Advanced Production Process of HDPE Textured Geomembrane for Environmental Engineering
Definition and production process of roughened geomembrane
Roughened geomembrane is a product improved on the basis of the traditional production process of polyethylene anti-seepage membrane. Through specific production equipment and technology, the surface of the produced polyethylene anti-seepage membrane forms a granular rough surface. This rough surface is formed by letting the molten material flow out of the extrusion cavity, and then using the wind trough and hot air compression trough to introduce hot air into the wind cavity through the air inlet hole. The hot air is blown out through the hot air compression trough, blowing the material flowing out of the extrusion cavity into flocs, and finally these flocs fall on the surface of the geomembrane, thereby increasing the surface roughness and increasing the friction coefficient
Application scenarios of roughened geomembrane
Roughened geomembrane is widely used in many fields due to its unique surface roughness and excellent physical properties:
Environmental engineering
Landfill: used to prevent pollution of landfill leachate.
Tailings storage field: enhance the stability of tailings dams and prevent tailings loss.
Channel anti-seepage: effectively prevent water loss and soil erosion in agricultural irrigation and urban water supply systems.
Dam anti-seepage: Improve the safety of dams and prevent floods.
Subway projects: During subway construction, it is used to prevent groundwater infiltration and ensure construction safety
Construction projects
Highways, airports, and railways: Used for waterproof isolation of roads to increase road service life.
Tunnels: In subways, undersea tunnels and other projects, it prevents groundwater infiltration and ensures construction and operation safety
Performance characteristics of roughened geomembranes
Roughened geomembranes not only have all the advantages of ordinary geomembranes, but also have the following characteristics due to the increase in surface roughness:
Increase friction coefficient: Enhance adhesion with the base surface to prevent landslides.
Enhance tensile strength: Compared with smooth membranes, roughened membranes have stronger tensile strength.
Enhance resistance to load-bearing deformation: The rough particles on the surface of the rough membrane will form a small gap between the membrane and the base surface during laying, thereby enhancing the membrane's resistance to load-bearing deformation
Product Specification
* Thickness(mm): 0.30mm~3.00mm
* Width: 4m~8m
* Roll length: 50m~100m (customized request accept)
PS: Customized request accept for all above.
Geomembrane Series
Textured HDPE Geomembrane For Landfill (GB/T 17643-2011(GH-2T1,GH-2T2))
|
(CJ-T234-2006)
Specification | 1.00mm | 1.25mm | 1.50mm | 2.00mm | 2.50mm | 3.00mm | Remark | |
Item | ||||||||
Thickness (mm) | 1.00mm | 1.25mm | 1.50mm | 2.00mm | 2.50mm | 3.00mm | ||
Textured Highth (mm) | 0.25 | |||||||
Density (g/c㎡,≥) | 0.94 | |||||||
Tensile Properties | ||||||||
Yield Strength (N/mm,LD/TD) | 15 | 18 | 22 | 29 | 37 | 44 | ||
Breaking Strength (N/mm,LD/TD) | 10 | 13 | 16 | 21 | 26 | 32 | ||
Yeild Elongation Rate (%) | 12 | |||||||
Breaking Elongation Rate (%) | 100 | |||||||
Rectangular Tear Strength (N) | 125 | 156 | 187 | 249 | 311 | 374 | ||
Puncture Strength (N) | 267 | 333 | 400 | 534 | 667 | 800 | ||
Environmental Stress Crack Resistance (h) (A single point of incision constant tensile method) |
300 | |||||||
Carbon Black | ||||||||
Carbon Black Content(Rang) (%) | 2.0~3.0 | |||||||
Carbon Black Dispersion | Nine of 10 observation area should be grade 1 or grade 2, not more than 1 of grade3 | |||||||
Oxidative Induction Time (OIT) | ||||||||
Standard OIT (min) | 100 | |||||||
High Pressure OIT (min) | 400 | |||||||
85℃ Oven Ageing (Minimum Average) | ||||||||
90 days after baking, the standard OIT retention(%) | 55 | |||||||
90 days after baking, the hight pressure OIT retention(%) | 80 | |||||||
The Anti-UV Strength | ||||||||
Ultraviolet irradiation after 1600 hours, the standard OIT retention(%) | 50 | |||||||
Ultraviolet irradiation after 1600 hours, the high pressure OIT retention(%) | 50 | |||||||
-70℃ The Low Temperature Embrittlement Performance mpact | Pass | |||||||
Water Vapor Penetration Coefficient g.cm (cm2.s.Pa) | ≤1.0X10-13 | |||||||
Dimensional Stability | ±2 |