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2023 | OriginalPaper | Chapter

1. On-Road Tire Mechanics

Authors : Moustafa El-Gindy, Zeinab El-Sayegh

Published in: Road and Off-Road Vehicle Dynamics

Publisher: Springer International Publishing

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Abstract

This chapter starts with an introduction to the history of wheels and tires and presents the construction of various types of tires, such as the radial-ply and cross-ply tires. The longitudinal and lateral forces and moments developed by the tires are discussed in detail. Analytical, empirical, and semi-empirical models of pneumatic tires are systematically developed to study the tractive, braking, ride, and cornering behavior of the vehicle, which are also presented in this chapter.

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Literature
2.
go back to reference Goodyear C (1853) Gum-elastic and its varieties: with a detailed account of its applications and uses, and of the discovery of vulcanization, vol 2. Published for the author Goodyear C (1853) Gum-elastic and its varieties: with a detailed account of its applications and uses, and of the discovery of vulcanization, vol 2. Published for the author
4.
go back to reference Trade Europe (2001) The automotive news Europe book of lists 2001. Automot News Eur 6(1):6–19 Trade Europe (2001) The automotive news Europe book of lists 2001. Automot News Eur 6(1):6–19
5.
go back to reference Wong JY (2008) Theory of ground vehicles. Wiley Wong JY (2008) Theory of ground vehicles. Wiley
6.
go back to reference Gillespie TD (1992) Fundamentals of vehicle dynamics. Technical report, SAE technical paperCrossRef Gillespie TD (1992) Fundamentals of vehicle dynamics. Technical report, SAE technical paperCrossRef
7.
go back to reference Slade JL (2009) Development of a new off-road rigid ring model for truck tires using finite element analysis techniques. Master’s thesis, The Pennsylvania State University Slade JL (2009) Development of a new off-road rigid ring model for truck tires using finite element analysis techniques. Master’s thesis, The Pennsylvania State University
8.
go back to reference Haney P (2004) Rubber friction. The racing and high-performance tire, sports car magazine January Haney P (2004) Rubber friction. The racing and high-performance tire, sports car magazine January
9.
10.
go back to reference Seminar Notes (1996) The mechanics of heavy-duty trucks and truck combinations. University of Michigan Transportation Research Institute Seminar Notes (1996) The mechanics of heavy-duty trucks and truck combinations. University of Michigan Transportation Research Institute
11.
go back to reference Barkanov E (2001) Introduction to the finite element method. Institute of Materials and Structures Faculty of Civil Engineering Riga Technical University Barkanov E (2001) Introduction to the finite element method. Institute of Materials and Structures Faculty of Civil Engineering Riga Technical University
12.
go back to reference Sui J, Hirshey J (1999) Evaluation on analytical tire models for vehicle vertical vibration simulation using virtual tire testing method. Technical report, SAE technical paper Sui J, Hirshey J (1999) Evaluation on analytical tire models for vehicle vertical vibration simulation using virtual tire testing method. Technical report, SAE technical paper
13.
go back to reference Bakker E, Nyborg L, Pacejka HB (1987) Tyre modelling for use in vehicle dynamics studies. Technical report, SAE technical paper Bakker E, Nyborg L, Pacejka HB (1987) Tyre modelling for use in vehicle dynamics studies. Technical report, SAE technical paper
14.
go back to reference Pacejka HB, Besselink IJM (1997) Magic formula tyre model with transient properties. Veh Syst Dyn 27(S1):234–249CrossRef Pacejka HB, Besselink IJM (1997) Magic formula tyre model with transient properties. Veh Syst Dyn 27(S1):234–249CrossRef
15.
go back to reference Zegelaar PWA, Pacejka HB (1997) Dynamic tyre responses to brake torque variations. Veh Syst Dyn 27(S1):65–79CrossRef Zegelaar PWA, Pacejka HB (1997) Dynamic tyre responses to brake torque variations. Veh Syst Dyn 27(S1):65–79CrossRef
16.
go back to reference Zegelaar PWA, Pacejka HB (1996) The in-plane dynamics of tyres on uneven roads. Veh Syst Dyn 25(S1):714–730CrossRef Zegelaar PWA, Pacejka HB (1996) The in-plane dynamics of tyres on uneven roads. Veh Syst Dyn 25(S1):714–730CrossRef
17.
go back to reference Kim S-J, Savkoor AR (1997) The contact problem of in-plane rolling of tires on a flat road. Veh Syst Dyn 27(S1):189–206CrossRef Kim S-J, Savkoor AR (1997) The contact problem of in-plane rolling of tires on a flat road. Veh Syst Dyn 27(S1):189–206CrossRef
18.
go back to reference Yoshida K, Ishigami G (2004) Steering characteristics of a rigid wheel for exploration on loose soil. In: 2004 IEEE/RSJ international conference on intelligent robots and systems (IROS) (IEEE Cat. No. 04CH37566), vol 4. IEEE, pp 3995–4000 Yoshida K, Ishigami G (2004) Steering characteristics of a rigid wheel for exploration on loose soil. In: 2004 IEEE/RSJ international conference on intelligent robots and systems (IROS) (IEEE Cat. No. 04CH37566), vol 4. IEEE, pp 3995–4000
19.
go back to reference Tuononen AJ, Hartikainen L, Petry F, Westermann S (2012) Parameterization of in-plane rigid ring tire model from instrumented vehicle measurements. In: Proceedings of the 11th international symposium on advanced vehicle control (AVEC ‘12), pp 9–12 Tuononen AJ, Hartikainen L, Petry F, Westermann S (2012) Parameterization of in-plane rigid ring tire model from instrumented vehicle measurements. In: Proceedings of the 11th international symposium on advanced vehicle control (AVEC ‘12), pp 9–12
20.
go back to reference Chan BJ, Sandu C (2014) Development of a 3-d quasi-static tyre model for on-road and off-road vehicle dynamics simulations: Part i-on-road flexible tyre model. Int J Veh Syst Model Test 9(1):77–105 Chan BJ, Sandu C (2014) Development of a 3-d quasi-static tyre model for on-road and off-road vehicle dynamics simulations: Part i-on-road flexible tyre model. Int J Veh Syst Model Test 9(1):77–105
21.
go back to reference Chan BJ, Sandu C (2014) Development of a 3-d quasi-static tyre model for on-road and off-road vehicle dynamics simulations: Part ii-off-road rigid wheel model. Int J Veh Syst Model Test 9(2):107–136 Chan BJ, Sandu C (2014) Development of a 3-d quasi-static tyre model for on-road and off-road vehicle dynamics simulations: Part ii-off-road rigid wheel model. Int J Veh Syst Model Test 9(2):107–136
22.
go back to reference Chan BJ, Sandu C (2014) Development of a 3-d quasi-static tyre model for on-road and off-road vehicle dynamics simulations: Part iii-off-road flexible wheel model. Int J Veh Syst Model Test 9(2):151–176 Chan BJ, Sandu C (2014) Development of a 3-d quasi-static tyre model for on-road and off-road vehicle dynamics simulations: Part iii-off-road flexible wheel model. Int J Veh Syst Model Test 9(2):151–176
23.
go back to reference Ritz W (1909) Über eine neue methode zur lösung gewisser variationsprobleme der mathematischen physik. Journal für die reine und angewandte Mathematik 135:1–61MathSciNetCrossRefMATH Ritz W (1909) Über eine neue methode zur lösung gewisser variationsprobleme der mathematischen physik. Journal für die reine und angewandte Mathematik 135:1–61MathSciNetCrossRefMATH
24.
go back to reference Courant R (1943) Variational methods for the solution of problems of equilibrium and vibrations. Lect Notes Pure Appl Math 1 Courant R (1943) Variational methods for the solution of problems of equilibrium and vibrations. Lect Notes Pure Appl Math 1
25.
go back to reference Dugdale DS (1960) Yielding of steel sheets containing slits. J Mech Phys Solids 8(2):100–104CrossRef Dugdale DS (1960) Yielding of steel sheets containing slits. J Mech Phys Solids 8(2):100–104CrossRef
26.
go back to reference Yong RN, Fattah EA, Boonsinsuk P (1978) Analysis and prediction of tyre-soil interaction and performance using finite elements. J Terrramech 15(1):43–63CrossRef Yong RN, Fattah EA, Boonsinsuk P (1978) Analysis and prediction of tyre-soil interaction and performance using finite elements. J Terrramech 15(1):43–63CrossRef
27.
go back to reference De Eskinazi J, Ishihara K, Volk H, Warholic TC (1990) Towards predicting relative belt edge endurance with the finite element method. Tire Sci Technol 18(4):216–235CrossRef De Eskinazi J, Ishihara K, Volk H, Warholic TC (1990) Towards predicting relative belt edge endurance with the finite element method. Tire Sci Technol 18(4):216–235CrossRef
28.
go back to reference Hiroma T, Wanjii S, Kataoka T, Ota Y (1997) Stress analysis using fem on stress distribution under a wheel considering friction with adhesion between a wheel and soil. J Terrramech 34(4):225–233CrossRef Hiroma T, Wanjii S, Kataoka T, Ota Y (1997) Stress analysis using fem on stress distribution under a wheel considering friction with adhesion between a wheel and soil. J Terrramech 34(4):225–233CrossRef
29.
go back to reference Koishi M, Kabe K, Shiratori M (1998) Tire cornering simulation using an explicit finite element analysis code. Tire Sci Technol 26(2):109–119CrossRef Koishi M, Kabe K, Shiratori M (1998) Tire cornering simulation using an explicit finite element analysis code. Tire Sci Technol 26(2):109–119CrossRef
30.
go back to reference PAM System International (2014) Pam-crash user manual version 2014. ESI Group PAM System International (2014) Pam-crash user manual version 2014. ESI Group
31.
go back to reference Chae S (2006) Nonlinear finite element modeling and analysis of a truck tire. PhD thesis, The Pennsylvania State University Chae S (2006) Nonlinear finite element modeling and analysis of a truck tire. PhD thesis, The Pennsylvania State University
32.
33.
go back to reference Yeoh OH (1990) Characterization of elastic properties of carbon-black-filled rubber vulcanizates. Rubber Chem Technol 63(5):792–805CrossRef Yeoh OH (1990) Characterization of elastic properties of carbon-black-filled rubber vulcanizates. Rubber Chem Technol 63(5):792–805CrossRef
34.
go back to reference Ford TL, Charles FS (1988) Heavy duty truck tire engineering. Technical report, SAE technical paper Ford TL, Charles FS (1988) Heavy duty truck tire engineering. Technical report, SAE technical paper
35.
go back to reference Chang Y-P (2002) Nonlinear FEA rotating tire modeling for transient response simulations. PhD thesis, Pennsylvania State University Chang Y-P (2002) Nonlinear FEA rotating tire modeling for transient response simulations. PhD thesis, Pennsylvania State University
36.
go back to reference Yap P (1991) Measurement of radial truck tire dry cornering characteristics. Technical report, SAE technical paper Yap P (1991) Measurement of radial truck tire dry cornering characteristics. Technical report, SAE technical paper
37.
go back to reference Davis P, Martinson V, Yager T, Stubbs S (1997) 26x6. 6 radial-belted aircraft tire performance. Progr Technol 66:251–260 Davis P, Martinson V, Yager T, Stubbs S (1997) 26x6. 6 radial-belted aircraft tire performance. Progr Technol 66:251–260
38.
go back to reference Lardner KL (2017) Prediction of the off-road rigid-ring model parameters for truck tire and soft soil interactions. Master’s thesis, University of Ontario Institute of Technology, Canada Lardner KL (2017) Prediction of the off-road rigid-ring model parameters for truck tire and soft soil interactions. Master’s thesis, University of Ontario Institute of Technology, Canada
39.
go back to reference Gardner ER, Worswick T (1951) Behaviour of tyres at high speed. Trans Inst Rubber Ind 27:127–146 Gardner ER, Worswick T (1951) Behaviour of tyres at high speed. Trans Inst Rubber Ind 27:127–146
40.
go back to reference Powell HT (1957) Studies in the genus fucus li fucus distichus l. emend. powell. J Marine Biol Assoc UK 36(2):407–432 Powell HT (1957) Studies in the genus fucus li fucus distichus l. emend. powell. J Marine Biol Assoc UK 36(2):407–432
41.
go back to reference Bruinsma F (1968) Design and measurements of an air bearing for a running belt wit an electro-hydraulic vibrator system. Technical report, VRLD report Bruinsma F (1968) Design and measurements of an air bearing for a running belt wit an electro-hydraulic vibrator system. Technical report, VRLD report
42.
go back to reference Bird KD, Martin JF (1973) The calspan tire research facility: design, development, and initial test results. SAE Trans 2012–2027 Bird KD, Martin JF (1973) The calspan tire research facility: design, development, and initial test results. SAE Trans 2012–2027
43.
go back to reference Davisson JA (1969) Design and application of commercial type tires. SAE Trans 1–32 Davisson JA (1969) Design and application of commercial type tires. SAE Trans 1–32
44.
go back to reference Jenq S-T, Chiu Y-S et al (2009) Hydroplaning analysis for tire rolling over water film with various thicknesses using the ls-dyna fluid-structure interactive scheme. Comput, Mater Contin (CMC) 11(1):33 Jenq S-T, Chiu Y-S et al (2009) Hydroplaning analysis for tire rolling over water film with various thicknesses using the ls-dyna fluid-structure interactive scheme. Comput, Mater Contin (CMC) 11(1):33
45.
go back to reference Seta E, Nakajima Y, Kamegawa T, Ogawa H (2000) Hydroplaning analysis by fem and fvm: effect of tire rolling and tire pattern on hydroplaning. Tire Sci Technol 28(3):140–156CrossRef Seta E, Nakajima Y, Kamegawa T, Ogawa H (2000) Hydroplaning analysis by fem and fvm: effect of tire rolling and tire pattern on hydroplaning. Tire Sci Technol 28(3):140–156CrossRef
46.
go back to reference Horne WB, Dreher RC (1963) Phenomena of pneumatic tire hydroplaning Horne WB, Dreher RC (1963) Phenomena of pneumatic tire hydroplaning
47.
go back to reference Martin CS (1966) Hydroplaning of tire hydroplaning final report. Project B-608, Georgia Institute of Technology Martin CS (1966) Hydroplaning of tire hydroplaning final report. Project B-608, Georgia Institute of Technology
48.
go back to reference Moore CG, Porter M (1967) Structural characterization of vulcanizates. Part vi. the 2-mercaptobenzothiazole-accelerated natural rubber–sulfur system. J Appl Polymer Sci 11(11):2227–2253 Moore CG, Porter M (1967) Structural characterization of vulcanizates. Part vi. the 2-mercaptobenzothiazole-accelerated natural rubber–sulfur system. J Appl Polymer Sci 11(11):2227–2253
49.
go back to reference Eshel A (1967) A study of tires on a wet runway. Ampex Corporation, RR, pp 24–67 Eshel A (1967) A study of tires on a wet runway. Ampex Corporation, RR, pp 24–67
50.
go back to reference Browne A, Cheng H, Kistler A (1972) Dynamic hydroplaning of pneumatic tires. Wear 20(1):1–28CrossRef Browne A, Cheng H, Kistler A (1972) Dynamic hydroplaning of pneumatic tires. Wear 20(1):1–28CrossRef
51.
go back to reference Leland TJW (1972) An evaluation of some unbraked tire cornering force characteristics Leland TJW (1972) An evaluation of some unbraked tire cornering force characteristics
52.
go back to reference Sinnamon JF (1974) Hydroplaning and tread pattern hydrodynamics Sinnamon JF (1974) Hydroplaning and tread pattern hydrodynamics
53.
go back to reference Grogger H, Weiss M (1996) Calculation of the three-dimensional free surface flow around an automobile tire. Tire Sci Technol 24(1):39–49CrossRef Grogger H, Weiss M (1996) Calculation of the three-dimensional free surface flow around an automobile tire. Tire Sci Technol 24(1):39–49CrossRef
54.
go back to reference Panagouli OK, Kokkalis AG (1998) Skid resistance and fractal structure of pavement surface. Chaos, Solitons Fractals 9(3):493–505CrossRef Panagouli OK, Kokkalis AG (1998) Skid resistance and fractal structure of pavement surface. Chaos, Solitons Fractals 9(3):493–505CrossRef
55.
go back to reference Janajreh IM (2001) Tire having a groove wall lining for reducing formation of anomalies causing subjective user dissatisfaction, April 10 2001. US Patent 6,213,181 Janajreh IM (2001) Tire having a groove wall lining for reducing formation of anomalies causing subjective user dissatisfaction, April 10 2001. US Patent 6,213,181
56.
go back to reference Chu L, Fwa TF (2016) Incorporating pavement skid resistance and hydroplaning risk considerations in asphalt mix design. J Transp Eng 142(10):04016039CrossRef Chu L, Fwa TF (2016) Incorporating pavement skid resistance and hydroplaning risk considerations in asphalt mix design. J Transp Eng 142(10):04016039CrossRef
57.
go back to reference Ong GP, Fwa TF (2007) Wet-pavement hydroplaning risk and skid resistance: modeling. J Transp Eng 133(10):590–598CrossRef Ong GP, Fwa TF (2007) Wet-pavement hydroplaning risk and skid resistance: modeling. J Transp Eng 133(10):590–598CrossRef
58.
go back to reference Oh C-W, Kim T-W, Jeong H-Y, Park K-S, Kim S-N (2008) Hydroplaning simulation for a straight-grooved tire by using fdm, fem and an asymptotic method. J Mech Sci Technol 22(1):34–40CrossRef Oh C-W, Kim T-W, Jeong H-Y, Park K-S, Kim S-N (2008) Hydroplaning simulation for a straight-grooved tire by using fdm, fem and an asymptotic method. J Mech Sci Technol 22(1):34–40CrossRef
59.
go back to reference Choi JH, Cho JR, Woo JS, Kim KW (2012) Numerical investigation of snow traction characteristics of 3-d patterned tire. J Terrramech 49(2):81–93CrossRef Choi JH, Cho JR, Woo JS, Kim KW (2012) Numerical investigation of snow traction characteristics of 3-d patterned tire. J Terrramech 49(2):81–93CrossRef
60.
go back to reference Gough VE (1954) Cornering characteristics of tyres. Automob Eng 44:137 Gough VE (1954) Cornering characteristics of tyres. Automob Eng 44:137
61.
go back to reference Horne WB, Joyner UT (1965) Pneumatic tire hydroplaning and some effects on vehicle performance. Technical report, SAE technical paper Horne WB, Joyner UT (1965) Pneumatic tire hydroplaning and some effects on vehicle performance. Technical report, SAE technical paper
62.
go back to reference Horne WB, Yager TJ, Ivey DL (1986) Recent studies to investigate effects of tire footprint aspect ratio on dynamic hydroplaning speed. In: The tire pavement interface. ASTM international Horne WB, Yager TJ, Ivey DL (1986) Recent studies to investigate effects of tire footprint aspect ratio on dynamic hydroplaning speed. In: The tire pavement interface. ASTM international
63.
go back to reference Gallaway BM, Ivey DL, Hayes G, Ledbetter WB, Olson RM, Woods DL, Schiller RF Jr (1979) Pavement and geometric design criteria for minimizing hydroplaning. Technical report, Federal Highway Administration Gallaway BM, Ivey DL, Hayes G, Ledbetter WB, Olson RM, Woods DL, Schiller RF Jr (1979) Pavement and geometric design criteria for minimizing hydroplaning. Technical report, Federal Highway Administration
64.
go back to reference Wambold JC, Yeh EC, Henry JJ (1984) Methodology for analyzing pavement condition data (mapcon). Technical report, Maintenance and operations manuals for the IBM 370 version, volume II Wambold JC, Yeh EC, Henry JJ (1984) Methodology for analyzing pavement condition data (mapcon). Technical report, Maintenance and operations manuals for the IBM 370 version, volume II
65.
go back to reference El-Sayegh Z, El-Gindy M (2017) Sensitivity analysis of truck tyre hydroplaning speed using fea-sph model. Int J Veh Syst Model Test 12(1–2):143–161 El-Sayegh Z, El-Gindy M (2017) Sensitivity analysis of truck tyre hydroplaning speed using fea-sph model. Int J Veh Syst Model Test 12(1–2):143–161
66.
go back to reference Changyong C (2010) Skid resistance and hydroplaning analysis of rib truck tire. PhD thesis, National University of Singapore Changyong C (2010) Skid resistance and hydroplaning analysis of rib truck tire. PhD thesis, National University of Singapore
67.
go back to reference El-Sayegh Z (2020) Modeling and analysis of truck tire-terrain interaction. PhD thesis El-Sayegh Z (2020) Modeling and analysis of truck tire-terrain interaction. PhD thesis
68.
go back to reference Hankook USA: Tires for ev, passenger cars, suvs and more Hankook USA: Tires for ev, passenger cars, suvs and more
Metadata
Title
On-Road Tire Mechanics
Authors
Moustafa El-Gindy
Zeinab El-Sayegh
Copyright Year
2023
DOI
https://doi.org/10.1007/978-3-031-36216-3_1

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