CK4536 High-Precision CNC Inclined Lathe

30° inclined integrated design, utilizing HT300 cast iron with overall resin sand casting, subjected to two aging treatments, featuring minimal deformation and high stability, rigidity, and torsional resistance.

The spindle adopts a sleeve-type spindle unit design, with all spindle components assembled after strict tolerance selection and run-in tested in a constant temperature environment, ensuring high precision, excellent performance, and stable quality.

The feed system is directly driven by a servo motor via a backlash-free coupling, with the lead screw installed under pre-tension, effectively enhancing transmission rigidity and accuracy.

The machine tool boasts a compact structure and small footprint, equipped with a servo spindle to significantly improve machining speed. It is available in two types: turret type and gang tool type.

Suitable for machining small parts requiring high precision, surface finish, and dimensional consistency.


Product Details

CK4536 CNC Inclined Lathe Product Introduction  

The CK4536 features excellent stability, meeting the production requirements for high-precision parts. It is suitable for machining various complex-shaped components, such as inner/outer circles, steps, tapered surfaces, spherical surfaces, grooves, various threads, and complex curved surfaces of ordinary parts.  

The inclined bed structure facilitates force calculation, easy chip removal, and convenient tool installation. Compared to a horizontal bed with the same guide width, the X-axis slide of the inclined bed is longer, allowing for the arrangement of more CNC tools.  

The machine adopts a resin sand integral cast base, which enhances vibration resistance and machining rigidity compared to traditional welded bases, ensuring maximum geometric tolerance accuracy.  

In the manufacturing industry, it is suitable for small-to-medium batch processing of precision and complex rotating parts. The user-friendly design enables operators to quickly adapt, thereby improving production efficiency. Operational optimizations further reduce the learning curve for personnel.


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