Jatana, G. S., Splitter, D. A., Kaul, B., & Szybist, J. P. (2018). Fuel property effects on low-speed pre-ignition. Fuel, 230, 474-482. doi:10.1016/j.fuel.2018.05.060
A. Zahdeh, P. Rothenberger, W. Nguyen, M. Anbarasu, S. Schmuck-Soldan, J. Schaefer, at al, Fundamental approach to investigate pre-ignition in boosted SI engines, in: SAE 2011 World Congress and Exhibition, SAE International, 2011. doi:10.4271/2011-01-0340.
E.J. Passow, P. Sethi, M. Maschewske, J. Bieneman, K. Karrip, P. Truckel, An introduction to how low speed pre ignition affects engine components, in: WCX 17: SAE World Congress Experience, SAE International, 2017. doi:10.4271/2017-01-1042.
[+]
Jatana, G. S., Splitter, D. A., Kaul, B., & Szybist, J. P. (2018). Fuel property effects on low-speed pre-ignition. Fuel, 230, 474-482. doi:10.1016/j.fuel.2018.05.060
A. Zahdeh, P. Rothenberger, W. Nguyen, M. Anbarasu, S. Schmuck-Soldan, J. Schaefer, at al, Fundamental approach to investigate pre-ignition in boosted SI engines, in: SAE 2011 World Congress and Exhibition, SAE International, 2011. doi:10.4271/2011-01-0340.
E.J. Passow, P. Sethi, M. Maschewske, J. Bieneman, K. Karrip, P. Truckel, An introduction to how low speed pre ignition affects engine components, in: WCX 17: SAE World Congress Experience, SAE International, 2017. doi:10.4271/2017-01-1042.
A. Isenstadt, J. German, M. Dorobantu, D. Boggs, T. Watson, Downsized, boosted gasoline engines, Tech. rep., The International Council on Clean Transportation (2016). URL <https://theicct.org/publications/downsized-boosted-gasoline-engines>.
Hu, B., Akehurst, S., & Brace, C. (2015). Novel approaches to improve the gas exchange process of downsized turbocharged spark-ignition engines: A review. International Journal of Engine Research, 17(6), 595-618. doi:10.1177/1468087415599866
Zaccardi, J.-M., & Escudié, D. (2014). Overview of the main mechanisms triggering low-speed pre-ignition in spark-ignition engines. International Journal of Engine Research, 16(2), 152-165. doi:10.1177/1468087414530965
M. Amann, T. Alger, B. Westmoreland, A. Rothmaier, The effects of piston crevices and injection strategy on low-speed pre-ignition in boosted SI engines, in: SAE 2012 World Congress and Exhibition, SAE International, 2012. doi:10.4271/2012-01-1148.
T. Kuboyama, Y. Moriyoshi, K. Morikawa, Visualization and analysis of LSPI mechanism caused by oil droplet, particle and deposit in highly boosted SI combustion in low speed range, in: SAE 2015 World Congress and Exhibition, SAE International, 2015. doi:10.4271/2015-01-0761.
Spicher, U., Gohl, M., Magar, M., & Hadler, J. (2015). The Role of Engine Oil in Low-speed Pre-ignition. MTZ worldwide, 77(1), 60-63. doi:10.1007/s38313-015-0079-6
V.B. Kalaskar, A. Swarts, T. Alger, Impact of engine age and engine hardware on low-speed pre-ignition, in: International Powertrains, Fuels and Lubricants Meeting, SAE International, 2018. doi:10.4271/2018-01-1663.
O. Welling, N. Collings, J. Williams, J. Moss, Impact of lubricant composition on Low-speed Pre-Ignition, in: SAE 2014 World Congress and Exhibition, SAE International, 2014. doi:10.4271/2014-01-1213.
Huang, Y., Li, Y., Zhang, W., Meng, F., & Guo, Z. (2017). 3D simulation study on the influence of lubricant oil droplets on pre-ignition in turbocharged DISI engines. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 232(12), 1677-1693. doi:10.1177/0954407017734695
T. Ito, Y. Abe, J. Tanaka, Lubricating oil droplets in cylinder on abnormal combustion in supercharged SI engine, in: SAE/JSAE Small Engine Technology Conference, SAE International, 2018. doi:10.4271/2018-32-0008.
T. Miyasaka, K. Miura, N. Hayakawa, T. Ishino, A. Iijima, H. Shoji, K. Tamura, T. Utaka, H. Kamano, A study on the effect of a calcium-based engine oil additive on abnormal SI engine combustion, in: SAE/JSAE 2014 Small Engine Technology Conference and Exhibition, SAE International, 2014. doi:10.4271/2014-32-0092.
M.C. Kocsis, T. Briggs, G. Anderson, The impact of lubricant volatility, viscosity and detergent chemistry on low speed pre-ignition behavior, in: WCX 17: SAE World Congress Experience, SAE International, 2017. doi:10.4271/2017-01-0685.
API, Latest oil classifications, [Accessed: 17/10/2019]. https://www.api.org/products-and-services/engine-oil/eolcs-categories-and-classifications/latest-oil-classifications.
Insight, Why ILSAC GF-6?, [Accessed: 25/10/2019]. <https://www.infineuminsight.com/resources/ilsac-gf-6/why-ilsac-gf-6/>.
SAE International, SAE J300 Engine Oil Viscosity Classification, United States, 2015.
Kalghatgi, G. T., & Bradley, D. (2012). Pre-ignition and ‘super-knock’ in turbo-charged spark-ignition engines. International Journal of Engine Research, 13(4), 399-414. doi:10.1177/1468087411431890
O. Welling, J. Moss, J. Williams, N. Collings, Measuring the impact of engine oils and fuels on low-speed pre-ignition in downsized engines, in: SAE 2014 World Congress and Exhibition, SAE International, 2014. doi:10.4271/2014-01-1219.
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