Journal ArticleDOI
Effect of nanoalumina in epoxy adhesive on lap shear strength and fracture toughness of aluminium joints
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TLDR
In this article, the epoxy/alumina nanocomposite adhesives in bonded aluminium alloy joints were determined using a single lap joint and double cantilever beam.Abstract:
Lap shear strength and opening mode fracture toughness of epoxy/alumina nanocomposite adhesives in bonded aluminium alloy joints were determined using a single lap joint, and double cantilever beam...read more
Citations
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The influence of GNP and nano-silica additives on fatigue life and crack initiation phase of Al-GFRP bonded lap joints subjected to four-point bending
TL;DR: In this paper, the authors investigated the influence of adding graphene and silica nano-particles to Araldite 2015 adhesive on the fatigue behavior of aluminum-to-composite bonded single lap joints (SLJs) by a novel fixture under four-point bending.
Journal ArticleDOI
Toughening Effect of Rodlike Cellulose Nanocrystals in Epoxy Adhesive
Sirawit Pruksawan,Sirawit Pruksawan,Sadaki Samitsu,Yoshihisa Fujii,Naoya Torikai,Masanobu Naito,Masanobu Naito +6 more
TL;DR: In this paper, the authors report that epoxy adhesive containing cellulose nanocrystal (CNC) aggregates produced using a solvent-free ball milling method achieves drastically improved adhesive strength and fracture toughness compared with that of the reference adhesive without CNCs.
Journal ArticleDOI
The Development of Nanoalumina-Based Cement Mortars for Overlay Applications in Concrete Floors
TL;DR: The article concurs that the most favorable results, in terms of lower abrasion resistance and higher subsurface tensile strength of the cement mortar used to make the overlay, are mainly brought about by adding 0.5% of Al2O3 nanopowder.
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Performance of various fillers in adhesives applications: a review
Journal ArticleDOI
Dynamic analysis of scarf adhesive joints in CFRP composites modified with Al2O3-nanoparticles under fatigue loading at different temperatures
TL;DR: In this paper, Al2O3-nanoparticles were incorporated into the adhesive layer to improve the fatigue strength of scarf adhesive joints at room temperature (RT) and 50°C.
References
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Journal ArticleDOI
Effect of nano-Al2O3 on adhesion strength of epoxy adhesive and steel
L.L. Zhai,G.P. Ling,Y.W. Wang +2 more
TL;DR: In this paper, nano-Al 2 O 3 particles were introduced into an epoxy adhesive to improve the adhesion strength of bonded steel utilizing both modified and unmodified epoxy adhesives.
Optimum adhesive thickness in structural adhesives joints using statistical techniques base on Weibull distribution
TL;DR: In this paper, the influence of the adhesive thickness on the mechanical behavior of the joint and, by means of a statistical analysis based on Weibull distribution, propose the optimum thickness for the adhesive combining the best mechanical performance and high reliability.
Journal ArticleDOI
Optimum adhesive thickness in structural adhesives joints using statistical techniques based on Weibull distribution
TL;DR: In this paper, the influence of the adhesive thickness on the mechanical behavior of the joint and, by means of a statistical analysis based on Weibull distribution, propose the optimum thickness for the adhesive combining the best mechanical performance and high reliability, providing a general use for a more reliable use of adhesive bondings and therefore for a better and wider use in the industrial manufacturing processes.
Journal ArticleDOI
Effects of the addition of inorganic nanoparticles on the adhesive strength of a hybrid sol–gel epoxy system
TL;DR: In this paper, a combination of inorganic nanoparticles was added as reinforcement to a diglycidyl ether of bisphenol-A (DGEBA)-based epoxy resin modified by a hybrid sol-gel method.
Journal ArticleDOI
Fracture toughness of spherical silica-filled epoxy adhesives
TL;DR: In this paper, the effect of particle size and particle/matrix adhesion upon the fracture toughness was investigated using double cantilever beam (DCB) specimens, where the particles were treated with γ-aminopropyl methyldiethoxysilane and hexamethyl disilazane.