Cut resistant article
The invention relates to an article comprising a cut-resistant coating which contains a polymeric matrix and a cut-resistant component distributed in the polymeric matrix characterized in that said cut-resistant component is a plurality of fibers having an average length (L) to an average diameter (D) ratio, i.e. L/D, of at least 10.
1. An article having an outer surface, the article comprising:
a woven fabric, and
a cut-resistant coating disposed at least partially on the outer surface of the article, wherein
the cut-resistant coating comprises a polymeric matrix and a cut-resistant component distributed in the polymeric matrix, and wherein
the cut-resistant component is a plurality of hard cut-resistant mineral fibers having a Mohs hardness of at least 4, and an aspect ratio L/D of an average length (L) to an average diameter (D) of the fibers of at least 10, with the average diameter (D) of the cut-resistant component being between 5 and 50 microns, and wherein
the outer surface of the article is a surface of the article before receiving the cut-resistant coating which is exposed first to a cutting force, cutting action or cutting process, and wherein
the article has a resistance against cutting forces of a magnitude between 5 cN and 15 cN as measured on a Cut Protection Performance (CPP) tester according to ASTMF1790-05 standard.
2. The article of claim 1 , wherein the cut-resistant coating comprises 0.1-20 volume % of the cut-resistant component relative to a volume of the polymeric matrix.
3. The article of claim 1 , wherein the article is a glove.
4. The article of claim 1 , wherein the polymeric matrix comprises an elastomeric polymer selected from the group consisting of natural rubber, synthetic rubber and thermoplastic elastomers.
5. The article of claim 1 , wherein the cut-resistant coating has an average thickness which is at least 0.3 mm.
6. The article of claim 1 , wherein the hard fibers are spun mineral fibers.
7. The article of claim 1 , wherein the average length (L) of the cut resistant fibers is at most 10000 microns.
8. The article of claim 1 , wherein at least part of the cut-resistant fibers have an aspect ratio (L/D) of at most 10000.