Holroyd Tool Management Center Improves Accuracy and Repeatability of Milling Large Helical Rotors
A newly developed ‘large diameter' CNC cutter grinding machine from Holroyd Precision Ltd is designed to bring considerable advantages to organizations that wish to achieve greater levels of accuracy and repeatability when finish milling some of the world's largest helical rotors.
Called the CS700E Tool Management Center, the new machine has been designed for the grinding of high-accuracy profile forms on finish milling cutters of up to 700 mm in diameter and follows up on Holroyd's CS500E (500 mm max. diameter) model.
"The new CS700E machine is generating considerable interest," comments Holroyd Sales Manager, Mark Curran. "Indeed, a major compressor manufacturer that has only recently purchased its second Holroyd 8EX rotor milling machine (for producing rotors of up to 850 mm in diameter), has already placed an order for a CS700E."
"The accuracy of any helical screw form relates directly to the accuracy of the cutting tool that is used to create it," continues Mark Curran. "Through the development of the CS700E Tool Management Center, we are enabling producers of larger helical components to benefit from complete control of all aspects of the cutting tools they use. The CS700E produces high accuracy profile forms on a wide range of tool materials, from traditional high-speed steel, to exotic materials such as carbide and ‘AS' finish machining systems."
The CS700E Tool Management Center incorporates automatic dressing stations to ensure optimum integrity of the grinding wheel at all times. The stations are equipped to dress aluminum oxide, CBN and diamond grinding wheels, while use of HSK-A160 arbors (as fitted to 8EX rotor milling machines), enable rapid wheel changeover times and further enhance accuracy.
At the heart of the CS700E is Holroyd's user-friendly advanced touch screen programming system. This provides complete control over production accuracies, as well as invaluable on-screen modification of profile forms for the rapid evaluation of new profile shapes during the development and prototyping stages. Profile modifications are easily made thanks to the menu-driven system, which provides control of the cutting profile, with on-screen modification of profiles.