Type and application
Type |
Product |
Application and advantages |
HDPE9190 |
Black HDPE jacket material |
It is used for sheath of optical cable and high strength and high wear resistant protective layer. And The product has features of stable quality, excellent processing technique, wide processing temperature,smooth and delicate surface of the product. It can replace imported and petrochemical products of the same type and has price advantages. |
HDPE8807 |
Black HDPE jacket material |
|
HT01 |
Black high density and medium strength polyethylene jacket material |
|
HT03 |
Black high density and high strength polyethylene jacket material |
|
HDPE8807(MX) |
High density polyethylene optical cable sheath material |
Product description
HDPE sheathing material is made of partially high strength recycled high molecular polyethylene as the main raw material, adding various additives, modified by blending, extruded and granulated by single screw extruder. The performance indexes can reach the standard of GB/ T15065-2009 and YD/T 1485-2006. It has excellent processability of processing, mechanical and physical properties and electrical properties.
Processing technology
It is recommended that HDPE sheath material should be processed with extruder having a minimum L/D ratio of 25. In the extrusion process, the production speed should be reduced and the plasticization should be ensured. It is best to dry before extrusion, and the maximum drying temperature is 100 °C. It is recommended to set the temperature (°C) of each zone of the extruder as follows:
Zone |
Zone1 |
Zone2 |
Zone3 |
Zone4 |
Zone5 |
Flange |
Die |
Temperature ℃ |
190 |
210 |
230 |
245 |
255 |
250 |
245 |
Note: The above process parameters are for reference only. The specific temperature is related to the matching degree of equipment and materials. Corresponding adjustments should be made according to the surface conditions of the extruded materials. The cooling water tank should be used sectionally cooling with warm-water echelon in order to reduce internal stress.
Storage and transport
Packaging: 500 kg, 750 kg, 900 kg polyethylene bag inside and outside woven bag for big package, or 25 kg paper-plastic composite for small package.
Transportation: The product should not be exposed to sunlight, rain or damp during transportation, and keep the packaging intact.
Storage: Please store in clean, cool, dry and ventilated warehouse; keep away from fire sources; if it was affected with damp, please dry under 80℃ ±5℃ for 1 to 2 hours.
Properties
Item |
Unit |
Spec |
Test method |
||||
HDPE 9190 |
HDPE 8807 |
HT01 |
HT03 |
HDPE 8807(MX) |
|||
Melt Flowing Index(190℃,2.16Kg) |
g/10min |
≤1.5 |
GB/T 3682 |
||||
Density(23±0.5)℃ |
g/cm3 |
0.955-0.978 |
≥0.956 |
0.955-0.978 |
0.950-0.978 |
GB/T 1033.1 |
|
Tensile Strength(50mm/min) |
MPa |
≥20 |
≥21 |
≥18 |
≥24 |
≥20 |
GB/T 1040 |
Elongation at Break |
% |
≥650 |
≥700 |
≥750 |
≥650 |
GB/T 1040 |
|
Low temperature impact embrittlement temperature(-76℃) |
℃ |
Pass |
GB/T 5470 |
||||
Dispersity of Carbon Black |
Scatter |
≤3 |
GB/T 18251 |
||||
Carbon Black Content (Direct Combustion Method) |
% |
2.60±0.25 |
2.60±0.22 |
2.60±0.25 |
GB/T 2951.41 |
||
Resistance to Environmental Stress Crack F0 |
h |
≥500 |
GB/T 2951.41 |
||||
200℃ Oxidative Induced Time |
min |
≥50 |
≥60 |
≥50 |
GB/T 2951.41 |
||
Tensile Strength after heat aging |
MPa |
≥20 |
≥17 |
≥20 |
GB/T 2951.12 |
||
Change rate of tensile strength after thermal aging |
% |
≤20 |
≤14.9 |
≤15 |
/ |
GB/T 2951.12 |
|
Elongation at Breakafter heat aging |
% |
≥650 |
≥620 |
≥650 |
GB/T 2951.12 |
||
Change rate of elongation at break after thermal aging |
% |
≤20 |
≤9.9 |
≤10 |
/ |
GB/T 2951.12 |
|
Volume Resistivity at 20℃ |
Ω.m |
≥1×1014 |
GB/T 1410 |
||||
Dielectric Strength |
KV/mm |
≥25 |
GB/T 1408.1 |
||||
Dielectric Constant |
/ |
≤2.75 |
GB/T 1409 |
||||
Shore hardness |
D(15s) |
≥54 |
≥52 |
≥55 |
≥52 |
GB/T 2411 |
Note: The samples were prepared according to the test method of GB/T9352 thermoplastic plastic specimen.