Optimization of ultrasonic machining (USM) parameters on micro hole drilling of graphene oxide/pineapple leaf filler reinforced epoxy hybrid composite using evaluation based on distance from average solution (EDAS) method
Author:
Publisher
Elsevier BV
Subject
General Medicine
Reference10 articles.
1. Parametric optimization of ultrasonic machining process using gravitational search and fireworks algorithms;Goswami;Ain Shams Eng. J.,2015
2. Experimental investigation and optimization of machining characteristics in ultrasonic machining of WC–Co composite using GRA method;Kataria;Mater. Manuf. Processes,2016
3. Optimization of material removal rate in ultrasonic machining of polycarbonate bulletproof glass and acrylic heat-resistant glass by Taguchi method;Singh;Multidiscipline Modeling Mater. Struct.,2017
4. Parameter optimization of rotary ultrasonic machining on quartz glass using response surface methodology (RSM);Sindhu;Silicon,2019
5. A material selection approach using the TODIM (TOmada de Decisao Interativa Multicriterio) method and its analysis;Zindani;Int. J. Mater. Res.,2017
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