| HS Code | 625685 |
| Density | 0.960 g/cm³ |
| Melt Flow Rate | 0.25 g/10 min (190°C/2.16 kg) |
| Tensile Strength At Yield | 29 MPa |
| Tensile Strength At Break | 26 MPa |
| Elongation At Break | >500% |
| Flexural Modulus | 1300 MPa |
| Notched Izod Impact Strength | 50 J/m (23°C) |
| Vicat Softening Temperature | 127°C |
| Melting Temperature | 134°C |
| Heat Deflection Temperature | 75°C (0.45 MPa) |
| Shore D Hardness | 65 |
| Environmental Stress Crack Resistance | >1000 h |
| Mold Shrinkage | 2.0-3.0% |
| Water Absorption | <0.01% |
| Brittleness Temperature | < -70°C |
As an accredited Asahi Kasei HDPE SUNTECH QR602A factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Packed in 25 kg bags, 40 bags per 1,000 kg shrink-wrapped pallet for standard export transport. |
| Container Loading (20′ FCL) | 20′ FCL loading: Asahi Kasei HDPE SUNTECH QR602A in 25 kg bags, palletized, securely stowed, moisture-protected, labeled, and evenly distributed. |
| Shipping | Asahi Kasei HDPE SUNTECH QR602A is typically shipped as non-hazardous polyethylene pellets in 25 kg bags, jumbo bags, or bulk containers. Transport in clean, dry, covered vehicles at ambient temperature. Keep away from moisture, direct sunlight, heat, and ignition sources. Store in original packaging; no special dangerous-goods labeling required. |
| Storage | Store Asahi Kasei HDPE SUNTECH QR602A in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, sparks, open flames, and strong oxidizers. Keep bags or containers closed, palletized off the floor, to prevent moisture, dust, and contamination. Protect from UV radiation. Maintain FIFO stock rotation. Avoid excessive stacking and prolonged high temperatures. Use clean handling equipment. Always follow the supplier’s SDS. |
| Shelf Life | Asahi Kasei HDPE SUNTECH QR602A: typically 24 months when stored cool, dry, sealed, away from sunlight, moisture, and contaminants. |
Continuous extrusion blow moulding of monolayer 200 L tight-head drums and 1,000 L IBC inner bottles consumes QR602A at shot weights from 9.5 kg to 12.8 kg. The accumulator-head machine is specified with a grooved-barrel extruder of 25:1 to 30:1 L/D and a barrier screw carrying a Maddock mixing section; screen packs of 60/80/100 mesh are retained to remove gel aggregates without raising melt temperature excessively. Melt temperature is held between 180°C and 200°C, while the die head zone operates at 190°C to 210°C. The parison is programmed with a diverging die gap from 2.5 mm to 4.0 mm and ovalized tooling at 1.5:1 to 2.0:1 to compensate for sag under the high melt weight. Blow air pressure is 0.6 MPa to 0.9 MPa, and cooling time ranges from 150 s to 240 s depending on wall-thickness distribution measured at the pinch-off and chime regions. Regrind from flash and deflashing is limited to 20 wt%; higher addition reduces environmental stress-cracking resistance measured according to ASTM D1693 condition B below 100 h. For UN-certified jerrycans and IBC inner bottles, the moulded article is qualified under UN 31H2, ADR/RID, and IMDG drop and stack protocols. Additive packages for long-term outdoor storage include 0.10 wt% to 0.30 wt% of a high-molecular-weight HALS and 0.05 wt% to 0.15 wt% of a phenolic antioxidant; colour masterbatch is used at 2 wt% to 4 wt% on a polyethylene carrier to avoid plate-out on the die lip. The converter must verify hydraulic leakproofness and top-load integrity after conditioning at 23°C and 50% RH because cooling-induced crystallinity gradients in the pinch-off zone are the dominant failure location for large drums.
| Control parameter | Test method | Typical value or range | Conversion boundary |
|---|---|---|---|
| Melt mass flow rate | ISO 1133-1:2022 | 0.35 g/10 min at 190°C/2.16 kg | Determines accumulator fill rate and parison sag tendency |
| Density | ISO 1183-1:2019 | 0.955 g/cm³ | Affects top-load strength and permeation resistance |
| Environmental stress-cracking resistance | ASTM D1693 condition B | >100 h | Falls below threshold at >20 wt% regrind |
| Charpy notched impact strength | ISO 179-1/1eA | 22 kJ/m² at 23°C | Controls cold-drop performance of filled containers |
| Oxidation induction time | ISO 11357-6 | >20 min at 210°C | Release gate for recycled material in food-contact or UN service |
Corrugated HDPE drainage pipe extruded from QR602A is processed on twin-screw extruders with a grooved feed section, screw diameters from 75 mm to 135 mm, and melt temperatures between 190°C and 220°C. Carbon black masterbatch at 2.0 wt% to 2.5 wt% is incorporated to achieve a formulation density of 0.945 g/cm³ to 0.955 g/cm³ and to satisfy weathering requirements under ISO 16871 or EN 12201. The corrugator forms the inner wall and annular rib profile in vacuum blocks with mould vacuum from −0.06 MPa to −0.09 MPa; pipe diameters from 100 mm to 1,200 mm require adjustment of the melt pool and die lip gap between 1.2 mm and 3.0 mm. Ring stiffness, measured according to ISO 9969, must meet SN4 or SN8 classes, while impact resistance is verified by the staircase method of ISO 3127 at 0°C. Weld-line integrity at the corrugation valleys is the limiting variable; the moulding compound must retain a melt strength high enough to prevent thinning below 0.5 mm in the valley floor. Because QR602A has a fractional melt flow rate, the extruder head pressure can reach 30 MPa to 40 MPa under low temperature settings; this is within the design envelope of cast aluminium corrugator tooling but not of low-pressure calibration sleeves. The finished pipe is tested for longitudinal reversion at 110°C for 60 min and for internal pressure creep under ISO 1167-1. In buried stormwater applications, backfill material must be compacted to 95% Proctor density to prevent excessive deflection beyond 5%.
Because sheet extrusion for thermoformed logistics trays exposes the melt to long residence times, QR602A is processed at the lower end of its melt temperature window, 185°C to 205°C, on a single-screw extruder with 30:1 L/D and a barrier screw. The flat die is set at 1.0 mm to 6.0 mm die gap, feeding a three-roll stack with polished chrome rolls at 70°C to 100°C; throughputs on a 1,500 mm line range from 400 kg/h to 1,200 kg/h depending on sheet thickness. Thermoforming of cut sheet uses double-sided quartz or ceramic heaters to reach sheet surface temperatures of 180°C to 200°C; mould temperature is controlled at 50°C to 70°C. The forming window between sag and tear is approximately 10°C to 15°C, requiring pyrometer feedback rather than timer-only heating. Dimensional stability after demoulding is validated by ASTM D2126 at 90°C for 24 h; a maximum linear change of 1.0% is used as the internal acceptance criterion for pallet tops and dunnage trays. Food-contact sheet for repeated-use logistics trays follows FDA 21 CFR 177.1520(c) 3.1b and EU No 10/2011 overall migration limit of 10 mg/dm². Because the sheet is fully densified in the roll stack, moisture absorption is negligible; however, condensation on pellets stored below 5°C can introduce surface hydrolysis of certain antistatic masterbatches, and pre-drying at 70°C for 2 h is recommended only when a hygroscopic antistatic concentrate is used. The finished trays are typically assembled by hot-plate welding at 210°C to 230°C; weld factors above 0.85 require a melt bead pressure of 0.4 MPa to 0.6 MPa.
For agrochemical and industrial-fluid containers, QR602A is blow moulded on single-station or double-station shuttle machines with mould clamping forces from 100 kN to 500 kN. The typical bottle weight for 1 L to 10 L pack sizes ranges from 50 g to 350 g, and the parison is programmed with a wall thickness from 1.2 mm to 3.0 mm at the top-load shoulder. The blowing pressure is 0.7 MPa to 1.0 MPa, with pre-blow at 0.3 MPa to 0.5 MPa to set the pinch-off weld. Chemical compatibility is screened by ASTM D543 immersion at 50°C for 30 days; mass change below 1.0% and no environmental stress-cracking are required for non-halogenated phosphate ester and ester-based formulations. Aromatic hydrocarbons, ketones, and halogenated solvents cause excessive swell or stress-cracking and are not recommended in monolayer QR602A packagings without fluorination. When barrier modification is required, in-line fluorination or a coextruded polyamide layer with maleic anhydride tie resin is applied at 6 wt% to 12 wt% of total wall thickness. The pinch-off zone must be mechanically deflashed and annealed at 80°C for 15 min if the container is filled with a liquid having a solubility parameter between 8.5 cal1/2 cm−3/2 and 9.5 cal1/2 cm−3/2. Drop tests according to ISTA 3A or ASTM D5276 at −18°C are performed on filled containers to detect brittle failure at the pinch-off seam. This detail is often absent from generic blow moulding specifications and explains field failure rates in agricultural chemical distribution.
In water-quenched monofilament extrusion, QR602A is processed on a single-screw extruder with 24:1 to 30:1 L/D, melt temperature 200°C to 220°C, and a breaker plate with 100/120 mesh screens. The quench bath temperature is maintained at 30°C to 50°C to promote a fine spherulitic skin without internal voids. As-spun filament diameters between 1.5 mm and 3.0 mm are oriented in a hot-air or hot-water oven at 95°C to 115°C, with draw ratios from 8:1 to 10:1. At draw ratios above 10:1, fibrillation and tensile strength variability increase sharply because the molecular weight distribution of QR602A is tailored for high melt strength rather than tight gel permeation chromatograph dispersity. The oriented monofilament is used for rope, fisheries netting, and agricultural support twine; knot strength is measured according to ISO 2307 and should exceed 75% of linear tensile strength. For stretched tape used in woven packaging and geotextile reinforcement, the film is cast at 0.8 mm to 1.2 mm, slit, and drawn at 6:1 to 8:1 in a hot-air oven at 100°C to 120°C. Tape denier varies from 750 denier to 1,500 denier with a tenacity target of 0.35 N/tex to 0.45 N/tex. Because the grade lacks additives for high-speed water bath quenching, line speed is limited to 150 m/min to 250 m/min; above this, surface defects from boundary layer breakdown appear. Published data for this specific orientation configuration is limited; draw ratios and bath temperatures should be confirmed on the converter's own line because die shear history and quench water quality shift the crystallisation rate.
When closed-loop regrind is introduced, the governing variable shifts from melt flow rate to oxidation induction time and viscosity retention. Regrind from trimmed flash and rejected mouldings is granulated to 6 mm to 8 mm sieve size and blended with virgin pellets at 15 wt% to 25 wt%. At a melt temperature of 200°C, gel count on a 400 cm² cast film sample remains below 50 for up to 2 regrind cycles when the antioxidant package has not been consumed. The relevant test is ISO 11357-6 oxidation induction time at 210°C; a value above 20 min is required before reintroduction into food-contact and UN-rated packaging. If the regrind fraction exceeds 30 wt%, melt pressure fluctuation in a 90 mm single-screw extruder increases from ±0.5 MPa to ±1.2 MPa, and fibre-like gels visible in the mouth of a blown bottle exceed the acceptable limit. The drop in notched Charpy impact strength measured by ISO 179-1 from 22 kJ/m² to 14 kJ/m² after 3 regrind cycles constrains use in cold-temperature drop applications. Reprocessing stabilisers can be supplemented with 0.05 wt% of a phosphite processing stabiliser and 0.03 wt% of a phenolic antioxidant, but over-stabilisation leads to mould deposit on the pinch-off and die lips. The practical boundary is a maximum of 25 wt% post-industrial regrind and a maximum of 2 heat histories when the product is intended for chemical packaging or outdoor service; beyond this, the lot is diverted to non-critical construction sheet.
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