The dependence of the functional properties of the nanocomposite with matrix made of Epidian 100 resin due to size of reinforcement made of Fe67Co10Ni12B20 alloy

Abstract

Purpose: Objective of the paper was to determine the effect of particle size fraction for themechanical properties of powders and magnetic fields produced powder consisting of ironbasedalloys and an epoxy resin (trade name Epidian 100) which was obtained as a resultof press.Design/methodology/approach: Samples were produced by the method of singleunilateralpressing. To achieve the pursued objective, the following tests were performed:microstructural observations – light microscope, roughness tests, statistical the hysteresisloops.Findings: On the basis of the research it can be stated that with the increase in the sizefraction of the reinforcement of composites increased their roughness and greater was theirdensity. In addition, with the increase in the size fraction of the reinforcement of compositesincreased the field coercivity, while decreasing saturation magnetisation.Research limitations/implications: The study not specified time and the influenceof baling pressure on the mechanical properties and magnetic properties of compositesproduced using the single-uniaxial press.Practical implications: The division into three fractions powder using a sieve analysis didnot allow for adequate separation of powders. In each fraction were small particles. In thefuture, it will be used a long period of time sieving powders.Originality/value: The paper presents new method producing magnetic composites,where possible was give shape by using epoxy resin.

Authors and Affiliations

A. Siejka, M. Szota, P. Pietrusiewicz, J. Klimas, K. Błoch

Keywords

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  • EP ID EP190011
  • DOI 10.5604/17348412.1230099
  • Views 108
  • Downloads 0

How To Cite

A. Siejka, M. Szota, P. Pietrusiewicz, J. Klimas, K. Błoch (2016). The dependence of the functional properties of the nanocomposite with matrix made of Epidian 100 resin due to size of reinforcement made of Fe67Co10Ni12B20 alloy. Journal of Achievements in Materials and Manufacturing Engineering, 2(77), 64-68. https://europub.co.uk/articles/-A-190011