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Multiscale tribo-mechanical analysis of natural fiber composites for manufacturing applications

Article dans une revue avec comité de lecture
Auteur
WANG, Zimo
BUKKAPATNAM, Satish
ccEL MANSORI, Mohamed
211915 Mechanics surfaces and materials processing [MSMP]
ccCHEGDANI, Faissal

URI
http://hdl.handle.net/10985/15196
DOI
10.1016/j.triboint.2018.02.030
Date
2018
Journal
Tribology International

Résumé

This paper aims to investigate the tribo-mechanical behavior of natural fiber reinforced plastic (NFRP) composites with specific consideration of the multiscale complex structure of natural fibers. Understanding the multiscale tribo-mechanical performances of these eco-friendly materials can lead to a better design of their manufacturing processes. Nanoindentation and nanoscratching experiments are conducted on flax fibers reinforced polypropylene composites using a triboindenter at a specific contact scale generated by the tip indenter radius (100 nm). Results confirm the significant effect of the geometric contact scale on the flax fibers stiffness. Moreover, flax fibers friction shows a multiscale behavior where the mechanisms of nano-friction are vastly different from those of micro-friction, which is related to the physical phenomena arisen at each scale.

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MSMP_TI_201806_CHEGDANI.pdf
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2.621Mo
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  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Bidirectional Gated Recurrent Deep Learning Neural Networks for Smart Acoustic Emission Sensing of Natural Fiber–Reinforced Polymer Composite Machining Process 
    Article dans une revue avec comité de lecture
    WANG, Zimo; DIXIT, Pawan; TAKABI, Behrouz; TAI, Bruce L.; BUKKAPATNAM, Satish; ccEL MANSORI, Mohamed; ccCHEGDANI, Faissal (2020)
    Natural fiber–reinforced polymer (NFRP) composites are increasingly considered in the industry for creating environmentally benign product alternatives. The complex structure of the fibers and their random distribution ...
  • Acoustic Emission Characterization of Natural Fiber Reinforced Plastic Composite Machining Using a Random Forest Machine Learning Model 
    Article dans une revue avec comité de lecture
    WANG, Zimo; ccCHEGDANI, Faissal; YALAMARTI, Neehar; TAKABI, Behrouz; TAI, Bruce; ccEL MANSORI, Mohamed; BUKKAPATNAM, Satish (ASME International, 2020-01-31)
    Natural fiber reinforced plastic (NFRP) composites are eliciting an increased interest across industrial sectors, as they combine a high degree of biodegradability and recyclability with unique structural properties. These ...
  • Characterization of the physical origins of acoustic emission (AE) from natural fiber reinforced polymers (NFRPs) machining processes 
    Article dans une revue avec comité de lecture
    WANG, Zimo; GUO, Ruiqi; MA, Qiyang; ccCHEGDANI, Faissal; TAI, Bruce; BUKKAPATNAM, Satish T. S.; ccEL MANSORI, Mohamed (Springer Nature, 2021-09-08)
    Natural fiber reinforced polymers (NFRPs) are environmentally friendly and are receiving growing attention in the industry. However, the multi-scale structure of natural fibers and the random distribution of the fibers in ...
  • Thermal effect on the tribo-mechanical behavior of natural fiber composites at micro-scale 
    Article dans une revue avec comité de lecture
    BUKKAPATNAM, Satish T.S.; EL AMRI, Iskander; ccEL MANSORI, Mohamed; ccCHEGDANI, Faissal (Elsevier, 2019)
    This paper aims to explore the thermal influence on the micro-tribo-mechanical behavior of natural fiber composites. Nanoindentation and scratch-test are used to characterize flax fibers reinforced polypropylene (PP) ...
  • Thermal Effects on Tribological Behavior in Machining Natural Fiber Composites 
    Communication avec acte
    TAKABI, Behrouz; TAI, Bruce; BUKKAPATNAM, Satish; ccEL MANSORI, Mohamed; ccCHEGDANI, Faissal (ELSEVIER, 2018)
    Machining natural fibers reinforced plastic (NFRP) composites is nowadays a real challenge for academia and industries. These eco-friendly materials are emerging in automotive and aeronautical industries thanks to many ...

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