Experimental definition of a failure model for the tribological behaviour of polytetrafluoroethylene bronze compounds

Author:

Gódor I1,Major Z2,Vezér Sz3,Grün F1

Affiliation:

1. Chair of Mechanical Engineering, University of Leoben, Austria

2. Institute for Materials Science and Testing of Plastics, University of Leoben, Leoben, Austria

3. Polymer Competence Center Leoben, Leoben, Austria

Abstract

Because of their high chemical and thermal resistance and advantageous friction behaviour, polytetrafluoroethylene (PTFE) compounds are frequently used in various engineering applications, especially for pressurized seals. To adjudge the applicability, and to establish a reliable ranking of various compounds with similar composition and micro-structure for tribological systems, a number of bronze-particle-filled PTFE materials (PTFE-Bz compounds) were investigated with a seal test system at the component level. The two best performing materials in these component tests, termed PTFE-Bz9 and PTFE-Bz14 in this article, were then selected for further, more detailed thermo-mechanical and tribological investigations on a laboratory specimen level. Furthermore, extensive failure analysis of both the worn seals and the test specimens were carried out using laser confocal and scanning electron microscopy techniques. Finally, based on the experimental results a model for describing the functionality and of the failure behaviour of these materials was developed and described.

Publisher

SAGE Publications

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering

Reference5 articles.

1. Recent advances in polymer composites' tribology

2. Effects of Various Fillers on the Friction and Wear of PTFE-Based Composites

3. Friction and wear of PTFE — a review

4. Gódor I., Major Z., Vezér Sz. Development of a tribological functional and failure model for PTFE-Bz-compounds Advanced Problem in Mechanics, St Petersburg, 2006, pp. 181–192.

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