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Indian Experience of Soot Loading on Diesel Engine Oils Performance - Friction, Wear and Fuel Economy Indian Oil Corporation Limited

SAE Technical Papers (1906-current) Available online

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Format:
Conference/Event
Author/Creator:
Acharya, Acharya, author.
Contributor:
Malhotra, R. K.
Subramanian, K.A.
Conference Name:
Symposium on International Automotive Technology 2017 (2017-01-18 : Pune, India)
Language:
English
Physical Description:
1 online resource
Place of Publication:
Warrendale, PA SAE International 2017
Summary:
In India, there is a large population of heavy duty diesel engine powered vehicles such as trucks and buses. Buses are operated under normal speed and load conditions whereas trucks are generally overloaded with high severity on engine oil and lugging operation is common. Higher loading of soot in engine oil results in increase in viscosity of oil and also affects the friction properties and also wear in engine components. The engine oil keep the soot dispersed in order to meet the basic function of lubricating and also keep the engine components clean.To study the impact of soot on diesel engine oil performance tests were conducted on a turbo charged diesel engine conforming to BSIII for 150 / 250 hours using commercial grade oils with increased test severity by changing the engine design parameters such as injection timing and injection pressure, intake air throttling and also operating conditions such as speed, torque, coolant and oil temperatures in order to generate 6% of soot level at the end of 250 hrs for simulating the field conditions of severe truck operation. For establishing the effect of soot loading on engine oil performance and coefficient of friction of engine oil, total 6 numbers of lubricating oil samples were evaluated during the study.This study reports the effect of soot loading on performance of engine oil by analyzing of the engine oil properties and tribological studies using SRV and FZG test rigs. It is observed that there is significant change in engine oil kinematic viscosity with high level of soot loading and increase in co-efficient of friction thereby increasing the fuel consumption and also wear
Notes:
Vendor supplied data
Publisher Number:
2017-26-0052
Access Restriction:
Restricted for use by site license

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