Stress and Strain Distribution in the Upsetting Process: A Numerical Simulation

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dc.contributor.author Mwema, Fredrick Madaraka
dc.contributor.author Obiko, Japheth
dc.date.accessioned 2021-05-24T11:29:41Z
dc.date.available 2021-05-24T11:29:41Z
dc.date.issued 2021-05
dc.identifier.isbn 978-1-7998-4939-1
dc.identifier.other 10.4018/978-1-7998-4939-1.ch01
dc.identifier.uri https://www.igi-global.com/chapter/stress-and-strain-distribution-in-the-upsetting-process/261191
dc.identifier.uri http://repository.dkut.ac.ke:8080/xmlui/handle/123456789/4730
dc.description.abstract Numerical simulation of metal flow behaviour was studied using DeformTM3D software. The simulation process was done on X20 steel taken from the software database at 1073-1273K temperature, 10mm/s die speed, and 67% height reduction. From the simulation results, forging load, damage, and stress/strain distributions were obtained. The results show that the forging load increased with a decrease in temperature or decreased with an increase in temperature. The maximum damage values increased as the temperature increased. The obtained maximum damage values were 0.42 (1073K), 0.43 (1173K), and 0.45 (1273K). The damage distribution was inhomogeneous in the deformed cylinder. The stress/strain distributions were inhomogeneous in the deformed cylinder. The location of the maximum strain was at the centre of the deformed cylinder while the maximum stress occurred at the die-cylinder contact surfaces. The study showed that flow stress behaviour can be predicted using finite element method. This shows the feasibility of applying the finite element analysis to analyse the forging process. en_US
dc.language.iso en en_US
dc.publisher IGI Global en_US
dc.title Stress and Strain Distribution in the Upsetting Process: A Numerical Simulation en_US
dc.title.alternative Handbook of Research on Advancements in Manufacturing, Materials, and Mechanical Engineering en_US
dc.type Book chapter en_US


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