Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast iron

To improve the mechanical properties of heavy section ductile cast iron, bismuth (Bi) was introduced into the iron. Five castings with different Bi content from 0 to 0.014 wt.% were prepared; and four positions in the casting from the edge to the center, with different solidification cooling rates,...

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Main Authors: Song Liang, Guo Erjun, Tan Changlong
Format: Article
Language:English
Published: Foundry Journal Agency 2014-03-01
Series:China Foundry
Subjects:
Online Access:http://www.foundryworld.com/uploadfile/2014041054209517.pdf
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spelling doaj-059046272fb84b8ea34685f6711cf9272020-11-24T22:43:50ZengFoundry Journal AgencyChina Foundry1672-64212014-03-01112125131Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast ironSong Liang0Guo Erjun1Tan Changlong2School of Materials Science and Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaSchool of Materials Science and Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaSchool of Materials Science and Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaTo improve the mechanical properties of heavy section ductile cast iron, bismuth (Bi) was introduced into the iron. Five castings with different Bi content from 0 to 0.014 wt.% were prepared; and four positions in the casting from the edge to the center, with different solidification cooling rates, were chosen for microstructure observation and mechanical properties test. The effect of the Bi content on the graphite morphology and mechanical properties of heavy section ductile cast iron were investigated. Results show that the tensile strength, elongation and impact toughness at different positions in the five castings decrease with a decrease in cooling rate. With an increase in Bi content, the graphite morphology and the mechanical properties at the same position are improved, and the improvement of mechanical properties is obvious when the Bi content is no higher than 0.011wt.%. But when the Bi content is further increased to 0.014wt.%, the improvement of mechanical properties is not obvious due to the increase of chunky graphite number and the aggregation of chunky graphite. With an increase in Bi content, the tensile fracture mechanism is changed from brittle to mixture ductile-brittle fracture.http://www.foundryworld.com/uploadfile/2014041054209517.pdfheavy section ductile cast ironBi additioncooling rategraphite morphologymechanical properties
collection DOAJ
language English
format Article
sources DOAJ
author Song Liang
Guo Erjun
Tan Changlong
spellingShingle Song Liang
Guo Erjun
Tan Changlong
Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast iron
China Foundry
heavy section ductile cast iron
Bi addition
cooling rate
graphite morphology
mechanical properties
author_facet Song Liang
Guo Erjun
Tan Changlong
author_sort Song Liang
title Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast iron
title_short Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast iron
title_full Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast iron
title_fullStr Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast iron
title_full_unstemmed Effect of Bi on graphite morphology and mechanical properties of heavy section ductile cast iron
title_sort effect of bi on graphite morphology and mechanical properties of heavy section ductile cast iron
publisher Foundry Journal Agency
series China Foundry
issn 1672-6421
publishDate 2014-03-01
description To improve the mechanical properties of heavy section ductile cast iron, bismuth (Bi) was introduced into the iron. Five castings with different Bi content from 0 to 0.014 wt.% were prepared; and four positions in the casting from the edge to the center, with different solidification cooling rates, were chosen for microstructure observation and mechanical properties test. The effect of the Bi content on the graphite morphology and mechanical properties of heavy section ductile cast iron were investigated. Results show that the tensile strength, elongation and impact toughness at different positions in the five castings decrease with a decrease in cooling rate. With an increase in Bi content, the graphite morphology and the mechanical properties at the same position are improved, and the improvement of mechanical properties is obvious when the Bi content is no higher than 0.011wt.%. But when the Bi content is further increased to 0.014wt.%, the improvement of mechanical properties is not obvious due to the increase of chunky graphite number and the aggregation of chunky graphite. With an increase in Bi content, the tensile fracture mechanism is changed from brittle to mixture ductile-brittle fracture.
topic heavy section ductile cast iron
Bi addition
cooling rate
graphite morphology
mechanical properties
url http://www.foundryworld.com/uploadfile/2014041054209517.pdf
work_keys_str_mv AT songliang effectofbiongraphitemorphologyandmechanicalpropertiesofheavysectionductilecastiron
AT guoerjun effectofbiongraphitemorphologyandmechanicalpropertiesofheavysectionductilecastiron
AT tanchanglong effectofbiongraphitemorphologyandmechanicalpropertiesofheavysectionductilecastiron
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