The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round Bar

In order to meet the technical requirements of H13ESR large sizes and high-quality mould steel forged round metallographic structure and impact energy, three heat treatment processes were used to trial-produce forged round bar with diameter of 600 mm H13ESR and the inspection results were compared.T...

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Main Author: Li Jin, Zhou Xu, Su Chao, Yan Lei
Format: Article
Language:zho
Published: Editorial Office of Special Steel 2025-02-01
Series:Teshugang
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Online Access:https://www.specialsteeljournal.com/fileup/1003-8620/PDF/2024-00112.pdf
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author Li Jin, Zhou Xu, Su Chao, Yan Lei
author_facet Li Jin, Zhou Xu, Su Chao, Yan Lei
author_sort Li Jin, Zhou Xu, Su Chao, Yan Lei
collection DOAJ
description In order to meet the technical requirements of H13ESR large sizes and high-quality mould steel forged round metallographic structure and impact energy, three heat treatment processes were used to trial-produce forged round bar with diameter of 600 mm H13ESR and the inspection results were compared.The experiments have shown that: online water cooling after forged and spheroidization annealing can obtain metallographic structure NADCA#229—2016 standard AS9 at the center, and the transverse impact energy of KV2 in the center is 9.8 J; The metallographic structure is AS4 at the center by forging online water cooling ,then offline solid solution(solid solution temperature 1 040 ℃-1 060 ℃, water and air cooling alternating quenching) and spheroidization annealing, and the transverse impact energy of KV2 in the center is increased to 18.3 J;The metallographic structure is AS4 at the center by air cooling after forging,then same offline solid solution and spheroidization annealing, and the transverse impact energy of KV2 in the center is increased to 17.4 J.The experiments show that:offline solid solution heat treatment process (solid solution temperature 1 040 ℃-1 060 ℃、water and air cooling alternating quenching), and then spheroidization annealing (850 ℃-870 ℃,730 ℃-750 ℃) can obtain metallographic structure with AS4 at the center and the transverse impact energy of KV2 in the center is increased to 17.4-18.3 J, effectively improving the microstructure and properties of H13ESR steel, meet the technical requirements of high-quality H13ESR large mold steel forging round bar.
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spelling doaj-art-b1594aaaade8426480861b80dd5bd5dc2025-01-20T02:21:39ZzhoEditorial Office of Special SteelTeshugang1003-86202025-02-01461879110.20057/j.1003-8620.2024-00112The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round BarLi Jin, Zhou Xu, Su Chao, Yan Lei01 Deya Special Steel Co.,Ltd., Huangshi 435001, China; 2 Hubei Provincial Key Laboratory of High-quality Special Steel, Huangshi 435001,ChinaIn order to meet the technical requirements of H13ESR large sizes and high-quality mould steel forged round metallographic structure and impact energy, three heat treatment processes were used to trial-produce forged round bar with diameter of 600 mm H13ESR and the inspection results were compared.The experiments have shown that: online water cooling after forged and spheroidization annealing can obtain metallographic structure NADCA#229—2016 standard AS9 at the center, and the transverse impact energy of KV2 in the center is 9.8 J; The metallographic structure is AS4 at the center by forging online water cooling ,then offline solid solution(solid solution temperature 1 040 ℃-1 060 ℃, water and air cooling alternating quenching) and spheroidization annealing, and the transverse impact energy of KV2 in the center is increased to 18.3 J;The metallographic structure is AS4 at the center by air cooling after forging,then same offline solid solution and spheroidization annealing, and the transverse impact energy of KV2 in the center is increased to 17.4 J.The experiments show that:offline solid solution heat treatment process (solid solution temperature 1 040 ℃-1 060 ℃、water and air cooling alternating quenching), and then spheroidization annealing (850 ℃-870 ℃,730 ℃-750 ℃) can obtain metallographic structure with AS4 at the center and the transverse impact energy of KV2 in the center is increased to 17.4-18.3 J, effectively improving the microstructure and properties of H13ESR steel, meet the technical requirements of high-quality H13ESR large mold steel forging round bar.https://www.specialsteeljournal.com/fileup/1003-8620/PDF/2024-00112.pdfonline warter cooling after forged; offine solid solution; water and air cooling alternating quenching; spheroidization annealing; liquid precipitated carbides; metallographic structure
spellingShingle Li Jin, Zhou Xu, Su Chao, Yan Lei
The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round Bar
Teshugang
online warter cooling after forged; offine solid solution; water and air cooling alternating quenching; spheroidization annealing; liquid precipitated carbides; metallographic structure
title The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round Bar
title_full The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round Bar
title_fullStr The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round Bar
title_full_unstemmed The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round Bar
title_short The Effect of Heat Treatment on the Microstructure and Properties of H13ESR Large Mould Steel Forging Round Bar
title_sort effect of heat treatment on the microstructure and properties of h13esr large mould steel forging round bar
topic online warter cooling after forged; offine solid solution; water and air cooling alternating quenching; spheroidization annealing; liquid precipitated carbides; metallographic structure
url https://www.specialsteeljournal.com/fileup/1003-8620/PDF/2024-00112.pdf
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