Products Description

HDPE (High-Density Polyethylene), LLDPE (Linear Low-Density Polyethylene), and LDPE (Low-Density Polyethylene) are all types of geomembranes used in civil engineering projects. Dam Liner Pond Geomembrane is the most widely used and is known for its strength, durability, and resistance to chemicals and UV radiation. LLDPE has a higher flexibility and is more puncture resistant than HDPE, but is less resistant to chemicals. LDPE is the least strong and durable of the three, but is the most flexible and cost-effective. In summary, Dam Liner Pond Geomembrane is preferred for applications that require high strength and durability, LLDPE is best for applications where flexibility and puncture resistance are more important, and LDPE is suitable for less demanding applications where cost is a major factor.
Products Feature

Hdpe Geomembrane Features
Excellent chemical resistance.
Outstanding stress crack capacity.
Lowest permeability.
Excellent UV resistance.
Stable low temperature embrittlement resistance.
Complete width and thickness specifications.
Cost effective.
Proven performance.
Fast deployment.
Easy transportation.
Meet or exceed all aspects of GRI GM13.
Products Application
Hdpe Pond Liner Geomembrane Application
Aquaculture.
Landfills.
Water Treatment System.
Mining.
Other Applications.


Why choose BPM as your partner
Dam Liner Pond Geomembrane

Raw Material and Quality Guarantee
1.Large stock of imported geomembrane special raw materials.
2. Never use recycled material as new material.
3. Full equipped geomembrane laboratory.
4. Welcome to supervise the production.

1.90% Product For Export 2. Annual Capacity In 20,000,000 Tons Of Geomembrane.
3.Small Profits But Quick Turnover

Big Customer Endorsement
BPM often receive several ten millions of HDPE geomembrane project every year.

Stable sales and service team
BPM staff all work more than 8 years.All our staff are professional in geomembrane geosynthetics product knowledge and customer needs.
Products Property
Hdpe Pond Liner Geomembrane Technical Data
|
Properties |
Test Method |
Test Value |
|||||||||
|
0.5 mm |
0.75mm |
1.00 mm |
1.25 mm |
1.50 mm |
2.00 mm |
2.50 mm |
3.00 mm |
||||
|
Maximum Deviation of thickness |
|
-15% |
-15% |
-15% |
-15% |
-15% |
-15% |
-15% |
-15% |
||
|
Density (min. ave.) |
D 1505/D792 |
0.940 g/cc |
0.940 g/cc
|
0.940 g/cc |
0.940 g/cc |
0.940 g/cc |
0.940 g/cc |
0.940 g/cc |
0.940 g/cc |
||
|
Tensile Properties(min.ave) |
Yield strength
Break strength |
D6693 |
8N/mm |
11 N/mm |
15 N/mm |
18 N/mm |
22 N/mm |
29 N/mm |
37 N/mm |
44 N/mm |
|
|
14N/mm |
20N/mm
|
27 N/mm |
33 N/mm |
40 N/mm |
53N/mm |
67 N/mm |
80 N/mm |
||||
|
Yield elongation |
12% |
12% |
12% |
12% |
12% |
12% |
12% |
12% |
|||
|
Break elongation |
700% |
700% |
700% |
700% |
700% |
700% |
700% |
700% |
|||
|
Tear Resistance (min. ave.) |
D 1004 |
63 N |
93 N |
125 N |
156 N |
187 N |
249 N |
311 N |
374 N |
||
|
Puncture Resistance (min. ave.) |
D 4833 |
160N |
240N |
320 N |
400 N |
480 N |
640 N |
800 N |
960 N |
||
|
Carbon Black Content (range) |
D 4218 |
2.0-3.0 % |
2.0-3.0 % |
2.0-3.0 % |
2.0-3.0 % |
2.0-3.0 % |
2.0-3.0 % |
2.0-3.0 % |
2.0-3.0 % |
||
|
Oxidative Induction Time (OIT) (min.ave.) Standard OIT |
D 3895 |
100 min. |
100 min. |
100 min. |
100 min. |
100 min. |
100 min. |
100 min. |
100 min. |
||
|
Oven Aging at 85°C Standard OIT (min. ave.) - % retained after 90 days |
D 5721 D 3895 |
55% |
55% |
55% |
55% |
55% |
55% |
55% |
55% |
||
|
UV Resistance High Pressure OIT (min. ave.) - % retained after 1600 hrs |
D 3895 D 5885 |
50% |
50% |
50% |
50% |
50% |
50% |
50% |
50% |
||
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