2022
DOI: 10.3390/ma15041579
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The Mechanical and Tribological Properties of Epoxy-Based Composites Filled with Manganese-Containing Waste

Abstract: Waste from large-scale production processes is a growing environmental problem that can potentially be solved by using this waste as fillers in polymeric composites to improve the mechanical and tribological properties of polymeric matrixes. This paper presents research concerning how the introduction of fillers in the form of manganese residue and manganese(II) oxide changes the mechanical and tribological properties of epoxy composites produced by gravity casting. The research was carried out for composites … Show more

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Cited by 9 publications
(6 citation statements)
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References 29 publications
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“…Recykling mechaniczny jest najprostszy, najmniej kosztowny i najbardziej rozpowszechniony. Polega on na przetwarzaniu zużytych materiałów w procesach fizycznych (rozdrabnianie, mielenie, klasyfikacja), w wyniku czego powstaje recyklat, który można ponownie wykorzystać do wytworzenia produktów o właściwościach użytkowych [9,16].…”
Section: Wprowadzenieunclassified
See 1 more Smart Citation
“…Recykling mechaniczny jest najprostszy, najmniej kosztowny i najbardziej rozpowszechniony. Polega on na przetwarzaniu zużytych materiałów w procesach fizycznych (rozdrabnianie, mielenie, klasyfikacja), w wyniku czego powstaje recyklat, który można ponownie wykorzystać do wytworzenia produktów o właściwościach użytkowych [9,16].…”
Section: Wprowadzenieunclassified
“…The mechanical blade is the simplest, least expensive and most widespread. It consists in the processing of used materials in physical processes (grinding, grinding, classification), resulting in the formation of a recyclate that can be reused to produce products with functional properties [9,16].…”
Section: Introductionmentioning
confidence: 99%
“…Due to the continuous search for materials that can improve the mechanical properties of composites [19][20][21], in this article it was decided to test composites based on glass fibers (GFRP) with the addition of the gamma-aluminum oxide nanopowder nanofiller. In order to more precisely visualize the results and determine the impact of the nanoadditive on the destruction process of composite materials, tools such as the acoustic emission method and K-S metric entropy were used for analysis [22].…”
Section: Introductionmentioning
confidence: 99%
“…The Silesian University of Technology research using silicones as the composite matrices resulted in several results in which composites with organic and non-organic filling were tested. The study used inorganic zinc and manganese wastes from the steel industry as fillers in silicone-based composites [42,43].…”
Section: Introductionmentioning
confidence: 99%