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Online since: December 2011
Preface
Those volumes contain papers contributed to The Second International Conference
on Advances in Materials and Manufacturing (ICAMMP 2011) held on 16-18
December 2011 in Guilin, China.
The International Conference on Advances in Materials and Manufacturing Processes is the premier forum for the presentation of new advances and research results in the fields of materials and manufacturing processes.
This conference series will bring together leading researchers, engineers and scientists in the materials and processes field of interest from around the world.
The First International Conference on Advances in Materials and Manufacturing Processes (ICAMMP 2010) was successfully held from November 6-8, 2010 in Shenzhen, China.
All papers published in those volumes of journal of Advanced Materials Research have been peer reviewed through processes administered by the organizing committee.
The International Conference on Advances in Materials and Manufacturing Processes is the premier forum for the presentation of new advances and research results in the fields of materials and manufacturing processes.
This conference series will bring together leading researchers, engineers and scientists in the materials and processes field of interest from around the world.
The First International Conference on Advances in Materials and Manufacturing Processes (ICAMMP 2010) was successfully held from November 6-8, 2010 in Shenzhen, China.
All papers published in those volumes of journal of Advanced Materials Research have been peer reviewed through processes administered by the organizing committee.
Online since: April 2013
Authors: Marion Merklein, Livan Fratini, Wolfgang Böhm, Davide Campanella
In the last 15 years, the technologies of numerical simulation and the proper use of computer codes have become fundamental to modern engineering.
Shin: Materials Science Forum Vol. 449-452 ( 2004), p. 625
Kim: Materials Science Forum Vol. 449-452 ( 2004), p. 597
Minamino: Advanced Engineering Material Vol. 5 (2003), No.5
Shin: Materials Science Forum Vol. 503-504 (2006), p. 681.
Shin: Materials Science Forum Vol. 449-452 ( 2004), p. 625
Kim: Materials Science Forum Vol. 449-452 ( 2004), p. 597
Minamino: Advanced Engineering Material Vol. 5 (2003), No.5
Shin: Materials Science Forum Vol. 503-504 (2006), p. 681.
Online since: December 2007
Authors: B. Liu, T.J. Jin, Y.L. Ma
Ma
1,a
1
School of Mechatronic, Harbin Institute of Technology, Harbin 150001, China
a
liubo418@126.com
Keywords: Project management, System of production management, Concurrent engineering,
Agile manufacturing
Abstract.
In the light of project management, concurrent engineering and agile manufacturing, in relation to the characteristics of the concurrence of developing and batch manufacturing, this text studies the hierarchical information technology of the production management system based on project driving.
Introduction Developing process of astronautical model products is a complicated system engineering, accomplished by teamwork of relative enterprises such as research institute, production factory, experiment centre.
In mid of 1990s, American government advanced "TEAM" [4] plan and "NGM" [5] plan to improving competitive power of manufacturing industry, leading to a new productive model.
[5] Agility Forum.
In the light of project management, concurrent engineering and agile manufacturing, in relation to the characteristics of the concurrence of developing and batch manufacturing, this text studies the hierarchical information technology of the production management system based on project driving.
Introduction Developing process of astronautical model products is a complicated system engineering, accomplished by teamwork of relative enterprises such as research institute, production factory, experiment centre.
In mid of 1990s, American government advanced "TEAM" [4] plan and "NGM" [5] plan to improving competitive power of manufacturing industry, leading to a new productive model.
[5] Agility Forum.
Online since: April 2012
Authors: L. Pentti Karjalainen, Mahesh Chandra Somani
PENTTI Karjalainen1,b
1University of Oulu, Department of Mechanical Engineering, P.
Forum Vol. 467-470 (2004), p. 335 [8] M.C.
Forum Vol. 550 (2007), p. 583 [9] G.
Taguchi, in: Introduction to Quality Engineering: Designing Quality into Product and Processes, UNIPUB, Kraus International Publications, White Plains, New York, 1986, p. 73 [10] A.I.
Conference on Advanced Structural Steels, Gyeongju, Korea (2006), p. 373
Forum Vol. 467-470 (2004), p. 335 [8] M.C.
Forum Vol. 550 (2007), p. 583 [9] G.
Taguchi, in: Introduction to Quality Engineering: Designing Quality into Product and Processes, UNIPUB, Kraus International Publications, White Plains, New York, 1986, p. 73 [10] A.I.
Conference on Advanced Structural Steels, Gyeongju, Korea (2006), p. 373
Online since: August 2024
Authors: Faiz Arith, Konstantin Vasilevskiy, Merve Yakut, Andrew Whitworth, Atreyee Roy, Andrew Alexander, Jacek Gryglewicz, Jake Sheriff, Sarah Olsen, Anthony O'Neill
Increasing Mobility in 4H-SiC MOSFETs with Deposited Oxide by In Situ Nitridation of SiC Surface
Merve Yakut1,a*, Atreyee Roy1,b, Faiz Arith2,c Andrew Whitworth3,d,
Andrew Alexander3, , Jacek Gryglewicz3,f, Jake Sheriff1,g, Sarah Olsen1,h, Konstantin Vasilevskiy1,i and Anthony O’Neill1,j*
1School of Engineering, Newcastle University, Newcastle upon Tyne, NE1 7RU, United Kingdom
2Faculty of Electronic and Computer Engineering, UTeM, 76100 Durian Tunggal, Melaka, Malaysia
3INEX Microtechnology Ltd., Newcastle upon Tyne, NE1 7RU, United Kingdom
am.t.yakut@newcastle.ac.uk, ba.roy9@newcastle.ac.uk, cfaiz.arith@utem.edu.my dandrew.whitworth@inexmicro.com, eandrew.alexander@inexmicro.com, fjacek.gryglewicz@inexmicro.com, gjake.sheriff@newcastle.ac.uk, hsarah.olsen@newcastle.ac.uk, ikonstantin.vasilevskiy@newcastle.ac.uk, janthony.oneill@newcastle.ac.uk
Keywords: SiO2/SiC interface, mobility, MOSFET, deposited gate dielectric, nitridation, N2O, PECVD.
Vasilevskiy (Eds.), Advancing Silicon Carbide Electronics Technology II, Core Technologies of Silicon Carbide Device Processing, Materials Research Forum LLC, Millersville, 2020, pp. 1-62
Vasilevskiy (Eds.), Advancing Silicon Carbide Electronics Technology II, Core Technologies of Silicon Carbide Device Processing, Materials Research Forum LLC, Millersville, 2020, pp. 63-174
O'Neill, High-Mobility SiC MOSFETs Using a Thin-SiO2/Al2O3 Gate Stack, Materials Science Forum, Trans Tech Publ, 2018, pp. 494-497
Vasilevskiy (Eds.), Advancing Silicon Carbide Electronics Technology II, Core Technologies of Silicon Carbide Device Processing, Materials Research Forum LLC, Millersville, 2020, pp. 1-62
Vasilevskiy (Eds.), Advancing Silicon Carbide Electronics Technology II, Core Technologies of Silicon Carbide Device Processing, Materials Research Forum LLC, Millersville, 2020, pp. 63-174
O'Neill, High-Mobility SiC MOSFETs Using a Thin-SiO2/Al2O3 Gate Stack, Materials Science Forum, Trans Tech Publ, 2018, pp. 494-497
Online since: August 2022
Authors: Noraziana Parimin, Esah Hamzah
Influence of Ti on Oxide Formation During Isothermal Oxidation of 800H Ni-Based Alloys
Noraziana PARIMIN1,a* and Esah HAMZAH2,b
1Faculty of Chemical Engineering Technology, Universiti Malaysia Perlis, 02600 Arau, Perlis, Malaysia
2Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 Skudai, Johor, Malaysia
anoraziana@unimap.edu.my, besah@mail.fkm.utm.my
Keywords: Isothermal oxidation, 800H Ni-based alloy, high temperature oxidation, alloying element.
Forum (2020) 40-45
Forum (2020) 58-64
Allen, Corrosion Behavior of Ni-Base Alloys for Advanced High Temperature Water-Cooled Nuclear Plants, Corros.
Forum (2020) 21-27.
Forum (2020) 40-45
Forum (2020) 58-64
Allen, Corrosion Behavior of Ni-Base Alloys for Advanced High Temperature Water-Cooled Nuclear Plants, Corros.
Forum (2020) 21-27.
Online since: June 2011
Authors: Da Heng Mao, Guan Zhong Zhao, Jian Ping Li, Jian Bing Hu
Effects of ultrasound on the microstructures and mechanical properties of cast-rolling AZ31B magnesium alloy strip
Li Jianpinga, Hu Jianbingb, Mao Dahengc, Zhao Guanzhongd
College of Mechanical and Electrical Engineering, Central South University,
Changsha, Hunan, China,410083
aRikennpei102@hotmail.com; b357931011@163.com;
cmdh@mail.csu.edu.cn; dzhao0116@126.com
Keywords: Ultrasound; AZ31B magnesium alloy; Cast-rolling; Mechanical properties.
Introduction With the advantages of low density, high specific strength and specific stiffness, electromagnetic shielding and easy recycling, magnesium alloys have become the important engineering structure materials [1-3].
However, there is a gap between the production of magnesium sheet and the international advanced research, because the production of magnesium sheet has a more developed dendritic cells network, tissue uneven, coarse grains and worse mechanical properties [17-19].
[4] Xin bao Liu, Yoshiaki Osawa, Susumu Takamori, et al: Materials Letters Vol.62 (2008), p.2872-2875 [5] A.Ramirez, Ma.Qian, B.Daves, et al: Scripta Materialia Vol.9 (2008), p.19-22 [6] Deming Gao,Zhijun Li, Qingyou Han, et al: Materials Science and Engineering:A Vol.502 (2009), p.2-5 [7] X.W.Guo, W.J.Ding, C.Lu, et al: Surface and Coatings Technology Vol.183 (2004), p.359-368 [8] O.
Park, et al: Materials Science Forum Vol.2 (2003), p.599-604 [14] Chongqing University.
Introduction With the advantages of low density, high specific strength and specific stiffness, electromagnetic shielding and easy recycling, magnesium alloys have become the important engineering structure materials [1-3].
However, there is a gap between the production of magnesium sheet and the international advanced research, because the production of magnesium sheet has a more developed dendritic cells network, tissue uneven, coarse grains and worse mechanical properties [17-19].
[4] Xin bao Liu, Yoshiaki Osawa, Susumu Takamori, et al: Materials Letters Vol.62 (2008), p.2872-2875 [5] A.Ramirez, Ma.Qian, B.Daves, et al: Scripta Materialia Vol.9 (2008), p.19-22 [6] Deming Gao,Zhijun Li, Qingyou Han, et al: Materials Science and Engineering:A Vol.502 (2009), p.2-5 [7] X.W.Guo, W.J.Ding, C.Lu, et al: Surface and Coatings Technology Vol.183 (2004), p.359-368 [8] O.
Park, et al: Materials Science Forum Vol.2 (2003), p.599-604 [14] Chongqing University.
Online since: January 2019
Authors: Song Xiao Hui, Xiao Yun Song, Guang Lu Qian, Wen Jun Ye, Ming Yu Zhao, Yu Wei Diao
Effect of Ultrasonic Impact Treatment on the Residual Stress Distribution of Electron Beam Welded TA15/BTi-6431S Dissimilar Titanium Alloys
Xiaoyun Song1,a*, Guanglu Qian2,b, Mingyu Zhao3,c, Yuwei Diao4,d,
Wenjun Ye5,e and Songxiao Hui6,f
State Key Laboratory of Nonferrous Metals & Processes, GRIMAT Engineering Co.
Boyer, Titanium for aerospace: rationale and applications, Advanced Performance Materials, 2 (1995) 349-368
Zeng, Electron beam welding, laser beam welding and gas tungsten arc welding of titanium sheet, Materials Science and Engineering A, (2000) 177-181
Liu, Effects of Stress-relief annealing on the residual stress and the microstructure of TA15 welded joint, Materials Science Forum, 849 (2016) 281-286
Zhu, Research on the microstructure and properties of weld repairs in TA15 titanium alloy, Materials Science and Engineering: A, 445-446 (2007) 691-696
Boyer, Titanium for aerospace: rationale and applications, Advanced Performance Materials, 2 (1995) 349-368
Zeng, Electron beam welding, laser beam welding and gas tungsten arc welding of titanium sheet, Materials Science and Engineering A, (2000) 177-181
Liu, Effects of Stress-relief annealing on the residual stress and the microstructure of TA15 welded joint, Materials Science Forum, 849 (2016) 281-286
Zhu, Research on the microstructure and properties of weld repairs in TA15 titanium alloy, Materials Science and Engineering: A, 445-446 (2007) 691-696
Online since: March 2007
Authors: Robert A. Schwarzer, Heinz Günter Brokmeier, Mustafa Koçak, Jens Homeyer, Sabine Lenser, Volker Ventzke, Stefan Riekehr
Dissimilar welded components joined with any kind of welding technologies gain
an increasing interest due to significant improvements in engineering structures by using new
materials (alloys) or new materials combinations.
Introduction Contrary to traditional engineering load-carrying components and structures made from a single material, combining various engineering materials helps tailoring a structure locally to meet the required performance and cost-efficiency in specific regions of a global structure.
This principle of local engineering with multi-material systems can push weight and cost reduction beyond the limits of traditional design.
Particular candidates for these light-weight advanced multi-material systems are combinations of Al-alloys and ceramic reinforced Al/Alalloys or Al-alloys and Mg-alloys.
Witassek: Materials Science Forum Vol. 273-275 (1998) p.277 [7] M.
Introduction Contrary to traditional engineering load-carrying components and structures made from a single material, combining various engineering materials helps tailoring a structure locally to meet the required performance and cost-efficiency in specific regions of a global structure.
This principle of local engineering with multi-material systems can push weight and cost reduction beyond the limits of traditional design.
Particular candidates for these light-weight advanced multi-material systems are combinations of Al-alloys and ceramic reinforced Al/Alalloys or Al-alloys and Mg-alloys.
Witassek: Materials Science Forum Vol. 273-275 (1998) p.277 [7] M.
Online since: January 2008
Authors: Dae Yong Shin, Yeon Ho Jeong, Cheng Wu Jin, Byung Ho Hwang, Young Gyun Goh, Dong Eun Kim, Kang Yol Lee, Dong Ha Cho, Wie Soo Kang, Hyun Jong Lee, Beom Goo Lee
Oil Removal Using Diethyl Ether Extracted and Ground Kenaf Core
Beom-Goo Lee1, a, Hyun-Jong Lee2, b, Dae-Yong Shin2, c, Yeon-Ho Jeong3, d,
Cheng Wu Jin4, e, Dong-Ha Cho4, f, Kang-Yol Lee4, g, Dong-Eun Kim
4, h,
Wie-Soo Kang4, i, Yong-Gyun Goh
5, j and Byung-Ho Hwang6, k
1
Institute of Korea Energy Technology, Seoul, 153-772, Korea
2
Research Center for Advanced Mineral Aggregate Composite Products, Kangwon National
University, Chunchon, Kangwon-Do, 200-707, Korea
3
Division of Biotechnology, Kangwon National University, Chunchon, Kangwon-Do, 200-701, Korea
4
Division of Agricultural Engineering, Kangwon National University, Chunchon, Kangwon-Do,
200-701, Korea
5
Department of Feed Science and Technology, Kangwon National University, Chunchon,
Kangwon-Do, 200-701, Korea
6
Department of Wood Science and Engineering, Kangwon National University, Chunchon,
Kangwon-Do, 200-701, Korea
a
leebeomgoo@hanmail.net, blhj2361@hanmail.net, cshinmater@hanmail.net
Anthony: Applied Engineering in Agriculture, Vol.10 (1994), p. 357 [10] G.F.
Forum, Vols. 486-487 (2005), p. 574 [15] ASTM Standard D 95-05e1 (ASTM, U.S.A., 2005) [16] B.G.
Forum, Vols. 544-545 (2007), p. 553
Anthony: Applied Engineering in Agriculture, Vol.10 (1994), p. 357 [10] G.F.
Forum, Vols. 486-487 (2005), p. 574 [15] ASTM Standard D 95-05e1 (ASTM, U.S.A., 2005) [16] B.G.
Forum, Vols. 544-545 (2007), p. 553