Journal Article

·2020

Effect of hexagonal boron nitride on the coefficient of frictions of organic-inorganic hybrid polymer thin films for metal surface coatings

Mehmet Karadağ YTU , Oğuz Karaahmet YTU , Buğra Çiçek YTU , Mustafa İlker Usta YTU

Journal of Adhesion Science and Technology

Abstract

Organic-inorganic hybrid coatings were developed via a sol-gel method using hexagonal boron nitride (h-BN) as a ceramic filler material incorporated into a polymeric matrix. To investigate the effects of h-BN on the properties of polymer-based coatings, parameters such as hardness, coefficient of friction, and hydrophobicity were investigated. Colloidal silica (CS), methyltrimethoxysilane (MTMS), water, and acid catalyst containing coatings were prepared by varying the content of h-BN from 10% to 25%. All the coatings were prepared with the same experimental procedure and coated on 1050 aluminum alloy plates. The compensating contents of MTMS and colloidal silica with a fixed molar ratio of MTMS and CS were set to be 1:1.2, and a specific amount of the catalyst was utilized. Coatings were examined by Fourier transform infrared spectroscopy (FTIR), scanning electron microscope (SEM), and energy-dispersive X-ray spectroscopy (EDS). The most promising physical properties were determined to be the pencil hardness of 8B, adhesion strength of 5B, coefficient of friction of 0.332 N, and water contact angle of 114.75°. Therefore, it can be concluded that the h-BN improves the physical properties of polymeric coatings. In addition, this study demonstrates the effect of h-BN on the adherence of polymer matrix-based hybrid coatings.

Keywords

Materials science Methyltrimethoxysilane Scanning electron microscope Polymer Ceramic Fourier transform infrared spectroscopy Chemical engineering Composite material Contact angle Sol-gel Boron nitride Coating Nanotechnology

Subject Areas

Tribology and Wear Analysis ·Mechanics of Materials ·Physical Sciences
Metal and Thin Film Mechanics ·Mechanics of Materials ·Physical Sciences
Diamond and Carbon-based Materials Research ·Materials Chemistry ·Physical Sciences

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