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The wear mechanisms of a linerless eutectic Al–Si engine subjected to extensive dynamometer testing have been thoroughly investigated using scanning and transmission electron microscopy, focused ion beam milling, optical surface profilometry, X-ray photoemission spectroscopy, and nano-indentation techniques. The as-prepared chemically etched cylinder, which consisted of silicon particles initially...
The sliding wear behavior and microstructural evolution of a linerless eutectic aluminum–silicon combustion engine has been thoroughly investigated. The engine was subjected to nearly 300h of high load, high speed, and high temperature dynamometer testing. The as-prepared cylinder surface, which consisted of silicon particles protruding ∼0.2μm from the matrix, evolved to a microstructure that provides...
Sliding wear behavior of low carbon steel coatings deposited on 319 Al alloy substrates using a plasma transfer wire arc (PTWA) thermal spraying process was studied. The coatings had a layered microstructure consisting of steel splats and FeO veins (0.5–3.0μm thick) between them. Wear tests were performed using a pin-on-disc type wear tester within a load range of 10–75N and a sliding speed range...
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