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    Measurement of Thickness-Average Residual Stress Near the Edge of a Thin Laser Peened Strip

    Source: Journal of Engineering Materials and Technology:;2003:;volume( 125 ):;issue: 003::page 283
    Author:
    Jon E. Rankin
    ,
    Michael R. Hill
    DOI: 10.1115/1.1584481
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: This paper presents measurements of the thickness-average residual stress imposed by laser peening near the edge of a thin sheet of a common titanium alloy. The slitting (or crack compliance) method was extended beyond its typical form to make residual stress measurements in this geometry. An analytical method was employed to optimize the experiment design for the near-edge, thin material geometry, where the design included the optimal number and position of strain gages and the most effective set of basis functions for stress computation. Two experiments were performed on a titanium strip that had been laser peened near the edge, using an optimal experiment design. Residual stress was found to be large and compressive near the edge of the sheet, with the compressive stress extending over 38% of the laser peened area.
    keyword(s): Lasers , Gages , Stress , Strips , Thickness , Strain gages AND Functions ,
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      Measurement of Thickness-Average Residual Stress Near the Edge of a Thin Laser Peened Strip

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    http://yetl.yabesh.ir/yetl1/handle/yetl/128480
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    contributor authorJon E. Rankin
    contributor authorMichael R. Hill
    date accessioned2017-05-09T00:10:21Z
    date available2017-05-09T00:10:21Z
    date copyrightJuly, 2003
    date issued2003
    identifier issn0094-4289
    identifier otherJEMTA8-27049#283_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/128480
    description abstractThis paper presents measurements of the thickness-average residual stress imposed by laser peening near the edge of a thin sheet of a common titanium alloy. The slitting (or crack compliance) method was extended beyond its typical form to make residual stress measurements in this geometry. An analytical method was employed to optimize the experiment design for the near-edge, thin material geometry, where the design included the optimal number and position of strain gages and the most effective set of basis functions for stress computation. Two experiments were performed on a titanium strip that had been laser peened near the edge, using an optimal experiment design. Residual stress was found to be large and compressive near the edge of the sheet, with the compressive stress extending over 38% of the laser peened area.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleMeasurement of Thickness-Average Residual Stress Near the Edge of a Thin Laser Peened Strip
    typeJournal Paper
    journal volume125
    journal issue3
    journal titleJournal of Engineering Materials and Technology
    identifier doi10.1115/1.1584481
    journal fristpage283
    journal lastpage293
    identifier eissn1528-8889
    keywordsLasers
    keywordsGages
    keywordsStress
    keywordsStrips
    keywordsThickness
    keywordsStrain gages AND Functions
    treeJournal of Engineering Materials and Technology:;2003:;volume( 125 ):;issue: 003
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
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