Influence of an Additional Indexing Rotary Axis on Wire Electrical Discharge Machining Performance for the Automated Manufacture of Fir Tree Slots

Author:

Bergs Thomas1,Tombul Ugur1,Herrig Tim1,Klink Andreas1,Welling David2

Affiliation:

1. Laboratory for Machine Tools and Production Engineering (WZL) of RWTH Aachen University, Campus-Boulevard 30, Aachen 52074, Germany

2. Makino Europe GmbH, Karl-Friedrich-Straße 60, Aachen 52072, Germany

Abstract

Abstract The demand for higher efficiency in aircraft propulsion engines leads to materials with increasing thermomechanical strengths and new designs inducing filigree geometries of blisks and disks. Because of new designs which induce tighter tolerances, the high mechanical process forces in conventional cutting processes like broaching cause inacceptable geometrical deviations and high tooling costs. Due to the electro-thermal material removal mechanism, electrical discharge machining (EDM) ensures a force free and thus precise machining. The manufacture of fir tree slots in nickel-based alloys by wire EDM has been investigated in the last few years and the process was verified as an alternative technology for broaching. To get a better competitive position, the productivity can be prospectively increased by using an additional indexing rotary axis which ensures a precise and automated production of rotationally symmetric components and reduce production times, e.g., for the manufacture of fir tree slots on a disk. Nevertheless, the application of these axes cause changed flushing conditions and can also affect the electrical contacting as well. Both influence the process performance and demand a technology development or adjustment of standard machining technologies. The influence of these changed machining conditions has not been investigated scientifically to date. In this paper, the surface integrity and process performance of fir tree slots machined by wire EDM on the machine table are compared with the manufacture by using an additional indexing rotary axis.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference32 articles.

1. Vision 2050;IATA

2. Future Aero Engine—Impact on Design and Production Technology,2013

3. Delivering Europe's Vision for Aviation: ACARE Strategic Research and Innovation Agenda Update,2017

4. Modern Machining of Advanced Aerospace Alloys - Enabler for Quality and Performance;Procedia CIRP,2012

5. Achieving High Accuracy and High Removal Rate in Micro-EDM by Electrostatic Induction Feeding Method;CIRP Ann.-Manuf. Technol.,2010

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