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Tire Science and Technology Keyword Index to Volume 35 2007 ABAQUS cap ply Load and Inflation Effects on Force Basic Study of PK Fiber Tire Cord and Moment of Passenger Tires (Yugo Zuigyo and Masahiko Using Explicit Transient Dynam- Yamamoto), 317—325 (2007) ics (Hon H. Liu), 41-55 (2007) coast-down acoustics Fidelity of J1269 and J2452 (James Computational Model to Investigate A. Popio and John R. Luchini), the Sound Radiation from Rolling 94-117 (2007) Tires (Jan Biermann, Otto von Es- coefficient of restitution torff, Steffen Petersen, and Holger Tire Energy Loss from Obstacle Schmidt), 209-225 (2007) Impact (Timothy B. Rhyne and adhesion Steven M. Cron), 141-161 (2007) Basic Study of PK Fiber Tire Cord contact (Yugo Zuigyo and Masahiko Load and Inflation Effects on Force Yamamoto), 317-325 (2007) and Moment of Passenger Tires aging Using Explicit Transient Dynam- Numerical Model for Nitrogen Tire ics (Hon H. Liu), 41-55 (2007) Inflation (Kevin R. J. Ellwood, crack speed John Baldwin, and David R. Dynamic Fracture of Natural Bauer), 300-316 (2007) Rubber (Ali A. Al-Quraishi and arbitrary Lagrangian Eulerian Michelle S. Hoo Fatt), 252-275 A Finite Element Approach to the (2007) Transient Dynamics of Rolling cyclic symmetry Tires with Emphasis on Rolling Validation of a Steady-State Trans- Noise Simulation (Maik Brink- port Analysis for Rolling Treaded meier, Udo Nackenhorst, and Hei- Tires (J. Qi, J. R. Herron, K. H. ner Volk), 165-182 (2007) Sansalone, W. V. Mars, Z. Z. Du, automotive fuel economy M. Snyman, and H. Suren- A Commented Synopsis of the Re- dranath), 183-208 (2007) port of the Committee for the Na- diffusion-limited oxidation tional Tire Efficiency Study Numerical Model for Nitrogen Tire (Marion G. Pottinger, Joseph D. Inflation (Kevin R. J. Ellwood, Walter, and John D. Eagleburger), John Baldwin, and David R. 70-93 (2007) Bauer), 300-316 (2007) body ply durability simulation Basic Study of PK Fiber Tire Cord Inelastic Fracture Mechanics for (Yugo Zuigyo and Masahiko Tire Durability Simulations Yamamoto), 317-325 (2007) (Michael Kaliske, Bastian Naser, 326 Tire Science and Technology Keyword Index to Volume 35 2007 ABAQUS cap ply Load and Inflation Effects on Force Basic Study of PK Fiber Tire Cord and Moment of Passenger Tires (Yugo Zuigyo and Masahiko Using Explicit Transient Dynam- Yamamoto), 317—325 (2007) ics (Hon H. Liu), 41-55 (2007) coast-down acoustics Fidelity of J1269 and J2452 (James Computational Model to Investigate A. Popio and John R. Luchini), the Sound Radiation from Rolling 94-117 (2007) Tires (Jan Biermann, Otto von Es- coefficient of restitution torff, Steffen Petersen, and Holger Tire Energy Loss from Obstacle Schmidt), 209-225 (2007) Impact (Timothy B. Rhyne and adhesion Steven M. Cron), 141-161 (2007) Basic Study of PK Fiber Tire Cord contact (Yugo Zuigyo and Masahiko Load and Inflation Effects on Force Yamamoto), 317-325 (2007) and Moment of Passenger Tires aging Using Explicit Transient Dynam- Numerical Model for Nitrogen Tire ics (Hon H. Liu), 41-55 (2007) Inflation (Kevin R. J. Ellwood, crack speed John Baldwin, and David R. Dynamic Fracture of Natural Bauer), 300-316 (2007) Rubber (Ali A. Al-Quraishi and arbitrary Lagrangian Eulerian Michelle S. Hoo Fatt), 252-275 A Finite Element Approach to the (2007) Transient Dynamics of Rolling cyclic symmetry Tires with Emphasis on Rolling Validation of a Steady-State Trans- Noise Simulation (Maik Brink- port Analysis for Rolling Treaded meier, Udo Nackenhorst, and Hei- Tires (J. Qi, J. R. Herron, K. H. ner Volk), 165-182 (2007) Sansalone, W. V. Mars, Z. Z. Du, automotive fuel economy M. Snyman, and H. Suren- A Commented Synopsis of the Re- dranath), 183-208 (2007) port of the Committee for the Na- diffusion-limited oxidation tional Tire Efficiency Study Numerical Model for Nitrogen Tire (Marion G. Pottinger, Joseph D. Inflation (Kevin R. J. Ellwood, Walter, and John D. Eagleburger), John Baldwin, and David R. 70-93 (2007) Bauer), 300-316 (2007) body ply durability simulation Basic Study of PK Fiber Tire Cord Inelastic Fracture Mechanics for (Yugo Zuigyo and Masahiko Tire Durability Simulations Yamamoto), 317-325 (2007) (Michael Kaliske, Bastian Naser, 326 VOLUME 35 INDEX 327 and Christian Meiners), 239-250 finite element method (2007) Inelastic Fracture Mechanics for dynamic fracture Tire Durability Simulations Dynamic Fracture of Natural (Michael Kaliske, Bastian Naser, Rubber (Ali A. Al-Quraishi and and Christian Meiners), 239-250 Michelle S. Hoo Fatt), 252-275 (2007) (2007) finite element methods energy policy A Finite Element Approach to the A Commented Synopsis of the Re- Transient Dynamics of Rolling port of the Committee for the Na- Tires with Emphasis on Rolling tional Tire Efficiency Study Noise Simulation (Maik Brink- (Marion G. Pottinger, Joseph D. meier, Udo Nackenhorst, and Hei- ner Volk), 165-182 (2007) Walter, and John D. Eagleburger), finite elements 70-93 (2007) Load and Inflation Effects on Force Eulerian and Moment of Passenger Tires Validation of a Steady-State Trans- Using Explicit Transient Dynam- port Analysis for Rolling Treaded ics (Hon H. Liu), 41-55 (2007) Tires (J. Qi, J. R. Herron, K. H. Computational Model to Investigate Sansalone, W. V. Mars, Z. Z. Du, the Sound Radiation from Rolling M. Snyman, and H. Suren- Tires (Jan Biermann, Otto von Es- dranath), 183-208 (2007) torff, Steffen Petersen, and Holger explicit FEM Schmidt), 209-225 (2007) Prediction of Tread Pattern Wear by fishhook test an Explicit Finite Element Model The Impact of Plus-Sized Wheel/ (J. C. Cho and B. C. Jung), 276- Tire Fitment on Vehicle Stability 299 (2007) (J. W. Daws, R. E. Larson, and J. explicit transient dynamics C. Brown), 23—40 (2007) Load and Inflation Effects on Force force and Moment of Passenger Tires Load and Inflation Effects on Force Using Explicit Transient Dynam- and Moment of Passenger Tires ics (Hon H. Liu), 41-55 (2007) Using Explicit Transient Dynam- fatigue resistance ics (Hon H. Liu), 41-55 (2007) Basic Study of PK Fiber Tire Cord fracture energy (Yugo Zuigyo and Masahiko Dynamic Fracture of Natural Yamamoto), 317-325 (2007) Rubber (Ali A. Al-Quraishi and finite element analysis Michelle S. Hoo Fatt), 252-275 Finite Element Analysis of Nonuni- (2007) formity of Tires with Imper- fracture mechanics fections (K. M. Jeong, K. W. Kim, Inelastic Fracture Mechanics for H. G. Beom, and J. U. Park), Tire Durability Simulations 226-238 (2007) (Michael Kaliske, Bastian Naser, 328 TIRE SCIENCE AND TECHNOLOGY and Christian Meiners), 239-250 inelastic material properties (2007) Inelastic Fracture Mechanics for frequency Tire Durability Simulations Prediction of Tread Pattern Wear by (Michael Kaliske, Bastian Naser, an Explicit Finite Element Model and Christian Meiners), 239-250 (J. C. Cho and B. C. Jung), 276- (2007) 299 (2007) in:inite elements fuel economy Computational Model to Investigate Fidelity of J1269 and J2452 (James the Sound Radiation from Rolling A. Popio and John R. Luchini), Tires (Jan Biermann, Otto von Es- 94-117 (2007) torff, Steffen Petersen, and Holger gyroscopic eigenvalue problem Schmidt), 209-225 (2007) A Finite Element Approach to the Lagrangian Transient Dynamics of Rolling Validation of a Steady-State Trans- Tires with Emphasis on Rolling port Analysis for Rolling Treaded Noise Simulation (Maik Brink- Tires (J. Qi, J. R. Herron, K. H. meier, Udo Nackenhorst, and Hei- Sansalone, W. V. Mars, Z. Z. Du, ner Volk), 165-182 (2007) M. Snyman, and H. Suren- handling dranath), 183-208 (2007) Load and Inflation Effects on Force lateral traction and Moment of Passenger Tires Measuring Lateral Tire Performance Using Explicit Transient Dynam- on Winter Surfaces (G. Phet- ics (Hon H. Liu), 41-55 (2007) teplace, S. Shoop, and T. Slagle), high modulus 56-68 (2007) Basic Study of PK Fiber Tire Cord material force method (Yugo Zuigyo and Masahiko Inelastic Fracture Mechanics for Yamamoto), 317-325 (2007) Tire Durability Simulations high tenacity (Michael Kaliske, Bastian Naser, Basic Study of PK Fiber Tire Cord and Christian Meiners), 239-250 (Yugo Zuigyo and Masahiko (2007) Yamamoto), 317-325 (2007) modal superposition ice A Finite Element Approach to the Measuring Lateral Tire Performance Transient Dynamics of Rolling on Winter Surfaces (G. Phet- Tires with Emphasis on Rolling teplace, S. Shoop, and T. Slagle), Noise Simulation (Maik Brink- 56-68 (2007) meier, Udo Nackenhorst, and Hei- imperfection ner Volk), 165—182 (2007) Finite Element Analysis of Nonuni- moment formity of Tires with Imper- Load and Inflation Effects on Force fections (K. M. Jeong, K. W. Kim, and Moment of Passenger Tires H. G. Beom, and J. U. Park), Using Explicit Transient Dynam- 226-238 (2007) ics (Hon H. Liu), 41-55 (2007) VOLUME 35 INDEX 329 motorcycle performance polyketone Transient Response Simulation of Basic Study of PK Fiber Tire Cord an Off-Road Motorcycle with (Yugo Zuigyo and Masahiko Conventional and Multicell Tire Yamamoto), 317-325 (2007) Inflation Mechanisms (Chris- radial force variation topher M. Richards and Thomas Finite Element Analysis of Nonuni- Wade Summers), 2—22 (2007) formity of Tires with Imper- natural rubber fections (K. M. Jeong, K. W. Kim, Dynamic Fracture of Natural H. G. Beom, and J. U. Park), 226-238 (2007) Rubber (Ali A. Al-Quraishi and Michelle S. Hoo Fatt), 252-275 ride Transient Response Simulation of (2007) an Off-Road Motorcycle with NHTSA Star rating Conventional and Multicell Tire The Impact of Plus-Sized Wheel/ Inflation Mechanisms (Chris- Tire Fitment on Vehicle Stability topher M. Richards and Thomas (J. W. Daws, R. E. Larson, and J. Wade Summers), 2—22 (2007) C. Brown), 23—40 (2007) road surface texture nitrogen inflation A Finite Element Approach to the Numerical Model for Nitrogen Tire Transient Dynamics of Rolling Inflation (Kevin R. J. Ellwood, Tires with Emphasis on Rolling John Baldwin, and David R. Noise Simulation (Maik Brink- Bauer), 300-316 (2007) meier, Udo Nackenhorst, and Hei- operational vibration ner Volk), 165-182 (2007) A Finite Element Approach to the rolling Transient Dynamics of Rolling Load and Inflation Effects on Force Tires with Emphasis on Rolling and Moment of Passenger Tires Noise Simulation (Maik Brink- Using Explicit Transient Dynam- meier, Udo Nackenhorst, and Hei- ics (Hon H. Liu), 41-55 (2007) ner Volk), 165-182 (2007) rolling contact oxidation Validation of a Steady-State Trans- Numerical Model for Nitrogen Tire port Analysis for Rolling Treaded Infiation (Kevin R. J. Ellwood, Tires (J. Qi, J. R. Herron, K. H. John Baldwin, and David R. Sansalone, W. V. Mars, Z. Z. Du, Bauer), 300-316 (2007) M. Snyman, and H. Suren- plus-size tire fitment dranath), 183-208 (2007) The Impact of Plus-Sized Wheel/ rolling resistance Tire Fitment on Vehicle Stability Fidelity of J1269 and J2452 (James (J. W. Daws, R. E. Larson, and J. A. Popio and John R. Luchini), C. Brown), 23—40 (2007) 94-117 (2007) 330 TIRE SCIENCE AND TECHNOLOGY rolling resistance and scrap tires snow A Commented Synopsis of the Re- Measuring Lateral Tire Performance port of the Committee for the Na- on Winter Surfaces (G. Phet- tional Tire Efficiency Study teplace, S. Shoop, and T. Slagle), (Marion G. Pottinger, Joseph D. 56-68 (2007) sound radiation Walter, and John D. Eagleburger), A Finite Element Approach to the 70-93 (2007) Transient Dynamics of Rolling rolling tire noise Tires with Emphasis on Rolling A Finite Element Approach to the Noise Simulation (Maik Brink- Transient Dynamics of Rolling meier, Udo Nackenhorst, and Hei- Tires with Emphasis on Rolling ner Volk), 165-182 (2007) Noise Simulation (Maik Mrink- standard reference condition meier, Udo Nackenhorst, and Hei- Fidelity of J1269 and J2452 (James ner Volk), 165—182 (2007) A. Popio and John R. Luchini), SAE J-1269 94-117 (2007) Fidelity of J1269 and J2452 (James steady-state transport A. Popio and John R. Luchini), Validation of a Steady-State Trans- port Analysis for Rolling Treaded 94-117 (2007) Tires (J. Qi, J. R. Herron, K. H. Modeling Transient Rolling Resis- Sansalone, W. V. Mars, Z. Z. Du, tance of Tires (John R. Luchini M. Snyman, and H. Suren- and James A. Popio), 118-140 dranath), 183-208 (2007) (2007) tire SAE J-2452 Load and Inflation Effects on Force Fidelity of J1269 and J2452 (James and Moment of Passenger Tires A. Popio and John R. Luchini), Using Explicit Transient Dynam- 94—117 (2007) ics (Hon H. Liu), 41-55 (2007) Modeling Transient Rolling Resis- tire cord tance of Tires (John R. Luchini Basic Study of PK Fiber Tire Cord and James A. Popio), 118-140 (Yugo Zuigyo and Masahiko Yamamoto), 317—325 (2007) (2007) tire energy loss slip angle Tire Energy Loss from Obstacle Load and Inflation Effects on Force Impact (Timothy B. Rhyne and and Moment of Passenger Tires Steven M. Cron), 141-161 (2007) Using Explicit Transient Dynam- tire inflation mechanisms ics (Hon H. Liu), 41-55 (2007) Transient Response Simulation of Measuring Lateral Tire Performance an Off-Road Motorcycle with on Winter Surfaces (G. Phet- Conventional and Multicell Tire teplace, S. Shoop, and T. Slagle), Inflation Mechanisms (Chris- 56—68 (2007) topher M. Richards and Thomas VOLUME 35 INDEX 331 Wade Summers), 2—22 (2007) ics (Hon H. Liu), 41-55 (2007) tire obstacle impact traction and rolling resistance Tire Energy Loss from Obstacle A Commented Synopsis of the Re- Impact (Timothy B. Rhyne and port of the Committee for the Na- Steven M. Cron), 141-161 (2007) tional Tire Efficiency Study tire road noise (Marion G. Pottinger, Joseph D. Computational Model to Investigate Walter, and John D. Eagleburger), the Sound Radiation from Rolling 70-93 (2007) Tires (Jan Biermann, Otto von Es- transient coastdown testing torff, Steffen Petersen, and Holger Modeling Transient Rolling Resis- Schmidt), 209-225 (2007) tance of Tires (John R. Luchini tire rolling loss and James A. Popio), 118-140 Modeling Transient Rolling Resis- (2007) tance of Tires (John R. Luchini tread pattern and James A. Popio), 118-140 Validation of a Steady-State Trans- (2007) port Analysis for Rolling Treaded tire rolling resistance Tires (J. Qi, J. R. Herron, K. H. A Commented Synopsis of the Re- Sansalone, W. V. Mars, Z. Z. Du, port of the Committee for the Na- M. Snyman, and H. Suren- tional Tire Efficiency Study dranath), 183-208 (2007) (Marion G. Pottinger, Joseph D. tread pattern wear Walter, and John D. Eagleburger), Prediction of Tread Pattern Wear by 70-93 (2007) an Explicit Finite Element Model Modeling Transient Rolling Resis- (J. C. Cho and B. C. Jung), 276-— tance of Tires (John R. Luchini 299 (2007) and James A. Popio), 118-140 vehicle stability (2007) The Impact of Plus-Sized Wheel/ tire uniformity Tire Fitment on Vehicle Stability Finite Element Analysis of Nonuni- (J. W. Daws, R. E. Larson, and J. formity of Tires with Imper- C. Brown), 23-40 (2007) fections (K. M. Jeong, K. W. Kim, wear and rolling resistance H. G. Beom, and J. U. Park), A Commented Synopsis of the Re- 226-238 (2007) port of the Committee for the Na- torque tional Tire Efficiency Study Load and Inflation Effects on Force (Marion G. Pottinger, Joseph D. and Moment of Passenger Tires Walter, and John D. Eagleburger), Using Explicit Transient Dynam- 70-93 (2007) ics (Hon H. Liu), 41-55 (2007) wear rate equation torsion Prediction of Tread Pattern Wear by Load and Inflation Effects on Force an Explicit Finite Element Model and Moment of Passenger Tires (J. C. Cho and B. C. Jung), 276- Using Explicit Transient Dynam- 299 (2007) 332 TIRE SCIENCE AND TECHNOLOGY winter surfaces yawing Measuring Lateral Tire Performance Load and Inflation Effects on Force on Winter Surfaces (G. Phet- and Moment of Passenger Tires teplace, S. Shoop, and T. Slagle), Using Explicit Transient Dynam- 56-68 (2007) ics (Hon H. Liu), 41-55 (2007) Tire Science and Technology Author Index to Volume 35 2007 A Cron, Steven M.: see Rhyne, Timothy B., 141-161 (2007) Al-Quraishi, Ali A.: Dynamic Fracture of Natural Rubber (Ali A. Al-Quraishi and Michelle S. Hoo Fatt), 252-275 (2007) B Daws, J. W.: The Impact of Plus-Sized Wheel/ Baldwin, John: see Ellwood, Kevin R. Tire Fitment on Vehicle Stability J., 300-316 (2007) (J. W. Daws, R. E. Larson, and J. Bauer, David R.: see Ellwood, Kevin C. Brown), 23-40 (2007) R. J., 300-316 (2007) Du, Z. Z.: see Qi, J., 183-208 (2007) Beom, H. G.: see Jeong, K. M., 226— 238 (2007) Biermann, Jan: Computational Model to Investigate the Sound Radiation from Rolling Tires (Jan Biermann, Otto von Es- torff, Steffen Petersen, and Holger Schmidt), 209-225 (2007) Eagleburger, John D.: see Pottinger, Brinkmeier, Maik: Marion G., 70-93 (2007) A Finite Element Approach to the Ellwood, Kevin R. J.: Transient Dynamics of Rolling Numerical Model for Nitrogen Tire Tires with Emphasis on Rolling Inflation (Kevin R. J. Ellwood, Noise Simulation (Maik Brink- John Baldwin, and David R. meier, Udo Nackenhorst, and Hei- Bauer), 300-316 (2007) ner Volk), 165-182 (2007) Brown, J. C.: see Daws, J. W., 23—40 (2007) Cho, J. C.: Prediction of Tread Pattern Wear by Herron, J. R.: see Qi, J., 183-208 an Explicit Finite Element Model (2007) (J. C. Cho and B. C. Jung), 276- Hoo Fatt, Michelle S.: see Al- 299 (2007) Quraishi, Ali A., 252-275 (2007) 333 334 TIRE SCIENCE AND TECHNOLOGY M Jeong, K. M.: Mars, W. V.: see Qi, J., 183-208 Finite Element Analysis of Nonuni- (2007) formity of Tires with Imper- Meiners, Christian: see Kaliske, Michael, 239-250 (2007) fections (K. M. Jeong, K. W. Kim, H. G. Beom, and J. U. Park), 226-238 (2007) Jung, B. C.: see Cho, J. C., 276-299 N (2007) Nackenhorst, Udo: see Brinkmeier, Maik, 165—182 (2007) Naser, Bastian: see Kaliske, Michael, 239-250 (2007) Kaliske, Michael: Inelastic Fracture Mechanics for Tire Durability Simulations (Michael Kaliske, Bastian Naser, and Christian Meiners), 239-250 Park, J. U.: see Jeong, K. M., 226-238 (2007) (2007) Kim, K. W.: see Jeong, K. M., 226- Petersen, Steffen: see Biermann, Jan, 238 (2007) 209-225 (2007) Phetteplace, G.: Measuring Lateral Tire Performance on Winter Surfaces (G. Phet- teplace, S. Shoop, and T. Slagle), 56-68 (2007) Popio, James A.: Larson, R. E.: see Daws, J. W., 23-40 Fidelity of J1269 and J2452 (James (2007) A. Popio and John R. Luchini), Liu, Hon H.: 94-117 (2007) Load and Inflation Effects on Force see Luchini, John R., 118—140 (2007) and Moment of Passenger Tires Pottinger, Marion G.: Using Explicit Transient Dynam- A Commented Synopsis of the Re- ics (Hon H. Liu), 41-55 (2007) port of the Committee for the Na- Luchini, John R.: see Popio, James A., tional Tire Efficiency Study 94—117 (2007) (Marion G. Pottinger, Joseph D. — Modeling Transient Rolling Resis- Walter, and John D. Eagleburger), tance of Tires — 118-140 (2007) 70-93 (2007)

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