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Wear behavior of Al2O3/Ti(C,N)/SiC new ceramic tool material when machining tool steel and cast iron
Authors:CH Xu  YM Feng  RB Zhang  SK Zhao  X Xiao  GT Yu
Affiliation:1. School of Mechanical Engineering, Shandong Institute of Light Industry, Jinan 250353, China;2. School of Mechanical Engineering, Shandong University, Jinan 250061, China;3. Sabo Special Vehicle Co. Ltd., Jinan Steel & Iron Corporation, Jinan 250200, China
Abstract:Design, fabrication and application of ceramic cutting tools are one of the important research topics in the field of metal cutting and advanced ceramic materials. In the present study, wear resistance of an advanced Al2O3/Ti(C,N)/SiC multiphase composite ceramic tool material have been studied when dry machining hardened tool steel and cast iron under different cutting conditions. Microstructures of the worn materials were observed with scanning electronic microscope to help analyze wear mechanisms. It is shown that when machining hardened tool steel at low speed wear mode of the kind of ceramic tool material is mainly flank wear with slight crater wear. The adhesion between tool and work piece is relatively weak. With the increase of cutting speed, cutting temperature increases consequently. As a result, the adhesion is intensified both in the crater area and flank face. The ceramic tool material has good wear resistance when machining grey cast iron with uniform flank wear. Wear mechanism is mainly abrasive wear at low cutting speed, while adhesion is intensified in the wear area at high cutting speed. Wear modes are dominantly rake face wear and flank wear in this case.
Keywords:Ceramic tool material  Alumina  Machining  Wear resistance
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