| HS Code | 443593 |
As an accredited PEMSB (Malaysia) HDPE HD4202AA factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | PEMSB (Malaysia) HDPE HD4202AA is packed in 25 kg polyethylene-lined woven sacks, palletized and stretch-wrapped for secure shipment. |
| Container Loading (20′ FCL) | 20′ FCL container loaded with PEMSB Malaysia HDPE HD4202AA, packed in 25 kg bags, approximately 18–20 MT, securely stowed for export shipment. |
| Shipping | PEMSB (Malaysia) HDPE HD4202AA is a non-hazardous high-density polyethylene resin. It is normally shipped in 25 kg woven bags or 1,000 kg jumbo bags, palletized, in dry containers or trucks. No UN number, hazard class, or special handling required; keep dry, clean, and away from ignition sources. |
| Storage | Store PEMSB (Malaysia) HDPE HD4202AA in a cool, dry, well-ventilated area away from direct sunlight, heat, sparks, flames, and strong oxidizers. Keep bags or containers closed, clean, labeled, and palletized to prevent moisture and contamination. Avoid excessive stacking. Use proper handling to control dust/static. Inspect containers regularly. Store separately from incompatible materials. Follow the supplier’s SDS and local regulations. |
| Shelf Life | Shelf life is typically 24 months from manufacture if stored cool, dry, away from direct sunlight in unopened original packaging. |
In extrusion blow moulding of UN-certified industrial liquid packaging, HD4202AA is processed on continuous blow moulders with screw L/D ratios from 24:1 to 30:1 and grooved feed sections, because the melt mass-flow rate of 0.42 g/10 min at 190 °C/2.16 kg under ISO 1133-1:2022 places the grade in the high-melt-strength blow moulding window. Production-scale behaviour on 5 L–25 L jerrycan tools is dominated by parison sag and die swell; therefore parison programming with multi-point die gap modulation is required to redistribute wall thickness at the handle pinch-off and lower chime. On shuttle machines for containers up to 5 L, reciprocating screw shots are sized at 70%–80% of maximum capacity to reduce melt retention, while accumulator-head machines for 20 L–60 L drums are run with first-in-first-out melt paths to limit residence-time drift in regrind-containing batches. Melt temperature is maintained at 180 °C–200 °C, mould temperature at 10 °C–20 °C, and blow air pressure at 0.6 MPa–0.8 MPa. A typical UN-certification formulation uses 75 wt%–85 wt% virgin HD4202AA and 15 wt%–25 wt% clean in-house regrind, plus 2 wt%–4 wt% colour masterbatch and, for outdoor logistics exposure, 0.1 wt%–0.5 wt% hindered-amine light stabilizer. The compliance matrix is anchored to UN Model Regulations Chapter 6.1 for packaging designations 3H1 and 3H2, with packaging performance testing under ISO 16104; resin characterization for batch release includes ISO 1133-1:2022 and ASTM D1693 Condition B for environmental stress-cracking resistance. Terminal finished product types include 5 L–25 L jerrycans for liquid agrochemicals and cleaning concentrates, 30 L–60 L tight-head drums, and UN-approved containers for liquids with specific gravity up to 1.2 g/cm³ when validated with the intended closure and handle geometry.
| Standard / code | Designation | Function |
|---|---|---|
| UN Model Regulations Chapter 6.1 | 3H1 / 3H2 | Drop and leakproofness test for dangerous goods packagings |
| ISO 16104 | — | Test methods for transport packagings for dangerous goods |
| ISO 1133-1:2022 | Procedure A | Melt mass-flow rate at 190 °C / 2.16 kg |
| ASTM D1693 | Condition B | Environmental stress-cracking resistance in nonylphenol ethoxylate, F50 |
Pharmaceutical oral liquid bottles require a direct-contact olefin layer with pharmacopoeial traceability, and HD4202AA is specified only when the moulder maintains complete batch segregation and current food-contact documentation. The direct-contact formulation is 100 wt% HD4202AA or, where local authority registration allows, 10 wt%–20 wt% clean in-house regrind generated exclusively from the same commercial lot; post-consumer recycled resin is not used in the direct-contact layer. White masterbatch is added at 1 wt%–3 wt% to provide visible-light protection for oral liquid formulations, and no slip, antiblock, or antistatic additive is incorporated unless explicitly listed in the pharmacopoeial documentation. Downstream processing occurs on extrusion blow moulding lines with ISO 14644-1 Class 8 cleanroom discipline at the parison and mould station, with melt temperature held at 180 °C–190 °C and mould temperature at 15 °C–25 °C. Parison wall thickness control at the neck finish is critical because oral liquid bottle closures require dimensional consistency for child-resistant closure function under ISO 8317. This paragraph describes conversion requirements and does not replace the need for the pharmaceutical packager to obtain a drug master file or health authority approval for the finished packaging system. Terminal finished product types include 15 mL–500 mL high-density polyethylene bottles for paediatric syrups, cough syrups, oral suspensions, and dropper-tip bottles; cervical and side-wall thickness tolerances are validated for closure liner compression. The compliance matrix for direct-contact testing is summarized in the table below.
| Standard / monograph | Citation | Requirement |
|---|---|---|
| USP | 661.1 | Plastic packaging system suitability and physicochemical testing |
| Ph. Eur. | 3.1.3 | Polyolefins for containers for oral preparations |
| FDA | 21 CFR 177.1520 | Olefin polymers for direct food-contact use |
| EU | (EU) No 10/2011 | Overall migration limits for plastic food contact; oral liquid formulations may require more conservative simulant selection |
| ISO | 8317 | Child-resistant packaging certification for closures used with oral liquid bottles |
The viscosity match between HD4202AA and the selected EVOH barrier layer at the die lip determines parison wall uniformity in five-layer coextrusion blow moulding for pesticide and herbicide packaging. The coextruded recipe typically places 55 wt%–70 wt% HD4202AA in the outer and inner structural layers, 3 wt%–5 wt% EVOH in the barrier layer, 1 wt%–2 wt% maleic anhydride tie resin on each side of the EVOH, and 20 wt%–30 wt% clean in-house regrind in a buried middle layer; UV absorber at 0.1 wt%–0.3 wt% is confined to the outer skin. Extrusion temperatures are staggered because EVOH undergoes thermal degradation above 230 °C, while HD4202AA is processed at 180 °C–200 °C; the tie layers are kept at 180 °C–200 °C and the die head is held at 190 °C–205 °C. Blow air pressure of 0.8 MPa–1.0 MPa and mould temperature of 15 °C–25 °C are used, but the bottleneck on production lines is the pinch-off weld line, where the barrier layer can thin to 3%–5% of total wall thickness unless parison programming is synchronised with rotation of the parison or tooling. Compliance for agrochemical containers is governed by UN Model Regulations Chapter 6.1 for transport packagings, EU CLP Regulation (EC) No 1272/2008 for classification and labelling, FAO/WHO Guidelines for Pesticide Packaging, and barrier property verification under ASTM D3985 for oxygen transmission. Terminal finished product types include 1 L–5 L coextruded agrochemical bottles and UN-rated containers for emulsifiable concentrates, water-based pesticides, and chlorinated solvent adjuvants, with child-resistant closure validation under ISO 8317.
Inline surface fluorination modifies the interior wall of a monolayer HD4202AA container, creating a low-permeability surface without a coextruded barrier layer or tie resin. The formulation remains 100 wt% HD4202AA in the monolayer wall; if regrind is introduced, plant practice restricts it to less than 15 wt% because oxidized regrind surfaces react unevenly with fluorine and can leave pinhole-adjacent zones with solvent uptake. Colour masterbatch is used at 0.5 wt%–2 wt%, and calcium carbonate fillers are avoided because they raise solvent absorption and reduce interlayer integrity. The downstream process starts with conventional extrusion blow moulding at 180 °C–200 °C, followed by a post-moulding fluorine/nitrogen treatment step; typical gas-phase fluorine concentration is 0.1 mol%–1.0 mol% in nitrogen with reactor residence time of 10 s–120 s depending on container volume and wall thickness. Fluorination reactors require nickel-alloy wetted parts and multistage alkali scrubbers because elemental fluorine is an oxidizer; the process is therefore a surface chemical modification rather than a formulation addition. Functional performance is evaluated by gravimetric permeation testing according to ASTM D2684 under 23 °C and 50% ± 5% relative humidity, and by UN Model Regulations Chapter 6.1 for transport certification after fluorination; EU CLP Regulation (EC) No 1272/2008 applies to the filled chemical product. Published third-party comparisons for this specific HD4202AA grade in fluorinated barrier service are limited, so plant-scale transmission rate validation and batch-to-batch surface energy testing are required before UN certification. Terminal finished product types include 5 L–20 L monolayer containers for paint thinners, aromatic solvents, methyl ethyl ketone, solvent-borne wood preservatives, and agricultural solvent concentrates where conventional coextruded EVOH structures are not cost-compatible.
In household detergent packaging, HD4202AA is graded primarily by environmental stress-cracking resistance before tensile yield strength, because the presence of nonylphenol ethoxylates, anionic surfactants, and hypochlorite bleach generates stress-cracking conditions at the pinch-off weld and handle parting line. The formulation commonly includes 10 wt%–25 wt% recycled high-density polyethylene from household waste streams; however, for bleach-containing products the regrind content is reduced to 15 wt% or less to prevent lot-to-lot ESCR variability. Colour masterbatch is added at 1 wt%–3 wt%, and fillers are excluded because even 2 wt%–3 wt% talc can lower ESCR and reduce drop-impact performance. Downstream processing uses extrusion blow moulding with die gap set at 0.9 mm–1.8 mm and parison swell managed in the 20%–35% range; melt temperature is held at 185 °C–200 °C, mould temperature at 15 °C–25 °C, and blow air pressure at 0.8 MPa–1.0 MPa. On production lines, failures concentrate at the weld line when the die gap is too narrow or when regrind content exceeds 25 wt%; grooved feed extruders can raise output but require a static mixer or mixing section to avoid unmelts that nucleate stress cracks. Compliance is verified by ASTM D1693 Condition B for ESCR, ISO 1133-1:2022 for melt mass-flow rate, and UN Model Regulations Chapter 6.1 when the bottle is offered for transport of cleaning concentrates; EU REACH Regulation (EC) No 1907/2006 and CLP Regulation (EC) No 1272/2008 apply to the finished chemical formulation. Terminal finished product types include 500 mL–5 L bottles for laundry detergent, fabric softener, surface cleaners, liquid bleach, and floor-care concentrates.
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