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Tempcore Process Simulator to Analyze Microstructural Evolution of Quenched and Tempered Rebar SCIE SCOPUS

Title
Tempcore Process Simulator to Analyze Microstructural Evolution of Quenched and Tempered Rebar
Authors
KIM, YONG TAEPark, Chun SuYi, Hyang JunHan, Sang WookLee, TaekyungMoon, Young Hoon
Date Issued
2019-07
Publisher
MDPI AG
Abstract
Featured Application Proposed process simulator can be widely applied to parameter design of industrial Tempcore process with reduced cost and time. Abstract Tempcore process simulator (TPS) has been developed in this study to analyze the microstructural evolution of quenched and tempered rebar. There has been an increasing need to relate the complex microstructures to the resulting properties of quenched and tempered rebar. However, information on such relationships typically requires precise thermal histories imposed on the workpiece. Therefore, TPS, capable of simulating the Tempcore process, has been developed to produce high-fidelity data. TPS mainly consists of a vacuum induction furnace, pilot rolling mill, box furnace, and cooling unit to simulate shop floor operations. A series of experimental tests were successfully carried out with various parameters, such as reheating temperature, water flow, water pressure, and cooling time. The effects of chemical compositions and cooling time on the microstructural evolution and mechanical properties of quenched and tempered rebar have been analyzed to validate the performance of TPS. The results show that TPS can simulate the Tempcore process with a high degree of fidelity and reliability.
URI
https://oasis.postech.ac.kr/handle/2014.oak/100176
DOI
10.3390/app9142938
ISSN
2076-3417
Article Type
Article
Citation
Applied Sciences-basel, vol. 9, no. 14, 2019-07
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