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Online since: October 2011
Edited by: Eyup Sabri Kayali, G. Göller, Ipek Akin
The Symposium and Annual Meeting of the International Society for Ceramics in Medicine, known as Bioceramics, provides a valuable forum where scientists and clinicians working in the dental and medical fields can discuss the exciting advances made in basic and applied research, and promote new technologies and applications of ceramics in medicine.
In Bioceramics 23, the papers have been categorized into 21 of the most topical and essential themes of ceramics in medicine: including characterization, design and processing technologies, tissue engineering, nanotechnology, surface modification, composites, drug delivery and interdisciplinary studies.
In Bioceramics 23, the papers have been categorized into 21 of the most topical and essential themes of ceramics in medicine: including characterization, design and processing technologies, tissue engineering, nanotechnology, surface modification, composites, drug delivery and interdisciplinary studies.
Online since: January 2005
Edited by: Xiang Yu Zhong, Hiroyasu Saka, T.H. Kim, E.A. Holm, Ya Fang Han, Xi Shan Xie
This indispensable work is the fifth in a series of international conferences devoted to advanced materials and processing.
The purpose of this international conference, PRICM, is to provide a forum for the exchange of technical and scientific information, which is always of great benefit to researchers, manufacuturers and end-users.
The five-volume set is further divided into carefully targeted sections: Advanced Ferrous Alloys & Processing; Light Metals; Intermetallics & High-Temperature Alloys; Composite Materials; Advanced Ceramics; Advanced Nuclear Materials; Layered and Graded Materials; Combustion Synthesis; Electronic Materials; Smart Materials & Systems; Magnetic Materials; Biomaterials; Hydrogen-Absorbing Materials; Advanced Melt Processing, Casting & Joining; Spray Forming & Rapid Prototyping; Superplasticity & Superplastic Forming; Modeling and Simulation of Materials and Processes; Amorphous, Quasicrystalline and Nanocrystalline Materials; Thin-Film Materials & Processing; Grain Boundary, Interface & Surface Engineering; Materials Characterization & Evaluation.
The purpose of this international conference, PRICM, is to provide a forum for the exchange of technical and scientific information, which is always of great benefit to researchers, manufacuturers and end-users.
The five-volume set is further divided into carefully targeted sections: Advanced Ferrous Alloys & Processing; Light Metals; Intermetallics & High-Temperature Alloys; Composite Materials; Advanced Ceramics; Advanced Nuclear Materials; Layered and Graded Materials; Combustion Synthesis; Electronic Materials; Smart Materials & Systems; Magnetic Materials; Biomaterials; Hydrogen-Absorbing Materials; Advanced Melt Processing, Casting & Joining; Spray Forming & Rapid Prototyping; Superplasticity & Superplastic Forming; Modeling and Simulation of Materials and Processes; Amorphous, Quasicrystalline and Nanocrystalline Materials; Thin-Film Materials & Processing; Grain Boundary, Interface & Surface Engineering; Materials Characterization & Evaluation.
Online since: March 2005
Edited by: A. Méndez-Vilas
This special issue of Materials Science Forum contains the papers which were presented at the 1st International Meeting on Applied Physics (APHYS-2003), held in Badajoz (Spain), and more specifically, the selected papers which were presented during the conference sessions on Interfaces in Colloidal and Particulate Systems, covering Imaging Techniques, Microscopy; Nanoscience and Nanotechnology, Bioengineered Materials, Applied Materials Science / Solid State Physics & Chemistry / Advanced and Functional Materials and Semiconductor Materials and Devices.
Applied Physics is seen not really to be a branch of Physics, but rather the application of all of the many branches of Physics to the broad realm of practical problems in Science, Engineering and Industry.
In other words, the Conference specifically encouraged work which applied the techniques, training and culture of Physics to research areas which are usually associated with other scientific and engineering disciplines.
Applied Physics is seen not really to be a branch of Physics, but rather the application of all of the many branches of Physics to the broad realm of practical problems in Science, Engineering and Industry.
In other words, the Conference specifically encouraged work which applied the techniques, training and culture of Physics to research areas which are usually associated with other scientific and engineering disciplines.
Online since: December 2004
Authors: Y. Shi, Guo Xiong Zhang, Hong Wei Zhang
Reverse engineering of free-form surfaces is one of the most challenging technologies in
advanced manufacturing.
Introduction Free form surface manufacturing is a key technology in advanced manufacturing technology.
This practice is called reverse engineering [1] and widely applied in many fields of manufacturing engineering.
(a) Result of Delaunay triangulation (b) NURBS surface Fig.4 The reconstruction result of a workpiece surface Since only the NURBS meets the requirement defined by STEP and is applicable for reverse engineering an algorithm combining triangular Bezier patch-modeling technique with NURBS Advances in Materials Manufacturing Science and Technology 512 modeling technique is developed.
Vickers: Optical Engineering Vol. 32 (1993), p. 2191.
Introduction Free form surface manufacturing is a key technology in advanced manufacturing technology.
This practice is called reverse engineering [1] and widely applied in many fields of manufacturing engineering.
(a) Result of Delaunay triangulation (b) NURBS surface Fig.4 The reconstruction result of a workpiece surface Since only the NURBS meets the requirement defined by STEP and is applicable for reverse engineering an algorithm combining triangular Bezier patch-modeling technique with NURBS Advances in Materials Manufacturing Science and Technology 512 modeling technique is developed.
Vickers: Optical Engineering Vol. 32 (1993), p. 2191.
Online since: December 2013
Preface
The Russian-German Forum on Nanotechnology was held at Tomsk Polytechnic University in May
21-24, 2013.
The major topics that were discussed at the Forum included 1) Synthesis, structure and application of advanced materials; 2) Novel processing for improving materials; 3) Biomedical aspects of nanomaterials.
This special issue of the Advanced Materials Research Journal, named "Nanomaterials for Structural, Functional and Biomedical Applications", contains extended versions of selected papers presented at the Forum and is devoted to the three mentioned main topics covered at the conference.
The organizing Committee of the Russian-German Forum on Nanotechnology would like to thank Tomsk Polytechnic University (Tomsk, Russia) for hosting the Forum as well as for the financial support.
These activities and the exchange of young scientists shall stimulate synergies in nanotechnology to benefit joint advance.
The major topics that were discussed at the Forum included 1) Synthesis, structure and application of advanced materials; 2) Novel processing for improving materials; 3) Biomedical aspects of nanomaterials.
This special issue of the Advanced Materials Research Journal, named "Nanomaterials for Structural, Functional and Biomedical Applications", contains extended versions of selected papers presented at the Forum and is devoted to the three mentioned main topics covered at the conference.
The organizing Committee of the Russian-German Forum on Nanotechnology would like to thank Tomsk Polytechnic University (Tomsk, Russia) for hosting the Forum as well as for the financial support.
These activities and the exchange of young scientists shall stimulate synergies in nanotechnology to benefit joint advance.
Online since: August 2011
Authors: Fei Yu Wang, Yuan Xin Luo, Yong Qin Wang
Dual-coiler is one of the most advanced coiling equipment designed for collecting strips in the rolling mill production line for the purpose of storing/transportation.
Dual-coiler is one of the most advanced coiling equipment in the modern steel making industry as shown in Fig.1.
Mehmet: International Journal of Engineering Science Forum Vol. 43 (2005), p. 472 [6] J.
Micheal: Nonlinear Dynamics Forum Vol. 41(2005), p. 415 [9] Y.
Randall and D.W Kelly: Journal of Mechanical Engineering Science Forum Vol. 212(1998), p. 287 [11] S.
Dual-coiler is one of the most advanced coiling equipment in the modern steel making industry as shown in Fig.1.
Mehmet: International Journal of Engineering Science Forum Vol. 43 (2005), p. 472 [6] J.
Micheal: Nonlinear Dynamics Forum Vol. 41(2005), p. 415 [9] Y.
Randall and D.W Kelly: Journal of Mechanical Engineering Science Forum Vol. 212(1998), p. 287 [11] S.
Online since: September 2013
Authors: Li Hua Wu, Sen Lin Lu, Shi Yun Lu
This article will under the B/S mode architecture to design the teaching resources library of engineering chemistry through resource library and other advanced information technologies.
This article will under B/S mode structure, the modern information technology, and teaching contents of engineering chemistry to realize the design and research of teaching resources library about engineering chemistry.
(1)How to add FCK server control into teaching resource library of engineering chemistry?
The knowledge level engineering chemistry changed among the students.
We can apply B/S mode in the resource library design of engineering chemistry teaching.
This article will under B/S mode structure, the modern information technology, and teaching contents of engineering chemistry to realize the design and research of teaching resources library about engineering chemistry.
(1)How to add FCK server control into teaching resource library of engineering chemistry?
The knowledge level engineering chemistry changed among the students.
We can apply B/S mode in the resource library design of engineering chemistry teaching.
Online since: December 2019
Authors: Zi Xu Guo, Xiao Yu Qin, Da Wei Huang, Xiao Jun Yan
They have been widely used in hot components of the advanced aero-engine, such as the turbine rotor blades and stator vanes.
Qiu, Material science and Engineering A, Forum Vol. 2015
Portella, Materials Science & Engineering A , Forum Vol. 510 (2009) ,pp.273-277
Tanaka, Advanced Materials Research, Forum Vol. 278 (2011) ,pp.19-24
Yue, Materials Science & Engineering A, Forum Vol. 697 (2017)
Qiu, Material science and Engineering A, Forum Vol. 2015
Portella, Materials Science & Engineering A , Forum Vol. 510 (2009) ,pp.273-277
Tanaka, Advanced Materials Research, Forum Vol. 278 (2011) ,pp.19-24
Yue, Materials Science & Engineering A, Forum Vol. 697 (2017)
Online since: November 2014
Preface
2014 Dianchi Advanced Materials Forum was held from July 23 to 25, 2013, at Kunming, China.
This forum was co-sponsored by Kunming University of Science and Technology (KUSY) and Shanghai Insitute of Technology (SIT).
The aim of this Forum is to promote the interactions and cooperations among the scientists, engineers, technicians and students engaged in the field of materials science and engineering.
During the organizing of this Forum, the organizers received 122 manuscripts from the participants.
Hopefully this proceeding would be beneficial to all the participantsof the worshop and and the readers. 2015 Dianchi Advanced Materials Forum will be held in July of 2015 and we are looking forward to meeting more friends at the forthcoming event.
This forum was co-sponsored by Kunming University of Science and Technology (KUSY) and Shanghai Insitute of Technology (SIT).
The aim of this Forum is to promote the interactions and cooperations among the scientists, engineers, technicians and students engaged in the field of materials science and engineering.
During the organizing of this Forum, the organizers received 122 manuscripts from the participants.
Hopefully this proceeding would be beneficial to all the participantsof the worshop and and the readers. 2015 Dianchi Advanced Materials Forum will be held in July of 2015 and we are looking forward to meeting more friends at the forthcoming event.
Online since: September 2025
Authors: Eric Guiot, Alexis Drouin, Frédéric Allibert, Walter Schwarzenbach, Gonzalo Picun
Material characterization indicates potential RDSon reductions of up to 15% or 30% for advanced 1200V SiC MOSFETs and JFETs.
A specific resistance has been improved by all device suppliers through specific engineering of the active layers (channel, contacts, cell pitch,...) and advanced thinning of the substrate down to 100µm.
Igarashi et al., Defect and Diffusion Forum.
Takano et al, in Materials Science Forum, Vol. 1062, pp 273-277 [14] A.
Hild, Journal of Engineering Materials and Technology, July 1996, Vol. 118/343
A specific resistance has been improved by all device suppliers through specific engineering of the active layers (channel, contacts, cell pitch,...) and advanced thinning of the substrate down to 100µm.
Igarashi et al., Defect and Diffusion Forum.
Takano et al, in Materials Science Forum, Vol. 1062, pp 273-277 [14] A.
Hild, Journal of Engineering Materials and Technology, July 1996, Vol. 118/343