On the Specifics of Modelling of Rotary Forging Processes
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Published:2017
Issue:1
Volume:17
Page:22-29
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ISSN:1641-8581
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Container-title:Computer Methods in Material Science
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language:en
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Short-container-title:cmms
Author:
Krishnamurthy Bhaskaran,Bylya Olga ,Muir Lisa ,Conway Alastair ,Blackwell Paul
Abstract
Rotary forging process, in spite of its various advantages, has still not reached industrial production scale owing to its complex nature. With the advent of sophisticated finite-element modelling capabilities, it is now possible to make rotary forging more predictable and optimize it for industrial production standards.However, modelling by nature involves a series of assumptions and simplifications that can help us make reasonable predictions. It is important to know the important factors that affect the results, and what compromises can be made, with a genuine understanding of what the compromises will result in. This paper reports some initial findings from our attempt towards robust modelling for the design of the rotary forging process. Herein, we have taken the simple case of rotary upsetting of cylinders using a custom-designed rotary forging machine and modelled it using commercial metal-forming software QForm.
Publisher
AGHU University of Science and Technology Press
Subject
Computer Science Applications,General Materials Science
Cited by
1 articles.
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