PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDER

A theoretical description is given for the ploughing of a work-hardening inclined surface by a hemispherical slider. As the indenture is moving horizontally, the grooving force and the depth of penetration are expressed for conditions that correspond to the climbing and descending asperities. Assum...

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Main Author: AHMED ABDUL HUSSAIM ALI
Format: Article
Language:English
Published: University of Baghdad 2008-03-01
Series:Journal of Engineering
Online Access:https://joe.uobaghdad.edu.iq/index.php/main/article/view/2326
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author AHMED ABDUL HUSSAIM ALI
author_facet AHMED ABDUL HUSSAIM ALI
author_sort AHMED ABDUL HUSSAIM ALI
collection DOAJ
description A theoretical description is given for the ploughing of a work-hardening inclined surface by a hemispherical slider. As the indenture is moving horizontally, the grooving force and the depth of penetration are expressed for conditions that correspond to the climbing and descending asperities. Assuming a constant vertical load on the slider, the friction coefficient due to ploughing, FP, is shown to be affected by surface inclination moreover, the limiting value of FP when the vertical load on slider is made infinitely small is shown to be independent upon the asperity angle and the shape of the slider. The treatment has some use in predicting the extent of surface damage in contact profilometry, especially for soft materials in particular, the depth of penetration is shown to be different when climbing or descending a surface whose inclination is  .
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spelling doaj.art-8f5655576d93411994393618180fa1092024-02-25T09:50:00ZengUniversity of BaghdadJournal of Engineering1726-40732520-33392008-03-01140110.31026/j.eng.2008.01.21PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDERAHMED ABDUL HUSSAIM ALI A theoretical description is given for the ploughing of a work-hardening inclined surface by a hemispherical slider. As the indenture is moving horizontally, the grooving force and the depth of penetration are expressed for conditions that correspond to the climbing and descending asperities. Assuming a constant vertical load on the slider, the friction coefficient due to ploughing, FP, is shown to be affected by surface inclination moreover, the limiting value of FP when the vertical load on slider is made infinitely small is shown to be independent upon the asperity angle and the shape of the slider. The treatment has some use in predicting the extent of surface damage in contact profilometry, especially for soft materials in particular, the depth of penetration is shown to be different when climbing or descending a surface whose inclination is  . https://joe.uobaghdad.edu.iq/index.php/main/article/view/2326
spellingShingle AHMED ABDUL HUSSAIM ALI
PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDER
Journal of Engineering
title PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDER
title_full PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDER
title_fullStr PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDER
title_full_unstemmed PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDER
title_short PLOUGHING OF WORK-HARDENING ASPERITIES BY A HEMISPHERICAL SLIDER
title_sort ploughing of work hardening asperities by a hemispherical slider
url https://joe.uobaghdad.edu.iq/index.php/main/article/view/2326
work_keys_str_mv AT ahmedabdulhussaimali ploughingofworkhardeningasperitiesbyahemisphericalslider