Vibration-induced cavitation in cylinder liners caused by piston slaps
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Guoxing Li | Hengchao Cao | Fengshou Gu | Dong Liu | Nannan Sun | Guixiang Zhu | Tie Wang
[1] Xianxin Zhou,et al. A Novel Anti-Hydropressure Piezoelectric Jetting Micro Thruster for Steering AUV , 2023, International Journal of Mechanical Sciences.
[2] Dong Liu,et al. Modelling and evaluating piston slap-induced cavitation of cylinder liners in heavy-duty diesel engines. , 2023, Eksploatacja i Niezawodność – Maintenance and Reliability.
[3] Tongyang Li,et al. A fluid-structure coupled transient mixed lubrication model for piston ring lubrication property analysis with CMFF method , 2023, International Journal of Mechanical Sciences.
[4] T. Ouyang,et al. Vibration and cavitation in high-speed gears caused by faults , 2023, International Journal of Mechanical Sciences.
[5] K. Pericleous,et al. Cavitation-induced shock wave behaviour in different liquids , 2023, Ultrasonics sonochemistry.
[6] Ashok Pandey,et al. Hydrodynamic forces in non-uniform cantilever beam resonator , 2022, International Journal of Mechanical Sciences.
[7] Xiancai Si,et al. The Tribo-Dynamics Performance of the Lubricated Piston Skirt–Cylinder System Considering the Cylinder Liner Vibration , 2022, Lubricants.
[8] Guohui Li,et al. Underwater acoustic signal denoising model based on secondary variational mode decomposition , 2022, Defence Technology.
[9] Lifeng Wang,et al. Travelling-modes of a spinning cylindrical shell with elastic boundaries , 2022, International Journal of Mechanical Sciences.
[10] M. Hočevar,et al. Characterization of cavitation under ultrasonic horn tip – Proposition of an acoustic cavitation parameter , 2022, Ultrasonics sonochemistry.
[11] Meixia Chen,et al. Experimental and analytical investigations on vibro-acoustic characteristics of a submerged submarine hull coupled with multiple inner substructures , 2022, Ocean Engineering.
[12] Guoxi Jing,et al. Failure analysis and design improvements of steel piston for a high-power marine diesel engine , 2022, Engineering Failure Analysis.
[13] T. Ouyang,et al. Numerical investigation of vibration-induced cavitation for gears considering thermal effect , 2022, International Journal of Mechanical Sciences.
[14] Yuehua Qian,et al. Tribo-dynamic performances and vibration transmission of lubricated translational joints in marine engines , 2022, International Journal of Mechanical Sciences.
[15] Sheng Zhou,et al. Evaluation of Liner Cavitation Potential through Piston Slap and BEM Acoustics Coupled Analysis , 2022, Mathematics.
[16] Yong Lu,et al. Online chatter detection in milling process based on fast iterative VMD and energy ratio difference , 2022, Measurement.
[17] S. Thoroddsen,et al. Cavitation upon low-speed solid–liquid impact , 2021, Nature Communications.
[18] Zhinan Zhang,et al. A new approach for modeling and analysis of the lubricated piston skirt-cylinder system with multi-physics coupling , 2021, Tribology International.
[19] Dixiong Yang,et al. Exact benchmark solutions of random vibration responses for thin-walled orthotropic cylindrical shells , 2021 .
[20] J. Lei,et al. Research on the influence of key structural parameters on piston secondary motion , 2021, Scientific Reports.
[21] Weiqing Huang,et al. High-cycle fatigue failure analysis of cast Al-Si alloy engine cylinder head , 2021 .
[22] W. Edelbauer,et al. Cavitation Erosion Prediction at Vibrating Walls by Coupling Computational Fluid Dynamics and Multi-body-Dynamic Solutions , 2021, SAE International Journal of Commercial Vehicles.
[23] Jian Du,et al. Cavitation dynamics and flow aggressiveness in ultrasonic cavitation erosion , 2021 .
[24] J. Nouri,et al. Cavitation between cylinder-liner and piston-ring in a new designed optical IC engine , 2021, International Journal of Engine Research.
[25] Dixiong Yang,et al. Analytical stochastic responses of thin cylindrical shells under various stationary excitations , 2021 .
[26] H. Hua,et al. Effects of concentrated elements on vibro-acoustic characteristics of a circular ring considering both external and internal fluids , 2020, Journal of Vibration and Control.
[27] S. Jonsson,et al. Morphology and mechanisms of cavitation damage on lamellar gray iron surfaces , 2020 .
[28] R. Randall,et al. A study on the effects of piston secondary motion in conjunction with clearance joints , 2020 .
[29] Xiaoyu Wang,et al. Analysis of water coolant pressure fluctuation induced by piston slap , 2020 .
[30] Jiuchun Yan,et al. Cavitation in thin liquid layer: A review. , 2020, Ultrasonics sonochemistry.
[31] Xiaoyu Wang,et al. Study on the coolant pressure of internal combustion engines through vibro-acoustical analysis of a real cylinder block structure , 2020, Journal of the Brazilian Society of Mechanical Sciences and Engineering.
[32] Jianzuo Ma,et al. Temperature-dependent elastic modulus model for metallic bulk materials , 2019 .
[33] Xiaoyu Wang,et al. Theoretical analysis of engine coolant cavitation with different additives based on ultrasonic induced bubble dynamics , 2019 .
[34] Z. Jian,et al. Influence of piston pin hole offset on cavity erosion of diesel engine cylinder liner , 2019, Engineering Failure Analysis.
[35] Li-zhong Shen,et al. Study on the effect of piston skirt profile on the vibration behavior of non-road high pressure common rail diesel engine , 2019, Applied Acoustics.
[36] Francisco J. Jiménez-Espadafor,et al. Torsional system dynamics of low speed diesel engines based on instantaneous torque: Application to engine diagnosis , 2019, Mechanical Systems and Signal Processing.
[37] K. Fujimoto,et al. Analytical Prediction of Dynamic Properties of O-Ring With Hydrostatic Pressure Distribution , 2018, Journal of Applied Mechanics.
[38] R. Leishear,et al. When the Joukowsky Equation Does Not Predict Maximum Water Hammer Pressures , 2018, Journal of Pressure Vessel Technology.
[39] B. Wen,et al. Modeling and dynamic analysis of bolted joined cylindrical shell , 2018 .
[40] Fuwu Yan,et al. Optimization design of piston structure for abnormal noise control in a single-cylinder gasoline engine , 2018 .
[41] Abdollah Bagheri,et al. Structural system identification based on variational mode decomposition , 2018 .
[42] Jingxuan Xie,et al. Investigation of Static and Dynamic Seal Performances of a Rubber O-Ring , 2018 .
[43] Andrew Ball,et al. An Improved Lubrication Model between Piston Rings and Cylinder Liners with Consideration of Liner Dynamic Deformations , 2017 .
[44] Seong-Jong Kim,et al. Microstructure and cavitation damage characteristics of surface treated gray cast iron by plasma ion nitriding , 2017, Applied Surface Science.
[45] Bo Zhao,et al. Transient tribo-dynamics analysis and friction loss evaluation of piston during cold- and warm-start of a SI engine , 2017 .
[46] S. Thomson,et al. Cavitation onset caused by acceleration , 2017, Proceedings of the National Academy of Sciences.
[47] A. Ferrari. Fluid dynamics of acoustic and hydrodynamic cavitation in hydraulic power systems , 2017, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[48] A. Pandit,et al. Cavitation damage: Theory and measurements – A review , 2017 .
[49] Yufu Xu,et al. Cavitation erosion and wear behaviour of a boron cast iron cylinder liner under bio-fuel conditions , 2016 .
[50] K. Zhou,et al. A new numerical method for planar multibody system with mixed lubricated revolute joint , 2016 .
[51] Atsushi Saeki,et al. Piston slap induced pressure fluctuation in the water coolant passage of an internal combustion engine , 2016 .
[52] Stephanos Theodossiades,et al. On the identification of piston slap events in internal combustion engines using tribodynamic analysis , 2015 .
[53] Fanming Meng,et al. Influence of cylinder liner vibration on lateral motion and tribological behaviors for piston in internal combustion engine , 2015 .
[54] Dominique Zosso,et al. Variational Mode Decomposition , 2014, IEEE Transactions on Signal Processing.
[55] Fahad Ibn Azam,et al. Dynamics of an oscillating bubble in a narrow gap. , 2013, Physical review. E, Statistical, nonlinear, and soft matter physics.
[56] Yeow-Chong Tan,et al. Analysis of piston secondary motion , 2013 .
[57] C. Robledo-Sánchez,et al. The principle of superposition for waves: The amplitude and phase modulation phenomena , 2012 .
[58] A. Abouel-Kasem,et al. Bubble Structures Between Two Walls in Ultrasonic Cavitation Erosion , 2012 .
[59] M. Selin. Tensile and Thermal Properties in Compacted Graphite Irons at Elevated Temperatures , 2010 .
[60] Gonzalo Garcia-Atance Fatjo,et al. Early stage cavitation erosion within ceramics—An experimental investigation , 2009 .
[61] L. I. Pogodaev,et al. Simulation of durability of cylinder liners of an internal combustion engine under vibration cavitation , 2008 .
[62] B. Dubus,et al. Ultrasonic cavitation in thin liquid layers. , 2005, Ultrasonics sonochemistry.
[63] Jian Chen,et al. Investigation into piston-slap-induced vibration for engine condition simulation and monitoring , 2005 .
[64] Jin Chen,et al. Analysis of engine vibration and design of an applicable diagnosing approach , 2003 .
[65] Yang-Hann Kim,et al. A SIMPLE MODEL TO ESTIMATE THE IMPACT FORCE INDUCED BY PISTON SLAP , 2002 .
[66] David P. Hoult,et al. Engine Experiments on the Effects of Design and Operational Parameters on Piston Secondary Motion and Piston Slap , 1994 .
[67] O. Kirkeby,et al. Reproduction of plane wave sound fields , 1993 .
[68] G. Hulbert. Time finite element methods for structural dynamics , 1992 .
[69] Kurt Metzger,et al. New estimates of sound speed in water , 1991 .
[70] A. Lowe. An Analytical Technique for Assessing Cylinder Liner Cavitation Erosion , 1990 .
[71] J. B. Fahnline,et al. A method for computing acoustic fields based on the principle of wave superposition , 1989 .
[72] P. Chadwick,et al. Wave propagation in transversely isotropic elastic media - I. Homogeneous plane waves , 1989, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[73] G. Wang,et al. Vibro-acoustic coupling characteristics of the microperforated panel with local resonators , 2023, International Journal of Mechanical Sciences.
[74] W. Ren,et al. Recursive variational mode decomposition enhanced by orthogonalization algorithm for accurate structural modal identification , 2023, Mechanical Systems and Signal Processing.
[75] Gonzalo Garcia-Atance Fatjo,et al. Experimental study and analytical model of the cavitation ring region with small diameter ultrasonic horn. , 2011, Ultrasonics sonochemistry.
[76] William J.T. Daniel,et al. The subcycled Newmark algorithm , 1997 .