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    Microscopic Studies of Flank Wear on Alumina Tools

    Source: Journal of Tribology:;1991:;volume( 113 ):;issue: 001::page 204
    Author:
    Sukyoung Kim
    ,
    Delcie R. Durham
    DOI: 10.1115/1.2920590
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The flank wear of alumina cutting tools in the machining of annealed steels, AISI 1045 and 4340, which were approximately the same hardness, was studied microscopically. The intent was to establish whether any chemical wear occurred in addition to the mechanical wear on the flank surface. While the hardness of the two steels was essentially the same, the chemistry and the carbide present in the microstructure differed. The flank wear morphology was studied and three regions within the wear land could be defined. The flank wear of the alumina tools, which increased with an increase of cutting speeds, was found to be strongly dependent upon the chemistry of the work material being machined. At the higher speeds, the flank wear when cutting AISI 1045 steel was approximately twice that of AISI 4340. It was observed that different wear mechanisms could be associated with the material being machined. The thermally activated chemical and mechanical wear processes were predominant in the AISI 1045 machining, but the chemical wear was not significant in machining AISI 4340. At lower temperatures, the mechanical wear predominated for both steels. The wear pattern consisted of three regions on the flank wear surface, which varied with cutting speed, cutting distance, and position within the wear land. The surface roughness on the worn tool was also related to these same test parameters. The flank wear appears to depend upon not only the workpiece, but also upon an interfacial oxide layer that forms during cutting. The physical and mechanical properties of the interfacial oxide depend upon its constituents, which relate back to workpiece composition and thermal conditions at the interface.
    keyword(s): Wear , Equipment and tools , Cutting , Steel , Machining , Chemistry , Temperature , Surface roughness , Cutting tools , Mechanical properties AND Mechanisms ,
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      Microscopic Studies of Flank Wear on Alumina Tools

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    https://yetl.yabesh.ir/yetl1/handle/yetl/109326
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    contributor authorSukyoung Kim
    contributor authorDelcie R. Durham
    date accessioned2017-05-08T23:36:52Z
    date available2017-05-08T23:36:52Z
    date copyrightJanuary, 1991
    date issued1991
    identifier issn0742-4787
    identifier otherJOTRE9-28487#204_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/109326
    description abstractThe flank wear of alumina cutting tools in the machining of annealed steels, AISI 1045 and 4340, which were approximately the same hardness, was studied microscopically. The intent was to establish whether any chemical wear occurred in addition to the mechanical wear on the flank surface. While the hardness of the two steels was essentially the same, the chemistry and the carbide present in the microstructure differed. The flank wear morphology was studied and three regions within the wear land could be defined. The flank wear of the alumina tools, which increased with an increase of cutting speeds, was found to be strongly dependent upon the chemistry of the work material being machined. At the higher speeds, the flank wear when cutting AISI 1045 steel was approximately twice that of AISI 4340. It was observed that different wear mechanisms could be associated with the material being machined. The thermally activated chemical and mechanical wear processes were predominant in the AISI 1045 machining, but the chemical wear was not significant in machining AISI 4340. At lower temperatures, the mechanical wear predominated for both steels. The wear pattern consisted of three regions on the flank wear surface, which varied with cutting speed, cutting distance, and position within the wear land. The surface roughness on the worn tool was also related to these same test parameters. The flank wear appears to depend upon not only the workpiece, but also upon an interfacial oxide layer that forms during cutting. The physical and mechanical properties of the interfacial oxide depend upon its constituents, which relate back to workpiece composition and thermal conditions at the interface.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleMicroscopic Studies of Flank Wear on Alumina Tools
    typeJournal Paper
    journal volume113
    journal issue1
    journal titleJournal of Tribology
    identifier doi10.1115/1.2920590
    journal fristpage204
    journal lastpage209
    identifier eissn1528-8897
    keywordsWear
    keywordsEquipment and tools
    keywordsCutting
    keywordsSteel
    keywordsMachining
    keywordsChemistry
    keywordsTemperature
    keywordsSurface roughness
    keywordsCutting tools
    keywordsMechanical properties AND Mechanisms
    treeJournal of Tribology:;1991:;volume( 113 ):;issue: 001
    contenttypeFulltext
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