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Online since: July 2014
Authors: Zhan Qiang Liu, Kai Feng Song, Zhen Yu Shi, Lu Ning Liu
Acknowledgements
The authors would like to acknowledge the financial support by the National Natural Science Foundation of China (51375272, U1201245), and the Major Science and Technology Program of High-end CNC Machine Tools and Basic Manufacturing Equipment (2014ZX04012-014).
Vosniakos, Predicting surface roughness in machining: a review, International Journal of Machine Tools & Manufacture. 43 (2003) 833-844
Lebrun, Influence of machining by finishing milling on surface characteristics, International Journal of Machine Tools and Manufacture. 41(2001) 443-450
Al-Wedyan, Surface roughness modeling of CNC down milling of Alumic-79, Journal of Materials Processing Technology. 133(2003)266-275
Liu, Machined surface error analysis-a face milling approach, Journal of Advanced Manufacturing Systems. 10 (2011) 293-307
Vosniakos, Predicting surface roughness in machining: a review, International Journal of Machine Tools & Manufacture. 43 (2003) 833-844
Lebrun, Influence of machining by finishing milling on surface characteristics, International Journal of Machine Tools and Manufacture. 41(2001) 443-450
Al-Wedyan, Surface roughness modeling of CNC down milling of Alumic-79, Journal of Materials Processing Technology. 133(2003)266-275
Liu, Machined surface error analysis-a face milling approach, Journal of Advanced Manufacturing Systems. 10 (2011) 293-307
Online since: June 2012
Authors: Ming Ming Zhou, Ming Jie Guan, Qi Sheng Zhang
Introduction
Bamboo is a natural polymer material with excellent performance.
Materials and Methods Ultrasonic dip treatment.
[3] Li, J., Wood Science, Ha erbin(In Chinese), 1994
[4] Li, X.R., The methods of decay and mold of wood and bamboo, Science and Technology of Xiamen.
[5] Sun, F.L., Mao, S.F., Wen, G.F., The antifungal properties of bamboo after different kinds of dipping, Journal of Zhejiang Forest College (In Chinese). 2 (2006) 135-139
Materials and Methods Ultrasonic dip treatment.
[3] Li, J., Wood Science, Ha erbin(In Chinese), 1994
[4] Li, X.R., The methods of decay and mold of wood and bamboo, Science and Technology of Xiamen.
[5] Sun, F.L., Mao, S.F., Wen, G.F., The antifungal properties of bamboo after different kinds of dipping, Journal of Zhejiang Forest College (In Chinese). 2 (2006) 135-139
Online since: June 2014
Authors: Xue Feng Shu, Guo Zheng Yuan, Xia Chen
To edge combined the chip package, different combine material have different influence on the service life[2].
Acknowledgments The project supported by Youth Foundation of Taiyuan University of Technology ( No. 2012L093 ), the National Natural Science Foundation of China (Grant No. 11172195) , the Natural Science Foundation of Hebei Province, China(Grant No.
A2012201003), the Natural Science Foundation of Shanxi Province, China(Grant No. 2012011019-4).
[4] Zhou C Y, Yu C X, Lee S W, Drop/impact tests and analysis of typical portable electronic devices, J.International Journal of Mechanical Sciences, Vol. 50, No. 5(2008), pp. 905-917
[5] Wong E H, Seah S K W, Selvanayagam C S, et al, High-speed cyclic bend tests and board-level drop tests for evaluating the robustness of solder joints in printed circuit board assemblies, J.Journal of Electronic Materials, Vol. 38, No. 6(2009), pp. 884-895
Acknowledgments The project supported by Youth Foundation of Taiyuan University of Technology ( No. 2012L093 ), the National Natural Science Foundation of China (Grant No. 11172195) , the Natural Science Foundation of Hebei Province, China(Grant No.
A2012201003), the Natural Science Foundation of Shanxi Province, China(Grant No. 2012011019-4).
[4] Zhou C Y, Yu C X, Lee S W, Drop/impact tests and analysis of typical portable electronic devices, J.International Journal of Mechanical Sciences, Vol. 50, No. 5(2008), pp. 905-917
[5] Wong E H, Seah S K W, Selvanayagam C S, et al, High-speed cyclic bend tests and board-level drop tests for evaluating the robustness of solder joints in printed circuit board assemblies, J.Journal of Electronic Materials, Vol. 38, No. 6(2009), pp. 884-895
Online since: February 2011
Authors: Dae Geun Nam, Chang Yong Choi
Chromium Nitrided A283-C Steel as Bipolar Plate for PEMFC
Chang-Yong Choi1,2, a, Dae-Geun Nam1, b
1Dongnam Technology Application Division, Korea Institute of Industrial Technology, Busan 618-230, Republic of Korea
2Department of Materials Science and Engineering, Pusan National University, Busan 609-735, Republic of Korea
accy0066@kitech.re.kr, bdgnam@kitech.re.kr (corresponding author)
Keywords: PEMFC, Carbon Steel, Bipolar Plate, Chromium Nitride
Abstract.
The results show that the surface modified steel plates have good corrosion resistance and relatively low interfacial contact resistance, and it should be candidate material as a bipolar plate of PEMFC.
In order to commercialize fuel cells, the development of bipolar plate material is very important.
Materials and Experimental Commercially used A283-C carbon steel with a thickness of 2.2mm was applied for the bipolar plate substrate.
Lee, Journal of Power Sources 170 (2007) 268-274
The results show that the surface modified steel plates have good corrosion resistance and relatively low interfacial contact resistance, and it should be candidate material as a bipolar plate of PEMFC.
In order to commercialize fuel cells, the development of bipolar plate material is very important.
Materials and Experimental Commercially used A283-C carbon steel with a thickness of 2.2mm was applied for the bipolar plate substrate.
Lee, Journal of Power Sources 170 (2007) 268-274
Online since: August 2011
Authors: Tao Huang, Jia Hui Qu, Ming Gao, Fu Wang
Experimental
The AZ31 magnesium alloy was used as the tested materials.
Zuo: Chinese Journal of Materials Research Vol. 21 (2007), p. 354.
Ruano: Materials Letters Vol. 59 (2005), p. 3299
Tan: Materials Science and Engineering A Vol. 339 (2003), p. 124
Zhang: Chinese Journal of Rare Metals Vol. 31 (20070, p. 412.
Zuo: Chinese Journal of Materials Research Vol. 21 (2007), p. 354.
Ruano: Materials Letters Vol. 59 (2005), p. 3299
Tan: Materials Science and Engineering A Vol. 339 (2003), p. 124
Zhang: Chinese Journal of Rare Metals Vol. 31 (20070, p. 412.
Online since: August 2014
Authors: Xue Zhi Zhao, Cheng Zhong Zhang, Xi Zhi Hu, Bang Yan Ye, Yun Feng Cao
It has been found that the parameters of violin sounding box, such as plate materials, thickness, arc and arch rise, have great influence on the sound.
Cho: SCIENCE, Vol. 328 (2010), pp. 1468
Knut: The Science of String Instruments, Springer.com 2010, pp. 279
Moral: The Journal of the Acoustical Society of America, Vol. 105 (1999), pp. 1942
Gough: The Journal of the Acoustical Society of America, Vol. 127 (2010), pp. 1791
Cho: SCIENCE, Vol. 328 (2010), pp. 1468
Knut: The Science of String Instruments, Springer.com 2010, pp. 279
Moral: The Journal of the Acoustical Society of America, Vol. 105 (1999), pp. 1942
Gough: The Journal of the Acoustical Society of America, Vol. 127 (2010), pp. 1791
Online since: December 2024
Authors: Ariunbolor Purvee, Purevdorj Batkhuu, Khavalbolot Kelgenbai, Temuulen Purevdorj
After casting, the material was cut into 11-13 mm thick pieces using a machine with coolant.
Ghomashchi, “Microstructural-property relationships in high chromium white iron,” International Materials Reviews, vol. 41, pp. 59–82, 1996
[8] Yousif, Israa and Ataiwi, Ali., “Destabilization Heat Treatment Effect on Erosive Wear Characteristics of High Chromium White Cast Iron,” Kufa Journal of Engineering, vol. 9, no. 2, pp. 45–55, 2018
Ghomashchi, “Microstructure-property relationships in high chromium white iron alloys,” International Materials , vol. 41, no. 2, pp. 61–82, 1996
[13] Hakan Gasan and Fatih Erturk, “Effects of a Destabilization Heat Treatment on the Microstructure and Abrasive Wear Behavior of High-Chromium White Cast Iron Investigated Using Different Characterization Techniques,” Metallurgical and Materials, vol. 44, pp. 4993–5005, 2013, Accessed: Feb. 14, 2024.
Ghomashchi, “Microstructural-property relationships in high chromium white iron,” International Materials Reviews, vol. 41, pp. 59–82, 1996
[8] Yousif, Israa and Ataiwi, Ali., “Destabilization Heat Treatment Effect on Erosive Wear Characteristics of High Chromium White Cast Iron,” Kufa Journal of Engineering, vol. 9, no. 2, pp. 45–55, 2018
Ghomashchi, “Microstructure-property relationships in high chromium white iron alloys,” International Materials , vol. 41, no. 2, pp. 61–82, 1996
[13] Hakan Gasan and Fatih Erturk, “Effects of a Destabilization Heat Treatment on the Microstructure and Abrasive Wear Behavior of High-Chromium White Cast Iron Investigated Using Different Characterization Techniques,” Metallurgical and Materials, vol. 44, pp. 4993–5005, 2013, Accessed: Feb. 14, 2024.
Online since: April 2012
Authors: Bin Jiang, Yong Zhong Wang, Yi Hang Fan, Pei Yi Zhao
The workpiece material: Cr12MoV, the hardness: HRC 55-60, the size of workpiece: 100mm x 50mm x 45mm, as shown in Fig. 5.
Acknowledgements The authors wish to acknowledge supports of National Natural Science Foundation of China (50975067), National S & T Major Project (2011ZX04002-111) and Education Department Project of Heilongjiang Province (11551z005).
Katsuzo: Toraibarojisuto/Journal of Japanese Society of Tribologists Vol. 56 (2011), p. 240 [3] Y.G.
Wang: International Journal of Refractory Metals and Hard Materials Vol. 30 (2012), p. 200 [4] I.
Katsuzo: Toraibarojisuto/Journal of Japanese Society of Tribologists Vol. 56 (2011), p. 240 [5] J.K.
Acknowledgements The authors wish to acknowledge supports of National Natural Science Foundation of China (50975067), National S & T Major Project (2011ZX04002-111) and Education Department Project of Heilongjiang Province (11551z005).
Katsuzo: Toraibarojisuto/Journal of Japanese Society of Tribologists Vol. 56 (2011), p. 240 [3] Y.G.
Wang: International Journal of Refractory Metals and Hard Materials Vol. 30 (2012), p. 200 [4] I.
Katsuzo: Toraibarojisuto/Journal of Japanese Society of Tribologists Vol. 56 (2011), p. 240 [5] J.K.
Online since: November 2025
Authors: Alina Novhorodchenko, Serhii Pozdieiev, Mykola Zmaha, Vitaly Novhorodchenko
However, insufficient attention has been paid to such materials widely used in construction as OSB chipboard and plywood, which, due to their characteristics, can serve as fire-resistant cladding for wooden structures.
Materials.
International Journal of Engineering & Technology. 7 (4.3) (2018) 284–287
Materials Science Forum. 1141 (2024) 35–42
IOP Conference Series: Materials Science and Engineering. 1021 (2020) 01203.
Materials.
International Journal of Engineering & Technology. 7 (4.3) (2018) 284–287
Materials Science Forum. 1141 (2024) 35–42
IOP Conference Series: Materials Science and Engineering. 1021 (2020) 01203.