Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization

In connection with the need to reduce the negative impact of the main defects of the forging ingots, the changes in their thermal state due to endogenous vibrational processing of the melt during crystallization are studied. Vibration processing of an ingot of steel 40XH weighing 7.6 tons was carrie...

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Main Authors: Shcheglov V. M., Tarasevich M. I., Kondratyuk S.Ye., Veis Valentyn I., Parkhomchuk Zhanna V., TokarevaO.O.
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine. Physico- Technological Institute of Metals and Alloys 2020-06-01
Series:Металознавство та обробка металів
Subjects:
Online Access:https://momjournal.com.ua/sites/default/files/MOM2_20-21-28.pdf
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author Shcheglov V. M.
Tarasevich M. I.
Kondratyuk S.Ye.
Veis Valentyn I.
Parkhomchuk Zhanna V.
TokarevaO.O.
author_facet Shcheglov V. M.
Tarasevich M. I.
Kondratyuk S.Ye.
Veis Valentyn I.
Parkhomchuk Zhanna V.
TokarevaO.O.
author_sort Shcheglov V. M.
collection DOAJ
description In connection with the need to reduce the negative impact of the main defects of the forging ingots, the changes in their thermal state due to endogenous vibrational processing of the melt during crystallization are studied. Vibration processing of an ingot of steel 40XH weighing 7.6 tons was carried out in the upper part for 13 min after the completion of casting of steel at a frequency of 50 Hz and an amplitude of 1.5 mm. Based on the results of temperature measurements of the side surfaces in the upper, middle and bottom parts of the vibrated and control ingots, the regression equations were obtained for the change in their thermal state during crystallization for 200 minutes. A regular increase in temperature was established under conditions of endogenous vibration processing up to 30 °С in the upper part of the ingot with its gradual decrease over 100 minutes, and in the middle part by 10-15 °С over 50 minutes. In the bottom part, no temperature differences were noted during the first 25 minutes. In the next time interval, the temperature of the research ingot steadily decreases by 35-50 °C compared with the control. The obtained results indicate an increase in temperature in the upper part of the experimental ingot due to endogenous vibration treatment of the solidifying melt and a regular redistribution of temperature fields along the height of the ingot. An increase in the temperature gradient in the indicated volumes of the ingot as a result of endogenous vibration processing leads to an increase in convection and mixing of the melt, advancement of the crystallization front mainly in the direction of the upper part, the formation of a fine-crystalline structure and a greater length of the bottom cone without contamination with non-metallic inclusions, a decrease in the manifestation of axial segregation and an increase in mechanical properties metal ingot. The use of endogenous vibration treatment of steel ingots during their crystallization is a promising technological solution that opens new opportunities for controlling the processes of crystallization and structure formation, improves the quality of metal properties of large forged ingots.
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spelling doaj.art-2db6d49dc4ad47849bb5cad858214bf02024-02-26T08:31:40ZengNational Academy of Sciences of Ukraine. Physico- Technological Institute of Metals and AlloysМеталознавство та обробка металів2073-95832664-24412020-06-01262212810.15407/mom2020.02.021Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallizationShcheglov V. M. 0Tarasevich M. I. 1Kondratyuk S.Ye. 2https://orcid.org/0000-0002-4978-6740Veis Valentyn I.3https://orcid.org/0000-0001-8889-2303Parkhomchuk Zhanna V.4https://orcid.org/0000-0002-3026-8951TokarevaO.O. 5Physico-Technological Institute of Metals and Alloys of NAS of Ukraine, Kyiv, UkrainePhysico-Technological Institute of Metals and Alloys of NAS of Ukraine, Kyiv, UkrainePhysico-Technological Institute of Metals and Alloys of NAS of Ukraine, Kyiv, UkrainePhysico-Technological Institute of Metals and Alloys of NAS of Ukraine, Kyiv, UkrainePhysico-Technological Institute of Metals and Alloys of NAS of Ukraine, Kyiv, UkrainePhysico-Technological Institute of Metals and Alloys of NAS of Ukraine, Kyiv, UkraineIn connection with the need to reduce the negative impact of the main defects of the forging ingots, the changes in their thermal state due to endogenous vibrational processing of the melt during crystallization are studied. Vibration processing of an ingot of steel 40XH weighing 7.6 tons was carried out in the upper part for 13 min after the completion of casting of steel at a frequency of 50 Hz and an amplitude of 1.5 mm. Based on the results of temperature measurements of the side surfaces in the upper, middle and bottom parts of the vibrated and control ingots, the regression equations were obtained for the change in their thermal state during crystallization for 200 minutes. A regular increase in temperature was established under conditions of endogenous vibration processing up to 30 °С in the upper part of the ingot with its gradual decrease over 100 minutes, and in the middle part by 10-15 °С over 50 minutes. In the bottom part, no temperature differences were noted during the first 25 minutes. In the next time interval, the temperature of the research ingot steadily decreases by 35-50 °C compared with the control. The obtained results indicate an increase in temperature in the upper part of the experimental ingot due to endogenous vibration treatment of the solidifying melt and a regular redistribution of temperature fields along the height of the ingot. An increase in the temperature gradient in the indicated volumes of the ingot as a result of endogenous vibration processing leads to an increase in convection and mixing of the melt, advancement of the crystallization front mainly in the direction of the upper part, the formation of a fine-crystalline structure and a greater length of the bottom cone without contamination with non-metallic inclusions, a decrease in the manifestation of axial segregation and an increase in mechanical properties metal ingot. The use of endogenous vibration treatment of steel ingots during their crystallization is a promising technological solution that opens new opportunities for controlling the processes of crystallization and structure formation, improves the quality of metal properties of large forged ingots.https://momjournal.com.ua/sites/default/files/MOM2_20-21-28.pdfingotsteelvibration treatmentcrystallizationtemperature
spellingShingle Shcheglov V. M.
Tarasevich M. I.
Kondratyuk S.Ye.
Veis Valentyn I.
Parkhomchuk Zhanna V.
TokarevaO.O.
Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization
Металознавство та обробка металів
ingot
steel
vibration treatment
crystallization
temperature
title Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization
title_full Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization
title_fullStr Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization
title_full_unstemmed Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization
title_short Thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization
title_sort thermal state and properties of steel ingot under conditions of endogenous vibration treatment of the melt during crystallization
topic ingot
steel
vibration treatment
crystallization
temperature
url https://momjournal.com.ua/sites/default/files/MOM2_20-21-28.pdf
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AT tarasevichmi thermalstateandpropertiesofsteelingotunderconditionsofendogenousvibrationtreatmentofthemeltduringcrystallization
AT kondratyuksye thermalstateandpropertiesofsteelingotunderconditionsofendogenousvibrationtreatmentofthemeltduringcrystallization
AT veisvalentyni thermalstateandpropertiesofsteelingotunderconditionsofendogenousvibrationtreatmentofthemeltduringcrystallization
AT parkhomchukzhannav thermalstateandpropertiesofsteelingotunderconditionsofendogenousvibrationtreatmentofthemeltduringcrystallization
AT tokarevaoo thermalstateandpropertiesofsteelingotunderconditionsofendogenousvibrationtreatmentofthemeltduringcrystallization