EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALS

Equal channel angular pressing (ECAP) is a materials processing method that allows very high strains to be imposed, leading to extreme work hardening and microstructure refinement. Cast Cu-2, 5 and 10 wt% Sn alloys in the form of 25mm diameter and 300mm long rods are ECAPed through 12 mm diameter, 1...

Full description

Bibliographic Details
Format: Article
Language:English
Published: Port Said University 2014-03-01
Series:Port Said Engineering Research Journal
Subjects:
Online Access:https://pserj.journals.ekb.eg/article_46801_98ecc528c80788095aadbbdcf338b390.pdf
_version_ 1797653440756711424
collection DOAJ
description Equal channel angular pressing (ECAP) is a materials processing method that allows very high strains to be imposed, leading to extreme work hardening and microstructure refinement. Cast Cu-2, 5 and 10 wt% Sn alloys in the form of 25mm diameter and 300mm long rods are ECAPed through 12 mm diameter, 120o inner angle, and 20o out arc angle die. It is possible to ECAP those alloys for 5, 4, and 1 pass at room temperature, respectively. Grain size decreases of with increasing Sn content and number of ECAP passes. Besides, the ultimate tensile stress, proof strength, and hardness of Cu-2, 5 and 10%Sn alloys increase with Sn content and ECAP pass number. However, UTS of 2%Sn alloy reaches a maximum value after 4 passes, and that of 5%Sn alloy reaches its maximum after 3 passes. Moreover, the elongation percent decreases strongly after first ECAP pass. The elongation of Cu-2 and 5%Sn alloys begin to increase after second pass until third and fifth passes, respectively. On the other hand, the wear resistance is improved by increasing Sn content and number of ECAP pass, especially after first pass. Also, remarkable decrease is observed in surface roughness (Ra) by decreasing Sn content and by increasing the number of ECAP pass.
first_indexed 2024-03-11T16:43:35Z
format Article
id doaj.art-b079cd56d88c434a8d6ee62479ebda45
institution Directory Open Access Journal
issn 1110-6603
2536-9377
language English
last_indexed 2024-03-11T16:43:35Z
publishDate 2014-03-01
publisher Port Said University
record_format Article
series Port Said Engineering Research Journal
spelling doaj.art-b079cd56d88c434a8d6ee62479ebda452023-10-23T06:12:18ZengPort Said UniversityPort Said Engineering Research Journal1110-66032536-93772014-03-01181798910.21608/pserj.2014.4680146801EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALSEqual channel angular pressing (ECAP) is a materials processing method that allows very high strains to be imposed, leading to extreme work hardening and microstructure refinement. Cast Cu-2, 5 and 10 wt% Sn alloys in the form of 25mm diameter and 300mm long rods are ECAPed through 12 mm diameter, 120o inner angle, and 20o out arc angle die. It is possible to ECAP those alloys for 5, 4, and 1 pass at room temperature, respectively. Grain size decreases of with increasing Sn content and number of ECAP passes. Besides, the ultimate tensile stress, proof strength, and hardness of Cu-2, 5 and 10%Sn alloys increase with Sn content and ECAP pass number. However, UTS of 2%Sn alloy reaches a maximum value after 4 passes, and that of 5%Sn alloy reaches its maximum after 3 passes. Moreover, the elongation percent decreases strongly after first ECAP pass. The elongation of Cu-2 and 5%Sn alloys begin to increase after second pass until third and fifth passes, respectively. On the other hand, the wear resistance is improved by increasing Sn content and number of ECAP pass, especially after first pass. Also, remarkable decrease is observed in surface roughness (Ra) by decreasing Sn content and by increasing the number of ECAP pass.https://pserj.journals.ekb.eg/article_46801_98ecc528c80788095aadbbdcf338b390.pdfcu/sn alloysmicrostructuremechanical properties and wear resistance
spellingShingle EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALS
Port Said Engineering Research Journal
cu/sn alloys
microstructure
mechanical properties and wear resistance
title EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALS
title_full EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALS
title_fullStr EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALS
title_full_unstemmed EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALS
title_short EFFECT OF TIN CONTENT AND ECAP PASSES ON THE MECHANICAL PROPERTIES OF Cu/Sn ALLOYS AS BEARING MATERIALS
title_sort effect of tin content and ecap passes on the mechanical properties of cu sn alloys as bearing materials
topic cu/sn alloys
microstructure
mechanical properties and wear resistance
url https://pserj.journals.ekb.eg/article_46801_98ecc528c80788095aadbbdcf338b390.pdf