| Tensile Strength: | 63MPa | Melt Flow Index: | 9 G/10min |
|---|---|---|---|
| Izod Notch Impact: | 6 KJ/m² | Elongation: | 35% |
| Flexural Modulus: | 2600MPa | Tensile Modulus: | 2600MPa |
| H.D.T: | 95 °C | Density: | 1.41g/cm³ |
Polyoxymethylene (POM) is a type of engineering plastic known for its exceptional performance. It is referred to as "steel grabbing" and "super steel" in foreign markets. POM exhibits similar hardness, strength, and toughness to metals, along with advantageous self-lubricating properties, fatigue resistance, and elasticity across various temperature and humidity ranges. Furthermore, it boasts good chemical resistance. Compared to numerous other engineering plastics, POM has a lower cost, which has led to its utilization in replacing traditional metal markets like zinc, brass, aluminum, and steel for manufacturing various components.
Since its introduction, POM has found widespread applications in electronics and electrical sectors, machinery, instruments, daily light industry, automotive industry, building materials, agriculture, and more. In emerging fields like medical technology and sports equipment, POM has also displayed positive growth trends.
Well-balanced mechanical properties and high fatigue resistance
The material displays well-balanced mechanical properties along with high fatigue resistance, providing enhanced durability and longevity in various applications.
Excellent anticreep properties
This material showcases excellent anticreep properties, ensuring reliable performance under sustained loads without undergoing deformation or creep over time.
Excellent low friction and anti-wear properties
With outstanding low friction and anti-wear properties, this material offers reduced frictional losses and prolonged lifespan in frictional applications, delivering efficiency and longevity.
Wide range of operating temperatures
The material can withstand a wide range of operating temperatures, making it versatile and suitable for various environments and conditions without compromising its performance.
High oil and organic chemical resistance
Featuring high resistance to oil and organic chemicals, this material ensures durability and reliability in environments where exposure to such substances is common, maintaining its properties over time.
Excellent thermal stability in molding
With excellent thermal stability during the molding process, this material retains its integrity and properties under high temperatures, ensuring consistent quality and performance in manufacturing applications.
| Polyformaldehyde engineering plastics | Polyacetal resins |
| Polyoxymethylene plastics | |
| H.D.T | 95 °C |
| Flexural Modulus | 2600MPa |
| Elongation | 35% |
| Flexural Strength | 90MPa |
| Water Absorption | 0.12% |
| Tensile Modulus | 2600MPa |
| Melt Flow Index | 9 G/10min |
| Tensile Strength | 63MPa |
| Density | 1.41g/cm³ |
| Izod Notch Impact | 6 KJ/m² |
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Polyoxymethylene (POM) is a high-performance engineering plastic with remarkable characteristics including high strength, high rigidity, wear resistance, and chemical resistance.
It finds wide applications in various fields: