Rolled Ballscrew

Kunix Rolled Ball Screw is a mechanical linear actuator that translates rotational motion into linear motion. The friction in a Kunix ball screw is very little. Ball screws are able to apply high thrust loads; they can do so with minimum internal friction. Kunix is made to close tolerances and is therefore suitable for high-precision applications. The Kunix Rolled series comes with C7-class accuracy. Kunix Rolled Ballsrews comes in four types of different series. Kunix rolled nuts come with T3, T4, T5, and T6 standards. Nut’s diementions are different according to Nut's standard.

Series under Kunix Rolled Ball-Screw

Standard Model Series:

The standard model series ballscrew stands for a specific line or range of ball screws offered by Kunix. Ball screws come in various standard sizes, configurations, and performance specifications to suit different applications. Standard model series typically include options for different diameters, leads, accuracy classes, and load capacities.

*External Ball Series:

In the context of ball screws, the Kunix external ball series rolled ball screw likely refers to a specific type of ball screw design. The outer diameter of the external ball series is bigger than that of other series, and it has the potential to work with heavy dynamic loads and high accuracy. The external ball series is known for its high precision, low friction, and durability, making it suitable for various industrial applications requiring precise linear motion control.

*Miniature Series:

A Kunix miniature ball screw is a type of screw that utilizes ball bearings to reduce friction and increase efficiency in linear motion applications. This series is used in small-scale machines, robotics, and automation applications.

*Internal Ball Series:

The Internal Ball Series is a space-saving and easily replaceable series. In internal series, balls move in inner cages. This series is leading to lower costs without significantly compromising performance. Internal ball screws exhibit high mechanical efficiency and higher performance in transmitting motion.