Article ID Journal Published Year Pages File Type
830855 Materials & Design (1980-2015) 2012 7 Pages PDF
Abstract

In today’s metalworking industry, many types of materials, ranging from high carbon steel to ceramics and diamonds, are used as cutting tools. Because of the wide range of conditions and requirements, no single cutting tool material meets all the needs of machining applications. Each tool material has its own properties and characteristics that make it best for a specific machining application. While evaluating a cutting tool material for a machining operation, the applicability is dependant on having the correct combination of its physical properties. Thus, it is extensively important to select the most appropriate cutting tool material with the desired properties for enhanced machining performance. This paper considers an exhaustive list of 19 cutting tool materials whose performance are evaluated based on ten selection criteria. The grey complex proportional assessment (COPRAS-G) method is then applied to solve this cutting tool material selection problem considering grey data in the decision matrix. Synthetic single crystal and polycrystal diamonds emerge out as the best two choices. Oil quenched tool steel (AISI O2) and powder metal tool steel (AISI A11) may also be used as the suitable cutting tool materials. Sialon and sintered reaction bonded silicon nitride are the worst chosen cutting tool materials.

► It is vital to select the cutting tool material for better machining performance. ► COPRAS-G method is applied to solve the cutting tool material selection problem. ► Single crystal and polycrystal diamonds are the best two choices. ► Sialon is the worst chosen cutting tool material.

Related Topics
Physical Sciences and Engineering Engineering Engineering (General)
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