Crosslinked polyethylene pipe having a high density polyethylene liner
View Patent ↗A multilayer PEX pipe having improved resistance to oxidizing agents in water. The pipe has a thin tubular core (inner layer) of high density polyethylene and an outer layer of crosslinked polyethylene. The pipe may optionally have an oxygen barrier layer, such as poly(ethylene-co-vinyl alcohol) (“EVOH”), contiguously disposed radially outward from the PEX layer. The pipe is suitable for potable water applications and for hot water radiant heating systems.
1. A multilayer crosslinked polyethylene (“PEX”) pipe comprising:
(a) an inner tubular core of high density polyethylene (“HDPE”) having a maximum wall thickness from about 28 to 100 times smaller than the nominal diameter of pipe in the range from 7 mm (0.25″) to 152 mm (6″), ratio 28 being attributable to small diameter non-SDR-9 piping, and ratio 100 being attributable to the larger diameter SDR-9 pipe, wherein the HDPE has a density in the range from 0.941 g/cc to 0.963 g/cc; and,
(b) an outer tubular sheath of at least one layer of a crosslinked polyethylene contiguous with the outer surface of the inner core layer, wherein said PEX is crosslinked to a gel level of at least 65% by a silane grafting process.
2. The multilayer pipe of claim 1 wherein the HDPE has a density in the range from about 0.950 to about 0.963 g/cm 3 .
3. The multilayer pipe of claim 2 wherein the inner core has a wall thickness in die range from at least 0.025 mm (1 mil) to about 1.52 mm (0.06″) thick for pipe having a nominal diameter in the range from 7 mm (0.25″) to 152 mm (6″).
4. The multilayer pipe of claim 3 wherein the inner core has a wall thickness in the range from about 0.05 mm (2 mil) to 0.1 mm (4 mils) for pipe having a nominal diameter in the range from 13 mm (0.5″) to 25mm (1″) and the gel level is greater than 70%.
5. The multilayer pipe of claim 3 wherein the sheath includes successive inner and outer contiguous layers of PEX melt-bonded to one and another, the outer layer being color-coded.
6. A three layer PEX pipe comprising:
(a) an inner tubular core layer of high density polyethylene (HDPE) having a maximum wall thickness from about 28 to 100 times smaller than the nominal diameter of pipe in the range from 7 mm (0.25″) to 152 mm (6″), ratio 28 being attributable to small diameter non-SDR-9 piping, and ratio 100 being attributable to the larger diameter SDR-9 pipe, wherein the 1HDPE has a density in the range from 0.941 g/cc to 0.963 g/cc;
(b) an intermediate tubular layer of crosslinked polyethylene (PEX) having a gel level of at least 65% contiguously disposed radially outward from the core layer; and,
(c) an outer tubular layer of PEX having a gel level of at least 65%, wherein said outer tubular layer is color-coded for installation in a chosen service.
7. A multilayer pipe comprising:
(a) an inner tubular core layer of high density polyethylene (HDPE) having a maximum wall thickness from about 28 to 100 times smaller than the nominal diameter of pipe in the range from 7 mm (0.25″) to 152 mm (6″), ratio 28 being attributable to small diameter non-SDR-9 piping, and ratio 100 being attributable to the larger diameter SDR-9 pipe, wherein the HDPE has a density in the range from 0.941 g/cc to 0.963 g/cc;
(b) an intermediate tubular layer of crosslinked polyethylene (PEX) having a gel level of at least 65%, contiguously disposed radially outward from the core layer,
(c) an oxygen barrier of material other than polyethylene disposed radially outward from said intermediate layer.
8. A process for producing a multilayer pipe comprising co-extruding:
(a) an inner tubular core layer of high density polyethylene (HDPE) having a maximum wall thickness from about 28 to 100 times smaller than the nominal diameter of pipe in the range from 7 mm (0.25″) to 152 mm (6″), ratio 28 being attributable to small diameter non-SDR-9 piping, and ratio 100 being attributable to the larger diameter SDR-9 pipe, wherein the 1HDPE has a density in the range from 0.941 g/cc to 0.963 g/cc;
(b) an outer tubular core of at least one layer of crosslinkable polyethylene melt bonded to the outer surface of the inner core layer without the use of adhesive; and,
(c) crosslinking by a silane grafting process at least the outer layer to have a gel content of at least 65%.