Results of thermomechanical treatment implementation in hammer drop forging industrial process

The study concerns cost-effective realization of Thermomechanical controlled processing (TMCP) in a forging process. The goal of the study was to produce mechanical properties of the steel in as-forged direct-cooled condition equivalent to those of quenched-tempered structural steel with simultaneou...

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Main Author: P. Skubisz
Format: Article
Language:English
Published: Croatian Metallurgical Society 2021-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/357477
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author P. Skubisz
author_facet P. Skubisz
author_sort P. Skubisz
collection DOAJ
description The study concerns cost-effective realization of Thermomechanical controlled processing (TMCP) in a forging process. The goal of the study was to produce mechanical properties of the steel in as-forged direct-cooled condition equivalent to those of quenched-tempered structural steel with simultaneous energy-savings benefits. The results of satisfactory implementation into hammer forging of a complex-geometry made of microalloyed medium-carbon steel 38MnVS6 in industrial conditions are presented. The use of finite element analysis for estimation of proper run of cooling curves and full-scale simulation for reproducible hot deformation and cooling conditions resulted in producing R<sub>m</sub> over 1 120 MPa with elongation reaching 20 %.
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spelling doaj.art-6e41de0f390d4557b590f1675f42aa0c2022-12-22T00:56:36ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762021-01-01601-27174Results of thermomechanical treatment implementation in hammer drop forging industrial processP. Skubisz0AGH University of Science and Technology, Cracow, PolandThe study concerns cost-effective realization of Thermomechanical controlled processing (TMCP) in a forging process. The goal of the study was to produce mechanical properties of the steel in as-forged direct-cooled condition equivalent to those of quenched-tempered structural steel with simultaneous energy-savings benefits. The results of satisfactory implementation into hammer forging of a complex-geometry made of microalloyed medium-carbon steel 38MnVS6 in industrial conditions are presented. The use of finite element analysis for estimation of proper run of cooling curves and full-scale simulation for reproducible hot deformation and cooling conditions resulted in producing R<sub>m</sub> over 1 120 MPa with elongation reaching 20 %.https://hrcak.srce.hr/file/35747738MnVS6hot forgingthermomechanical controlled processingmechanical propertiesmicrostructure
spellingShingle P. Skubisz
Results of thermomechanical treatment implementation in hammer drop forging industrial process
Metalurgija
38MnVS6
hot forging
thermomechanical controlled processing
mechanical properties
microstructure
title Results of thermomechanical treatment implementation in hammer drop forging industrial process
title_full Results of thermomechanical treatment implementation in hammer drop forging industrial process
title_fullStr Results of thermomechanical treatment implementation in hammer drop forging industrial process
title_full_unstemmed Results of thermomechanical treatment implementation in hammer drop forging industrial process
title_short Results of thermomechanical treatment implementation in hammer drop forging industrial process
title_sort results of thermomechanical treatment implementation in hammer drop forging industrial process
topic 38MnVS6
hot forging
thermomechanical controlled processing
mechanical properties
microstructure
url https://hrcak.srce.hr/file/357477
work_keys_str_mv AT pskubisz resultsofthermomechanicaltreatmentimplementationinhammerdropforgingindustrialprocess