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Flow Stress of Ti-6Al-4V during Hot Deformation: Decision Tree Modelingopen access

Authors
Lim, Seong-SikLee, Hye-JinSong, Shin-Hyung
Issue Date
Jun-2020
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Keywords
Ti-6Al-4V; hot deformation; decision tree
Citation
Metals, v.10, no.6
Journal Title
Metals
Volume
10
Number
6
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/2782
DOI
10.3390/met10060739
ISSN
2075-4701
Abstract
In this study, the flow stress of Ti-6Al-4V during hot deformation was modeled using a decision tree algorithm. Hot compression experiments for Ti-6Al-4V in a Gleeble-3500 thermomechanical simulator were performed under a strain rate of 0.002-20 s(-1)and temperatures of 575-725 degrees C. After the experiments, flow stress behavior was modeled, first by a traditional Arrhenius type equation, second by utilizing the artificial neural network, and lastly, with the aid of the decision tree algorithm. While the characteristics of measured flow stress were noticeably dependent on the resulting strain rate and temperature, the modeling accuracy regarding the flow stress results of the Arrhenius type equation, neural network approach and decision tree algorithm were compared. The decision tree algorithm predicted the flow stress most effectively.
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