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Tribological Investigation of Wear Behavior and Mechanisms in B390 and Sr-Modified B390 Aluminum Alloys under Dry and Wet Conditions Southern Illinois University, School of Mechanical, Aerospac

SAE Technical Papers (1906-current) Available online

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Format:
Book
Conference/Event
Author/Creator:
Kancharla, Sai Krishna, author.
Contributor:
Dierks, Mike
Filip, Peter
Jogineedi, Rohit
Mirzababaei, Saereh
Singireddy, Vishal Reddy
Conference Name:
Automotive Technical Papers (2024-01-01 : Warrendale, Pennsylvania, United States)
Language:
English
Physical Description:
1 online resource cm
Place of Publication:
Warrendale, PA SAE International 2024
Summary:
Wear-resistant, die-cast B390 aluminum represents a relevant material frequently used in the automotive industry. The wear and its relation to the microstructure along with different alloying additives is studied with efforts toward improved performance. Alloying by Sr allows for a lower Fe content helps in mitigating iron needling. This paper addresses wear performance of B390 and Sr-modified B390 alloys, tested against pearlitic cast iron, used for manufacture of piston rings. The wear tests were designed by using an ASTM G99 standardized pin-on-disc protocol at "wet" (motor oil) and "dry" conditions and were performed using a UMT (Bruker) benchtop tester. The polished cross-sections and friction surfaces were studied to identify the microstructural differences and dominating wear mechanisms. Interestingly, the stronger and harder Sr-modified B390 alloys wear more at dry conditions compared to the standard die-cast B390 alloy. This was ascribed to a change in wear mechanisms of the developed friction layer, which had a considerable impact on the observed friction and wear levels, compared to the observed microstructural differences. Also, the presence of thin liquid film under wet testing conditions helped in controlling the materiallubricant interaction and in achieving lower friction levels
Notes:
Vendor supplied data
Publisher Number:
2024-01-5109
Access Restriction:
Restricted for use by site license

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