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Online since: May 2014
Authors: Uta Klement, Alexander Kahrimanidis
Electrodeposition is an advanced synthesis technique which involves the creation of a coating or free-standing material through an electrolytic process.
Introducing twins and other low-Σ boundaries to a material is known to significantly improve mechanical properties (grain boundary engineering) [8,9].
Financial support from the Area of Advance Materials at Chalmers University of Technology is gratefully acknowledged.
Forum, 702-703 (2012) 928-931
Forum 467-470 (2004) 1345-1350.
Introducing twins and other low-Σ boundaries to a material is known to significantly improve mechanical properties (grain boundary engineering) [8,9].
Financial support from the Area of Advance Materials at Chalmers University of Technology is gratefully acknowledged.
Forum, 702-703 (2012) 928-931
Forum 467-470 (2004) 1345-1350.
Online since: September 2025
Authors: Michele Riccio, Luca Maresca, Andrea Irace, Ilaria Matacena, Santolo Daliento, Giovanni Breglio
In 2018 IEEE International Conference on Environment and Electrical Engineering and 2018 IEEE Industrial and Commercial Power Systems Europe (EEEIC/I&CPS Europe) (pp. 1-5).
Materials Science Forum.
Materials Science Forum.
"SiC MOSFETs Capacitance study." e-Prime-Advances in Electrical Engineering, Electronics and Energy (2023): 100251
In Materials Science Forum (Vol. 1091, pp. 31-36).
Materials Science Forum.
Materials Science Forum.
"SiC MOSFETs Capacitance study." e-Prime-Advances in Electrical Engineering, Electronics and Energy (2023): 100251
In Materials Science Forum (Vol. 1091, pp. 31-36).
Online since: December 2012
Authors: Xiao Dong Wang, Yao Hui Ou, Kai Zhang, Ning Zhong, Shang Wen Lu
., Ltd, Changsha 410100, China
2School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China
3Institute of Marine Materials Science and Engineering, Shanghai Maritime University, Shanghai 200135, China
azhangk16@sany.com.cn, bningzhong@shmtu.edu.cn
Keywords: High strength steel, Quenching and partitioning steel, Microstructure, Mechanical property.
Abstract.The recently developed “quenching and partitioning” heat treatment and “quenching-partitioning-tempering” heat treatment are novel processing technologies, which are designed for achieving advanced high strength steels (AHSS) with combination of high strength and adequate ductility.
Advanced high strength steels (AHSS) [1] with adequate toughness and formability, such as dual-phase (DP), transformation induced plasticity (TRIP) and complex steels have been developed to meet the demands of automotive industry [2-4].
Forum Vol.561-565 (2007), p.2283 [9] X.D.
Abstract.The recently developed “quenching and partitioning” heat treatment and “quenching-partitioning-tempering” heat treatment are novel processing technologies, which are designed for achieving advanced high strength steels (AHSS) with combination of high strength and adequate ductility.
Advanced high strength steels (AHSS) [1] with adequate toughness and formability, such as dual-phase (DP), transformation induced plasticity (TRIP) and complex steels have been developed to meet the demands of automotive industry [2-4].
Forum Vol.561-565 (2007), p.2283 [9] X.D.
Online since: August 2023
Authors: Serhii Shevchenko, Dmytro Dubinin, Yuri Gaponenko, Andrei Lisniak
Ragimov et al., Physical modelling of changes in the energy impact on a worker taking into account high-temperature radiation, Journal of Achievements of Materials and Manufacturing Engineering, 1(91) (2018) 27– 33
Xiao et al., Ablation behavior studies of charring materials with different thickness and heat flux intensity, Case Studies in Thermal Engineering, 23 (2021) 100814
Afanasenko et al., Epoxidized Dinaphthol Application as the Basis for Binder with Advanced Carbonation Level to Reducing its Flammability, Materials Science Forum, 1006 (2020) 41–46
Korytchenko et al., Advanced detonation gun application for aluminum oxide coating, Multidisciplinary journal «Functional Materials», 27 (1) (2020) 224-229
Korytchenko et al., Challenges of energy measurements of low-energy spark discharges, 2020 IEEE KhPI Week on Advanced Technology (KhPIWeek), (2020) 421–424.
Xiao et al., Ablation behavior studies of charring materials with different thickness and heat flux intensity, Case Studies in Thermal Engineering, 23 (2021) 100814
Afanasenko et al., Epoxidized Dinaphthol Application as the Basis for Binder with Advanced Carbonation Level to Reducing its Flammability, Materials Science Forum, 1006 (2020) 41–46
Korytchenko et al., Advanced detonation gun application for aluminum oxide coating, Multidisciplinary journal «Functional Materials», 27 (1) (2020) 224-229
Korytchenko et al., Challenges of energy measurements of low-energy spark discharges, 2020 IEEE KhPI Week on Advanced Technology (KhPIWeek), (2020) 421–424.
Online since: May 2017
Authors: Tomohisa Kato, Hitoshi Habuka, Yoshinao Takahashi, Shogo Okuyama, Ken Nakagomi
A Method to Adjust Polycrystalline Silicon Carbide Etching Rate Profile by Chlorine Trifluoride Gas
Ken Nakagomi1, a, Shogo Okuyama1,a , Hitoshi Habuka1,a*,
Yoshinao Takahashi2,b and Tomohisa Kato3,c
1Department of Chemical and Energy Engineering, Yokohama National University, Japan
2Kanto Denka Kogyo Co., Ltd, Kanda Awaji-cho Chiyoda Tokyo 101-0063 Japan
3National Institute of Advanced Industrial Science and Technology, Japan
ahabuka-hitoshi-ng@ynu.ac.jpl, bYoshinao.Takahashi@kantodenka.co.jp ct-kato@aist.go.jp
Keywords: Silicon carbide dry etcher, chlorine trifluoride gas, etching rate profile
Abstract.
Forum, 778-780 (2014) 738-741
Forum, 821-823 (2015) 553-556.
Forum, 778-780 (2014) 738-741
Forum, 821-823 (2015) 553-556.
Online since: February 2020
Authors: Marcell Gáspár, Raghawendra Pratap Singh Sisodia, Béla Fodor, László Draskóczi
Felicelli, A Parametric Study of Resistance Spot Welding of a Dual-Phase Steel Using Finite Element Analysis, The 8th Pacific Rim International Congress on Advanced Materials and Processing, (TMS) The Minerals, Metals & Materials Society), (2013) 3073-3080
Pietrzyk, Experimental and Numerical Simulations of Phase Transformations Occurring During Continuous Annealing of DP Steel Strips, Journal of Materials Engineering and Performance, 25(4) (2016) 1481–1491, DOI: 10.1007/s11665-016-1907-9
Lima, Development of laser beam welding of advanced high-strength steels, Int.
Májlinger, Development and Comparison of Quantitative Phase Analysis for Duplex Stainless-Steel Weld, Periodica Polytechnica-Mechanical Engineering 62 (2018) 247-253
Kömi, Mechanical Properties in the Physically Simulated Heat-Affected Zones of 500 MPa Offshore Steel for Arctic Conditions, Lecture Notes in Mechanical Engineering (2018) 779-788
Pietrzyk, Experimental and Numerical Simulations of Phase Transformations Occurring During Continuous Annealing of DP Steel Strips, Journal of Materials Engineering and Performance, 25(4) (2016) 1481–1491, DOI: 10.1007/s11665-016-1907-9
Lima, Development of laser beam welding of advanced high-strength steels, Int.
Májlinger, Development and Comparison of Quantitative Phase Analysis for Duplex Stainless-Steel Weld, Periodica Polytechnica-Mechanical Engineering 62 (2018) 247-253
Kömi, Mechanical Properties in the Physically Simulated Heat-Affected Zones of 500 MPa Offshore Steel for Arctic Conditions, Lecture Notes in Mechanical Engineering (2018) 779-788
Online since: April 2016
It provides a high-standard international forum to introduce, to exchange
and to discuss recent advances, novel and practical techniques or applications in the fields of
materials engineering, composite materials, chemical engineering, nanotechnology, and etc.
Sung-Hoon Kim, Department of engineering in Engergy and Applided Chemistry, Korea Prof.
Mohamed Haneef, Ghousia College of Engineering, Karnataka State, INDIA Prof.
Krishnamurthy, The National Institute of Engineering, India Prof.
Wulfsberg, Institute of Production Engineering, Helmut-Schmidt-Universität Hamburg, Germany Dr.
Sung-Hoon Kim, Department of engineering in Engergy and Applided Chemistry, Korea Prof.
Mohamed Haneef, Ghousia College of Engineering, Karnataka State, INDIA Prof.
Krishnamurthy, The National Institute of Engineering, India Prof.
Wulfsberg, Institute of Production Engineering, Helmut-Schmidt-Universität Hamburg, Germany Dr.
Online since: March 2011
Authors: Tomohisa Kato, Hitoshi Habuka, Yusuke Katsumi, Keiko Tanaka, Kazuchika Furukawa, Shinji Iizuka, Katsuya Fukae
Etch Pits on 4H-SiC Surface Produced by ClF3 Gas
Hitoshi Habuka1, a, Kazuchika Furukawa1, a , Keiko Tanaka1, a,
Yusuke Katsumi1, a, Shinji Iizuka2,b, Katsuya Fukae2,c and Tomohisa Kato3,d
1Department of Chemical and Energy Engineering, Yokohama National Univ., Japan
2Shibukawa-Area Lab.
Development Research Laboratory, Kanto Denka Kogyo Co., Ltd., Japan 3Energy Semiconductor Electronics Research Laboratory, National Institutes of Advanced Science and Technology, Japan ahabuka1@ynu.ac.jp, bShinji.Iizuka@kantodenka.co.jp, cKatsuya.Fukae@kantodenka.co.jp, dt-kato@aist.go.jp Keywords: Silicon carbide, etching, chlorine trifluoride gas Abstract.
Forum, Vol. 600-603 (2008) p. 655
Forum, Vol. 645-648 (2010) p. 787
Development Research Laboratory, Kanto Denka Kogyo Co., Ltd., Japan 3Energy Semiconductor Electronics Research Laboratory, National Institutes of Advanced Science and Technology, Japan ahabuka1@ynu.ac.jp, bShinji.Iizuka@kantodenka.co.jp, cKatsuya.Fukae@kantodenka.co.jp, dt-kato@aist.go.jp Keywords: Silicon carbide, etching, chlorine trifluoride gas Abstract.
Forum, Vol. 600-603 (2008) p. 655
Forum, Vol. 645-648 (2010) p. 787
Online since: December 2004
Authors: Mitsuyoshi Nomura, Jing Feng Zhi, Yong Bo Wu, M. Kato
Materials Science Forum Vols. *** (2004) pp.101-106
online at http://scientific.net
Ó 2004 Trans Tech Publications, Switzerland
Modeling of Grinding Force in Constant-depth-of-cut Ultrasonically
Assisted Grinding
Y.B.
Kato1,d 1Dept. of machine intelligence & systems engineering, akita prefectural university, 84-4 Tsuchiya-ebinokuchi, honjo, Akita 015-0055, Japan 2Dept. of Mechanical Engineering, Tsinghua University, Tsinghua-yen, Beijing, China awuyb@akita-pu.ac.jp, bm_nomura@akita-pu.ac.jp, cfengzj@ntl.pim.tsinghua.edu.cn dkato@akita-pu.ac.jp Keywords: Ultrasonically assisted grinding, Ultrasonic transducer, Grinding force Abstract.
Advances in Materials Manufacturing Science and Technology 102 Operating Principle of Constant-depth-of-cut UAG Fig.1 schematizes the operating principle of constant-depth-of-cut UAG.
Kato, et al: J. of JSAT Vol. 47 (2003), p. 550 (in Japanese) Materials Science Forum Vols. *** 107 [14] S.
Schmid: Manufacturing Engineering and Technology (Pretice Hall, Inc., USA 2001).
Kato1,d 1Dept. of machine intelligence & systems engineering, akita prefectural university, 84-4 Tsuchiya-ebinokuchi, honjo, Akita 015-0055, Japan 2Dept. of Mechanical Engineering, Tsinghua University, Tsinghua-yen, Beijing, China awuyb@akita-pu.ac.jp, bm_nomura@akita-pu.ac.jp, cfengzj@ntl.pim.tsinghua.edu.cn dkato@akita-pu.ac.jp Keywords: Ultrasonically assisted grinding, Ultrasonic transducer, Grinding force Abstract.
Advances in Materials Manufacturing Science and Technology 102 Operating Principle of Constant-depth-of-cut UAG Fig.1 schematizes the operating principle of constant-depth-of-cut UAG.
Kato, et al: J. of JSAT Vol. 47 (2003), p. 550 (in Japanese) Materials Science Forum Vols. *** 107 [14] S.
Schmid: Manufacturing Engineering and Technology (Pretice Hall, Inc., USA 2001).
Online since: March 2014
ICMSM2014 provided a forum for
academic scientists, leading engineers, industry researchers and scholar students to exchange and
share their experiences and research results.
ICMSM2014 aims to cover the recent advancement and trends in the area of new materials, advanced materials, advanced manufacturing technologies, and manufacturing systems and automation, and advanced design technology to facilitate knowledge sharing and networking interactions on emerging trends and new challenges.
This book tends to collect the latest research results and applications on material science and manufacturing system and advance design technology.
The editor hopes this book will provide readers a broad overview of the latest advances on material science, manufacturing technologies and advanced design technology.
The editor also believes this book would be a good reference for academic researchers and industrial professionals in the fields of material science, manufacturing technologies and advanced design technology.
ICMSM2014 aims to cover the recent advancement and trends in the area of new materials, advanced materials, advanced manufacturing technologies, and manufacturing systems and automation, and advanced design technology to facilitate knowledge sharing and networking interactions on emerging trends and new challenges.
This book tends to collect the latest research results and applications on material science and manufacturing system and advance design technology.
The editor hopes this book will provide readers a broad overview of the latest advances on material science, manufacturing technologies and advanced design technology.
The editor also believes this book would be a good reference for academic researchers and industrial professionals in the fields of material science, manufacturing technologies and advanced design technology.