A Comparative Analysis of Friction and Energy Losses in Hydrogen and CNG Fueled Engines: Implications on the Top Compression Ring Design Using Steel, Cast Iron, and Silicon Nitride Materials
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Nikolopoulou, V.-I.; Zavos, A.; Nikolakopoulos, P. A Comparative Analysis of Friction and Energy Losses in Hydrogen and CNG Fueled Engines: Implications on the Top Compression Ring Design Using Steel, Cast Iron, and Silicon Nitride Materials. Materials 2024, 17, 3806. https://doi.org/10.3390/ma17153806
Nikolopoulou V-I, Zavos A, Nikolakopoulos P. A Comparative Analysis of Friction and Energy Losses in Hydrogen and CNG Fueled Engines: Implications on the Top Compression Ring Design Using Steel, Cast Iron, and Silicon Nitride Materials. Materials. 2024; 17(15):3806. https://doi.org/10.3390/ma17153806
Chicago/Turabian StyleNikolopoulou, Vasiliki-Ioanna, Anastasios Zavos, and Pantelis Nikolakopoulos. 2024. "A Comparative Analysis of Friction and Energy Losses in Hydrogen and CNG Fueled Engines: Implications on the Top Compression Ring Design Using Steel, Cast Iron, and Silicon Nitride Materials" Materials 17, no. 15: 3806. https://doi.org/10.3390/ma17153806
APA StyleNikolopoulou, V.-I., Zavos, A., & Nikolakopoulos, P. (2024). A Comparative Analysis of Friction and Energy Losses in Hydrogen and CNG Fueled Engines: Implications on the Top Compression Ring Design Using Steel, Cast Iron, and Silicon Nitride Materials. Materials, 17(15), 3806. https://doi.org/10.3390/ma17153806

