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Focus Graphite Inc V.FMS.WT


Primary Symbol: V.FMS Alternate Symbol(s):  FCSMF

Focus Graphite Inc. is a Canada-based advanced exploration company. The Company is engaged in the exploration and development of deposits of flake graphite located in Quebec, Canada. Its projects are Lac Knife and Lac Tetepisca projects. Lac Knife project is a high-grade crystalline flake graphite deposit located in northeastern Quebec, approximately 27 kilometers (km) south of Fermont. The property consists of approximately 57 mining claims covering 29,863 hectares. Lac Tetepisca project comprises two properties, Lac Tetepisca and Lac Tetepisca Nord. These properties are located in the Southwest Manicouagan reservoir area of the Cote-Nord region of Quebec, approximately 234 km north-northwest of the city of Baie-Comeau, an industrial city located where the Manicouagan River intersects the north shore of St. Lawrence River in the Cote-Nord, Quebec. Its properties form a block of approximately 115 claims, covering 6,000 hectares within the Manicouagan-Ouest Graphitic Corridor.


TSXV:FMS - Post by User

Bullboard Posts
Post by clearsuddenon Jun 03, 2014 10:23am
223 Views
Post# 22624415

reinforced aluminum that is up to 58% stronger than regular

reinforced aluminum that is up to 58% stronger than regular
https://nextbigfuture.com/2014/06/china-makes-graphene-reinforced.html

China makes graphene reinforced aluminum that is up to 58% stronger than regular aluminum alloys and uses just 0.3% graphene

Graphene-reinforced aluminum matrix nanocomposites were successfully synthesized through ball milling and powder metallurgy. The tensile strength and yield strength of graphene-reinforced aluminum matrix nanocomposites are remarkably enhanced by adding graphene nanoflakes(GNFs). Importantly, the ductility properties are remained excellently, which is firstly found in the second phase reinforced metal matrix nanocomposites. The microstructures were observed by OM, SEM and TEM method. And the tensile properties were tested.The results show that graphene nanoflakes are effectively dispersed and well consolidate with aluminum matrix, however, chemical reactions are not observed. The original structured characteristics of graphene nanoflakes are preserved very well. The average tensile strength and yield strength of nanocomposite are 454MPa and 322MPa, respectively,which are 25% and 58% higher than the pristine aluminum alloy at a nanofiller mass fraction of 0.3%, while the ductility increases slightly. The relevant mechanisms of strengthening and toughening enhancement are discussed on the base of 2D and wrinkled structured properties of graphene nanoflakes.

The tensile strength and yield strength of graphene-reinforced aluminum matrix nanocomposites are remarkably enhanced by adding graphene nanoflakes (GNFs), they reported in their paper in the Journal of Materials Engineering.

Importantly, the ductility properties are remained excellently, which is firstly found in the second phase reinforced metal matrix nanocomposites. The microstructures were observed by OM, SEM and TEM method. … The results show that graphene nanoflakes are effectively dispersed and well consolidate with aluminum matrix, however, chemical reactions are not observed. The original structured characteristics of graphene nanoflakes are preserved very well. The relevant mechanisms of strengthening and toughening enhancement are discussed on the base of 2D and wrinkled structured properties of graphene nanoflakes.

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