Comparision of Dominant Features Identification for Tool Wear in Hard Turning of Inconel 718 by Using Vibration Analysis

Author:

Rao Dasari Kondala1,Srinivas Kolla2

Affiliation:

1. Research scholar, Dept. of Mechanical Engg , University college of engineering & Technology, Acharya Nagarjuna University , Guntur , Andhra Pradesh, India .

2. Professor, Dept. of Mechanical Engg ., R.V.R. & J.C. College of Engineering , Guntur , Andhra Pradesh, India

Abstract

Abstract In various machining processes, the vibration signals are studied for tool condition monitoring often referred as wear monitoring. It is essential to overcome unpredicted machining trouble and to improvise the efficiency of the machine. Tool wear is a vital problem in materials such as nickel based alloys as they have high hardness ranges. Though they have high hardness, a nickel based alloy Inconel 718 with varying HRC (51, 53, and 55), is opted as work material for hard turning process in this work. Uncoated carbide, coated carbide and ceramic tools are employed as cutting tools. Taguchi’s L9 orthogonal array is considered by taking hardness, speed, feed and depth of cut as four input parameters, the number of experiments and the combinations of parameters for every run is obtained. The vibration signals are recorded at various stages of cutting, till the tool failure is observed. Taking this vibration signal data as input to ANOVA and Grey relation analysis (GRA) which categorizes the optimal and utmost dominant features such as Root Mean Square (RMS), Crest Factor (CF), Skewness (Sk), Kurtosis (Ku), Absolute Deviation (AD), Mean, Standard Deviation (SD), Variance, peak, Frequency and Time in the tool wear process.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Multi-Objective Optimization of Turning Process by Fuca Method;Strojnícky časopis - Journal of Mechanical Engineering;2023-05-01

2. Diagnostics of a Clamping Joint System;Strojnícky časopis - Journal of Mechanical Engineering;2022-11-01

3. Comparative Analysis of Simulation Results of Hard-to-Cut Materials Machining by Coated Cutting Tools;Strojnícky časopis - Journal of Mechanical Engineering;2020-11-01

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