Surface Erosion of Carbon Steel 1045 During Waterjet Peening

The present study investigates the effect of waterjet treatment on the surface characteristics of the carbon steel 1045. The effect of waterjet treatment parameters namely number of jet passes and pressure was investigated. An increase in the number of jet passes as well as pressure leads to a highe...

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Main Authors: Azmir, Azhari, Schindler, Christian, Nkoumbou, Jhislain, Kerscher, Eberhard
Format: Article
Language:English
Published: Springer US 2014
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/6092/1/fkp-2014-azmir-Surface_Erosion_abs_only.pdf
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author Azmir, Azhari
Schindler, Christian
Nkoumbou, Jhislain
Kerscher, Eberhard
author_facet Azmir, Azhari
Schindler, Christian
Nkoumbou, Jhislain
Kerscher, Eberhard
author_sort Azmir, Azhari
collection UMP
description The present study investigates the effect of waterjet treatment on the surface characteristics of the carbon steel 1045. The effect of waterjet treatment parameters namely number of jet passes and pressure was investigated. An increase in the number of jet passes as well as pressure leads to a higher roughness and more erosion of the surface. The damage features consist of various fracture mechanism modes occurred at the initial and evolved damage stage. The ferrite phase experienced more damage than the pearlite phase. However, the damage was more concentrated along the grain boundaries. The shearing force from the jet lateral flow raised the circumferential rim and created lateral cracks and sub-tunnels which might eventually be removed in the subsequent jet passes. The hardness of the treated specimens increased with an increase in the number of jet passes and pressure.
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spelling UMPir60922018-01-23T01:06:09Z http://umpir.ump.edu.my/id/eprint/6092/ Surface Erosion of Carbon Steel 1045 During Waterjet Peening Azmir, Azhari Schindler, Christian Nkoumbou, Jhislain Kerscher, Eberhard TS Manufactures The present study investigates the effect of waterjet treatment on the surface characteristics of the carbon steel 1045. The effect of waterjet treatment parameters namely number of jet passes and pressure was investigated. An increase in the number of jet passes as well as pressure leads to a higher roughness and more erosion of the surface. The damage features consist of various fracture mechanism modes occurred at the initial and evolved damage stage. The ferrite phase experienced more damage than the pearlite phase. However, the damage was more concentrated along the grain boundaries. The shearing force from the jet lateral flow raised the circumferential rim and created lateral cracks and sub-tunnels which might eventually be removed in the subsequent jet passes. The hardness of the treated specimens increased with an increase in the number of jet passes and pressure. Springer US 2014 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/6092/1/fkp-2014-azmir-Surface_Erosion_abs_only.pdf Azmir, Azhari and Schindler, Christian and Nkoumbou, Jhislain and Kerscher, Eberhard (2014) Surface Erosion of Carbon Steel 1045 During Waterjet Peening. Journal of Materials Engineering and Performance, 23 (5). pp. 1870-1880. ISSN 1059-9495. (Published) http://dx.doi.org/10.1007/s11665-014-0932-9 DOI: 10.1007/s11665-014-0932-9
spellingShingle TS Manufactures
Azmir, Azhari
Schindler, Christian
Nkoumbou, Jhislain
Kerscher, Eberhard
Surface Erosion of Carbon Steel 1045 During Waterjet Peening
title Surface Erosion of Carbon Steel 1045 During Waterjet Peening
title_full Surface Erosion of Carbon Steel 1045 During Waterjet Peening
title_fullStr Surface Erosion of Carbon Steel 1045 During Waterjet Peening
title_full_unstemmed Surface Erosion of Carbon Steel 1045 During Waterjet Peening
title_short Surface Erosion of Carbon Steel 1045 During Waterjet Peening
title_sort surface erosion of carbon steel 1045 during waterjet peening
topic TS Manufactures
url http://umpir.ump.edu.my/id/eprint/6092/1/fkp-2014-azmir-Surface_Erosion_abs_only.pdf
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AT nkoumboujhislain surfaceerosionofcarbonsteel1045duringwaterjetpeening
AT kerschereberhard surfaceerosionofcarbonsteel1045duringwaterjetpeening