Abstract
Due to rising demands regarding for light weight design, nowadays metal parts especially in the automotive industry are often superseded by parts made of short glass fibre reinforced (sgfr) plastics. Their high specific strength, formability and good process ability allow the adaptability for many requirements. To use the light weight potential and shortening development time, an improved knowledge about the fatigue behaviour of these materials is essential. As shown in [1], the concept of local S/N-curves is well applicable for these group of materials.
The material behaviour of sgfr plastics is manly effected by the fibre orientation. Furthermore influences caused by environmental conditions like temperature, moisture absorption and ambient media etc. have to taken into account. Validation on complex shaped components show a good correlation between experimental and simulation results.
The material behaviour of sgfr plastics is manly effected by the fibre orientation. Furthermore influences caused by environmental conditions like temperature, moisture absorption and ambient media etc. have to taken into account. Validation on complex shaped components show a good correlation between experimental and simulation results.
Translated title of the contribution | Methoder zur betriebsfesten Auslegung von klurzfaserverstärkten Polymeren unter Berücksichtigung der Faserorientierung und Bindenähten |
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Original language | English |
Publication status | Published - 12 Oct 2016 |
Event | Polymer Processing Society Asia/Australia Conference 2016: Polymer Processing Society Asia/Australia Conference 2016 - International Convention Center, Chengdu, China Duration: 11 Oct 2016 → 14 Oct 2016 http://www.pps-2016.com |
Conference
Conference | Polymer Processing Society Asia/Australia Conference 2016 |
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Abbreviated title | PPS Asia/Australia 2016 |
Country/Territory | China |
City | Chengdu |
Period | 11/10/16 → 14/10/16 |
Internet address |
Keywords
- manufacturing
- Mechanical properties
- Enviromental conditions
- local S/N-curve