Roofing membranes, compositions, and methods of making the same
A roofing membrane and a method of making the same is provided. The roofing membrane includes a top layer having a flame retardant and a first silane-crosslinked polyolefin elastomer with a density less than 0.90 g/cm 3 ; a scrim layer; and a bottom layer having a flame retardant and a second silane-crosslinked polyolefin elastomer with a density less than 0.90 g/cm 3 . The top and bottom layers of the roofing membrane both exhibit a compression set of from about 5.0% to about 35.0%, as measured according to ASTM D 395 (22 hrs @ 70° C.).
1. A roofing membrane comprising:
a top layer comprising a flame retardant and a first silane-crosslinked polyolefin elastomer having a density less than 1.45 g/cm 3 ;
an optional scrim layer; and
a bottom layer comprising a flame retardant and a second silane-crosslinked polyolefin elastomer having a density less than 1.45 g/cm 3 ;
wherein the gel content of the roofing membrane is greater than about 60%; and
wherein at least one of the first silane-crosslinked polyolefin elastomer or the second silane-polyolefin elastomer comprises a polyolefin selected from a propylene/C 3 -C 20 α-olefin copolymer or a blend of propylene/α-olefin copolymer with an ethylene/α-olefin copolymer wherein both the propylene/α-olefin copolymer and the ethylene/α-olefin copolymer of the blend are silane-grafted,
wherein the first and second silane-crosslinked polyolefin elastomers have a glass transition temperature of from about −75° C. to about −25° C.
2. A roofing membrane comprising:
a top layer comprising a flame retardant and a first silane-crosslinked polyolefin elastomer having a density less than 1.45 g/cm- 3 ;
bottom layer comprising a flame retardant and a second silane-crosslinked polyolefin elastomer having a density less than 1.45 g/cm- 3 ; and
a scrim layer between, and in contact with, the top layer and the bottom layer,
wherein the gel content of the roofing membrane is greater than about 60%;
wherein the first and second silane-crosslinked polyolefin elastomers were prepared by extruding each comprise a first polyolefin having a density less than 0.86 g/cm- 3 , a second polyolefin, a silane crosslinker, a grafting initiator, and a condensation catalyst; and
wherein at least one of the first polyolefin or the second polyolefin comprises a polyolefin selected from a propylene/C 3 -C 20 α-olefin a olefin copolymer or a blend of propylene/α-olefin copolymer with an ethylene/α-olefin copolymer wherein both the propylene propylene/α-olefin copolymer and the ethylene/α-olefin copolymer of the blend are silane-grafted,
wherein the first and second silane-crosslinked polyolefin elastomers have a glass transition temperature of from about −75° C. to about −25° C.
3. The roofing membrane of claim 2 , wherein the flame retardant comprises a magnesium hydroxide and/or an aluminum hydroxide from about 20 wt % to about 70 wt %.
4. The roofing membrane of claim 2 , wherein the first and second silane-crosslinked polyolefin elastomers both exhibit a crystallinity of from about 5% to about 25%.
5. The roofing membrane of claim 2 , wherein the density of the roofing membrane is from about 0.85 g/cm- 3 to about 1.45 g/cm- 3 .
6. The roofing membrane of claim 2 , wherein the first polyolefin is an ethylene/α-olefin copolymer from about 60 wt % to about 97 wt %.
7. The roofing membrane of claim 2 , wherein the silane crosslinker comprises a vinyltrimethoxy silane from about 1 wt % to about 4 wt %.
8. The roofing membrane of claim 2 , wherein the condensation catalyst comprises a sulfonic ester from about 1 wt % to about 4 wt %.
9. The roofing membrane of claim 2 , wherein the gel content is between about 60% and about 95%.