Nylon is a polyamide (PA) whose unparalleled comprehensive properties are given by strong amide bonds in its molecular chain.
Nylon possesses excellent tensile strength and bending stiffness, with strength even exceeding that of some metals. Simultaneously, it exhibits good toughness, making it resistant to brittle fracture under sudden impacts or heavy loads.
Nylon has a low coefficient of friction and unique self-lubricating properties, which makes it suitable for manufacturing transmission components such as gears, bearings, and bushings, significantly reducing energy loss and eliminating the need for frequent lubrication.
Modified nylon (such as PA66) has a high melting point (about 250-260℃) and a high heat distortion temperature, and can be used for a long time under working conditions of about 150℃, making it the preferred material for peripheral parts of automobile engines.
Nylon exhibits extremely strong stability against oils, greases, various organic solvents, and weak acids and alkalis, making it widely used in chemical pipelines and automotive fuel systems.
This material maintains excellent mechanical strength and stability even under repeated cyclic loads, and is often used in high-frequency mechanical moving parts.
Nylon has extremely high volume resistivity and breakdown voltage, providing reliable electrical insulation even in high humidity environments, making it suitable for covering electronic components and wires.
Reduce the weight of end products, thereby improving energy efficiency and reducing logistics costs.
8. Nylon has good melt flowability, making it suitable for various processing methods such as injection molding, extrusion and 3D printing. Due to its polar molecular structure, it is easy to dye in various colors to meet the design requirements of complex appearances.
▪ Standard woodworking tools can be used for machining.
▪ Carbide tools are recommended.
▪ Keep the material properly cooled during machining.
▪ Can be fixed by bolts, adhesive, etc.
▪ Allow appropriate thermal expansion gaps
▪ Design to avoid stress concentration
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