| H.D.T: | 95 °C | Flexural Strength: | 90MPa |
|---|---|---|---|
| Izod Notch Impact: | 6 KJ/m² | Tensile Modulus: | 2600MPa |
| Flexural Modulus: | 2600MPa | Tensile Strength: | 63MPa |
| Water Absorption: | 0.12% | Elongation: | 35% |
Polyoxymethylene (POM) is a type of engineering plastic renowned for its outstanding performance. It is known as "steel grabbing" and "super steel" internationally. POM exhibits hardness, strength, and toughness on par with metals, along with excellent self-lubrication, fatigue resistance, and elasticity under varied temperatures and humidity levels. Moreover, it boasts commendable chemical resistance. Costing less than several other engineering plastics, POM is gradually supplanting metals like zinc, brass, aluminum, and steel in numerous component manufacturing markets.
Since its introduction, POM has found extensive applications in a wide array of sectors including electronics, machinery, daily light industry, automobiles, building materials, agriculture, among others. Additionally, POM is witnessing a positive growth trajectory in emerging domains like medical technology and sports equipment.
Well-balanced mechanical properties and high fatigue resistance
This material exhibits a harmonious combination of mechanical properties along with exceptional resistance to fatigue, making it a valuable choice for various applications.
Excellent anticreep properties
The material demonstrates outstanding ability to resist creep, providing stability and reliability in challenging conditions.
Excellent low friction and anti-wear properties
With excellent characteristics in reducing friction and preventing wear, this material offers enhanced performance and durability.
Wide range of operating temperatures
Its wide operating temperature range makes it versatile and suitable for use in diverse environments and applications.
High oil and organic chemical resistance
This material shows high resistance to oils and various organic chemicals, ensuring longevity and robustness in demanding settings.
Excellent thermal stability in molding
Featuring exceptional thermal stability during molding processes, this material maintains its integrity and performance under heat, contributing to efficient manufacturing.
| Melt Flow Index | 9 G/10min |
| H.D.T | 95 °C |
| Izod Notch Impact | 6 KJ/m² |
| Density | 1.41g/cm³ |
| Water Absorption | 0.12% |
| Tensile Modulus | 2600MPa |
| Flexural Strength | 90MPa |
| Elongation | 35% |
| Tensile Strength | 63MPa |
| Flexural Modulus | 2600MPa |
POM, also known as polyoxymethylene, is a high-performance engineering plastic that boasts several remarkable characteristics. These include high strength, high rigidity, excellent wear resistance, and exceptional chemical resistance. Due to these properties, POM finds widespread applications in various fields:
In the realm of mechanical manufacturing, POM is utilized for producing mechanical parts like gears, bearings, and transmission components. These parts are designed to endure high loads thanks to POM's impressive wear resistance and low friction coefficient.
Within the automotive industry, POM is well-suited for fuel system components, bearings, interior parts, and more. Its outstanding dimensional stability and resistance to fuel make it an ideal material for various automotive applications.
Electronic appliances benefit from POM's insulating properties, making it a popular choice for insulating shells, connectors, and other components. Its excellent electrical performance and resistance to chemical corrosion contribute to its reliability in electronic applications.
POM is commonly employed in precision instrument parts and everyday items like zippers and hinges. Its high precision and ease of processing make it a favored material for manufacturing these products.