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TECHNICAL PAPERS

Thermophysical-Property-Based Selection of Tool Protective Coatings for Dry Machining of Steels

[+] Author and Article Information
Wit Grzesik, Piotr Nieslony

Department of Manufacturing Engineering & Production Automation, Technical University of Opole, Opole, Poland

J. Manuf. Sci. Eng 125(4), 689-695 (Nov 11, 2003) (7 pages) doi:10.1115/1.1617982 History: Received June 01, 2003; Online November 11, 2003
Copyright © 2003 by ASME
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References

Figures

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The role of coatings in alteration of cutting process performance
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The experimental setup (a), the tool-work thermocouple (left) and thermoelectric calibration (right) systems (b)
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Thermoelectric calibration plots for AISI 1045 (a) and AISI 304 (b) steels in conjunction with cutting tool materials used, tool codes: P20 uncoated carbide-UC; TiC/Al2O3/TiN-3LC:TiC/TiCN/Al2O3/TiN-4LC
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Dependence of thermal conductivity (a and b) and thermal diffusivity (c) of contacted materials on temperature rise 910
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Dependence of tool-chip interface temperature on thermal number for natural (a) and restricted contact (b) tools, tool codes: P20 uncoated carbide-UC; TiC/Al2O3/TiN-3LC:TiC/TiCN/Al2O3/TiN-4LC
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Effect of thermal conductivity of work material on frictional heat flux for flat-faced (a) and grooved (b) rake face configurations, tool codes as in Fig. 5
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Effect of heat transmission coefficient of work material on frictional heat flux for flat-faced (a) and grooved (b) rake face configurations, tool codes as in Fig. 5
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Effect of thermal number on frictional heat flux for flat-faced (a) and grooved (b) rake face configurations, tool codes as in Fig. 5

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