Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: June 2011
Authors: Norbert Hort, Karl Ulrich Kainer, Florian Pyczak, Thomas Lippmann, Michael Oehring, Mario Salgado, Peter Staron, Felix Beckmann, Andreas Stark, Helmut Eckerlebe, Martin Müller, Andreas Schreyer
This opens up possibilities for a wide range of specific engineering in situ experiments.
The Helmholtz-Zentrum Geesthacht utilizes both neutron and X-ray experiments for engineering material research [4].
Clemens (eds.): Neutrons and synchrotron radiation in engineering materials science, Wiley VCH, Weinheim (2010)
Forum 347–349 (2000) 34–39
Forum 639–642 (2010) 2470–2475
The Helmholtz-Zentrum Geesthacht utilizes both neutron and X-ray experiments for engineering material research [4].
Clemens (eds.): Neutrons and synchrotron radiation in engineering materials science, Wiley VCH, Weinheim (2010)
Forum 347–349 (2000) 34–39
Forum 639–642 (2010) 2470–2475
Online since: March 2020
Authors: Antonio Gilson Barbosa de Lima, Ana Raquel Carmo de Lima, Atacy Maciel de Melo Cavalcante, Francisca Valdeiza de Souza Tavares, Anderson Ferreira Vilela, Luan Pedro Melo Azerêdo, Maria José de Figueiredo
Callister, Jr., Materials science and engineering: an introduction. 7th ed., John Wiley & Sons, Inc., New York, USA (2007)
[3] D.A.
Itaya, Modeling of strain-stress behavior for advanced drying.
Forum 312-315 (2011) 971-976
Forum 353 (2014) 116-120
Doctoral Thesis in Process Engineering, Federal University of Campina Grande, Campina Grande, Brazil 174 (2009).
Itaya, Modeling of strain-stress behavior for advanced drying.
Forum 312-315 (2011) 971-976
Forum 353 (2014) 116-120
Doctoral Thesis in Process Engineering, Federal University of Campina Grande, Campina Grande, Brazil 174 (2009).
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: December 2024
Authors: Roman Vakulenko, Viktoriia D. Kulynych, Iurii V. Savchenko, Oleksandr Shapoval
Although the thermal engineering calculations are considered the determining factors [1-3], the ability to achieve the required degree of flaring is also crucial.
Shyliaiev, Calculation of plate-beam systems by method of boundary elements, International Journal of Engineering and Technology(UAE), 7(2) (2018) 238-241.
Kukhar, Designing and researching of the equipment for cutting by breaking of rolled stock, The International Journal of Advanced Manufacturing Technology, 109(9-12) (2020) 2457-2464
Tkach, Resource-Saving technology of manufacturing of semifinished products from intermetallic γ-TiAl alloys intended for aviation engineering, Materials Science, 55(6) (2020) 908-914
Hrudkina, "Investigation of new method of large ingots forging based on upsetting of workpieces with ledges", International Journal of Advanced Manufacturing Technology, 122(3–4) (2022) 1383-1394
Shyliaiev, Calculation of plate-beam systems by method of boundary elements, International Journal of Engineering and Technology(UAE), 7(2) (2018) 238-241.
Kukhar, Designing and researching of the equipment for cutting by breaking of rolled stock, The International Journal of Advanced Manufacturing Technology, 109(9-12) (2020) 2457-2464
Tkach, Resource-Saving technology of manufacturing of semifinished products from intermetallic γ-TiAl alloys intended for aviation engineering, Materials Science, 55(6) (2020) 908-914
Hrudkina, "Investigation of new method of large ingots forging based on upsetting of workpieces with ledges", International Journal of Advanced Manufacturing Technology, 122(3–4) (2022) 1383-1394
Online since: May 2011
Authors: Bao Yu Wang, Ning Zhang, Zheng Huan Hu
As one part of the advanced near net shape technology, the CWR technique is a new process and technology which forms various shaft parts by rolling.
You et.al: Materials Science Forum Vols.475-479(2005), p. 3003-3006
[5] Hongjun Lv, Caogen Yao, Kaifeng Zhang et.al: Materials for Mechanical Engineering Vol. 27(1) (2003), p. 15-17, in Chinese
Du et.al: Materials Science and Engineering A.
[11] Haiyan Zhang, Shihong Zhang, Weihong Zhang et.al: Journal of Plasticity Engineering Vol. 14(4) (2007), p. 69-75, in Chinese.
You et.al: Materials Science Forum Vols.475-479(2005), p. 3003-3006
[5] Hongjun Lv, Caogen Yao, Kaifeng Zhang et.al: Materials for Mechanical Engineering Vol. 27(1) (2003), p. 15-17, in Chinese
Du et.al: Materials Science and Engineering A.
[11] Haiyan Zhang, Shihong Zhang, Weihong Zhang et.al: Journal of Plasticity Engineering Vol. 14(4) (2007), p. 69-75, in Chinese.
Online since: April 2014
Preface
The International Conference on Structures and Building Materials (ICSBM) is
the premier forum for the presentation of new advances and research results
in the fields of civil engineering and materials.
This conference series bring together international scientific community, academics and practitioners, researchers and students and provide an opportunity to discuss and share recent advances in both research and practice about all aspects of building materials and diagnostics of civil engineering, building, structures and geotechnics.
The book is divided into 24 chapters, including Structural Engineering, Monitoring and Control of Structures, Structural Rehabilitation, Retrofitting and Strengthening, Reliability and Durability of Structures, Disaster Prevention and Mitigation, Bridge Engineering, Geotechnical and Geological Engineering, Tunnel, Subway and Underground Facilities, Seismic Engineering, Roads, Railway Engineering and Traffic Engineering, Hydrology, Coastal and Hydraulic Engineering, Computational Mechanics and Mathematical Modeling, Construction Technology, Project Management and Engineering Management, Architectural Design and Its Theory, Urban Planning and Design, Landscape Planning and Design, Architectural Environment, Eco-Building and Green Building, Building Energy Saving Technology, Construction Materials Research, Materials Science, Data and Signal Processing, Environmental Engineering and Wastewater Treatment, etc.
This book will not only provide the readers a broad overview of the latest advances but also provide the researchers a valuable summary and reference in this field.
This conference series bring together international scientific community, academics and practitioners, researchers and students and provide an opportunity to discuss and share recent advances in both research and practice about all aspects of building materials and diagnostics of civil engineering, building, structures and geotechnics.
The book is divided into 24 chapters, including Structural Engineering, Monitoring and Control of Structures, Structural Rehabilitation, Retrofitting and Strengthening, Reliability and Durability of Structures, Disaster Prevention and Mitigation, Bridge Engineering, Geotechnical and Geological Engineering, Tunnel, Subway and Underground Facilities, Seismic Engineering, Roads, Railway Engineering and Traffic Engineering, Hydrology, Coastal and Hydraulic Engineering, Computational Mechanics and Mathematical Modeling, Construction Technology, Project Management and Engineering Management, Architectural Design and Its Theory, Urban Planning and Design, Landscape Planning and Design, Architectural Environment, Eco-Building and Green Building, Building Energy Saving Technology, Construction Materials Research, Materials Science, Data and Signal Processing, Environmental Engineering and Wastewater Treatment, etc.
This book will not only provide the readers a broad overview of the latest advances but also provide the researchers a valuable summary and reference in this field.
Online since: May 2020
Authors: Yu.M. Berezhnoi, V.M. Lipkin, D.N. Kuznetsov, O.N. Romanova
Study of the chemical composition of copper powders obtained from ammonia electrolytes containing in its composition polyacrylamide and polyvinylpyrrolidone showed that, in the powders of copper obtained from amacater elektrolitov with advanced introduced into the solution of polyacrylamide there is a decrease in the content of oxygen (Fig 4 a) relative to the powders obtained from the electrolyte does not contain its composition of water-soluble polymers (figure 4 b).
Lipkin, Effect of substrate nature and electrolysis modes on ultramicron and nanosized electrolytic powders formation regularities, Materials Science Forum. 843 (2016) 22-27
Yang, Electrochemistry during efficient copper recovery from complex electronic waste using ammonia based solutions, Frontiers of Chemical Science and Engineering. 11(3) (2016) 308–316
Lachin, The Mechanism of Water-Soluble Polymer Аdditives and Parameters of the Pulse Electrolysis Effect on the Size Distribution of the Electrolytic Copper Powder, Materials Science Forum. 870(2016) 636–641
International Review of Electrical Engineering (IREE). 10(3) (2015) 381-389.
Lipkin, Effect of substrate nature and electrolysis modes on ultramicron and nanosized electrolytic powders formation regularities, Materials Science Forum. 843 (2016) 22-27
Yang, Electrochemistry during efficient copper recovery from complex electronic waste using ammonia based solutions, Frontiers of Chemical Science and Engineering. 11(3) (2016) 308–316
Lachin, The Mechanism of Water-Soluble Polymer Аdditives and Parameters of the Pulse Electrolysis Effect on the Size Distribution of the Electrolytic Copper Powder, Materials Science Forum. 870(2016) 636–641
International Review of Electrical Engineering (IREE). 10(3) (2015) 381-389.
Online since: March 2007
Authors: Qiang Wang, Zhi Min Zhang, X. Zhang, B.C. Li
Zhang
4,d
1,2,3
Department of Materials Science & Engineering, North University of China, Taiyuan 030051,
P.R.
China 4 Engineering Technology Research Center for Integrated Precision Forming of Shanxi Province, Taiyuan 030051, P.R.
A379 (2004), p258-263 [2] Yu Yoshida, Keita Arai, Shota Itoh, Shigeharu Kamado, Yo Kojima: Science and Technology of Advanced Materials, 6(2005), p185-194 [3] Chino Y, Mabuchi M: Adv Eng Mater 2001;3(12):p981 [4] M.T.Perez-Prado, J.A.del Valle, J.M.Contreras, O.A.Ruano: Scripta Mater 50(2004), p661 [5] Watanabe, Hiroyuki; Mukai, et al.
Forum Vol. 488-489 (2005), p539 [8] Mukai T, Watanabe H, Nieh TG: MRS Symposium Proceedings, Vol. 601 (2000), p291 [9] Galiyev A, Kaybishev RO, Gottstein G: Acta Mater 49(2001), p1199 [10] Koike J, Kobayashi T, Mukai T, Watanabe H, Suzaki M, Maruyama K: Acta Mater 2003; 51(7): p2055 [11] Kanichi Hatsukano, Kunio Matsuzaki, Toru Shimizu, Kichitaro Shinozaki.
Forum, vol.488-489 (2005), p487 [12] Matsumoto Ryo, Osakada Kozo: Mater.
China 4 Engineering Technology Research Center for Integrated Precision Forming of Shanxi Province, Taiyuan 030051, P.R.
A379 (2004), p258-263 [2] Yu Yoshida, Keita Arai, Shota Itoh, Shigeharu Kamado, Yo Kojima: Science and Technology of Advanced Materials, 6(2005), p185-194 [3] Chino Y, Mabuchi M: Adv Eng Mater 2001;3(12):p981 [4] M.T.Perez-Prado, J.A.del Valle, J.M.Contreras, O.A.Ruano: Scripta Mater 50(2004), p661 [5] Watanabe, Hiroyuki; Mukai, et al.
Forum Vol. 488-489 (2005), p539 [8] Mukai T, Watanabe H, Nieh TG: MRS Symposium Proceedings, Vol. 601 (2000), p291 [9] Galiyev A, Kaybishev RO, Gottstein G: Acta Mater 49(2001), p1199 [10] Koike J, Kobayashi T, Mukai T, Watanabe H, Suzaki M, Maruyama K: Acta Mater 2003; 51(7): p2055 [11] Kanichi Hatsukano, Kunio Matsuzaki, Toru Shimizu, Kichitaro Shinozaki.
Forum, vol.488-489 (2005), p487 [12] Matsumoto Ryo, Osakada Kozo: Mater.
Online since: March 2007
Authors: Stéphane Godet, You Liang He, John J. Jonas
Jonas1, c
1
Department of Metals and Materials Engineering, McGill University, 3610 University Street,
Montreal, H3A 2B2, Canada
2
Département des Sciences des Matériaux et des Procédés - IMAP, Université catholique de
Louvain, Place Sainte Barbe 2, B-1348 Louvain-la-Neuve, Belgium
a
youliang.he@elf.mcgill.ca, bgodet@imap.ucl.ac.be, cjohn.jonas@mcgill.ca
Keywords: TRIP steel, thermomechanical processing, variant selection, Rodrigues-Frank space,
Kurdjumov-Sachs, Nishiyama-Wassermann.
It is expected more advanced crystal plasticity models would provide more accurate predictions of the active slips.
Acknowledgements The authors are grateful to the Natural Sciences and Engineering Research Council of Canada and to the FNRS and FRFC of Belgium (SG) for financial support.
Forum Vol. 495-497 (2005), p. 345 [6] F.
Forum Vol. 157-162 (1994), p. 1641 [8] F.
It is expected more advanced crystal plasticity models would provide more accurate predictions of the active slips.
Acknowledgements The authors are grateful to the Natural Sciences and Engineering Research Council of Canada and to the FNRS and FRFC of Belgium (SG) for financial support.
Forum Vol. 495-497 (2005), p. 345 [6] F.
Forum Vol. 157-162 (1994), p. 1641 [8] F.
Online since: March 2006
Authors: Taek Kyun Jung, Mok Soon Kim, Sung Yi, Dong Suk Lee, Si Joon Noh
Synthesis and Properties of Bulk Amorphous/Nanocrystalline
Aluminum Alloy Composites
Si-Joon Noh1 , Taek-Kyun Jung1 , Dong-Suk Lee
1
, Mok-Soon Kim
1, a
and Sung Yi2, b
1
School of Materials Science and Engineering, Inha University, Incheon 402-751, Korea
2
Dept. of Mechanical and Materials Engineering, Portland State University, Portland, OR 97207
USA
a
mskim@inha.ac.kr, bsungyi@cecs.pdx.edu
Keywords: Amorphous, Nano Crystalline, Al Composite, Microstructure, Mechanical Property
Abstract.
Introduction Al based amorphous and nanocrystalline materials are attractive for usage in advanced structural applications including high-performance automotive components since they have enhanced mechanical property compared to the conventional coarse-grained Al alloys [1, 2].
Forum Vols. 475-479 (2005), p. 3493 [4] W.Y.
Forum Vols. 486-487 (2005), p. 411 0.0 0.2 0.4 0.6 0.8 1.0 0.4 0.6 0.8 1.0 1.2 1.4 1.6 Maximum compressive strength (GPa) Volume fraction of Al-Fe based alloy (Vf) 0.00.20.40.60.81.0 0 5 10 15 20 25 30 Compressive plastic strain (%) Volume fraction of Al-Fe based alloy (Vf)
Introduction Al based amorphous and nanocrystalline materials are attractive for usage in advanced structural applications including high-performance automotive components since they have enhanced mechanical property compared to the conventional coarse-grained Al alloys [1, 2].
Forum Vols. 475-479 (2005), p. 3493 [4] W.Y.
Forum Vols. 486-487 (2005), p. 411 0.0 0.2 0.4 0.6 0.8 1.0 0.4 0.6 0.8 1.0 1.2 1.4 1.6 Maximum compressive strength (GPa) Volume fraction of Al-Fe based alloy (Vf) 0.00.20.40.60.81.0 0 5 10 15 20 25 30 Compressive plastic strain (%) Volume fraction of Al-Fe based alloy (Vf)