Mechanical Properties of Polymeric Materials

作者: Arthur Tobolsky , Henry Eyring

DOI: 10.1063/1.1723812

关键词: Constant (mathematics)VibrationMaterials scienceComposite materialStress relaxationCreepExtrusionConstant loadPhysical and Theoretical ChemistryGeneral Physics and Astronomy

摘要: A molecular model in terms of which the elastic viscous properties rubber‐like substances can be interpreted is presented. Experiments on stress relaxation at constant extension, creep under load, extrusion, vibration, and breaking are discussed a mathematical formulation this model.

参考文章(14)
L. R. G. Treloar, Elastic recovery and plastic flow in raw rubber Transactions of the Faraday Society. ,vol. 35, pp. 538- 549 ,(1940) , 10.1039/TF9403500538
Eugene Guth, Hubert M. James, Elastic and Thermoelastic Properties of Rubber like Materials Industrial & Engineering Chemistry. ,vol. 33, pp. 624- 629 ,(1941) , 10.1021/IE50377A017
W. E. Trumpler, Relaxation of Metals at High Temperatures Journal of Applied Physics. ,vol. 12, pp. 248- 253 ,(1941) , 10.1063/1.1712902
Percy Phillips, The Slow Stretch in Indiarubber, Glass, and Metal Wires when subjected to a Constant Pull Proceedings of the Physical Society of London. ,vol. 19, pp. 491- 511 ,(1903) , 10.1088/1478-7814/19/1/342
J. R. Scott, The plastic-elastic behaviour of ebonite Transactions of The Faraday Society. ,vol. 38, pp. 284- 292 ,(1942) , 10.1039/TF9423800284
Herbert Leaderman, Textile Materials and the Time Factor I. Mechanical Behavior of Textile Fibers and Plastics Textile Research Journal. ,vol. 11, pp. 171- 193 ,(1941) , 10.1177/004051754101100401
R. B. Stambaugh, Vibration Properties of Rubberlike Materials Industrial & Engineering Chemistry. ,vol. 34, pp. 1358- 1365 ,(1942) , 10.1021/IE50395A024
S. D. Gehman, Rubber in Vibration Journal of Applied Physics. ,vol. 13, pp. 402- 413 ,(1942) , 10.1063/1.1714885
Henry Eyring, Viscosity, Plasticity, and Diffusion as Examples of Absolute Reaction Rates The Journal of Chemical Physics. ,vol. 4, pp. 283- 291 ,(1936) , 10.1063/1.1749836