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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Montagne, Alex
Laboratoire de Mécanique et Procédés de Fabrication
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (57/57 displayed)
- 2024Exploring the effect of layer thickness on the elastoplastic properties of the constituent materials of CrN/CrAlN multilayer coatings: a nanoindentation and finite element-based investigation
- 2024A Method to Extract the Elastoplastic Properties of the Constituent Layers of Multilayer Coatings
- 2024Effect of milling time on structural, physical and tribological behavior of a newly developed Ti-Nb-Zr alloy for biomedical applications
- 2023A Method to Extract the Elastoplastic Properties of the Constituent Layers of Multilayer Coatings
- 2023Effect of Bilayer Variation on the Properties of CrN/CrAlN Multilayer Coatings Produced by DC Magnetron Sputtering
- 2023Replacing Toxic Hard Chrome Coatings: Exploring the Tribocorrosion Behaviour of Electroless Nickel-Boron Coatingscitations
- 2023Tribocorrosion and tribological behavior innovative chrome coating produced by plasma transferred arc
- 2023Martens hardness of Constantan thin films on (100) Si wafer: Improvement in contact area function in nanoindentationcitations
- 2022Effect of Bilayer Variation on the Properties of CrN/CrAlN Multilayer Coatings Produced by DC Magnetron Sputtering
- 2022Identification of the elastic-plastic properties of CrN coating on elastic-plastic substrate by nanoindentation using finite element method-reverse algorithmcitations
- 2022Identification of the elastic-plastic properties of CrN coating on elastic-plastic substrate by nanoindentation using finite element method-reverse algorithmcitations
- 2022Synthesis and tribocorrosion performances of multilayer (Ta/ZrN)n coatingscitations
- 2022Selection of New Heat Treatment Conditions for Novel Electroless Nickel-Boron Deposits and Characterization of Heat-Treated Coatingscitations
- 2021The effect of the substrate surface state on the morphology, topography and tribocorrosion behavior of Si/Zr sol-gel coated 316L stainless steelcitations
- 2021The effect of the substrate surface state on the morphology, topography and tribocorrosion behavior of Si/Zr sol-gel coated 316L stainless steelcitations
- 2021The effect of the substrate surface state on the morphology, topography and tribocorrosion behavior of Si/Zr sol-gel coated 316L stainless steel
- 2021The Effect of Bilayer Periods and Their Thickness in Magnetron Sputtering Protective Multilayer Coatings for Tribological Applicationscitations
- 2021Effect of carbon content on structural, mechanical and tribological properties of Cr-V-C-N coatingscitations
- 2020Mechanical properties of WC/Co-CNT HVOF sprayed coatingscitations
- 2020Mechanical properties of WC/Co-CNT HVOF sprayed coatingscitations
- 2020The effect of the substrate surface state on the morphology, topography and tribocorrosion behavior of Si/Zr sol-gel coated 316L stainless steelcitations
- 2020Mechanical and corrosion characterization of industrially treated 316L stainless steel surfaces
- 2020SVET measurements combined with in-situ scratch approaches
- 2020Impact of industrially applied surface finishing processes on tribocorrosion performance of 316L stainless steelcitations
- 2020Impact of industrially applied surface finishing processes on tribocorrosion performance of 316L stainless steelcitations
- 2019Effect of Molybdenum Content on Structural, Mechanical, and Tribological Properties of Hot Isostatically Pressed β-Type Titanium Alloys for Orthopedic Applicationscitations
- 2019Improvement of the corrosion and mechanical properties of stainless steel by sol-gel hybrid coatings : a first approach
- 2019Effect of annealing treatment on the microstructure, mechanical and tribological properties of chromium carbonitride coatingscitations
- 2019Nano‐indentation for probing mechanical properties of nanocomposites based on ethylene butyl acrylate copolymer and carbon blackcitations
- 2019Enhanced structural and tribological performance of nanostructured Ti-15Nb alloy for biomedical applicationscitations
- 2018On functional signatures of bare and coated formwork skin surfaces
- 2018On functional signatures of bare and coated formwork skin surfaces
- 2018Assessment of the mechanical and tribological performance of a ZrN PVD coatingcitations
- 2018Effect of Zr content on friction and wear behavior of Cr‐Zr‐N coating systemcitations
- 2018Effect of Zr content on friction and wear behavior of Cr‐Zr‐N coating systemcitations
- 2017Biocompatibility of sol-gel hydroxyapatite-titania composite and bilayer coatingscitations
- 2017Investigations on the mechanical properties of the elementary thin films composing a CuIn1 − xGaxSe2 solar cell using the nanoindentation techniquecitations
- 2017Multiscale and multicycle instrumented indentation to determine mechanical properties: Application to the BK7 crown borosilicatecitations
- 2017Characterisation of R.F. magnetron sputtered Cr-N, Cr-Zr-N and Zr-N coatingscitations
- 2017Scale effect on tribo-mechanical behavior of vegetal fibers in reinforced bio-composite materialscitations
- 2017Scale effect on tribo-mechanical behavior of vegetal fibers in reinforced bio-composite materials
- 2017Hydroxyapatite-TiO2-SiO2-Coated 316L Stainless Steel for Biomedical Applicationcitations
- 2017A new method to fabricate Fe-TiC composite using conventional sintering and steam hammercitations
- 2017Structural and mechanical properties of Cr–Zr–N coatings with different Zr content
- 2017Effect of Replacing Vanadium by Niobium and Iron on the Tribological Behavior of HIPed Titanium Alloyscitations
- 2017Effect of Replacing Vanadium by Niobium and Iron on the Tribological Behavior of HIPed Titanium Alloyscitations
- 2016Modeling and optimization of a ball-burnished aluminum alloy flat surface with a crossed strategy based on response surface methodologycitations
- 2016Synthesis, microstructural and tribological characterization of calcined nano-bioceramic α- al2o3, sintered at different temperatures
- 2016Influence of processing conditions on nanoindentation properties of spark plasma sintered ptfe
- 2016Nanoindentation hardness and macroscopic mechanical behaviors in filled elastomeric nanocomposites
- 2016ASSESSMENT OF THE MECHANICAL AND TRIBOLOGICAL PERFORMANCE OF A ZrN PVD COATING
- 2016Investigations on the mechanical properties of the elementary thin films composing a CuIn1−xGaxSe2 solar cell using the nano indentation technique.citations
- 2016Investigations on the mechanical properties of the elementary thin films composing a CIGS solar cell using the nano indentation technique.citations
- 2016Surface Modification Technologies
- 2015Dense zig-zag microstructures in YSZ thin films by pulsed laser depositioncitations
- 2014Plasticity and fracture of sapphire at room temperature: load-controlled microcompression of four different orientationscitations
- 2013Comparison of Al-Si-N nanocomposite coatings deposited by HIPIMS and DC magnetron sputteringcitations
Places of action
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article
Scale effect on tribo-mechanical behavior of vegetal fibers in reinforced bio-composite materials
Abstract
The nature of friction of vegetal fiber and polymeric matrix in bio-composite materials is very important for many industrial applications. In order to design natural fiber composites for structural applications, the scientific understanding of tribo-mechanical phenomena inside the heterogeneous structure of natural fibers and also the overall heterogeneous structure of the bio-composite is required. This implies a special focus on the fundamental aspects of vegetal fiber friction at the macro-, meso-, and microscale. This research paper investigates the multiscale mechanical and friction properties of natural fibers. The mechanical properties of flax fibers, glass fibers (as a reference) and polypropylene matrix has been evaluated at microscale and mesoscale by Atomic Force Microscopy (AFM) and Nanoindenter XP (MTS Nano Instruments), respectively, using nanoindentation technique. At the macroscale, the mechanical behavior has been considered for the global composite structure. The micro-friction response of each composite component has been measured by instrumenting AFM for scratch test technique. The results show the scale dependence of mechanical behavior for flax fibers, unlike glass fibers and polypropylene matrix where their mechanical performances are independent of the analysis scale. Tribological results in terms of dynamic friction coefficient show that flax fibers induce more friction than glass fibers, while polypropylene matrix generates the highest friction. This is sign that vegetal fiber friction is scale dependent property as shown when referring to the contact mechanics theory. The arisen results are very important for many technical applications in PMCs surface engineering based on plant fibers.