Flame retardant polyolefin composition
The invention provides a flame retardant polyolefin composition comprising a) an ethylene based plastomer with a density in the range of 0.850 to 0.915 g/cm 3 and an MFR 2 in the range 0.5-30 g/10 min; b) a propylene based plastomer with a density in the range of 0.860 to 0.910 g/cm 3 and an MFR 2 in the range 0.01-30 g/10 min; and c) a flame retardant.
1 . A fabric substrate coated with a flame retardant polyolefin composition comprising:
a) 35 to 75 wt % relative to a total weight of the flame retardant polyolefin composition as a whole of a thermoplastic ethylene based plastomer with a density in the range of 0.850 to 0.915 g/cm 3 and an MFR 2 determined according to ISO 1133 at a temperature of 190° C. and under a load of 2.16 kg in the range 0.5-30 g/10 min;
b) a propylene based plastomer with a density in the range of 0.860 to 0.910 g/cm 3 and an MFR 2 determined according to ISO 1133 at a temperature of 230° C. and under a load of 2.16 kg in the range 0.01-30 g/10 min; and
c) a flame retardant.
2 . The coated fabric substrate according to claim 1 , wherein the ethylene based plastomer is a copolymer of ethylene and at least one C3-C10 alpha-olefin.
3 . The coated fabric substrate according to claim 1 , wherein the propylene based plastomer is a copolymer of propylene and ethylene or a C4-C10 alpha-olefin.
4 . The coated fabric substrate of claim 1 , wherein the propylene based plastomer is present in an amount of 5 to 45 wt % relative to a total weight of the flame retardant polyolefin composition as a whole.
5 . The coated fabric substrate of claim 1 , wherein the flame retardant is present in an amount of 1.5 to 30 wt %, or 2.0 to 30 wt %, or 5.0 to 30 wt %, or 10 to 30 wt %, relative to a total weight of the flame retardant polyolefin composition as a whole.
6 . The coated fabric substrate of claim 1 , wherein the flame retardant polyolefin composition further comprises a high melt flow rate propylene based plastomers having an MFR 2 determined according to ISO 1133 at a temperature of 230° C. and under a load of 2.16 kg of greater than 5000 g/10 min.
7 . The coated fabric substrate of claim 1 , wherein the flame retardant comprises a mixture of an ammonium polyphosphate and a silane functionalised ethylene copolymer.
8 . The coated fabric substrate according to claim 7 , wherein the silane functionalised ethylene copolymer is a copolymer of ethylene with a methylacrylate comonomer and a vinyl trimethoxysilane comonomer.
9 . The coated fabric substrate as claimed in claim 1 , wherein the fabric substrate is a woven or non-woven fabric.
10 . The coated fabric substrate as claimed in claim 1 , wherein the fabric substrate is a knitted fabric.
11 . A process for coating a fabric substrate with the flame retardant polyolefin composition as defined in claim 1 , wherein said process comprises applying said composition to a surface of said substrate.
12 . An article comprising at least one component formed from the coated fabric substrate as defined in claim 1 .
13 . The article as claimed in claim 12 , wherein the article is selected from the group consisting of office furniture, vehicle interiors, seat cushions, back rest cushions, pillows, upholstered furniture, bed mattresses, wall coverings, shoes, sports bags, inlay of sky boots, sports equipment, carpets, rubber boats, PVC swimming pools, life vests, handbags, purses, table coverings, table mats, stationary, saddlebags, tool bags.
14 . The article as claimed in claim 13 , wherein the shoes comprise tongue, vamp, heel counter, quarter, or a combination thereof.
15 . The article as claimed in claim 13 , wherein the sports equipment comprises boxing gloves, boxing balls, or a combination thereof.
16 . The article as claimed in claim 13 , wherein the stationary comprises books, wood inlay, or any combination thereof.