Knurled knob MBT.40 P-M8x30-C4 Z049422
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TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
Knurled knob MBT.40 P-M8x30-C4 Z049422
Knurled knobs – precision and ergonomics in every detail
The MBT.40 P-M8x30-C4 knurled knob is a fastening element that combines functionality, durability and comfort. Made of high-quality plastic, it provides a secure grip and precise control during adjustment. This is an ideal solution for both professional installers and end-users who value reliability and comfort.
Design and application
The knob from the MBT.40 series is characterized by a knurled surface, which increases friction and makes it easier to rotate even in difficult conditions. It has an external M8 thread with a length of 30 mm, which ensures stable and secure fastening. Made of PP technopolymer, it is resistant to mechanical damage and the action of many chemicals. Therefore, it finds application in a wide range of devices and machines where precise adjustment of element position is required.
- Versatility: Ideal for use in mechanical engineering, laboratory equipment, furniture and many other applications.
- Ergonomics: The knurled surface provides a secure grip and minimizes effort during rotation.
- Durability: Made of high-impact PP technopolymer guarantees long-term operation even in demanding conditions.
- Easy installation: M8 thread allows for quick and easy installation in the prepared hole.
The knob diameter is 39.5 mm, which ensures a comfortable grip and ease of manipulation. The black color gives it an aesthetic look and increases visibility in various lighting conditions. The knob design has been designed with work ergonomics in mind – the knurling allows for the transfer of maximum torque with minimal hand effort. In addition, the material of execution – PP technopolymer – is characterized by high resistance to abrasion and external factors. The thread length of 30 mm ensures a stable connection with the fastened element. It is worth noting the solid construction of the galvanized steel threaded pin, which further increases the strength of the entire element.

