Browse > Article

A Study on the Tool Temperature Estimation for Different Cutting Conditions in Turning Using a Statistical Method  

송길용 (청주기계공고)
문홍현 (청주교도소)
박병규 (주성대학교 CAD응용설계학과)
김성청 (충북대학교 기계공학부)
이응석 (충북대학교 기계공학부)
Publication Information
Abstract
This study is on the estimation method of toot temperature for different tool nose radius and cutting conditions in turning. Experimental analysis has been performed in different cutting conditions such as cutting speed, feed rate, and depth of cut for the tool nose radius, 0.4R, 0.8R using SMC workpiece materials. Tool temperature is measured using a thermo-couple which is embedded in the insert tip. Using multiple linear regression method, the tool temperature can be determined as an exponential equation with cutting variables and tool nose diameters for the different tool materials. The equations determined in this study show a good correlation for the cutting conditions and can be used for a tool temperature estimation technique. The result indicates that the tool temperature decreases for increasing the tool nose radius in general. Also, nose radius hardly influences on the tool temperature compared with cutting speed, feed rate and depth of cut. This method will be useful for the estimation of tool life and temperature using limited experimental data for given cutting conditions.
Keywords
Tool Temperature; Tool nose radius; Multiple regression analysis; Turning; Termo-Couple;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 Trigger, 'An analytical evaluation of metal cutting temperature', ASME C-45, p.59,1971
2 전태욱, 배춘익, '2 차원선삭시 유한요소법에 의한 고속도강공구의 절삭온도 예측,' 한국정밀공학회지, 제12권, 제10호, pp.103-112, 1995   과학기술학회마을
3 A.C. Rapier, 'A Theoretical investigation of the temperature distribution in the metal cutting process', British journal of appl. phys, Vol.5, pp.400-405,1954   DOI   ScienceOn
4 K. Nakayama, 'Temperature rise of workpiece during metal cutting', Bull. Fac. Engr.Nat.Univ. Yokoyama, pp.1-10,1956
5 D.A. Stephenson, 'Assessment of steady state metal cutting temperature models based on simulations infrared and thermocouple data', ASME Journal of engineering for industry, Vol.113, pp.121-128,1991