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Online since: December 2004
Authors: Jing Sun, Jun Wang, Chuan Zhen Huang, Han Lian Liu
Materials Science Forum Vols. *** (2004) pp.243-247 online at http://scientific.net  2004 Trans Tech Publications, Switzerland Microstructure and Mechanical Properties of Two Kinds of Al2O3/SiC Nanocomposites H.L.
Sun 1,d 1 Centre for Advanced Jet Engineering Technologies (CaJET), School of Mechanical Engineering, Shandong University, Jinan, 250061, PR China 2 School of Mechanical, Manufacturing and Medical Engineering, Quensland University of Technology, Brisbane Qld. 4001, Australia a lhl70@sdu.edu.cn, bchuanzhenh@sdu.edu.cn, cj.wang@qut.edu.au, dsj2912@vip.sina.com Keywords: Nano-scale Al2O3, Nano-scale SiC, Microstructure, Mechanical properties Abstract.
Advances in Materials Manufacturing Science and Technology 244 Fabrication of the Ceramic Materials.
Compared with the micro-scale monolithic alumina ceramics (flexural strength 350MPa and fracture toughness 3.5 MPa⋅m1/2)[1], the mechanical properties of AS and AAS advanced materials are all improved, especially the flexural strength.
Conclusions Two kinds of advanced nanocomposites (AAS and AS) were fabricated at 1700℃ and 1550℃ respectively, compared with the monolithic alumina ceramics, the flexural strength of the two composites was greatly improved and the fracture toughness was also increased to a certain extent.
Online since: June 2015
Authors: K. Nakayama, Kensuke Takenaka, T. Izumi, T. Hayashi, M. Okamoto, H. Okumura, M. Yoshikawa, A. Otsuki, N. Kumagai, Y. Sakai, Shinsuke Harada, Tomohisa Kato, Yasunori Tanaka, T. Tsutsumi, T. Kimoto, Dai Okamoto, Masayuki Arai, Yoshiyuki Yonezawa, Hiroyuki Fujisawa, K. Fukuda, Tomonori Mizushima, Mitsuru Sometani, T. Deguchi, S. Matsunaga, M. Takei, T. Hatakeyama, K. Takao, T. Shinohe, K. Asano, M. Miyajima, H. Kimura
Kimoto6 1Advanced Power Electronics Research Center (ADPERC), National Institute of Advanced Industrial Science and Technology (AIST), Central 2, 1-1-1 Umezono, Tsukuba, Ibaraki 305-8565, Japan 2Corporate R&D Headquarters, Fuji Electric Co.
Ltd., 2-1-1 Fukuoka, Fujimino, Saitama 356-8510, Japan 4Toshiba Corporation Corporate Research & Development Center, 1 Komukai Toshiba-cho, Saiwai-ku, Kawasaki 212-8582 Japan 5Power Engineering R&D Center, Kansai Electric Power Co., Inc.,3-11-20 Nakoji, Amagasaki, Hyogo 661-0974, Japan 6Department of Electronic Science & Engineering, Kyoto University, c A1-301 Katsura, Nishikyo, Kyoto 615-8510, Japan a *yoshiyuki-yonezawa@aist.go.jp Keywords: Ultrahigh-voltage, IGBT, n-channel, carrier lifetime.
Das et al., Materials Science Forum, Vols. 600-603, p.1183 (2009) [3] S.
Ryu et al., Materials Science Forum, Vols. 717-720, p.1135 (2012) [4] S.
Forum, Vols.740-742,pp.1036 (2013)
Online since: March 2009
Authors: Ehsan Mostaed, H. Saghafian, Ali Mostaed, Ali Shokuhfar, Hamid Reza Rezaie
Rezaie 1,e 1 Department of Materials and Metallurgy Engineering, Iran University of Science and Technology, Tehran, Iran 2 Advanced Materials & Nanotechnology Research Center, Faculty of Mechanical Engineering, K.N.Toosi University of Technology, Tehran, Iran a ehsanmostaed@metaleng.iust.ac.ir, balimostaed@sina.kntu.ac.ir, csaghafian@iust.ac.ir, d shokuhfar@kntu.ac.ir, ehrezaie@iust.ac.ir Keywords: Mechanical alloying; Al-Cu/SiC composite; Diffusion Abstract.
[7] M.Sherif El-Eskandarany: Mechanical Alloying for Fabrication of Advanced Engineering Materials, Noyes Publications/William Andrew Publising, Norwich, NY (2001)
Forum Vols. 473-474 (2005), p. 4150
Forum Vol. 273-276 (2008), p. 622
Forum, Trans Tech.
Online since: May 2014
Authors: Kazuya Aizawa, Takeshi Nakatani, Stefanus Harjo, Jun Abe, Takayoshi Ito, Yasuhiro Inamura, Takuro Kawasaki
Introduction The Engineering Materials Diffractometer TAKUMI [1] at the Materials and Life Science Experimental Facility (MLF) in the Japan Proton Accelerator Research Complex (J-PARC) is a time-of-flight neutron diffractometer dedicated to the study of various engineering problems such as the stress and strain deformation, phase transformation and texture in engineering materials.
A similar system is also used for in situ measurement at the engineering diffractometer VULCAN at the Spallation Neutron Source (SNS) [3].
Forum 681 (2011) 443-448
Collaboration on Advanced Neutron Sources, PSI-Proc. (2010) 10-01 [9] T.
Forum 652 (2010) 238-242.
Online since: September 2013
Authors: Nan Zhe Zhang
Exploration on the Cultivation of Engineering Quality through Chemical Engineering Technology Teaching Nanzhe Zhang College of Engineering, Yanbian University, Yanji, 133002, China nzzhang@ybu.edu.cn Keywords: chemical engineering technology; theory teaching; practice teaching; engineering quality Abstract.
The chemical engineering technology linked chemical engineering professional knowledge to engineering practice is an important compulsory course.
With the development of modern chemical engineering industry, the market more and more need chemical engineering advanced talents who have the engineering quality and strong abilities of engineering practice and innovation [1,2].
Chemical engineering technology, as compulsory course of chemical engineering and technology specialty, has played the role of a bridge contacting chemical engineering professional knowledge and engineering practice.
Closely combining with chemical engineering technology experiment and practical training to enhance engineering quality Bringing into play characteristics of chemical engineering technology experiment to set the engineering concept.
Online since: November 2025
Authors: Artem Ruban, Viktoriya Pasternak, Oksana Telak, Viktor Kovalchuk, Oleksandr Zemlianskyiy
In Key Engineering Materials. 954 (2023) 167–175.
In Key Engineering Materials. 927 (2022) 77–86.
Advances in Production Engineering and Management. 19 (2024) 386–394
Modeling in Geotechnical Engineering. 1 (2021) 79–100
Minerals Engineering. 205 (2024) 1–19
Online since: October 2010
Authors: Heinz Guenter Brokmeier
Neutron and Photon Research for Texture and Stress Characterisation of Advanced Materials H.
Worldwide materials science diffractometers at large scale facilities were built recently to improve experimental options for the characterization of advanced materials.
Non-destructive investigations of engineering materials as well as in situ experiments are possible in a reasonable time scale.
Bunge: Advanced Engineering Materials Vol. 3 (2001) p. 25
Homeyer: Materials Science Forum Vol. 539-543 (2007) p. 3894
Online since: April 2014
Authors: Shuan Xi He, Xi Wang, Bo Ran Ma, Yue Shi, Wan Xin Zhang, Ming Zhu, Long Tao Jiang, Gaohui Wu
Influence of Deformation on Precipitation Behavior of 2024Al Alloy ShuangxiHe1,a *, XiWang2,b, BoranMa2,c, YueShi2,d,WanxinZhang1,e, MingZhu2f, LongtaoJiang2,3,g, GaohuiWu2,3,h 1China Astronaut Research and Training Center, China 2School of Materials Science and Engineering, Harbin Institute of Technology, China 3State Key Laboratory of Advanced Wedding Production Technology, Harbin Institute of Technology, China ahsxspace@163.com, bwangximmc@gmail.com, cmaboran.hit@gmail.com, dshiyue2007@126.com, ezhangwanxin-2009@163.com,f954206541@qq.com, gjianglongtao@hit.edu.cn, hwugh@hit.edu.cn Keywords: 2024 Al alloy, Thermo-mechanical treatment, Precipitation.
Chen Minghe, Materials Science Forum. 770 (2013) 329-334
[5] Zhu Qingfeng, Zhao Zhihao, ZuoYubo, Li Lei, Cui Jianzhong,Materials Science Forum. 765 (2013) 82-86
[9] J.Y.Xu, Q.L.An, M.Chen,Materials Science Forum. 698 (2011) 218-222
[14] Huh MY, Cho SY, Engler O, Materials Science and Engineering A.315-1 (2001) 35−46
Online since: August 2024
Authors: Yasuhisa Sano, Shunto Iden, Jumpei Yamada, Masaaki Oshima, Daisetsu Toh, Kazuto Yamauchi, Yuma Nakanishi
Dicing Process for 4H-SiC Wafers by Plasma Etching Using High-Pressure SF6 Plasma with Metal Masks Yasuhisa Sano1,a*, Yuma Nakanishi1,b, Masaaki Oshima1,c, Shunto Iden1,d, Jumpei Yamada2,e, Daisetsu Toh1,f, and Kazuto Yamauchi1,2,g 1Department of Precision Engineering, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan 2Research Center for Precision Engineering, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan asano@prec.eng.osaka-u.ac.jp, bnakanishi@up.prec.eng.osaka-u.ac.jp, coshima@up.prec.eng.osaka-u.ac.jp, diden@up.prec.eng.osaka-u.ac.jp, eyamada@prec.eng.osaka-u.ac.jp, ftoh@prec.eng.osaka-u.ac.jp, gyamauchi@prec.eng.osaka-u.ac.jp Keywords: plasma etching, dicing, metal mask, plasma chemical vaporization machining.
To consider the cause of the decrease, electrostatic field calculations were performed using EStat (Advanced Science Laboratory.
Forum 717-720 (2012) 865-868
Forum 740-742 (2013) 813-816
Forum. 778-780 (2014) 759-762
Online since: October 2012
To keep a nation in the path of sustainable development research on the advances in manufacturing and material engineering has been playing a vital role and has become indispensible for the growth of any nation.
Therefore, the main objective of organizing 'The International Conference on Advances in Manufacturing and Materials Engineering (ICAMME 2012)' is to provide an international technical forum for engineers, academicians, scientists and researchers alike to present results of ongoing research in the field of manufacturing and materials engineering.
The primary focus of the conference is to create an effective forum for institutions and industries to share ideas, innovations and problem solving techniques.
This conference is planned to address and cover a wide spectrum areas of manufacturing and materials engineering.
Therefore, this proceeding is divided into the followings areas: Material Removal Processes, Forming Processes, Casting and Joining, Materials, High Energy Beam Processing, Precision Engineering and Nanotechnology, Surface Engineering, Computer Aided Engineering, Environmental Issues and Management in Manufacturing, Manufacturing Systems and Engineering, Value Analysis and Value Engineering, Fatigue and Fracture Mechanics and other related topic.