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Fatigue design of thermoplastic laser welds
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  • 作者:D. Spancken ; J. Decker ; S. Ruotsalainen ; P. Laakso ; A. Büter
  • 关键词:Laser welding ; Polypropylene ; Structures ; Pressure tests ; Fatigue life
  • 刊名:Welding in the World
  • 出版年:2015
  • 出版时间:January 2015
  • 年:2015
  • 卷:59
  • 期:1
  • 页码:65-70
  • 全文大小:3,604 KB
  • 参考文献:1. Hartmann J, Büter A (2010) Experimentelle Materialprüfung von kurzglasfaserverst?rkten Thermoplasten im Sinne der Betriebsfestigkeit. 11. Darmst?dter Kunststofftag
    2. Hartmann J, Moosbrugger E, Büter A (2011) Variable amplitude loading with components made of short fiber reinforced Polyamide 6.6., 11th International Conference on the Mechanical Behaviour of Materials
    3. Hartmann J, Büter A (2010) Relationship between mechanical loading, and geometry and its influence on the fatigue behaviour of short fiber reinforced thermo-plastics. 14th European Conference on Composite Materials
    4. Spancken D, Decker J, Büter A (2013) Betriebsfeste Bemessung von thermoplastischen Laserschwei?n?hten; Landshuter Leichtbau-Colloquium
    5. Russek UA (2006) Prozesstechnische Aspekte des Laserdurchstrahlschwei?ens von Thermoplasten. Dissertation RWTH Aachen; Shaker Verlag, Aachen
    6. Laakso P, Ruotsalainen S, Kujanp?? V (2011) Pyrometer control for quasi-simultaneous laser welding. VTT Technical Research Centre of Finland, Lappeenranta University of Technology; 13th NOLAMP Conference
    7. Hartmann J, Monin M, Marie Louise A, Ayglon D, Robichon P, Limousin L, Gerard F, Naudin F, Guyon D, Launay A, Raoult I, Büter A, Sonino CM (2011) Influence of frequency and stress concentration on fatigue behavior of short-glass-fibre reinforced polyamides. International conference on fatigue design
    8. Sonino CM, Moosbrugger E (2007) Fatigue design of highly loaded short-glass-fibre reinforced polyamide parts in engine component. Int J Fatigue 30:1274-288
  • 刊物主题:Metallic Materials; Continuum Mechanics and Mechanics of Materials; Theoretical and Applied Mechanics;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1878-6669
文摘
At the present time, the amount of polymers used for lightweight design applications is increasing steadily. In the past, components made from polymers have often been designed using conventional structural design concepts. These concepts do not scope all of the potential benefits of the material which could be used for lightweight design. A new technology for the joining of polymers used for lightweight structures is the laser welding process. For structures joined using this new technology, the specific values of mechanical properties of the polymer weld lines, which are essential for lifetime estimation, are often missing. In most instances, the requirement is for laser welded structural components to be hermetically sealed. Therefore, inner pressure testing is an allocated test scenario. Test specimens that can be used to represent specific inner pressure load scenarios are only partially available. This paper presents a new type of test specimen for inner pressure loading at the laser weld line. Based on experiments, S/N-curves for inner pressure loading and different laser weld process applications have been established.

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