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Online since: December 2004
Authors: Dong Ming Guo, Ren Ke Kang, Zhu Ji Jin, Jian Xiu Su, Y.B. Tian
Hahn: Microelectronic Engineering Vol. 56 (2001), p. 3 [2] S.L.
Guo, et al: Diamond & Abrasives Engineering Vol. 136 (2003), p. 13 (in Chinese) [5] H.Ohmori and T.Nakagawa: Annals of CIRP Vol. 39 (1990), p. 329 [6] D.J.
Veselovac: Precision Engineering Vol. 25 (2001), p. 336 [7] D.L.
Li: China Mechanical Engineering Vol.10 (1999), p. 566 (in Chinese) [8] S.Matsui: Bull.
Advances in Materials Manufacturing Science and Technology 368 [10] Z.J.
Online since: January 2004
Authors: M. Härting, D.T. Britton, D.F. Kanguwe, C.M. Comrie, S. Nsengiyumva, S.R. Naidoo, T.E. Derry
Forum 363-365 (2001) 156
Forum 363-365 (2001) 56
Härting, Advanced Engineering Materials 4, (2002) 629.
Online since: December 2012
Authors: Chong Hai Xu, Bin Fang, Chun Lin Wang, Xiu Guo Xu, Ming Dong Yi
Lu: China Mechanical Engineering Vol. 21(4) (2010), p. 379 (in Chinese) [2] W.L.
Wu: The International Journal of Advanced Manufacturing Technology Vol. 49 (2010), p. 459 [5] W.
Yan: China Mechanical Engineering Vol. 19(21) (2008), p. 2524 (in Chinese) [8] Y.R.
Qi: Tool Engineering Vol. 45(7) (2011), p. 18 (in Chinese) [10] G.Y.
Yi: Advanced Materials Research Vol. 154-155 (2011), p. 1319 [13] C.H.
Online since: November 2020
Edited by: Takashi Minegishi

This special issue collects selected full text peer-reviewed contributions short versions of which were presented at the co-hosting symposium of 5th International Symposium of Gunma University Medical Innovation (GUMI) and 9th International Conference on Advanced Micro-Device Engineering (AMDE), which was held on December 6th, 2018 in Kiryu, Japan, organized by GUMI Promotion Office and Gunma University.
The collection covered research results in broad areas in biomedical engineering, applied materials, electrochemistry, nanotechnologies, machinery, signal and data processing, power electronics, and circuit technologies.

Biomedical Engineering, Biochemistry, Electrochemistry, Nanotechnologies, Ceramics, Semiconductors, Photocatalytic Activity, Nanofibers, Ionic Conductivity, Thin Films, Oligonucleotides, Peptide Antigens, Signal Processing, Data Processing, Power Electronics, Circuit Technologies, Machinery, Information Security
Online since: December 2004
Authors: Z. Yang, Y.M. Yang, T. Huang
Materials Science Forum Vols. *** (2004) pp.107-111 online at http://scientific.net  2004 Trans Tech Publications, Switzerland A Neural Network Approach for Milling Process Control Z.Y.
Yang 1,a 1 School of Mechanical Engineering, Tianjin University, Tianjin 300072 China a meyang@tju.edu.cn Keywords: Neural network, Milling process, Adaptive control Abstract.
Advances in Materials Manufacturing Science and Technology 108 Suppose ijw , iv are the weights of input-hidden layer and hidden-output layer respectively, iF is the ith actual milling force.
Servo system K p U err F r U n F + f + - NN Milling process Materials Science Forum Vols. *** 109 Spindle speed is min/300r , radial cutting depth is mm4 .
For the working conditions with abrupt and gradual change of cutting depth, adjusting the feed rate to make the milling force constant on line can enhance the working efficiency effectively compared with traditional method of setting feed rate in advance in CNC programs.
Online since: March 2010
Continuing the success of conferences organized in Beijing (CICC-1, 1998), Kunming (CICC-2, 2001), Shenzhen (CICC-3, 2004), Chengdu (CICC-4, 2005), and Changsha (CICC-5, 2007), CICC-6 offered an international forum for the presentation, discussion and review of the latest advances in science and technology of high-performance ceramics.
Wei Pan and Jianghong Gong Department of Materials Science and Engineering Tsinghua University Beijing 100084 China Sponsors The Chinese Ceramic Society Organizers Center for Composite Materials, Harbin Institute of Technology State Key Laboratory of New Ceramics and Fine Processing, Tsinghua University Advanced Ceramics Division of the Chinese Ceramic Society International Advisory Committee Co-Chairman Longti LI (Tsinghua University, CHINA) Kunihito KOUMOTO (Nagoya University, JAPAN) Ik Jin KIM (Hanseo University, KOREA) Memebers F.
Online since: April 2019
Authors: Gudekote Manjunatha, Choudhari Rajashekhar, Hanumesh Vaidya, K.V. Prasad, Oluwole Daniel Makinde
Jagannath, DTM simulation of peristaltic viscoelastic biofluids flow in asymmetric porous media: A digestive transport model, Journal of Bionic Engineering, 12 (2015) 643-655
Sinha, Electro-magnetihydrodynamic flow of biofluids induced by peristaltic wave: A non-Newtonian model, Journal of Bionic Engineering, 13 (2016) 436-448
Rajashekhar, Slip effects on peristaltic transport of Casson fluid in an inclined elastic tube with porous walls, Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 43 (2018) 67-80
Hanumesh, Peristaltic transport of two-layered blood flow using Herschel-Bulkley model, Cogent Engineering, 5 (2018) 1-16
Nadeem, Analysis of combined convective and viscous dissipation effects for peristaltic flow Rabinowitsch fluid model, Journal of Bionic Engineering, 14 (2017) 182-190
Online since: April 2022
Authors: Olena M. Berdnikova, Olha Kushnarova, Illia Klochkov, Sviatoslav Motrunich, Artemii Bernatskyi
Shen, Vibration analysis of cylindrical sandwich aluminum shell with viscoelastic damping treatment, Advances in Materials Science and Engineering 2013 (2013) 130438.
Sorokin, Features of laser welding light constructions from cryogenic austenitic steel 316L, Key Engineering Materials 822 (2019) 512-519.
Zhadkevich, Development and application of brazed latticed and honeycomb structures in aircraft engineering, Avtomaticheskaya svarka 12 (2005) 18-25
Kardomateas, Review of current trends in research and applications of sandwich structures, Composites Part B: Engineering, 142 (2018) 221-240.
García-López, Influence of process parameters for sheet lamination based on laser micro-spot welding of austenitic stainless steel sheets for bone tissue applications, International Journal of Advanced Manufacturing Technology 115 (2021) 247-262.
Online since: December 2024
Authors: Yurii Feshchuk, Yurii Otrosh, Oksana Berdnyk, Valeriy Makarenko, Volodymyr Gots
Choo, Advanced Concrete Technology, Constituent Materials.
Series: Materials Science and Engineering. – Innovative Technology in Architecture and Design (ITAD 020). 907 012036
  – Key Engineering Materials. 864 115-121
In Materials Science Forum.
Reliability and durability of railway transport engineering structure and buildings
Online since: December 2004
Authors: Zhan Qiang Liu, Xing Ai, Yi Wan
Ai1,c 1 School of Mechanical Engineering, Shandong University, Jinan, 250061, PR China a melius@sdu.edu.cn, bwanyiterry@sohu.com, caixing@sdu.edu.cn Keywords: Tool materials, High speed machining, Tool materials selection Abstract.
There has been a strong resurgence of interest in high speed machining technology, so that it has become one of the most promising advanced manufacturing technologies in the last twenty years.
Conclusions High speed machining technology has become one of the most promising advanced manufacturing technologies.
Deng: Key Engineering Materials, Special Volume (1995), p. 53 [4] C.Z.
Mielert: Cutting Tool Engineering, Vol. 40 (1996), p. 40 [7] X.