About |
---|
Hexene Linear Low Density Resin Slot Cast Extrusion Outstanding Drawdown Capability Complies with U.S. FDA 21 CFR 177.1520 (c) 3.1a Consult the regulations for complete details. TUFLIN™ HS-7046 NT 7 Linear Low Density Polyethylene Resin is an ethylene-hexene copolymer, linear low density (LLDPE) resin designed for slot cast extrusion. This product is recommended for slot cast thin film applications requiring both clarity and superior toughness as the core layer in coextruded structures.&& |
Product Description | |
---|---|
Supplier | DOW |
Generic | Linear low density polyethylene |
Material Status | Commercial: Active |
Availabilitys | North America |
Technical Data | |||
---|---|---|---|
PHYSICAL | Nominal value | Unit | Test method |
Density | 0.919 | g/cm³ | ASTM D792 |
Melt Flow Rate | |||
190℃,2.16kg | 1.0 | g/10min | ASTM D1238 |
film | Nominal value | Unit | Test method |
---|---|---|---|
Membrane puncture strength | Internal Method | ||
20 µm | 4.63 | J | Internal Method |
51 µm | 6.78 | J | Internal Method |
Membrane puncture force | Internal Method | ||
20 µm | 53.4 | N | Internal Method |
51 µm | 84.5 | N | Internal Method |
Membrane puncture resistance | Internal Method | ||
20 µm | 25.2 | J/cm³ | Internal Method |
51 µm | 17.9 | J/cm³ | Internal Method |
Membrane strength | ASTM D882 | ||
MD:20 µm | 303 | J/cm³ | ASTM D882 |
MD:51 µm | 331 | J/cm³ | ASTM D882 |
TD:20 µm | 353 | J/cm³ | ASTM D882 |
TD:51 µm | 361 | J/cm³ | ASTM D882 |
Secant modulus | ASTM D882 | ||
2% secant, MD: 20 µ m | 196 | MPa | ASTM D882 |
2% secant, MD: 51 µ m | 196 | MPa | ASTM D882 |
2% secant, TD: 20 µ m | 221 | MPa | ASTM D882 |
2% secant, TD: 51 µ m | 219 | MPa | ASTM D882 |
tensile strength | ASTM D882 | ||
MD, yield, 20 µ m | 12.4 | MPa | ASTM D882 |
MD, yield, 51 µ m | 11.8 | MPa | ASTM D882 |
TD, yield, 20 µ m | 13.0 | MPa | ASTM D882 |
TD, yield, 51 µ m | 14.4 | MPa | ASTM D882 |
MD, fracture, 20 µ m | 64.8 | MPa | ASTM D882 |
MD, fracture, 51 µ m | 54.2 | MPa | ASTM D882 |
TD, fracture, 20 µ m | 52.4 | MPa | ASTM D882 |
TD, fracture, 51 µ m | 53.6 | MPa | ASTM D882 |
Tensile strain | ASTM D882 | ||
MD, fracture, 20 µ m | 610 | % | ASTM D882 |
MD, fracture, 51 µ m | 800 | % | ASTM D882 |
TD, fracture, 20 µ m | 860 | % | ASTM D882 |
TD, fracture, 51 µ m | 820 | % | ASTM D882 |
Drop hammer impact | |||
20 µm | 110 | g | ASTM D1709-A |
20 µm | < 100 | g | ASTM D1709-B |
51 µm | 350 | g | ASTM D1709-A |
51 µm | 200 | g | ASTM D1709-B |
Elmandorf tear strength | ASTM D1922 | ||
MD:20 µm | 370 | g | ASTM D1922 |
MD:51 µm | 950 | g | ASTM D1922 |
TD:20 µm | 700 | g | ASTM D1922 |
TD:51 µm | 1300 | g | ASTM D1922 |
Initial sealing temperature | Internal Method | ||
20 µm | 110 | ℃ | Internal Method |
51 µm | 120 | ℃ | Internal Method |
THERMAL | Nominal value | Unit | Test method |
---|---|---|---|
Vicat Softening Temp | 104 | ℃ | ASTM D1525 |
Melting temperature | |||
DSC | 124 | ℃ | Internal Method |
optical performance | Nominal value | Unit | Test method |
---|---|---|---|
gloss | ASTM D2457 | ||
20°,20.3 µm | 87 | ASTM D2457 | |
20°,50.8 µm | 64 | ASTM D2457 | |
45°,20.3 µm | 70 | ASTM D2457 | |
45°,50.8 µm | 59 | ASTM D2457 | |
Haze | ASTM D1003 | ||
20.3 µm | 7.0 | % | ASTM D1003 |
50.8 µm | 14 | % | ASTM D1003 |
Supplementary information | Nominal value | Unit | Test method |
---|---|---|---|
Sealing emphasis | Internal Method | ||
130℃,20.3 µm | 1000 | g | Internal Method |
150℃,50.8 µm | 2100 | g | Internal Method |
Process Conditions | |||
---|---|---|---|
Extrusion | Nominal value | Unit | Test method |
Melt temperature | 233 | °C |
Notes |
---|
1. Typical properties: these are not to be construed as specifications. |
2. Method B |
3. Temperature at which 1 lb/in. (4.4 N/25.4 mm) heat seal strength is achieved. Heat Seal Strengths, Topwave HT Tester 0.5 S dwell, 40 psi bar pressure, pull speed 10 (in./min.). |
4. Heat Seal Strengths, Topwave HT Tester 0.5 S dwell, 40 psi bar pressure, pull speed 10 (in./min.). |
【 Disclaimer 】 Guangzhou Soliao Information Technology Co., Ltd. reserves all rights. The information in this data table was obtained from the manufacturer of the material on soliao.com. Soliao.com makes every effort to ensure the accuracy of this data. However, the search company does not assume any responsibility for the uncertainty and consequences caused to users by these data values and suggestions, and strongly recommends verifying the data values with the material supplier before the final selection of materials. |