Pipe Grade TPO Raw Material
A thermoplastic polyolefin (TPO) raw material specifically developed for extruded pipes and tubes, combining good flexibility, long-term pressure resistance, chemical resistance, and excellent extrusion processability.
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- Product Description
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Item
Content
Product Description
A thermoplastic polyolefin (TPO) raw material specifically developed for extruded pipes and tubes, combining good flexibility, long-term pressure resistance, chemical resistance, and excellent extrusion processability.
Key Characteristics
1. Good Long-term Pressure Resistance: Capable of withstanding certain internal pressure with stable performance.
2. Excellent Environmental Stress Crack Resistance: Resistant to various chemicals,no easy to cracking under stress.
3. Flexible & Bendable: Good flexibility for easy installation and resistant to bending fatigue.
4. Basic Temperature & Weather Resistance: Offers some resistance to high/low temperatures and aging.
5. Lightweight & Easy Processing: Low density, excellent extrusion performance, high production efficiency.Main Applications
Industrial fluid transfer hoses, pneumatic tubing, cable protection conduits, low-pressure automotive tubing, building ventilation ducts.
Processing Method
Extrusion (Single/Multi-layer)
Key Certs/Standards
ROHS, REACH, Can meet physical and chemical resistance requirements for pipes in relevant industries.
Color
Black, natural (standard), customizable.
Appearance
Uniform pellets
Packaging
20/25 kg/bag
Physical Properties
Typical Value
Unit
Test Standard
Specific Gravity
0.92 - 1.00
g/cm³
ASTM D792
Hardness
60A - 90A
Shore A
ASTM D2240
Tensile Strength
≥ 10.0
MPa
ASTM D412
Elongation at Break
≥ 300
%
ASTM D412
Environmental Stress Crack Resistance
≥ 500 hrs
--
ASTM D1693
Processing Ref.
Suggested extrusion temp: 180-210°C; thorough drying before processing required.
Key Notes
1. Select the appropriate grade based on the conveyed medium (e.g., oil, water, chemicals).
2. Precise temperature and cooling control during extrusion are crucial for dimensional stability and smooth inner walls.
3. Consider operating pressure and temperature in product design to select the appropriate wall thickness and material grade.
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