Hybrid adaptive control of CNC drilling for enhancement of tool life and surface quality

Author:

Mary J Susai1,Balaji M A Sai2,Dinakaran D3

Affiliation:

1. Department of Electronics and Instrumentation Engineering, B S Abdur Rahman Crescent Institute of Science and Technology, India

2. Department of Mechanical Engineering, B S Abdur Rahman Crescent Institute of Science and Technology, India

3. HCL Technologies Ltd, Chennai, India

Abstract

Intelligent machining requires the online adaptation of the machining parameters to improve tool life and product quality and to reduce machining costs. This article presents a novel hybrid adaptive control (HAC) system for a drilling process. The HAC system is a combination of two adaptive controls: geometric adaptive control (GAC) and adaptive control by optimisation (ACO). It keeps the roughness of the holes within tolerance without compromising tool life. A response surface model (RSM) is used for modelling the drill wear and surface roughness with speed, feed, acceleration and force signals as inputs. The model predicts the wear and roughness with prediction accuracies of 97.1% and 93.6%, respectively. The roughness control is achieved through a Massachusetts Institute of Technology rule and tool wear is minimised by genetic algorithm optimisation. The adaptive algorithms are simulated and validated for the machining conditions given by the adaptive algorithms. The results show an improved tool life of 7% and surface roughness of 11%.

Publisher

British Institute of Non-Destructive Testing (BINDT)

Subject

Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials

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