
Mathematical Modelling of Magnetic Abrasive Machining Hybrid Operation: A Review
Author(s) -
Saad Hameed Al-Shafaie
Publication year - 2018
Publication title -
journal of university of babylon for engineering sciences
Language(s) - English
Resource type - Journals
ISSN - 2616-9916
DOI - 10.29196/jubes.v26i6.1363
Subject(s) - machining , mechanical engineering , abrasive , computer science , abrasive machining , scope (computer science) , electrochemical machining , engineering , electrolyte , physics , electrode , quantum mechanics , programming language
One of the hybrid operations is called Electrolytic Magnetic Abrasive Machining (EMAM), developed from two essential operations namely Electrochemical Machining (ECM) and Magnetic Abrasive Machining (MAM). EMAM takes advantage of both the operations for preferable machining performance and limits of electrically conductive materials. The workpiece may be cylindrical or flat either on both (internal or external) surface. Despite a few experimental setups have come up but the scope for performance evaluation of developed indigenous setup still remains open. Present study highlights mathematical modeling of process conditions and performance measure for EMAM operation. The unaccustomed performance possibility of EMAM operation at achievement level is in open research for a particular experimental machine. Therefore, mathematical modeling has been abstracted to certain best performance of machining experimental conditions.