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Online since: April 2019
Authors: Korkiat Laokor, Bunyong Chongthairungruang, Sansot Panich
Panicha,*
aDepartment of Production Engineering, King Mongkut’s University of Technology North Bangkok, Bangsue, Bangkok, 10800, Thailand.
bProduction and Engineering Division, Chong Thai Rung Ruang Co., Ltd.
The author would like to thank Thai German Graduate School of Engineering (TGGS) and Center of Innovation in Design and Engineering for Manufacturing (Col-DEM) for the Optical Strain Measurement system (AutoGrid-Vialux) and the Laser cutting Machine, respectively.
Finally, the authors are thankful to Department of Production Engineering, Faculty of Engineering, King Mongkut’s University of Technology North Bangkok (KMUTNB) to given time and supporting the research facilities.
Liewald, et al., Experimental and Numerical Formability Analysis of Advanced High Strength Steel for Deep Drawing using the Nonlinear Strain Path Forming Limit.
bProduction and Engineering Division, Chong Thai Rung Ruang Co., Ltd.
The author would like to thank Thai German Graduate School of Engineering (TGGS) and Center of Innovation in Design and Engineering for Manufacturing (Col-DEM) for the Optical Strain Measurement system (AutoGrid-Vialux) and the Laser cutting Machine, respectively.
Finally, the authors are thankful to Department of Production Engineering, Faculty of Engineering, King Mongkut’s University of Technology North Bangkok (KMUTNB) to given time and supporting the research facilities.
Liewald, et al., Experimental and Numerical Formability Analysis of Advanced High Strength Steel for Deep Drawing using the Nonlinear Strain Path Forming Limit.
Online since: July 2013
AMMIS2013 provided a forum for academic scientists, leading engineers, industry
researchers and scholar students to exchange and share their experiences and
research results.
The editor hopes that this book will provide readers a broad overview of the latest advances on Applied Mechanics, Mechatronics and Intelligent System.
The editor hopes that this book will provide readers a broad overview of the latest advances on Applied Mechanics, Mechatronics and Intelligent System.
Online since: April 2010
Authors: Jae Cheul Park, Seong Jong Kim
The Effect of Traveling and Rotation Speeds on Mechanical Properties
During Friction Stir Welding of Dissimilar Al Alloys
Jae-Cheul Park1, a and Seong-Jong Kim2, b
1, 2Division of marine system engineering, Mokpo Maritime University
Mokpo City, Jeonnam, 530-729, South Korea
a
romagain@mmu.ac.kr,
b
ksj@mmu.ac.kr
Keywords: Friction stir welding(FSW), Dissimilar Al alloy, Traveling speed, Rotating speed,
Mechanical property, Optimum FSW condition
Abstract.
The onion ring shape was formed by the material on the advancing side, which was identical in the rotating and traveling directions, while welding dissimilar alloys.
More investigation into the effect of the advancing side is required in FSW of dissimilar alloys such as steel and light metal.
Forum Vol. 510-511 (2006), p. 162
Forum Vols. 426-432, (2003), p. 2891
The onion ring shape was formed by the material on the advancing side, which was identical in the rotating and traveling directions, while welding dissimilar alloys.
More investigation into the effect of the advancing side is required in FSW of dissimilar alloys such as steel and light metal.
Forum Vol. 510-511 (2006), p. 162
Forum Vols. 426-432, (2003), p. 2891
Online since: September 2025
Authors: Julian Zöcklein, Johannes Steiner, Jonas Ihle, Sven Strüber, Peter J. Wellmann
In principle, X-ray in-situ visualization methods in 2D and 3D [11-13] have been demonstrated since many years, but only few growth facilities are using these advanced methods.
In addition, also the heat conductivity of the source material has been studied using advanced physical models [4, 16].
Zhmakin, Mat.Sci.Forum, 264-268, 61 (1998) [8] M.
Wellmann, Advanced Engineering Materials, ja, 1900778 (2019) [14] M.
Wellmann, Materials Science Forum, 924, 245 (2018)
In addition, also the heat conductivity of the source material has been studied using advanced physical models [4, 16].
Zhmakin, Mat.Sci.Forum, 264-268, 61 (1998) [8] M.
Wellmann, Advanced Engineering Materials, ja, 1900778 (2019) [14] M.
Wellmann, Materials Science Forum, 924, 245 (2018)
Online since: July 2011
Authors: Francisco de Sales Martín Fernández, Lorenzo Sevilla Hurtado, María Jesús Martín Sánchez
Currently, the Manufacturing Engineering Department of the UMA has distributed its teaching in two Faculties: the Engineering Faculty (ETSII) and the Polytechnic Faculty (EPS).
Subjects of the Department of Manufacturing Engineering of the UMA Industrial Engineer Faculty Credits Mechanical Manufacturing Technology ETSII 4,5 Machining and Computer Assisted Manufacturing ETSII 6 Metrology and Manufacturing Processes ETSII 6 Welding ETSII 6 Industrial Organisation Engineer Faculty Credits Mechanical Manufacturing Technology ETSII 4,5 Machining and Computer Assisted Manufacturing ETSII 6 Manufacturing Quality Engineering ETSII 6 Technical Industrial Engineer Faculty Credits Mechanical Technology EPS 6 Manufacturing Technology EPS 6 Quality Technology EPS 6 Technical Engineer in Industrial Design Faculty Credits Industrial Processes EPS 9 Quality Technology EPS 6 Manufacturing Design EPS 6 Master in Manufacturing Engineering Faculty Credits Manufacturing Engineering Elements EPS 5 Machining Processes Engineering EPS 5 Processes Engineering with Material Conservation EPS 5 Computing applications in Manufacturing Engineering EPS 5 Industrial Metrology EPS 5 Techniques
in Quality Engineering EPS 5 Planning and Analysis of Production Systems EPS 5 Advanced Analysis Methodology in Manufacturing Processes EPS 5 Master in teaching Staff Faculty Credits Technology and Industrial Processes - 3 Methodology The present experience has been developed as a culmination of a previous group of activities included in an Educational Innovation Project for the EHEA Convergence of the University of Malaga.
Jaen: B-Learning with engineering students in computer science courses.
Cano: Implantation of virtual practices about materials processing in the Manufacturing Engineering Department of the University of Malaga, Materials Science Forum, Vol. 625 (2009,) p. 51
Subjects of the Department of Manufacturing Engineering of the UMA Industrial Engineer Faculty Credits Mechanical Manufacturing Technology ETSII 4,5 Machining and Computer Assisted Manufacturing ETSII 6 Metrology and Manufacturing Processes ETSII 6 Welding ETSII 6 Industrial Organisation Engineer Faculty Credits Mechanical Manufacturing Technology ETSII 4,5 Machining and Computer Assisted Manufacturing ETSII 6 Manufacturing Quality Engineering ETSII 6 Technical Industrial Engineer Faculty Credits Mechanical Technology EPS 6 Manufacturing Technology EPS 6 Quality Technology EPS 6 Technical Engineer in Industrial Design Faculty Credits Industrial Processes EPS 9 Quality Technology EPS 6 Manufacturing Design EPS 6 Master in Manufacturing Engineering Faculty Credits Manufacturing Engineering Elements EPS 5 Machining Processes Engineering EPS 5 Processes Engineering with Material Conservation EPS 5 Computing applications in Manufacturing Engineering EPS 5 Industrial Metrology EPS 5 Techniques
in Quality Engineering EPS 5 Planning and Analysis of Production Systems EPS 5 Advanced Analysis Methodology in Manufacturing Processes EPS 5 Master in teaching Staff Faculty Credits Technology and Industrial Processes - 3 Methodology The present experience has been developed as a culmination of a previous group of activities included in an Educational Innovation Project for the EHEA Convergence of the University of Malaga.
Jaen: B-Learning with engineering students in computer science courses.
Cano: Implantation of virtual practices about materials processing in the Manufacturing Engineering Department of the University of Malaga, Materials Science Forum, Vol. 625 (2009,) p. 51
Online since: August 2021
Authors: Elena N. Soldatkina, Ksenia N. Gavarieva, Renat V. Gavariev
Series: Materials Science and Engineering. 240 (2017) 012019
Borisade, Zinc-aluminum (ZA-27)-based metal matrix composites: a review article of synthesis, reinforcement, microstructural, mechanical, and corrosion characteristics, International Journal of Advanced Manufacturing Technology. 100(1-4) (2019) 373-380
Series: Materials Science and Engineering. 570 (2019) 012039
Series: Materials Science and Engineering. 570 (2019) 012072
Series: Materials Science and Engineering. 969 (2020) 012021
Borisade, Zinc-aluminum (ZA-27)-based metal matrix composites: a review article of synthesis, reinforcement, microstructural, mechanical, and corrosion characteristics, International Journal of Advanced Manufacturing Technology. 100(1-4) (2019) 373-380
Series: Materials Science and Engineering. 570 (2019) 012039
Series: Materials Science and Engineering. 570 (2019) 012072
Series: Materials Science and Engineering. 969 (2020) 012021
Online since: April 2017
Authors: Mohd Ariff Azmah Hanim, Sallehuddin Muhammad, Astuty Amrin, Ayad Omran Abdalla
Azmah Hanim2, d
1UTM Razak School of Engineering & Advanced Technology, Universiti Teknologi Malaysia, 54100, Kuala Lumpur, Malaysia
2Department of Mechanical and Manufacturing Engineering, Universiti Putra Malaysia, 43300, Serdang, Malaysia
aoaayad2@live.utm.my*, bastuty@utm.my, csallehuddin.kl@utm.my, dazmah@eng.upm.edu.my
Keywords: Fe addition, Ti-alloy, Cost reduction, β - stabilizing alloying elements.
Therefore, Ti-alloys have been commonly used in many engineering applications, such as aerospace, marine, automotive, and petroleum industries [5, 6].
Miracle, Microstructure engineering of titanium alloys via small boron additions, Int.
Forum. 426-432 (2003) 643-648
Antonsson, Handbook of Mechanical Engineering, Springer, 2009
Therefore, Ti-alloys have been commonly used in many engineering applications, such as aerospace, marine, automotive, and petroleum industries [5, 6].
Miracle, Microstructure engineering of titanium alloys via small boron additions, Int.
Forum. 426-432 (2003) 643-648
Antonsson, Handbook of Mechanical Engineering, Springer, 2009
Online since: December 2014
This conference series
provides a forum for accessing to the up-to-date knowledge from both industrial and academic
worlds and allows for the free exchange of ideas and challenges faced by these two key
stakeholders and encourage future collaboration between these groups.
Studies presented in this book cover these topics: Metals and Alloys; Composite Materials and Applications; Chemical Materials, Bio-Materials, and Energy Materials; Building Materials and Construction Technology; Material Processing, Testing and Monitoring Technology; Advanced Design and Advanced Manufacturing Technology; Mechanical Dynamics, Structural Strength, Reliability and Risk Analysis and Assessment; Vibration, Sound, Noise Analysis and Control; CAD / CAM / CAE; Mechatronics, Industrial Robots, Automation and Control Technologies; Measurement Technology, Instruments and Sensors, Detection Technologies and Methodologies; Electronics, Circuit Technology and Electrics; Computer Applications and Mathematical Modeling, Intelligent Algorithms and Optimization; Industrial Engineering, Production Management, Operations, Quality and Control; Engineering Education and Engineering Management; etc We would like to express our sincere thanks to all participants for their
Studies presented in this book cover these topics: Metals and Alloys; Composite Materials and Applications; Chemical Materials, Bio-Materials, and Energy Materials; Building Materials and Construction Technology; Material Processing, Testing and Monitoring Technology; Advanced Design and Advanced Manufacturing Technology; Mechanical Dynamics, Structural Strength, Reliability and Risk Analysis and Assessment; Vibration, Sound, Noise Analysis and Control; CAD / CAM / CAE; Mechatronics, Industrial Robots, Automation and Control Technologies; Measurement Technology, Instruments and Sensors, Detection Technologies and Methodologies; Electronics, Circuit Technology and Electrics; Computer Applications and Mathematical Modeling, Intelligent Algorithms and Optimization; Industrial Engineering, Production Management, Operations, Quality and Control; Engineering Education and Engineering Management; etc We would like to express our sincere thanks to all participants for their
Online since: April 2015
Authors: Mohd Mustafa Al Bakri Abdullah, Petru Lazar, Alin Cazac, Andrei Victor Sandhu, Costică Bejinariu
Experimental Determination of Stress and Deformation Pressure in Nanostructuring Copper by Multiaxial Forging Method
Costica BEJINARIU1, a, Alin Marian CAZAC 1,b,
Mohd Mustafa Al Bakri ABDULLAH2,3,c , Andrei Victor SANDU1,3,d,
Petru LAZAR1,e
1 Faculty of Materials Science and Engineering, Gheorghe Asachi Technical University of Iasi, Iasi,
Romania
2Faculty of Engineering Technology, Universiti Malaysia Perlis (UniMAP), 01007, P.O Box 77, D/A Pejabat Pos Besar, Kangar, Perlis, Malaysia
3Center of Excellence Geopolymer & Green Technology (CEGeoGTech), School of Materials Engineering, Universiti Malaysia Perlis, 01000 Kangar, Perlis, Malaysia
acostica.bejinariu@yahoo.com, balin.cazac@yahoo.com,
cmustafa_albakri@unimap.edu.my, dsav@tuiasi.ro, elazar.petru@gmail.com
Keywords: Severe plastic deformation, nanostructure ,multiaxial forging.
[4] Shi Qingnan, Chen Yongjin, Wang Junli, A Study on Characteristics of Microstructures and Orientations of UFG Materials Prepared by SPD Materials Science Forum Vols. 667-669. (2011)
[5] Popa I, Multifunctional Advanced Superfine/nano - Grained Materials Obtained by Severe Plastic Deformation, Brasov (2013)
Materials Science and Engineering A 408(1–2): 141–146. (2005)
Materials Science Forum Vol. 803 (2015) pp 216-221.
[4] Shi Qingnan, Chen Yongjin, Wang Junli, A Study on Characteristics of Microstructures and Orientations of UFG Materials Prepared by SPD Materials Science Forum Vols. 667-669. (2011)
[5] Popa I, Multifunctional Advanced Superfine/nano - Grained Materials Obtained by Severe Plastic Deformation, Brasov (2013)
Materials Science and Engineering A 408(1–2): 141–146. (2005)
Materials Science Forum Vol. 803 (2015) pp 216-221.
Online since: February 2019
Authors: Galina I. Shcherbakova, Maxim S. Varfolomeev, Pavel A. Storozhenko
Leyens, Titanium alloys for aerospace applications, Advanced Engineering Materials. 5 (6) (2003) 419–427
Littlefair, Titanium in biomedical applications - properties and fabrication: a review, Journal of Biomaterials and Tissue Engineering. 5 (2015) 593–619
Kim, Alpha-case formation mechanism on titanium investment castings, Materials Science and Engineering. 405 (2005) 173–177
Kim, Alpha-case reduction mechanism of titanium powder-added investment molds for titanium casting, Journal of Materials Engineering and Performance. 23 (4) (2014) 1415–1423
Lino, Optimization of ceramic shells for contact with reactive alloys, Materials Science Forum. 587-588 (2008) 157–161
Littlefair, Titanium in biomedical applications - properties and fabrication: a review, Journal of Biomaterials and Tissue Engineering. 5 (2015) 593–619
Kim, Alpha-case formation mechanism on titanium investment castings, Materials Science and Engineering. 405 (2005) 173–177
Kim, Alpha-case reduction mechanism of titanium powder-added investment molds for titanium casting, Journal of Materials Engineering and Performance. 23 (4) (2014) 1415–1423
Lino, Optimization of ceramic shells for contact with reactive alloys, Materials Science Forum. 587-588 (2008) 157–161