Solid Phase Sheet Forming of Thermoplastics—Part I: Mechanical Behavior of Thermoplastics to Yield

Author:

Stokes V. K.1,Nied H. F.1

Affiliation:

1. General Electric Company, Corporate Research and Development, Schenectady, N. Y. 12301

Abstract

The detailed mechanical behavior to yield of three thermoplastics—polycarbonate, polybutylene terephthalate, and polyetherimide—subjected to simulated forming histories, is examined in order to gain an insight into the sheet forming process for thermoplastics. The phenomenology of yield is shown to be quite different for semicrystalline polybutylene terephthalate when compared with amorphous polycarbonate and polyetherimide. The dependence of the mechanical properties of thermoplastics on temperature, deformation rate and hold-time periods are shown to be important for understanding and controlling the solid phase sheet forming process.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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1. Impact Loading and Testing;Characterization and Failure Analysis of Plastics;2022-05-15

2. Modeling of the mechanical behavior of amorphous glassy polymers under variable loadings and comparison with state-of-the-art model predictions;Mechanics of Materials;2013-11

3. Modeling of the Long-Term Behavior of Glassy Polymers;Journal of Engineering Materials and Technology;2012-12-21

4. Yield Mode Transition in Amorphous PET;Journal of the Society of Materials Science, Japan;2008

5. Impact Loading and Testing;Characterization and Failure Analysis of Plastics;2003-12-01

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