel cell performance, Journal of Membrane Science, 369 (2011) 367-374
Jiang,Surface-modified Y zeolite-filled chitosan membrane for direct methanol fuel cell, Journal of Power Sources, 173 (2007) 842-852
Online since: December 2013
Authors: Aidah Jumahat, Ahmad Safwan Ramlan, Mohd Khalid Hassan, Noor Haznida Bakar, Koay Mei Hyie
The development of high-performance materials made from natural resources are increasing worldwide in recent years.
Hybrid composite materials have wide application in the field of engineering due to low cost, strength-to-weight ratio and ease of manufacturing.
This research work will significantly contribute new ideas to the current development materials for impact application and cost effectiveness.
Experimental Materials.
Rethwisch, Materials Science and Engineering, 8th Ed., John Wiley &Sons, Asia (2011)
Hybrid composite materials have wide application in the field of engineering due to low cost, strength-to-weight ratio and ease of manufacturing.
This research work will significantly contribute new ideas to the current development materials for impact application and cost effectiveness.
Experimental Materials.
Rethwisch, Materials Science and Engineering, 8th Ed., John Wiley &Sons, Asia (2011)
Online since: February 2026
Authors: Enyinna Kelechi Ugwu, Odinakachi Charles Njoku, Uchechukwu Collins Anya, Favour Chidinma Ekejiuba, Rufus Toochukwu Okwara, Ebere Oluchi Chukwu, Christian Chidi Onyeanu
The theory encourages businesses to rethink their reliance on virgin resources and instead develop new supply chains based on renewable, recyclable, or upcycled materials.
For instance, companies can reduce costs by reusing materials, which can lead to more stable and sustainable business models [14].
The key themes identified included regulatory policy, social factors, supplier selection criteria (cost, quality, delivery), and innovation techniques (e.g., eco-friendly materials).
International Journal of Academic Management Science Research (IJAMSR) 9 (5), 151-156
Environmental Science and Policy, 128, 95-104
For instance, companies can reduce costs by reusing materials, which can lead to more stable and sustainable business models [14].
The key themes identified included regulatory policy, social factors, supplier selection criteria (cost, quality, delivery), and innovation techniques (e.g., eco-friendly materials).
International Journal of Academic Management Science Research (IJAMSR) 9 (5), 151-156
Environmental Science and Policy, 128, 95-104
Online since: May 2007
Authors: Zhong Ning Guo, Zhi Gang Huang, F.Z. Zeng, G.H. Han
According to the machining mechanism of ECM,
the materials are removed with the transferring of ions based on the anodic dissolution, so it could be
used for micromachining when the machining conditions are well controlled and machining
parameters are selected appropriately, as that in electrochemical micromachining (EMM) [1].
Acknowledgment The authors would like to thank the National Nature Science Foundation (50475046), Guangdong Province Science Plan Project (Number: 2005B10201016) and Guangzhou Science Plan Project (Number: 2004Z3-D0051) in China for their financial support.
Sridhar: Journal of materials processing technology, Vol.113 (2001), pp.301-305
[2] Piotr Domanowski and Jerzy Kozak: Journal of materials processing technology, Vol.107 (2000), pp.300-306
Rahman and et al: Journal of materials processing technology, Vol.140 (2003), pp.318-325
Acknowledgment The authors would like to thank the National Nature Science Foundation (50475046), Guangdong Province Science Plan Project (Number: 2005B10201016) and Guangzhou Science Plan Project (Number: 2004Z3-D0051) in China for their financial support.
Sridhar: Journal of materials processing technology, Vol.113 (2001), pp.301-305
[2] Piotr Domanowski and Jerzy Kozak: Journal of materials processing technology, Vol.107 (2000), pp.300-306
Rahman and et al: Journal of materials processing technology, Vol.140 (2003), pp.318-325