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Online since: October 2015
Authors: Guang Jun Chen, Ling Guo Kong, Xiao Qin Zhou, Liang Wang, Bai Ting He
The cutting materials were hardened steel Cr12MoV and GCr15 whose hardness is HRC50-52 and HRC62-64.
Introduction As main processing materials in machinery industry, Hardened steel is widely used in the manufacturing of automobile, bearings and gears.
The experiments were performed on CNC lathe CAK4085 with PCBN tool, where the cutting materials were hardened steel whose hardness are HRC50-52 and HRC62-64.The experimental device can be seen in Fig. 2.
Lin et al: Journal of Graphics. 2014,35(1), pp.52-56
Xiong: JOURNAL OF SICHUAN UNIVERSITY.2014,46(3), pp.142-146.
Introduction As main processing materials in machinery industry, Hardened steel is widely used in the manufacturing of automobile, bearings and gears.
The experiments were performed on CNC lathe CAK4085 with PCBN tool, where the cutting materials were hardened steel whose hardness are HRC50-52 and HRC62-64.The experimental device can be seen in Fig. 2.
Lin et al: Journal of Graphics. 2014,35(1), pp.52-56
Xiong: JOURNAL OF SICHUAN UNIVERSITY.2014,46(3), pp.142-146.
Online since: July 2007
Authors: Fabrizio Quadrini, Erica Anna Squeo, Loredana Santo
Stoughton and Jeong Whan Yoon: International Journal of Mechanical Science Vol.
47 (2005), p. 1972
[4] S.
Teodosiu: Journal of Material Processing Technology Vol. 172 (2006), p. 96 [5] E.F.
Rauch: Materials Science and Engineering A Vol.
Storai: Journal of Nuclear Materials Vol. 258-263 (1998), p. 446 [7] B.
Montanari: Materials Science and Engineering A Vol.
Teodosiu: Journal of Material Processing Technology Vol. 172 (2006), p. 96 [5] E.F.
Rauch: Materials Science and Engineering A Vol.
Storai: Journal of Nuclear Materials Vol. 258-263 (1998), p. 446 [7] B.
Montanari: Materials Science and Engineering A Vol.
Online since: March 2021
Authors: Li Hua Zhan, Ming Hui Huang, Xue Ying Chen, Hai Long Liao, Yuan Gao
Materials 2019;12
Materials Science and Engineering: A 2018;710:111-20
International Journal of Plasticity 2019:102646
Metallurgical and Materials Transactions A 2018;49:2631-43
Materials Science and Engineering: A 2018;726:309-19.
Materials Science and Engineering: A 2018;710:111-20
International Journal of Plasticity 2019:102646
Metallurgical and Materials Transactions A 2018;49:2631-43
Materials Science and Engineering: A 2018;726:309-19.
Online since: January 2010
Authors: San Ben Chen, W.Y. Wang, H.B. Ma
Journal of Intelligent
and Robotic Systems.
ASME Journal of Manufacturing Science and Engineering.
ASME Journal of Engineering for Industry.
Welding Journal, Vol. 79(6) (2000), p. 151s-163s
Chen: Visual Information Acquirement and Real-time Control Methodologies for Weld Pool Dynamics during Pulsed GTAW, The Invited Paper of the THERMEC' 2006, Journal Materials Science Forum. vol. 539-543(4) (2007), p. 3996-4001
ASME Journal of Manufacturing Science and Engineering.
ASME Journal of Engineering for Industry.
Welding Journal, Vol. 79(6) (2000), p. 151s-163s
Chen: Visual Information Acquirement and Real-time Control Methodologies for Weld Pool Dynamics during Pulsed GTAW, The Invited Paper of the THERMEC' 2006, Journal Materials Science Forum. vol. 539-543(4) (2007), p. 3996-4001
Online since: February 2011
Authors: Guang Yu Mu, Wen Xiao Zhang, Guo Dong Gao
This is the same as the results of other materials such as medium and low carbon steel.
This is the same as the results of other materials such as medium and low carbon steel [2,3,4].
This is the same as the results of other materials such as medium and low carbon steel.
References [1] Nihei Osamu, Ootani Takakazu: High temperature strength of materials theory (Ohmsha Publications, Tokyo 1980)
[2] Nihei Osamu, Hazime Akira Fujino: submitted to Journal of Material (1978) [3] Chengbi Guo, Wenxiao Zhang, Hongfa Huang, Shali Liang and Hua Ni: submitted to Journal of Dalian University of Technology (1996) In Chinese [4] Dingyun Hu, Ming Pang, Jianping Wang and Bo Wu: submitted to Machinery Design & Manufacture (2010) In Chinese [5] Ootani Takakazu: High strength and environmental science (Ohmsha Publications, Tokyo 1984)
This is the same as the results of other materials such as medium and low carbon steel [2,3,4].
This is the same as the results of other materials such as medium and low carbon steel.
References [1] Nihei Osamu, Ootani Takakazu: High temperature strength of materials theory (Ohmsha Publications, Tokyo 1980)
[2] Nihei Osamu, Hazime Akira Fujino: submitted to Journal of Material (1978) [3] Chengbi Guo, Wenxiao Zhang, Hongfa Huang, Shali Liang and Hua Ni: submitted to Journal of Dalian University of Technology (1996) In Chinese [4] Dingyun Hu, Ming Pang, Jianping Wang and Bo Wu: submitted to Machinery Design & Manufacture (2010) In Chinese [5] Ootani Takakazu: High strength and environmental science (Ohmsha Publications, Tokyo 1984)
Online since: June 2015
Authors: Yu Qi Jin, Jian Hua Yan, Qian Jin Dai, Xu Guang Jiang, Fei Wang, Yong Chi, Ai Hua Xu
Experimental
Raw materials.
The second stage (167-527 °C) corresponds to the decomposition of thermodegradable materials, including dead bacteria and polymers[9].
Environmental science & technology 27 (1993) 1602-1610
Journal of Environmental Sciences 21 (2009) 1747-1752
Journal of Hazardous Materials 173 (2010) 205-210
The second stage (167-527 °C) corresponds to the decomposition of thermodegradable materials, including dead bacteria and polymers[9].
Environmental science & technology 27 (1993) 1602-1610
Journal of Environmental Sciences 21 (2009) 1747-1752
Journal of Hazardous Materials 173 (2010) 205-210
Online since: March 2010
Authors: Jian Sha Lu, Guo Zhong Chai, Xiu Lin Li, Hong Tao Tang
Then material
holon is given.
Material Holon (MH).Abstraction of the raw material using during production process.
Every sub-order negotiate with product holon, acquire procedures, when the product made up of materials that need to be produce, the sub-order can analyze to more tiny order.
Morel: Journal of Materials Processing Technology, Vol. 179 (2006), p. 268 [6] P.
Wu: Journal of Intelligent Manufacturing, Vol. 15 (2004), p. 253
Material Holon (MH).Abstraction of the raw material using during production process.
Every sub-order negotiate with product holon, acquire procedures, when the product made up of materials that need to be produce, the sub-order can analyze to more tiny order.
Morel: Journal of Materials Processing Technology, Vol. 179 (2006), p. 268 [6] P.
Wu: Journal of Intelligent Manufacturing, Vol. 15 (2004), p. 253
Online since: August 2013
Authors: Hua Jing Wang, Liang Huan Wu, Jin Li
Materials and Methods
The experiment was conducted in greenhouse.
[2]Inal, A., Tarakcioglu, C: Journal of Plant Nutrition, Vol. 24 (2001), p. 1521-1534
[7] Zhao, X.L., Zheng, S.J., Wang, Q., Hu, A.T: Journal of southwest agricultural university, Vol. 20(1998), p.1-4
[11] Wang, X.T., Below, F.E: Journal of Plant Nutrition, Vol. 21(1998), p. 49-61
[12] Weigelt, A., King, R., Bol, R., Bardgett, R: Journal of Plant Nutrition and Soil Science, Vol. 166(2003), p. 606-611
[2]Inal, A., Tarakcioglu, C: Journal of Plant Nutrition, Vol. 24 (2001), p. 1521-1534
[7] Zhao, X.L., Zheng, S.J., Wang, Q., Hu, A.T: Journal of southwest agricultural university, Vol. 20(1998), p.1-4
[11] Wang, X.T., Below, F.E: Journal of Plant Nutrition, Vol. 21(1998), p. 49-61
[12] Weigelt, A., King, R., Bol, R., Bardgett, R: Journal of Plant Nutrition and Soil Science, Vol. 166(2003), p. 606-611
Online since: August 2013
Authors: Jing Gao Wu, Xiao Kui Liu, Shuai Fang Li
Study on Influence of Insulating Clapboard in the Process of Electrolytic Cleaning for Cold-rolled Strip
Jinggao Wu1,a,Shuaifang Li1,b,Xiaokui Liu1,c*
1School of Materials Science and Engineering,Southwest University, Chongqing,China 400715
*Corresponding author,E-mail: xiaokui@swu.edu.cn
Keywords: Cold-rolled strip, Insulating clapboard, Electrolytic cleaning, Current efficiency, Potential distribution
Abstract.
Wang,Z.L.Zhang:Journal of Steel Rolling, Vol. 26 (2009), p. 51.
(In Chinese) [2] G.Chen,X.Y.Yan: Journal of Shanghai Metal, Vol. 30 (2008), p. 172.
(In Chinese) [3] J.S.Wu: Journal of Steel Rolling, Vol. 18 (2001), p. 39.
(In Chinese) [5] X.C.Dai:Journal of Shanghai Metal, Vol. 29(2007), p. 48.
Wang,Z.L.Zhang:Journal of Steel Rolling, Vol. 26 (2009), p. 51.
(In Chinese) [2] G.Chen,X.Y.Yan: Journal of Shanghai Metal, Vol. 30 (2008), p. 172.
(In Chinese) [3] J.S.Wu: Journal of Steel Rolling, Vol. 18 (2001), p. 39.
(In Chinese) [5] X.C.Dai:Journal of Shanghai Metal, Vol. 29(2007), p. 48.
Online since: September 2013
Authors: Bao Cheng Zhou, Chun Li Lei, Zhi Yuan Rui, Jing Fang Fang
International Journal of Machine Tools & Manufacture, 2005,3(45): 1487~1493
[3] W.
Journal of Basic Engineering,1959,3: l-15 [6] Jones A B.
Journal of Basie Engineering,1960,2: 309-320 [7] Aramaki H, Shoda Y, Morishita Y and Sawamoto T.
Journal of Tribology, Transactions of the ASME, 1988,110(4):693-698 [8] Burton R A.Thermal Aspects of Bearing Seizure.
Journal of Tribology, Trans ASME 1996, 118(2):311–319
Journal of Basic Engineering,1959,3: l-15 [6] Jones A B.
Journal of Basie Engineering,1960,2: 309-320 [7] Aramaki H, Shoda Y, Morishita Y and Sawamoto T.
Journal of Tribology, Transactions of the ASME, 1988,110(4):693-698 [8] Burton R A.Thermal Aspects of Bearing Seizure.
Journal of Tribology, Trans ASME 1996, 118(2):311–319