| HS Code | 491564 |
| Density | 0.951 g/cm3 |
| Melt Flow Rate 190 C 2 16 Kg | 0.05 g/10 min |
| Tensile Strength At Yield | 24 MPa |
| Tensile Strength At Break | 30 MPa |
| Elongation At Break | >600% |
| Flexural Modulus | 0.80 GPa |
| Notched Izod Impact Strength | 0.50 J/cm |
| Shore D Hardness | 55 |
| Vicat Softening Point | 120°C |
| Heat Deflection Temperature 0 45 Mpa | 70°C |
| Brittleness Temperature | -70°C |
| Environmental Stress Crack Resistance | >1000 h |
| Mold Shrinkage | 2.0-4.0% |
| Melting Point | 130°C |
| Water Absorption | <0.01% |
| Thermal Expansion Coefficient | 1.2E-4 /°C |
| Thermal Conductivity | 0.40 W/m·K |
| Dielectric Strength | 20 kV/mm |
| Volume Resistivity | >1E16 ohm·cm |
As an accredited Formosa Plastics HDPE TAISOX 7301 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Formosa Plastics HDPE TAISOX 7301 is typically supplied in 25 kg bags or 1,000 kg jumbo bags. |
| Container Loading (20′ FCL) | 20′ FCL container loaded with Formosa Plastics HDPE TAISOX 7301 in 25 kg bags, palletized and securely stowed for ocean export. |
| Shipping | Formosa Plastics HDPE TAISOX 7301 is shipped as a non-hazardous polyethylene resin in 25 kg bags or 1,000 kg jumbo bags, palletized and stretch-wrapped. Transport in clean, dry containers by sea or land; keep away from moisture, heat, and direct sunlight. Store under cool, ventilated conditions; no special hazards if handled properly. |
| Storage | Store Formosa Plastics HDPE TAISOX 7301 in a cool, dry, well-ventilated warehouse away from direct sunlight, heat, sparks, and open flames. Keep original packaging closed to prevent moisture, dust, and contamination. Protect from ultraviolet light and prolonged high temperatures. Stack pallets securely on stable surfaces. Avoid contact with strong oxidizers. Clean spills promptly, as pellets may create slippery conditions. |
| Shelf Life | Formosa Plastics HDPE TAISOX 7301 has a recommended 12-month shelf life when stored sealed, cool, dry, and away from sunlight. |
Blown film lines configured for retail carrier bags process Formosa Plastics HDPE TAISOX 7301 as a high-molecular-weight film grade with a nominal melt flow index of 0.30 g/10 min under ASTM D1238 at 190 °C/2.16 kg and a nominal density of 0.951 g/cm³ under ASTM D1505. The extruder profile is set from 170 °C in the feed section to 190 °C in the compression zone, with a melt temperature of 195 °C to 215 °C and a die temperature of 190 °C to 210 °C. A die gap of 1.0 mm to 1.4 mm and a blow-up ratio of 3.0:1 to 4.5:1 maintain bubble geometry on a dual-lip air ring. The frost line height is kept at 5 to 8 die diameters to balance quench rate and gauge uniformity. In a typical carrier-bag formulation, 70 to 80 wt% virgin TAISOX 7301 is blended with 20 to 30 wt% clean post-industrial edge trim. A 10% silica antiblock masterbatch is metered at 1.0 to 2.0 wt%, and a primary hindered phenol antioxidant masterbatch is added at 0.05 to 0.15 wt%. Film gauge is specified between 12 µm and 25 µm. The converted T-shirt bag is sealed on a bottom-seal bag machine at 140 °C to 160 °C with 0.5 s dwell and 0.3 MPa to 0.5 MPa seal pressure. Under FDA 21 CFR 177.1520, the olefin polymer can comply for direct food contact only when the finished film meets extractable limits; for retail bags the route is non-food contact. In Europe, EU 10/2011 compliance applies when the bags are used in bakery or produce applications, and the converter is responsible for overall migration testing. A plant-scale failure mode on lines without internal bubble cooling is bubble instability below 15 µm, which appears as rhythmic gauge bands at the frost line and is corrected by raising air ring pressure rather than increasing melt temperature beyond 215 °C.
Below 12 µm gauge, the dominant constraint in refuse sack conversion is not extruder output but bubble tension loss between the frost line and the collapsing frame. On a line running TAISOX 7301 at 80 kg/h to 120 kg/h through a 90 mm grooved-feed extruder with L/D 30:1, the barrel profile is set from 175 °C in zone 1 to 205 °C at the adapter and die. A die gap of 0.8 mm to 1.0 mm and a blow-up ratio of 3.5:1 to 4.0:1 are used. Because the melt flow index is 0.30 g/10 min, the bubble neck remains stable at frost line heights up to 9 die diameters, but neck flutter appears when the dual-lip air ring is set below 40% of maximum cooling air volume. In a dense refuse sack formulation, 40 to 60 phr TAISOX 7301 is blended with 40 to 60 phr recycled HDPE from post-consumer bottle scrap. A carbon black masterbatch with a 45% carbon black loading is added at 2.0 to 3.0 phr for opacity and ultraviolet screening. The recycled fraction must be dried to 0.02% moisture or less when it originates from a wet granulation line, or splay defects occur at the die lip. For 10 µm film, the target tensile stress at yield under ASTM D882 is at least 20 MPa in the machine direction and 18 MPa in the transverse direction. Tensile elongation at break is typically above 400%. Dart impact under ASTM D1709 Method A is specified above 80 g at 10 µm, and Elmendorf tear strength under ASTM D1922 is not less than 0.12 N in the machine direction. Side-weld bag machines are set at 135 °C to 155 °C, 0.25 MPa to 0.45 MPa, and 0.3 s to 0.6 s dwell. In the European Union, household refuse sacks are classified under EN 13592:2017; the converter carries the classification because the resin producer does not supply finished-sack certificates. The stable operating boundary is reached at 10 µm when recycled content exceeds 60 phr because inconsistent melt flow in post-consumer HDPE widens gauge bands by ±2 µm and increases side-weld pinholes.
The compliance anchors are not interchangeable across downstream routes, and the following matrix identifies the standard or regulation applied at converter level.
| Application route | Compliance reference | Test method | Parameter verified at converter level |
|---|---|---|---|
| Retail carrier bag | FDA 21 CFR 177.1520; EU 10/2011 | ASTM D1709 Method A; ASTM D1922 | Dart impact and Elmendorf tear at 20 µm |
| Refuse sack | EN 13592:2017 | ASTM D1709 Method A; ASTM D882 | Burst resistance and gauge classification |
| Extrusion-laminated woven sack | UN Model Regulations 6.1.5 | ASTM F88; ASTM F1249 | Seal strength and moisture vapour transmission rate on finished composite |
| Form-fill-seal pouch | FDA 21 CFR 177.1520; EU 10/2011 | ASTM F88; ASTM D882 | Seal strength and secant modulus |
| Drum liner | UN Model Regulations 6.1; FDA 21 CFR 177.1520 | ASTM D1693 Condition B | Environmental stress crack resistance |
| Tissue overwrap | FDA 21 CFR 177.1520; EU 10/2011 | ASTM D1894; ASTM D5748 | Kinetic coefficient of friction and puncture resistance |
Tandem extrusion lamination lines for woven polypropylene fertiliser sacks use TAISOX 7301 as the moisture-barrier coating. The extrusion lamination line uses a 90 mm single-screw extruder with a barrier mixing section and L/D 28:1. Barrel temperatures rise from 200 °C in the feed zone to 290 °C at the front zone, and the T-die is held at 270 °C to 290 °C. The air gap between die exit and chill roll nip is 150 mm to 200 mm, and the chill roll is set at 15 °C to 25 °C. Coating thickness is 15 µm to 30 µm over 50 g/m² to 70 g/m² woven PP substrate. The substrate is corona-treated to at least 40 dyn/cm. When the sack is destined for hygroscopic fertiliser under high humidity, an 8 to 12 µm LDPE or EMA tie layer is inserted between substrate and HDPE coating. The tie layer reduces delamination in drop testing of filled 50 kg sacks. The coated side is re-treated to 38 to 42 dyn/cm before rotogravure printing. Seal strength measured under ASTM F88 on a 25 µm coating typically exceeds 30 N/25 mm when the sealer is set at 145 °C and 0.5 s dwell. For dangerous goods packaging, the composite sack may be qualified under UN Model Regulations 6.1.5 for solid hazardous materials in Packing Group II or III if the complete package passes the 1.2 m drop test and stacking test; the film coating alone is not the certified component. Moisture vapour transmission rate under ASTM F1249 at 38 °C and 90% RH must be measured by the converter because published data for this exact composite configuration is limited. Edge neck-in is controlled by keeping the die-to-nip distance below 200 mm and melt temperature above 280 °C, but raising melt temperature above 300 °C can initiate gel formation from degraded antioxidant packages and should be avoided.
In coextruded form-fill-seal films for dry food pouches, TAISOX 7301 is processed as a stiffness core in an ABA structure where the outer layers are LDPE or LLDPE sealants. The HDPE core layer is set at 20% to 40% of total film thickness, and final film gauge is 60 µm to 100 µm. On a three-layer blown film line with extruder diameters of 50 mm, 65 mm, and 50 mm, the core extruder is operated at 185 °C to 210 °C, while the seal-layer extruders are held at 160 °C to 180 °C. A die gap of 1.2 mm is selected to accommodate the higher viscosity of the HDPE core, and the blow-up ratio is kept at 2.0:1 to 2.5:1 to favour transverse stiffness without destabilising the bubble. The core layer contains 100 phr TAISOX 7301 plus 0.1 to 0.2 phr of a phosphite stabiliser masterbatch. No antiblock is added to the core because slip and antiblock additives are carried in the sealant at 1.0 to 1.5 wt%. The finished film is tested for tensile modulus under ASTM D882, with the HDPE core raising the 1% secant modulus above 450 MPa depending on layer ratio. Heat seal initiation temperature is controlled by the LDPE sealant; seal strength of 15 N/25 mm is typically achieved at 125 °C with 0.5 s dwell under ASTM F88. For food contact compliance, the HDPE component must satisfy FDA 21 CFR 177.1520, and the multilayer structure must meet EU 10/2011 overall migration limits. Specific migration testing for the core is not required when the sealant layer acts as a functional barrier under the intended filling temperature and time, but the converter must document that barrier function. Terminal pouches are run on vertical form-fill-seal machines at 40 to 80 pouches per minute. A limitation occurs when the core layer exceeds 40% because the film becomes too stiff for the forming collar and develops longitudinal fold memory lines that crack open after creasing.
When a 200-L drum liner must endure stack pressure and aggressive chemical contact, environmental stress crack resistance becomes the controlling property. For 200-L steel drum and fibre drum liners, the film is extruded as a lay-flat tube with wall thickness from 80 µm to 120 µm and a circumference matched to the drum interior. TAISOX 7301 is used because its molecular weight, indicated by the 0.30 g/10 min melt flow index under ASTM D1238, provides higher environmental stress crack resistance than low-density film grades under ASTM D1693 Condition B in 10% Igepal CO-630 at 50 °C. The blown film line is configured with a 70 mm extruder, a die gap of 1.5 mm to 2.0 mm, and a blow-up ratio of 1.8:1 to 2.5:1 to produce a large tube diameter. Melt temperatures are held at 180 °C to 200 °C to limit oxidative degradation during long runs. The formulation includes 100 phr TAISOX 7301, 0.3 to 0.5 phr of a hindered amine light stabiliser system when liners are stored outdoors, and 0.05 to 0.10 phr of a process stabiliser. For pharmaceutical or food adjunct liners, the converter specifies FDA 21 CFR 177.1520 and maintains batch traceability to the resin certificate of analysis under ISO 9001. For chemical drum liners carrying liquid hazardous goods, the finished packaging is qualified under UN Model Regulations 6.1 as a combination package. The drum liner itself is not an independent UN package unless tested as an inner receptacle with its own closure. Melt fracture at the die lip occurs when melt temperature drops below 175 °C or when the die land length is shorter than 10 mm; the resulting shark-skin bands reduce flex-crack pinhole resistance under ASTM D1693 and are corrected by raising die temperature to 195 °C or increasing die gap. On a 1.2 m circumference tube, gauge uniformity of ±5% is attainable at 60 kg/h; below 45 kg/h the bubble loses internal pressure and produces port lines at the collapsing frame.
High-speed tissue overwrap lines place the coefficient of friction after slip migration ahead of film tensile strength. TAISOX 7301 is extruded into 15 µm to 25 µm monolayer film on a line with L/D 25:1, a die gap of 1.0 mm, and a blow-up ratio of 4.0:1 to 5.0:1. Melt temperature is held at 190 °C to 210 °C. The formulation adds 0.5 to 1.0 wt% of a 5% erucamide slip masterbatch and 0.5 to 1.0 wt% of a 10% silica antiblock masterbatch. The targeted kinetic coefficient of friction is below 0.25 under ASTM D1894. Slip migration continues for up to 72 h after extrusion; in-line rewinding before complete migration produces wrinkling on the flow-wrapper. Flow-wrap machines run at 60 to 120 packs per minute, and the film is corona-treated to 38 to 40 dyn/cm on the print side before flexographic marking with water-based inks. Under FDA 21 CFR 177.1520 and EU 10/2011, the converter must ensure the slip and antiblock masterbatches do not introduce substances outside the positive list when tissue products are sold into food-adjacent markets. Blocking of film rolls after warehouse storage above 35 °C is reduced by specifying a coefficient of friction no higher than 0.20 after 48 h and by keeping winder tension below 30 N/m. Puncture resistance under ASTM D5748 prevents protrusion puncture on automatic case packers.
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