Abstract:
Euler-Lagrange coupling method is used to establish the fluid-structure interaction model for tires with different tread patterns by obtaining the grounding mark and norm...Show MoreMetadata
Abstract:
Euler-Lagrange coupling method is used to establish the fluid-structure interaction model for tires with different tread patterns by obtaining the grounding mark and normal contact force between tire and the road surface during tire rolling. The altering of load force, tire pressure, and water film thickness in relation to the effect on tire-road force during both constant speed and critical hydroplaning speed was analyzed. Results show that the critical hydroplaning speed and normal contact force between tire and the road surface are positively correlated with vehicle load and tire pressure and negatively correlated with water film thickness. Python language is used to develop the pre-processing plug-ins to achieve parametric modeling and rapid creation of Finite Element Analysis (FEA) model to reduce time costs, and the effectiveness of the plug-ins is verified through comparative tests.
Published in: Complex System Modeling and Simulation ( Volume: 2, Issue: 4, December 2022)
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- IEEE Keywords
- Index Terms
- Model Construction ,
- Finite Element ,
- Constant Speed ,
- Road Surface ,
- Finite Element Analysis ,
- Contact Force ,
- Normal Force ,
- Pressure Load ,
- Water Film ,
- Fluid-structure Interaction ,
- Critical Speed ,
- Vehicle Load ,
- Normal Contact Force ,
- Operating Conditions ,
- Atmospheric Pressure ,
- Accurate Analysis ,
- Increase In Pressure ,
- Water Flow ,
- European Union ,
- Simulation Analysis ,
- Tyre Model ,
- Water Area ,
- Influence Of Different Factors ,
- Transverse Groove ,
- Inflation Pressure ,
- Longitudinal Groove ,
- Axial Force ,
- Thin Water Film ,
- Dynamic Pressure ,
- Dry Surface
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Model Construction ,
- Finite Element ,
- Constant Speed ,
- Road Surface ,
- Finite Element Analysis ,
- Contact Force ,
- Normal Force ,
- Pressure Load ,
- Water Film ,
- Fluid-structure Interaction ,
- Critical Speed ,
- Vehicle Load ,
- Normal Contact Force ,
- Operating Conditions ,
- Atmospheric Pressure ,
- Accurate Analysis ,
- Increase In Pressure ,
- Water Flow ,
- European Union ,
- Simulation Analysis ,
- Tyre Model ,
- Water Area ,
- Influence Of Different Factors ,
- Transverse Groove ,
- Inflation Pressure ,
- Longitudinal Groove ,
- Axial Force ,
- Thin Water Film ,
- Dynamic Pressure ,
- Dry Surface
- Author Keywords