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Experimental Studies on Al (5.7% Zn) Alloy based Hybrid MMC
Y. M. Shivaprakash
*
, H. C. Ramu
, Chiranjivee
, Roushan Kumar
, Deepak Kumar
*
Corresponding author for this work
Department of Mechanical & Industrial Engineering Manipal Institute of Technology, Manipal
Research output
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Conference article
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peer-review
9
Citations (Scopus)
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INIS
hardness
100%
hybrids
100%
alloys
100%
wear
75%
silicon carbides
75%
wear resistance
75%
surfaces
50%
images
50%
abrasives
50%
lubricating properties
50%
weight
25%
laboratories
25%
investigations
25%
particulates
25%
tensile strength
25%
density
25%
heat treatments
25%
automobiles
25%
microscopes
25%
two-body problem
25%
aluminium alloys
25%
mechanical tests
25%
Engineering
Metal Matrix Composite
100%
Wear Resistance
100%
Delamination
33%
Dry Condition
33%
Base Alloy
33%
Sliding Wear
33%
Ultimate Tensile Strength
33%
Pin-on-Disc
33%
Mechanical Testing
33%
Al Alloy
33%
Alloying Element
33%
Material Science
Wear Resistance
100%
Surface (Surface Science)
66%
Ultimate Tensile Strength
33%
Mechanical Testing
33%
Alloying
33%
Density
33%
Sliding Wear
33%
Aluminum Alloy
33%
Delamination
33%