Brief: Experience a brief tour of features designed to deliver dependable outcomes. In this video, we showcase the high-performance Creep and Fatigue Resistance POM Nylon Plastic Rod, also known as White and Black Delrin Rod. You'll see a close-up demonstration of its smooth surface finish and learn how its superior mechanical strength, wear resistance, and dimensional stability make it an ideal choice for gears, bearings, and industrial components.
Related Product Features:
High mechanical strength, rigidity, and excellent fatigue resistance for demanding applications.
Superior wear resistance and dimensional stability ensure long-lasting performance.
Excellent creep resistance and good abrasion resistance under continuous load.
Self-lubricating properties with low friction and high dielectric strength.
Water, solvent, and chemical resistance for use in harsh environments.
High thermal stability with a heat distortion temperature of +165°C.
Excellent electrical insulation properties and resistivity of 1×10¹⁴ ohm·cm.
Ideal replacement for metals like copper, zinc, and aluminum in mechanical parts.
Faqs:
What are the key advantages of using POM Nylon Plastic Rods over metals?
POM Nylon Plastic Rods offer high mechanical strength, excellent wear and creep resistance, self-lubrication, and good chemical stability. They are lightweight, corrosion-resistant, and can effectively replace non-ferrous metals like copper, zinc, and aluminum in applications such as gears, bearings, and springs.
What temperature range can these Delrin rods withstand?
These POM Delrin rods maintain performance from -30°C to a heat distortion temperature of +165°C, providing high thermal stability for various industrial and automotive applications.
In which industries are these plastic rods commonly used?
They are widely used in industrial machinery, automotive parts, electronic components, and consumer products. Common applications include gears, bearings, springs, impeller blades, and fluid handling systems due to their durability and resistance to wear and fatigue.