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The mechanism of crater wear of carbide tools
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Trigger, K.G.1
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Estimating cutting temperatures: Their use as predictors of tool performance when machining plain carbon steels
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W. F. Hastings, P. Mathew, P. L. B. Oxley and J. Taylor, Estimating cutting temperatures: their use as predictors of tool performance when machining plain carbon steels, Int. J. Mach. Tool. Des. Res., Macmillan, London, p. 313 (1979).
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Temperature rise of workpiece during metal cutting
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Analytical prediction of three-dimensional cutting process
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E. Usui, A. Hiwta and M. Masuko, Analytical prediction of three-dimensional cutting process, ASME J. Engng Ind. 100, 222 (1978).
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Usui, E.1
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8
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Finite element prediction of chip geometry and tool/workpiece temperature distributions in orthogonal metal cutting
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J. S. Strenkowski and K. J. Moon, Finite element prediction of chip geometry and tool/workpiece temperature distributions in orthogonal metal cutting, ASME J. Engng Ind. 112, 313-318 (1990).
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Strenkowski, J.S.1
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9
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Standzeit und leistung der hartmetall-werkzeuge beim unterbrochenen zerspanen des stahls mit grossen zerspanungsquerschnitten
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Thermal shock as a carbide grad development tool
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Merten, C.W.1
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12
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0028424497
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An analytical model for prediction of tool temperature fields during continuous and interrupted cutting
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May
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Radulescu, R.1
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13
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Metallurgical appraisal of wear mechanisms and processes on high speed steel cutting tools
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Using the finite element method to determine temperature distributions in orthogonal machining
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Tay, A.O.1
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15
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Analytical investigation of the effect of tool wear on temperature variations in a metal cutting tool
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E. K. Levy, C. L. Tsai and M. P. Groover, Analytical investigation of the effect of tool wear on temperature variations in a metal cutting tool, ASME J. Engng Ind., 251-257 (Feb. 1976).
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Levy, E.K.1
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