Wear behavior of carbonitride-treated ploughshares produced from 30MnB5 steel for soil tillage applications

dc.contributor.authorYazici A.
dc.date.accessioned2024-07-22T08:20:13Z
dc.date.available2024-07-22T08:20:13Z
dc.date.issued2011
dc.description.abstractThe effects of gaseous carbonitriding processes on wear characteristics of 30MnB5 steel were investigated. The matrix of the carbonitride treated samples has a better wear resistance compared to the substrates of the conventionally heat-treated sample in laboratory conditions. The carbonitriding treatment condition giving rise to the lowest wear weight loss with the pin-on-disc wear machine was selected in order to harden ploughshare specimens to be tested in field experiments. The carbonitriding process at 860°C, with 0.9% C, and 0.6 m3/h NH 3 for 105 min and quenched in 60°C oil followed by a 60 min tempering process at 140°C decreased 14.65% of total wear weight loss and 26.47% of total wear dimension loss of the ploughshare specimens in comparison to the conventional heat treatment process in field operational conditions. © 2011 Springer Science+Business Media, Inc.
dc.identifier.DOI-ID10.1007/s11041-011-9377-z
dc.identifier.issn15738973
dc.identifier.urihttp://akademikarsiv.cbu.edu.tr:4000/handle/123456789/18056
dc.language.isoEnglish
dc.subjectAbrasion
dc.subjectAgricultural machinery
dc.subjectAgriculture
dc.subjectCarbon nitride
dc.subjectCarbonitriding
dc.subjectHard facing
dc.subjectHeat resistance
dc.subjectNitriding
dc.subjectSteel
dc.subjectWear of materials
dc.subjectCarbonitriding treatment
dc.subjectHeat treatment process
dc.subjectIn-field
dc.subjectLaboratory conditions
dc.subjectmatrix
dc.subjectOperational conditions
dc.subjectPin on disc
dc.subjectsoil tillage
dc.subjectTempering process
dc.subjectWear behaviors
dc.subjectWear characteristics
dc.subjectwear testing
dc.subjectWear weight loss
dc.subjectWear resistance
dc.titleWear behavior of carbonitride-treated ploughshares produced from 30MnB5 steel for soil tillage applications
dc.typeArticle

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