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Dry Sliding Wear Behavior of Graphite Particulate Reinforced Al6061 Alloy Composite Materials

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This present paper is an investigation made to study the un-lubricated sliding wear behavior of Al6061 alloy composites reinforced with graphite particulates of size 100-125 μm. The content of graphite in the alloy was varied from 6-9% in steps of 3 wt. %. The liquid metallurgy technique was used to fabricate the composites. A pin-on-disc wear testing machine was used to evaluate the volumetric wear loss, in which a hardened EN32 steel disc was used as the counter face. The results indicated that the volumetric wear loss of the composites was lesser than that of the Al6061 matrix alloy and it further decreased with the increase in graphite content up-to 6 wt.%. For composites containing 9 wt. % of graphite particulates, the volumetric wear loss was more than that of 6wt. % composites, but lesser than base matrix alloy. However, the material loss in terms of wear volume increased with the increase in load and sliding speed, both in case of composites and the alloy.
Title: Dry Sliding Wear Behavior of Graphite Particulate Reinforced Al6061 Alloy Composite Materials
Description:
This present paper is an investigation made to study the un-lubricated sliding wear behavior of Al6061 alloy composites reinforced with graphite particulates of size 100-125 μm.
The content of graphite in the alloy was varied from 6-9% in steps of 3 wt.
%.
The liquid metallurgy technique was used to fabricate the composites.
A pin-on-disc wear testing machine was used to evaluate the volumetric wear loss, in which a hardened EN32 steel disc was used as the counter face.
The results indicated that the volumetric wear loss of the composites was lesser than that of the Al6061 matrix alloy and it further decreased with the increase in graphite content up-to 6 wt.
%.
For composites containing 9 wt.
% of graphite particulates, the volumetric wear loss was more than that of 6wt.
% composites, but lesser than base matrix alloy.
However, the material loss in terms of wear volume increased with the increase in load and sliding speed, both in case of composites and the alloy.

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