Volume is indexed by Thomson Reuters BCI (WoS).This special issue on rapid casting solutions comprises original research papers, review papers, technical papers and notes. It is devoted to the development of important topics in rapid casting technology, and has been published as a special issue in order to highlight selected papers submitted to important international conferences and symposia, plus invited papers from prominent researchers. Rapid prototyping has been around for some twenty years, and is widely used in diverse areas: from the building of aesthetic and functional prototypes to the production of tools and moulds for technological prototypes. Among the various rapid prototyping techniques, three-dimensional printing, polyjet printing, silicon moulding, etc., are used commercially as hybrid rapid casting solutions. This issue provides an overview of the rapid prototyping process for ceramic shells that can be constructed and then joined (as in the conventional process) to give a cavity for the pouring of metal to produce cost-effective prototypes for casting applications. This volume will be welcomed by academics, researchers, industrialists and university students specialising in rapid casting or rapid prototyping, production engineers and others.
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Special topic volume with invited peer reviewed papers only.
PrefaceMetallurgical Affects of Three Dimensional Printing Based Rapid Casting SolutionExperimental Investigations for Silicon Moulding Solution of Plastic ComponentsExperimental Investigations for Rapid Moulding Solution of Plastics Using Polyjet PrintingPerformance of HVOF Sprayed NiCr and Stellite-6 Coatings under Pin on Disc Wear TestingAn Investigation on Wear of Shallow Cryogenic Treated Wire in WedmSurface Modification of High Carbon High Chromium, EN31 and Hot Die Steel Using Powder Mixed EDM ProcessMechanism of Material Deposition from Powder, Electrode and Dielectric for Surface Modification of H11 and H13 Die Steels in EDM ProcessExperimental Investigations for Development of Pattern for Dies Using FDM
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Produktdetaljer

ISBN
9783037852873
Publisert
2012-01-16
Utgiver
Vendor
Trans Tech Publications Ltd
Vekt
400 gr
Høyde
240 mm
Bredde
170 mm
Dybde
5 mm
Aldersnivå
P, UP, 06, 05
Språk
Product language
Engelsk
Format
Product format
Heftet
Antall sider
100

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