| HS Code | 865481 |
| Polymertype | High Density Polyethylene (HDPE) |
| Density | 0.960 g/cm3 |
| Specificgravity | 0.960 |
| Meltindex 190c 2 16kg | 0.20 g/10 min |
| Tensilestrengthatyield | 31 MPa |
| Tensilestrengthatbreak | 27.6 MPa |
| Elongationatbreak | 600% |
| Flexuralmodulus | 1.38 GPa |
| Hardnessshored | 66 |
| Vicatsofteningtemperature | 128 deg C |
| Brittlenesstemperature | -70 deg C |
| Environmentalstresscrackresistance | 1000 h |
| Meltingpoint | 134 deg C |
| Thermalconductivity | 0.45 W/m-K |
| Specificheatcapacity | 1.9 J/g-C |
| Coefficientoflinearthermalexpansion | 1.2E-4 1/deg C |
As an accredited Chevron Phillips Chemical HDPE K606 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Chevron Phillips Chemical HDPE K606 is supplied in 25 kg (55 lb) polyethylene bags, palletized and stretch-wrapped. |
| Container Loading (20′ FCL) | Chevron Phillips Chemical HDPE K606 is securely loaded into a 20-foot full container load (FCL) for ocean shipment. |
| Shipping | Chevron Phillips Chemical HDPE K606 is a non-hazardous high-density polyethylene resin. It is typically shipped in 25 kg bags, 1,000 kg bulk bags, or bulk trucks/railcars. No UN number, hazard class, or placards are required. Store dry, away from ignition sources, and comply with the SDS and local transport rules. |
| Storage | Store HDPE K606 indoors in a cool, dry, well-ventilated area, away from direct sunlight, heat, ignition sources, and strong oxidizers. Keep original bags or containers sealed, palletized, off the floor, and protected from moisture, UV, and contamination. Avoid excessive stacking; use FIFO stock rotation. Ensure good housekeeping. Store away from food and feed. Follow the manufacturer's SDS and local regulations. |
| Shelf Life | Chevron Phillips Chemical HDPE K606 has no defined shelf life; store dry, cool, shaded, stable under normal conditions. |
Chevron Phillips Chemical HDPE K606 is converted into annular dual-wall corrugated drainage pipe under ASTM F2306 and AASHTO M294 normative conditions. The incoming natural resin is characterized by high-load melt flow index under ISO 1133-1:2022 at 190°C and 21.6 kg; converter set-up data for corrugated pipe tooling commonly places the value in the 6–8 g/10 min bracket. The forming window is governed by the corrugator vacuum cycle. If vacuum dwell falls below 0.4 s on pipe diameters above 300 mm, the outer shell exhibits incomplete mold convolution fill at the valley floor. If vacuum dwell extends beyond 0.8 s, the inner wall cools against the mandrel and develops longitudinal weld-line thinning at the 3 o’clock and 9 o’clock positions. The process therefore requires synchronized vacuum timing, mold block temperature control, and inner air pressure adjustment at the corrugator entrance.
Formulation addition for dual-wall drainage pipe uses a 40% carbon black concentrate added at 5.0–6.5 wt% of total feed, producing final carbon black content of 2.0–2.6 wt% depending on the UV resistance class specified by the pipe standard. A fluoropolymer-based processing aid masterbatch is introduced at 0.5–1.0 wt% to suppress melt fracture in the corrugator trough areas where linear velocities are highest. Clean internal regrind is permitted up to 15 wt% of total feed when the regrind has passed a 500 µm screen and has not exceeded three heat histories. The table below gives the let-down mapping used by converters to match final carbon black target values.
| Final carbon black target | 40% carbon black masterbatch let-down | Normative reference |
|---|---|---|
| 2.0 wt% | 5.0 wt% | ASTM D3350 minimum for exposed drainage |
| 2.3 wt% | 5.75 wt% | AASHTO M294 typical qualification |
| 2.6 wt% | 6.5 wt% | ASTM F2306 higher-UV requirement |
Extrusion is performed on a co-rotating twin-screw extruder with L/D 30:1 to 36:1, side-fed regrind, and independently controlled inner-wall and outer-wall die gaps. Inner-wall die gap is set at 1.5–2.5 mm; outer-wall die gap is set at 2.0–3.0 mm. Melt temperature is held at 210–225°C, while the die head is maintained at 215–225°C. The corrugator vacuum system operates at 0.06–0.09 MPa differential pressure, and haul-off speed is synchronized to mold block speed within ±0.5% to prevent axial pitch variation. Pipe stiffness after conditioning at 23°C and 50% RH is tested according to ASTM D2412, with minimum values set by the applicable product standard. K606 natural pellets do not require pre-drying when stored below 60% RH; if storage humidity is higher, hopper drying at 70–80°C for 2 h prevents surface splay and die-lip deposit. Terminal products include 100–1500 mm inside-diameter dual-wall corrugated stormwater drainage pipe, culvert liner, and manifold sections.
Agricultural drain tubing converting with K606 uses annular corrugator lines where the forming speed is governed by hot-melt extensional viscosity rather than by screw recovery. Perforated tubing is manufactured to ASTM F667 for 75–200 mm outside-diameter products, with installation practice governed by ASTM F449. The final compound contains carbon black masterbatch added at 5.0–6.0 parts per hundred resin using a 40% concentrate, yielding 2.0–2.4 wt% carbon black in the finished wall. Processing aid masterbatch is kept at 0.2–0.4 wt% to reduce die-lip fouling during extended runs above 8 h. Clean production regrind from trimmed coupling sections is incorporated at 10–20 wt%, but only when the melt flow ratio measured under ASTM D1238-20 remains within the original resin specification band. Calcium carbonate masterbatch above 5 wt% is avoided in this product family because the resulting environmental stress-crack resistance falls below typical ASTM F667 qualification limits.
The downstream process begins on single-screw extruders with L/D 24:1–30:1 and grooved feed sections. Screw speed is set to maintain melt temperature at 215–235°C; melt pressure at the breaker plate is recorded at 20–32 MPa. Perforation is performed after the corrugator using water-lubricated rotary knife stations configured to produce slot area of 1.0–2.5 cm² per linear meter. Terminal products include slotted and perforated corrugated drain tile in 75 mm, 100 mm, 150 mm, and 200 mm outside-diameter coils.
Solid-wall gravity sewer pipe produced from K606 is extruded under ASTM F714 and ASTM D3035 dimensional requirements, with material classification assigned under ASTM D3350. The formulation adds one part of 40% carbon black masterbatch per 19 parts of natural K606, equivalent to 5.0–6.0 wt% concentrate and a final carbon black loading of 2.0–2.5 wt%. A stabilizer concentrate is added at 0.2–0.3 wt%. Post-consumer regrind is not used in SDR 17 and SDR 26 walls unless continuous melt flow ratio checks under ASTM D1238-20 confirm that the blend remains within specification. This restriction is particularly relevant for sewer lines exposed to intermittent hydrogen sulfide and organic acids in the annular space.
The production line uses a single-screw extruder with L/D 30:1 and a grooved feed bushing. Breaker-plate pressure fluctuation on this class of extruder can reach ±1.5 MPa during regrind concentration changes. The addition of a melt pump between the screw tip and the die stabilizes die inlet pressure to ±0.3 MPa, which is required to hold outside-diameter tolerance at ±0.5 mm on 160–630 mm pipe. Barrel zones are set from 180°C at the feed throat to 220°C at the metering zone; die temperature is held at 210–220°C. Vacuum sizing tank pressure is maintained at 0.02–0.04 MPa below atmosphere, with staged water cooling at 20–35°C. Continuous chlorinated water service above 60°C is outside the operational boundary for this compound because chlorine-induced oxidation accelerates environmental stress-crack growth. K606 in this configuration is not qualified for internal pressure piping under ISO 9080 long-term hydrostatic strength regression. Terminal products include 110–630 mm solid-wall gravity sewer pipe, culvert stock, and fabricated manhole riser sections.
On vacuum-sized rigid conduit lines, K606 processing for telecommunications duct demands the tightest dimensional tolerance in the non-pressure portfolio: ±0.1 mm on wall thickness for 25 mm and 50 mm innerduct. The compound is produced to NEMA TC-7, ASTM F2160, and UL 651A where applicable, with carbon black added as 5.0–6.0 wt% of a 40% concentrate for a final 2.0–2.5 wt% level. A fluoropolymer processing aid masterbatch is added at 0.5–1.0 wt% to shift the onset of melt fracture to shear rates above 500 s⁻¹ in the die land region. Clean plant regrind is used up to 10 wt% and only from the same conduit profile family to avoid wall-thickness oscillation from incompatible viscosities.
The conversion line uses a single-screw extruder with L/D 24:1–30:1, a barrier screw, and a vacuum sizing tank with two-stage cooling. Melt temperature is controlled at 200–230°C; melt pressure measured before the adapter is maintained below 30 MPa to prevent aggressive screw wear from abrasive carbon black concentrate. Die land length is set at 10:1 relative to the die gap of 1.5–2.0 mm. Products include 13 mm, 19 mm, 25 mm, 50 mm, and 150 mm outside-diameter conduit and innerduct coils.
Leachate collection pipe is a demanding K606 downstream where the primary selection parameter is environmental stress-crack resistance under elevated wetting-agent concentration. The pipe is manufactured to ASTM F667 for 100–300 mm corrugated or solid-wall profiles, and the installed system is frequently qualified against GRI-GC8 and ASTM F714. The formulation for leachate service uses 5.0–6.0 wt% of 40% carbon black masterbatch, an antioxidant concentrate at 0.2–0.3 wt%, and no recycled content. The final carbon black content is held at 2.0–2.5 wt% because higher loadings reduce tensile elongation at break in ASTM D638-14 tests conducted at 50 mm/min. Perforation slots are cut after extrusion with CNC slotting stations to produce open area of 2.0–4.0 cm² per linear meter.
Butt-fusion joining follows ASTM F2620, with heating plate temperature 204°C and initial bead height 0.8–1.5 mm for wall thicknesses between 3.0 mm and 5.0 mm. Leachate temperatures above 50°C are outside the validated dataset for this specific K606 compound; published data for this configuration is limited, and site-specific validation under ASTM D5390 is required before service. Terminal products include 100 mm, 150 mm, 200 mm, 250 mm, and 300 mm perforated leachate collection lines.
For fiber-optic cable protection, ribbed and corrugated innerduct extrusion from K606 runs at lower output rates but with higher pressure-drop sensitivity through multi-lumen die packs. The governing standards are NEMA TC-7 and ASTM D3485 for smooth-wall communications raceway. Where the product is intended for plenum spaces, fire performance is outside the scope of K606 and must be handled by separate conduit systems. The compound is loaded with 4.0–5.0 wt% of 40% carbon black masterbatch to maintain a final 1.6–2.0 wt% carbon black level, and a silicone-based processing aid at 0.3–0.5 wt% reduces die lip adhesion on long-run profiles. Regrind is capped at 10 wt% and only from the same profile family.
Extrusion is performed on 25:1 or 30:1 L/D single-screw lines with vacuum calibration blocks. Melt temperature is constrained to 210±5°C in the adapter because ribbed innerduct walls below 0.8 mm cannot tolerate temperature variation above 5°C without fold-over in the calibrator. Line speed is typically 4–12 m/min for 26 mm outer-diameter ribbed innerduct. Terminal products include 8/12 mm microduct, 26/40 mm ribbed innerduct, and 33/54 mm multi-lumen conduit.
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