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Original Articles

Analysis of Distortions of Cylinders and Conformability of Piston Rings

Pages 33-40 | Published online: 25 Mar 2008

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Read on this site (2)

Pantelis G. Nikolakopoulos, Giorgos Antonakakis & Anastasios Zavos. (2022) On the influence of axial cylinder distortions on lubricant film and friction force of top piston ring conjunction near to TDC. Tribology - Materials, Surfaces & Interfaces 16:4, pages 356-372.
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Valery (Val) Dunaevsky & Sergei Alexandrov. (2005) Three-Dimensional Engineering Approach to Conformability Analysis of Piston Rings. Tribology Transactions 48:1, pages 108-118.
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Articles from other publishers (45)

Bowen Jiao, Xuan Ma, Yongqiang Wang, Zhigang Liu, Tongyang Li & Xiqun Lu. (2023) Lubrication analysis of the piston ring for the two-stroke marine diesel engine based on modified radial tension. International Journal of Engine Research.
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Bowen Jiao, Xuan Ma, Yongqiang Wang, Xiuyi Lyu, Tongyang Li & Zhigang Liu. (2023) A fluid-structure coupled transient mixed lubrication model for piston ring lubrication property analysis with CMFF method. International Journal of Mechanical Sciences 252, pages 108377.
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Di Hei, Meiru Zheng, Cheng Liu, Liutao Jiang, Yongfang Zhang & Xiaowei Zhao. (2023) Study on the frictional properties of the top ring-liner conjunction for different-viscosity lubricant. Advances in Mechanical Engineering 15:2, pages 168781322311550.
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Baptiste Hallouin, Didier Lasseux & Gerald Senger. (2020) Gas flow through a bore-piston ring contact. International Journal of Engine Research 22:11, pages 3340-3357.
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Ahmad Alshwawra, Henning Pasligh, Hauke Hansen & Friedrich Dinkelacker. (2019) Increasing the roundness of deformed cylinder liner in internal combustion engines by using a non-circular liner profile. International Journal of Engine Research 22:4, pages 1214-1221.
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Anoop Pandey & Manish Chaturvedi. 2021. Advances in Materials Processing and Manufacturing Applications. Advances in Materials Processing and Manufacturing Applications 189 196 .
Cheng Liu, Yanjun Lu, Yongfang Zhang, Sha Li, Ang Chen, Jianxiong Kang & Norbert Müller. (2020) Effect of surface texture on the improvement of tribological performance of ring‐deformed liner conjunction under different oil supplies. Lubrication Science 32:4, pages 145-168.
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Ahmad Alshwawra, Florian Pohlmann-Tasche, Frederik Stelljes & Friedrich Dinkelacker. (2020) Enhancing the Geometrical Performance Using Initially Conical Cylinder Liner in Internal Combustion Engines—A Numerical Study. Applied Sciences 10:11, pages 3705.
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Saverio Giulio Barbieri, V. Mangeruga, Matteo Giacopini, Carlo Laurino & Mariano Lorenzini. (2019) A Finite Element Numerical Methodology for the Fatigue Analysis of Cylinder Liners of a High Performance Internal Combustion Engine. Key Engineering Materials 827, pages 288-293.
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Saverio Giulio Barbieri, Matteo Giacopini, Valerio Mangeruga, Luigi Bianco & Luca Nicolò Mastrandrea. A Simplified Methodology for the Analysis of the Cylinder Liner Bore Distortion: Finite Element Analyses and Experimental Validations. A Simplified Methodology for the Analysis of the Cylinder Liner Bore Distortion: Finite Element Analyses and Experimental Validations.
Takashi Suzuki & Hiroshi Yaguchi. Study on Ring Conformability under Bore Deformation. Study on Ring Conformability under Bore Deformation.
Cheng Liu, Yanjun Lu, Yongfang Zhang, Lujia Tang, Cheng Guo & Norbert Müller. (2019) Investigation on the Frictional Performance of Surface Textured Ring-Deformed Liner Conjunction in Internal Combustion Engines. Energies 12:14, pages 2761.
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Erjon Selmani, Cristiana Delprete & Arian Bisha. (2019) Simulation of the cylinder bore distortion and effect on the sealing capacity of the ringpack. SN Applied Sciences 1:4.
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Cheng Liu, Yanjun Lu, Yongfang Zhang, Sha Li, Jianxiong Kang & Norbert Müller. (2019) Numerical Study on the Tribological Performance of Ring/Liner System With Consideration of Oil Transport. Journal of Tribology 141:1.
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Erjon Selmani, Cristiana Delprete & Arian Bisha. (2019) Cylinder liner deformation orders and efficiency of a piston ring-pack. E3S Web of Conferences 95, pages 04001.
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Yanjun Lu, Cheng Liu, Yongfang Zhang, Jiahui Wang, Kangrui Yao, Yafeng Du & Norbert Müller. (2018) Evaluation on the tribological performance of ring/liner system under cylinder deactivation with consideration of cylinder liner deformation and oil supply. PLOS ONE 13:9, pages e0204179.
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Mohamed Aziz Bhouri & Tian Tian. Curved Beam Based Model for Piston-Ring Designs in Internal Combustion Engines: Working Engine Conditions Study. Curved Beam Based Model for Piston-Ring Designs in Internal Combustion Engines: Working Engine Conditions Study.
N. Morris, M. Mohammadpour, R. Rahmani, P.M. Johns-Rahnejat, H. Rahnejat & D. Dowson. (2018) Effect of cylinder deactivation on tribological performance of piston compression ring and connecting rod bearing. Tribology International 120, pages 243-254.
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Zhaohui Yang, Baotong Li & Tianxiang Yu. (2016) Distortion Optimization of Engine Cylinder Liner Using Spectrum Characterization and Parametric Analysis. Mathematical Problems in Engineering 2016, pages 1-11.
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Michael Berg, Hubert Schultheiß, David Musch & Thomas Hilbert. (2015) Moderne Methoden zur Optimierung von Zylinderverzügen. MTZ - Motortechnische Zeitschrift 76:12, pages 46-55.
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Michael Berg, Hubert Schultheiß, David Musch & Thomas Hilbert. (2015) Modern Methods for Optimising Cylinder Distortions. MTZ worldwide 76:12, pages 22-29.
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Prakash Chandra Mishra. (2015) Modeling the root causes of engine friction loss: Transient elastohydrodynamics of a piston subsystem and cylinder liner lubricated contact. Applied Mathematical Modelling 39:8, pages 2234-2260.
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Camille Baelden & Tian Tian. (2014) A Dual Grid Curved Beam Finite Element Model of Piston Rings for Improved Contact Capabilities. SAE International Journal of Engines 7:1, pages 156-171.
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S. K. Akkaladevi. 2014. Sustainable Automotive Technologies 2013. Sustainable Automotive Technologies 2013 211 215 .
N. Morris, R. Rahmani, H. Rahnejat, P.D. King & B. Fitzsimons. (2013) Tribology of piston compression ring conjunction under transient thermal mixed regime of lubrication. Tribology International 59, pages 248-258.
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Ramin Rahmani, Stephanos Theodossiades, Homer Rahnejat & Brian Fitzsimons. (2012) Transient elastohydrodynamic lubrication of rough new or worn piston compression ring conjunction with an out-of-round cylinder bore. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 226:4, pages 284-305.
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Christopher Edward Baker, Homer Rahnejat, Ramin Rahmani PhD & Stephanos Theodossiades. Analytical Evaluation of Fitted Piston Compression Ring: Modal Behaviour and Frictional Assessment. Analytical Evaluation of Fitted Piston Compression Ring: Modal Behaviour and Frictional Assessment.
D. Manav, S. Erpolat & K. Ozdemir. Effect of Design Modifications of Intra-Bore Region on Engine Block Bore Distortion. Effect of Design Modifications of Intra-Bore Region on Engine Block Bore Distortion.
Eduardo Tomanik. Improved Criterion for Ring Conformability Under Realistic Bore Deformation. Improved Criterion for Ring Conformability Under Realistic Bore Deformation.
P C Mishra, S Balakrishnan & H Rahnejat. (2008) Tribology of compression ring-to-cylinder contact at reversal. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 222:7, pages 815-826.
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V. Dunaevsky & J. Rudzitis. (2007) Clarification of a Semi-Empirical Approach in Piston Ring-Cylinder Bore Conformability Prediction. Journal of Tribology 129:2, pages 430-435.
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Temo Bardzimashvili, James F. Kelly, Helen Romelashvili, William T. Sledd & Bruce Geist. A Multiple Order Conformability Model for Uniform Cross-Section Piston Rings. A Multiple Order Conformability Model for Uniform Cross-Section Piston Rings.
Harold Mccormick & Tim Meara. Summary of Results of Development and Validation of Hot Honing System to Provide Improved Engine Performance. Summary of Results of Development and Validation of Hot Honing System to Provide Improved Engine Performance.
V. Dunaevsky & S. Alexandrov. Development of Conformability Model of Piston Rings with Consideration of Their Three-Dimensional Torsional Distortions and Fourier Series Representation of Cylinder Bore Geometry. Development of Conformability Model of Piston Rings with Consideration of Their Three-Dimensional Torsional Distortions and Fourier Series Representation of Cylinder Bore Geometry.
Franz Maassen, Franz Koch, Markus Schwaderlapp, Timo Ortjohann & Jürgen Dohmen. Analytical and Empirical Methods for Optimization of Cylinder Liner Bore Distortion. Analytical and Empirical Methods for Optimization of Cylinder Liner Bore Distortion.
V. V. Dunaevsky, J. T. Sawicki, J. Frater & H. Chen. Analysis of Elastic Distortions of a Piston Ring in the Reciprocating Air Brake Compressor Due to the Installation Stresses. Analysis of Elastic Distortions of a Piston Ring in the Reciprocating Air Brake Compressor Due to the Installation Stresses.
William P. Fornof. Compressor Oil Carryover and Its Effect on the Pneumatic System. Compressor Oil Carryover and Its Effect on the Pneumatic System.
Ali Soua, Maurice Touratier & Laurent Polac. (1999) Computations of an engine to analyze cylinder distortion. Engineering Computations 16:1, pages 9-25.
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M-T Ma, E. H. Smith & I Sherrington. (2005) Analysis of lubrication and friction for a complete piston-ring pack with an improved oil availability model: Part 2: Circumferentially variable film. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 211:1, pages 17-27.
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A. Soua, M. Touratier, J. P. Weisbeker, L. Polac & C. Henry. 1997. Integrated Design and Manufacturing in Mechanical Engineering. Integrated Design and Manufacturing in Mechanical Engineering 535 544 .
Eduardo Tomanik. Piston Ring Conformability in a Distorted Bore. Piston Ring Conformability in a Distorted Bore.
Jiubo Ma, Terry W. Ryan, John Winter & Richard Dixon. The Piston Ring Shape and Its Effects on Engine Performance. The Piston Ring Shape and Its Effects on Engine Performance.
M-T Ma, E H Smith & I Sherrington. (2006) A Three-Dimensional Analysis of Piston Ring Lubrication Part 1: Modelling. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 209:1, pages 1-14.
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Shizuo Abe & Makoto Suzuki. Analysis of Cylinder Bore Distortion During Engine Operation. Analysis of Cylinder Bore Distortion During Engine Operation.
R.J. Chittenden & M. Priest. 1993. Engine Tribology. Engine Tribology 241 270 .

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