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    Process Modeling of Orthogonal Cutting by the Rigid-Plastic Finite Element Method

    Source: Journal of Engineering Materials and Technology:;1984:;volume( 106 ):;issue: 002::page 132
    Author:
    K. Iwata
    ,
    K. Osakada
    ,
    Y. Terasaka
    DOI: 10.1115/1.3225687
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: A numerical modeling method for plane strain orthogonal cutting in steady state is developed on the basis of the rigid-plastic finite element method. The methods for determining the material and frictional properties to be used in the model are discussed. The shape of chip, i.e., the thickness and curl, distributions of stress and strain are calculated. Fracture of chip is predicted by combining the present model with the criteria of ductile fracture. The simulated results agree well with the results obtained by the microscale cutting experiment carried out within a scanning electron microscope.
    keyword(s): Finite element methods , Modeling , Cutting , Plane strain , Shapes , Steady state , Thickness , Ductile fracture , Fracture (Process) , Microscale devices , Scanning electron microscopes , Computer simulation AND Stress ,
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      Process Modeling of Orthogonal Cutting by the Rigid-Plastic Finite Element Method

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/98550
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    • Journal of Engineering Materials and Technology

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    contributor authorK. Iwata
    contributor authorK. Osakada
    contributor authorY. Terasaka
    date accessioned2017-05-08T23:18:06Z
    date available2017-05-08T23:18:06Z
    date copyrightApril, 1984
    date issued1984
    identifier issn0094-4289
    identifier otherJEMTA8-26898#132_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/98550
    description abstractA numerical modeling method for plane strain orthogonal cutting in steady state is developed on the basis of the rigid-plastic finite element method. The methods for determining the material and frictional properties to be used in the model are discussed. The shape of chip, i.e., the thickness and curl, distributions of stress and strain are calculated. Fracture of chip is predicted by combining the present model with the criteria of ductile fracture. The simulated results agree well with the results obtained by the microscale cutting experiment carried out within a scanning electron microscope.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleProcess Modeling of Orthogonal Cutting by the Rigid-Plastic Finite Element Method
    typeJournal Paper
    journal volume106
    journal issue2
    journal titleJournal of Engineering Materials and Technology
    identifier doi10.1115/1.3225687
    journal fristpage132
    journal lastpage138
    identifier eissn1528-8889
    keywordsFinite element methods
    keywordsModeling
    keywordsCutting
    keywordsPlane strain
    keywordsShapes
    keywordsSteady state
    keywordsThickness
    keywordsDuctile fracture
    keywordsFracture (Process)
    keywordsMicroscale devices
    keywordsScanning electron microscopes
    keywordsComputer simulation AND Stress
    treeJournal of Engineering Materials and Technology:;1984:;volume( 106 ):;issue: 002
    contenttypeFulltext
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