Effect of Grain Refinement on the Endurance Limit of Plain Carbon Steels at Various Strength Levels

The relationship between the endurance limit and ferrite grain size was investigated in a wide range of ferrite grain sizes using smooth specimens of low carbon steel, medium carbon steel and low alloy steel under rotating bending. It was found that the endurance limit of ferritic pearlitic steel cl...

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Veröffentlicht in:TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A 1988/11/25, Vol.54(507), pp.1956-1961
Hauptverfasser: TACHIBANA, Shunichi, KAWACHI, Shunichi, YAMADA, Kunihiro, KUNIO, Takeshi
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Sprache:eng ; jpn
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container_end_page 1961
container_issue 507
container_start_page 1956
container_title TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A
container_volume 54
creator TACHIBANA, Shunichi
KAWACHI, Shunichi
YAMADA, Kunihiro
KUNIO, Takeshi
description The relationship between the endurance limit and ferrite grain size was investigated in a wide range of ferrite grain sizes using smooth specimens of low carbon steel, medium carbon steel and low alloy steel under rotating bending. It was found that the endurance limit of ferritic pearlitic steel clearly shows the Hall-Petch type relationship when the metallurgical parameters, such as chemical compositions and microstructural morphologies, are the same. The endurance limit can be determined by the additive effect of the strength level of matrix ferrite and the grain refinement. The effect of grain refinement on the endurance limit was constant irrespective of the strength level of matrix microstructure.
doi_str_mv 10.1299/kikaia.54.1956
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identifier ISSN: 0387-5008
ispartof Transactions of the Japan Society of Mechanical Engineers Series A, 1988/11/25, Vol.54(507), pp.1956-1961
issn 0387-5008
1884-8338
language eng ; jpn
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source J-STAGE (Free - Japanese); EZB Electronic Journals Library
subjects Carbon Steel
Endurance Limit
Fatigue
Grain Size Dependency
Hall-Petch Relationship
title Effect of Grain Refinement on the Endurance Limit of Plain Carbon Steels at Various Strength Levels
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