| HS Code | 767981 |
| Grade | HD-TR571 |
| Polymer Type | HDPE |
| Application | PE100 pipe |
| Form | pellets |
| Color | black |
| Carbon Black Content Percent | 2.0-2.5 |
| Moisture Content Percent | <0.1 |
| Ash Content Percent | <0.1 |
| Volatile Matter Percent | <0.1 |
| Hydrostatic Strength Classification | PE100 |
As an accredited Shandong Yulong HDPE HD-TR571 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Shandong Yulong HDPE HD-TR571 is packed in 25 kg PP woven bags, with 500 kg or 1,000 kg jumbo bags available. |
| Container Loading (20′ FCL) | Chemical Shandong Yulong HDPE HD-TR571 loads in 20' FCL as 25kg bags, around 25 MT loose or 20 MT palletized. |
| Shipping | Shandong Yulong HDPE HD-TR571 is typically shipped as non-hazardous HDPE pellets in 25 kg bags, jumbo bags, or octabins. Keep containers dry, closed, and away from heat, sunlight, and moisture. Transport in clean, dry vehicles; avoid puncturing or tearing packaging. Standard industrial handling applies; no special dangerous-goods classification is normally required. |
| Storage | Store Shandong Yulong HDPE HD-TR571 in a cool, dry, well-ventilated warehouse, protected from direct sunlight, heat, and ignition sources. Keep original bags sealed on pallets, off the floor, and away from moisture, dust, oils, and contaminants. Stack securely to prevent deformation. Use covered storage, rotate stock first-in, first-out, avoid strong oxidizers, and maintain ambient temperature. Handle carefully. |
| Shelf Life | Shelf life is 24 months when stored sealed in a cool, dry, ventilated area, away from sunlight and moisture. |
Blow moulding lines processing HDPE HD-TR571 for UN-certified jerrycans typically operate with a grooved feed extruder of 50–80 mm barrel diameter and an accumulator head. Melt temperature is maintained between 180 °C and 220 °C, while die head temperature is held in a narrower 190–210 °C band to control parison sag. Parison swell is compensated through die gap adjustment; industrial data commonly show 15–30% swell depending on molecular weight distribution and shear history. Blow pressure at 0.6–1.2 MPa and mould cooling water at 10–25 °C are used to stabilise wall thickness. Regrind addition is normally capped at 15–25 wt% because higher ratios reduce environmental stress crack resistance measured by ASTM D1693-15. The finished containers are evaluated under UN 4HA1, UN Model Regulations Chapter 6.1.5.2 and ADR/RID Chapter 6.5 for stacking, drop and hydraulic pressure resistance. For food-contact packaging, the base resin must satisfy FDA 21 CFR 177.1520 extraction limits and the final article must be tested under EU Regulation 10/2011 migration conditions. Terminal products are 20–30 L jerrycans for solvents, agrochemicals and aqueous industrial liquids. A moisture limit of 0.05 wt% maximum surface moisture is applied before extrusion when ambient relative humidity exceeds 60% to prevent porosity.
Pressure pipe service conditions impose hydrostatic design stress requirements that are inseparable from the resin minimum required strength classification. HDPE grades intended for pressure pipe are tested under ISO 9080:2012 and assigned an MRS category under ISO 12162:2009. PE80 resins require 8.0 MPa minimum hydrostatic strength at 50 years and 20 °C; PE100 resins require 10.0 MPa under the same conditions. If the manufacturer certificate of analysis for HD-TR571 does not include a PE80 or PE100 classification, pipe converters must generate long-term hydrostatic regression data before design stress is selected. Extrusion uses a single-screw extruder with grooved barrel, L/D 30–36, and a spiral mandrel die. Melt temperature is held at 190–220 °C and die head pressure is typically 25–35 MPa for pipe diameters up to 400 mm. Carbon black masterbatch is added to achieve final carbon black content of 2.0–2.5 wt% in black pipe, with dispersion assessed under ISO 18553:2011. Slow crack growth resistance is checked by pipe notch testing under ISO 13479:2009; rapid crack propagation resistance is evaluated per ISO 13477:2008. The finished pipe system must also meet ISO 4427-1:2019 and ISO 4427-2:2019 material and pipe requirements. Terminal products include water distribution pipes, gas distribution pipes, industrial pressure lines and sewer rising mains. Published data for HD-TR571 in this specific pressure-pipe configuration is limited; pipe designation must be verified against the resin maker ISO 9080 data file.
In high-speed closure moulding cells, injection units with 24–48 cavities and hot runner valve gates are used to convert HDPE HD-TR571 into tamper-evident beverage closures. Melt temperature is set between 200 °C and 260 °C, and chilled water at 8–12 °C is circulated through core and cavity plates to reduce cycle time. Injection pressure is normally 60–120 MPa. Cycle time is typically 3–6 s per closure after gate freeze optimisation. Low warpage is achieved by balanced gate locations and mould temperature differentials below 5 °C. Slip and anti-block masterbatch is dosed at 0.5–1.0 wt% to reduce cap-to-bottle friction and assist tamper-evident band stretching. For pigmented closures, masterbatch let-down ratios are controlled at 2–4 wt% depending on pigment concentration. Food-contact compliance requires the finished article to meet FDA 21 CFR 177.1520 and EU Regulation 10/2011 with reference to overall migration and specific migration limits. Dimensional stability is checked by measuring shrinkage after 24 h at 23 °C; melt flow rate is reported under ISO 1133-1:2022 at 190 °C and 21.6 kg. Tensile yield strength for closure functionality is measured by ISO 527-2:2012 or ASTM D638-14. Terminal products are 28 mm mineral water closures, 38 mm edible oil closures and dispensing closures for condiment bottles. Published data for this specific resin and food-contact configuration is limited because final compliance is governed by colour masterbatch and additive package selection.
Corrugated drainage pipe compounds require slow crack growth resistance because buried structures experience long-term external soil loads. HDPE HD-TR571 is processed on a one-step corrugator with a vacuum-forming profile system; melt temperature is kept at 190–230 °C, and the profile is formed by vacuum pressure of −0.05 MPa to −0.08 MPa. A black masterbatch with 40% carbon black loading is added at 5–7 wt% to reach 2.0–3.0 wt% final carbon black. Oxidation induction time is checked by ASTM D3895-19, with minimum values often specified at 20 min at 200 °C. Slow crack growth is measured by ASTM F2136-18 notched constant ligament stress or ISO 13479:2009; acceptance values depend on pipe class and service life. Ring stiffness is tested per ASTM D2412-21 and reported in kPa, with minimum ring stiffness selected from the pipe class under ASTM F2306-18. The finished pipe must meet AASHTO M294-21 or EN 13476-3:2009 according to market region. Terminal products include 100–600 mm inside diameter stormwater drainage pipes, agricultural drain pipes and buried cable conduits. The primary processing failure mode is profile collapse from insufficient vacuum or too low melt viscosity; melt temperature overshoot above 230 °C produces oxidation-driven gel particles that weaken thin corona sections.
| Application segment | Governing standard | Supplementary standard | Critical measured parameter |
|---|---|---|---|
| Blow moulded UN jerrycans | UN 4HA1 | ASTM D1693-15 | Environmental stress crack resistance |
| Pressure pipe | ISO 4427-1:2019 | ISO 9080:2012ISO 13479:2009 | Long-term hydrostatic strength |
| Injection closures | FDA 21 CFR 177.1520 | ISO 1133-1:2022 | Melt flow rate and dimensional stability |
| Corrugated drainage pipe | ASTM F2306-18 | ASTM F2136-18 | Slow crack growth resistance and ring stiffness |
| Geomembrane | GRI-GM13 | ASTM D5397-19 | Notched constant tensile load failure time |
| Oriented tapes | ISO 527-3:2018 | ISO 13953:2001 | Tensile strength and split resistance |
| Rotational moulded tanks | ASTM D1998-21 | ISO 180:2000 | Impact resistance and low-temperature ductility |
On flat-die sheet extrusion lines equipped with automatic thickness scanning, HDPE HD-TR571 is converted into geomembrane panels at thicknesses from 0.5 mm to 3.0 mm and widths up to 8 m. Melt temperature is controlled between 200 °C and 260 °C, and the polishing roll stack is maintained at 60–90 °C to reduce orientation and improve layflat stability. Carbon black is added at 2.0–3.0 wt% final content; dispersion must meet ten-point rating requirements in GRI-GM13. Standard oxidative induction time is specified as minimum 100 min at 200 °C under ASTM D3895-19, while high-pressure oxidative induction time must exceed 400 min under ASTM D5885-19. Stress crack resistance is tested by notched constant tensile load under ASTM D5397-19; failure times must align with GRI-GM13 minimum values. Seam strength after wedge welding or hot-air fusion is evaluated by ASTM D6392-12 for shear and peel. Terminal uses include landfill basal liners, pond liners, mining heap leach pads and secondary containment basins. Incompatible coextruded layers or excessive regrind above 20 wt% may reduce the high-pressure oxidative induction time and should be avoided unless validated on production-scale equipment.
Oriented tape production from HDPE HD-TR571 begins with cast film extrusion through a slot die at melt temperatures between 200 °C and 260 °C. The quench bath temperature is held at 15–35 °C to control crystallinity; slit tapes are then stretched in a hot air or hot roll oven at 90–120 °C using a draw ratio of 6:1 to 10:1. Higher draw ratios raise tenacity but reduce elongation at break, so the selected draw ratio is set according to final woven sack or geotextile specification. UV stabilizer masterbatch is added at 3–5 wt% let-down ratio for outdoor exposure. If calcium carbonate masterbatch is used for cost-sensitive woven sacks, loadings above 10 wt% reduce tensile strength and must be validated on pilot extrusion. Tensile strength and elongation are measured by ISO 527-3:2018; tape split resistance is checked per ISO 13953:2001. Terminal products are high-tenacity tape yarns for flexible intermediate bulk containers, baler twine, agricultural shade nets and temporary fencing. Die lip contamination and melt temperature overshoot above 260 °C cause gel formation and tape breakage during orientation. Published data for HD-TR571 in high-tenacity tape configuration is limited; draw ratio and additive dosage must be confirmed by pilot line evaluation.
Rotational moulding of HDPE HD-TR571 storage tanks requires pulverised resin with a narrow particle size distribution; common rotomoulding powders are ground to 35 mesh and have bulk density suitable for free flow. The mould is rotated biaxially inside an oven at 270–300 °C while internal air temperature is monitored and maintained below 190 °C; overshoot above 200 °C accelerates oxidation and creates surface voids. Cycle time is typically 20–40 min depending on wall thickness. UV stabilizer and antioxidant concentrates are dry-blended at 0.2–0.5 wt% and 0.05–0.1 wt% respectively, with exact dosage tied to service location and exposure category. The finished tanks are tested under ASTM D1998-21 for storage tanks and ISO 1183-1:2019 for density. Low-temperature impact is checked by ISO 180:2000. Terminal products include vertical chemical storage tanks, transport tanks and water tanks. Insufficient mould release and demoulding at 70 °C or above induce warpage; cooling below 40 °C before demoulding improves dimensional stability.
Because thermoformed pallet components develop warpage when sheet stock carries uneven internal stresses, extrusion of heavy-gauge HDPE HD-TR571 sheet for pallet and tray applications uses a calendering stack with roll temperatures between 60 °C and 90 °C. Melt temperature is maintained at 190–240 °C through the die; sheet thickness is commonly 1.5–6.0 mm. Regrind from skeleton trimming is reintroduced at 20–30 wt% after dust removal. Thermoforming is performed at sheet surface temperatures of 150–180 °C; plug assist speed and cavity vacuum are adjusted to maintain uniform wall thickness. Tensile modulus and yield strength are measured by ISO 527-2:2012; flexural properties by ISO 178:2019. Heat deflection temperature is reported per ASTM D648-18 at 0.455 MPa; HDPE values below 80 °C limit continuous service temperature in load-bearing pallets. Terminal products are hygienic pallet decks, material handling trays and automotive protective liners. The primary processing boundary is internal stress from sheet cooling: rapid crystallisation at chill roll temperatures below 50 °C causes warpage after thermoforming, so roll temperature must be monitored continuously.
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