High-hardenability medium-carbon MnCrMoB steel for transmission parts of engineering machinery and manufacturing method of high-hardenability medium-carbon MnCrMoB steel

The invention relates to high-hardenability medium-carbon MnCrMoB steel for transmission parts of engineering machinery. The high-hardenability medium-carbon MnCrMoB steel for the transmission parts of engineering machinery is prepared from the following chemical components in percentage by weight:...

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Main Authors ZHANG XUDONG, YANG GAOCHENG, HUI SHIJIE, WU XIAOLIN, CAO HONGFU, XU XIAOHONG, BAI YUN
Format Patent
LanguageChinese
English
Published 10.08.2021
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Abstract The invention relates to high-hardenability medium-carbon MnCrMoB steel for transmission parts of engineering machinery. The high-hardenability medium-carbon MnCrMoB steel for the transmission parts of engineering machinery is prepared from the following chemical components in percentage by weight: 0.30 to 0.38 percent of C, 0.10 to 0.35 percent of Si, 1.25 to 1.50 percent of Mn, 0.40 to 0.65 percent of Cr, 0.020 to 0.050 percent of Ti, 0.0015 to 0.0040 percent of B, 0.08 to 0.15 percent of Mo, less than or equal to 0.020 percent of S, less than or equal to 0.025 percent of P, less than or equal to 0.20 percent of Cu, less than or equal to 0.04 percent of Al, less than or equal to 0.0020 percent of O and the balance of Fe and inevitable impurities. According to the high-hardenability medium-carbon MnCrMoB steel for the transmission parts of engineering machinery, by adding a proper amount of B, the content of Cr and Mo of alloy is greatly reduced or the content of Ni is eliminated, the production cost is redu
AbstractList The invention relates to high-hardenability medium-carbon MnCrMoB steel for transmission parts of engineering machinery. The high-hardenability medium-carbon MnCrMoB steel for the transmission parts of engineering machinery is prepared from the following chemical components in percentage by weight: 0.30 to 0.38 percent of C, 0.10 to 0.35 percent of Si, 1.25 to 1.50 percent of Mn, 0.40 to 0.65 percent of Cr, 0.020 to 0.050 percent of Ti, 0.0015 to 0.0040 percent of B, 0.08 to 0.15 percent of Mo, less than or equal to 0.020 percent of S, less than or equal to 0.025 percent of P, less than or equal to 0.20 percent of Cu, less than or equal to 0.04 percent of Al, less than or equal to 0.0020 percent of O and the balance of Fe and inevitable impurities. According to the high-hardenability medium-carbon MnCrMoB steel for the transmission parts of engineering machinery, by adding a proper amount of B, the content of Cr and Mo of alloy is greatly reduced or the content of Ni is eliminated, the production cost is redu
Author XU XIAOHONG
WU XIAOLIN
BAI YUN
CAO HONGFU
ZHANG XUDONG
YANG GAOCHENG
HUI SHIJIE
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– fullname: BAI YUN
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DocumentTitleAlternate 一种工程机械传动部件用高淬透性中碳MnCrMoB钢及其制造方法
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RelatedCompanies JIANGYIN XINGCHENG SPECIAL STEEL WORKS CO., LTD
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Snippet The invention relates to high-hardenability medium-carbon MnCrMoB steel for transmission parts of engineering machinery. The high-hardenability medium-carbon...
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SubjectTerms ALLOYS
CASTING
CASTING OF METALS
CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
CHEMISTRY
FERROUS OR NON-FERROUS ALLOYS
METALLURGY
METALLURGY OF IRON
PERFORMING OPERATIONS
POWDER METALLURGY
PROCESSING OF PIG-IRON, e.g. REFINING, MANUFACTURE OFWROUGHT-IRON OR STEEL
TRANSPORTING
TREATMENT IN MOLTEN STATE OF FERROUS ALLOYS
TREATMENT OF ALLOYS OR NON-FERROUS METALS
Title High-hardenability medium-carbon MnCrMoB steel for transmission parts of engineering machinery and manufacturing method of high-hardenability medium-carbon MnCrMoB steel
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