Special Machines
Developed to complete the machining processes on the most complex and miniaturized components in the **medical **(orthopedic prostheses, biomedical implants) and **aerospace **(turbine blades, fluid dynamics components) sectors, this benchtop deburring machine is designed for the use of rotary shank tools. Thanks to its ultra-robust structure and exceptionally high RPM range, it represents the ideal solution for removing machining burrs, radiusing edges, performing precision re-work, and polishing complex geometries that cannot be reached by traditional belt systems. The spindle shaft is designed to accommodate **ER-type elastic collets**, allowing quick and secure mounting of tools such as carbide burrs or small brushes with a shank diameter from 3 to 6 mm. This guarantees perfect concentricity and zero vibrations, which are essential for precision finishing. The machine is equipped with a **0.55 kW motor** paired with a belt drive. This configuration isolates the motor shaft from mechanical stress and allows for speed multiplication, while ensuring exceptional rotational smoothness. The spindle can operate within a dynamic range **from 2,400 to 22,500 rpm**. This extremely high rotational speed is essential to achieve the correct cutting speed even with very small diameter tools, allowing burrs and brushes to work under the optimal performance conditions specified by the manufacturers. To ensure maximum health and safety in the working environment and effectively capture fine dust, the machine integrates a dual suction port system. The collection points are strategically positioned: one directly beneath the working area and one behind the tool, intercepting debris at the source. The machine body is made of a sturdy and rigid aluminum structure that eliminates resonance. The cutting area is fully protected by a safety guard equipped with a hinged and adjustable protective glass window, providing the operator with perfect visibility of the workpiece while ensuring total safety from chips or flying debris.