For a strong and secure fastening, the locknut M22 DIN985 is an excellent choice. Thanks to the integrated nylon ring, the nut stays firmly in place, even under vibrations and dynamic loads.
This locknut is ideal for use in the automotive sector, where vibrations and dynamic loads are common. The nylon ring prevents the nut from loosening, which is essential for the safety and reliability of vehicles.
Electrolytic galvanization offers effective protection against corrosion, which extends the lifespan of the nut. This is especially important in environments where moisture and other corrosive elements are present.
This locknut is designed for use with metric bolts, such as carriage, hex, or tap bolts. This ensures wide applicability in various fastening scenarios.
The locknuts are supplied in sets of 5 pieces, which is convenient for both small and larger projects. They are immediately available for fast delivery.
Manufactured according to DIN 985 and ISO 10511 standards, this locknut guarantees high quality and reliability. The strength class 8 ensures a strong and durable fastening.
For optimal performance, it is important to install the nuts correctly and regularly inspect them for wear or damage. This contributes to the safety and durability of the fastening.
The locknut M22 DIN985 with electrolytic galvanization and nylon ring offers a reliable and durable solution for various fastening needs, especially in the automotive sector. With its high-quality specifications and corrosion-resistant properties, it is a valuable addition to your toolbox.
Self-locking hex nut M24 with nylon ring, electrolytically galvanized for reliable fastening.
Self-locking hex nut M8 with nylon ring and electrolytic zinc coating for reliable fastening.
Self-locking stainless steel A2 M10 nuts with nylon ring, ideal against loosening due to vibrations.
Self-locking hex nut M5 made of stainless steel A2 with nylon insert for reliable fastening.
Self-locking hex nut M6 made of stainless steel A2 with nylon insert, ideal for vibration-resistant connections.