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Liu, C.R.1
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C.R. Liu, Single-step finishing, Presented at the McGill Manufacturing Company and Timken Company, October 1989.
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Single-step finishing
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Liu, C.R.1
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3
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0021563157
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Residual stress in the machined surface of hardened steel
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Matsumoto, Y.1
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6
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0031645286
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A new concept for decoupling the cutting forces due to tool flank wear and chip formation in hard turning
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Wang J.Y., and Liu C.R. A new concept for decoupling the cutting forces due to tool flank wear and chip formation in hard turning. Journal of Machining Science and Technology 2 1 (1998) 77-90
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Wang, J.Y.1
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0032684617
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Effect of tool flank wear on the heat transfer, thermal damage and cutting mechanics in finish hard turning
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Wang J.Y., and Liu C.R. Effect of tool flank wear on the heat transfer, thermal damage and cutting mechanics in finish hard turning. Annals of the CIRP 48 1 (1999) 80-83
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Investigation of cutting conditions and cutting edge preparations for enhanced compressive subsurface residual stress in the hard turning of bearing steel
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A new stress-based model of friction behavior in machining and its significant impact on residual stresses computed by finite element method
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On chip morphology, tool wear, and cutting mechanics in finish hard turning
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Single-step superfinish hard machining-feasibility and feasible cutting conditions
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Liu C.R., and Mittal S. Single-step superfinish hard machining-feasibility and feasible cutting conditions. Robotics and Computer Integrated Manufacturing 12 (1996) 15-27
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Liu C.R., and Mittal S. Single-step superfinishing using hard machining resulting in superior surface integrity. Journal of Manufacturing Systems 14 (1995) 124-133
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18
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Experimental study on the performance of superfinish hard turned surfaces in rolling contact
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Agha S.R., and Liu C.R. Experimental study on the performance of superfinish hard turned surfaces in rolling contact. Wear 244 (2000) 52-59
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Optimal pre-stressing the surface of a component by superfinish hard turning for maximum fatigue life in rolling contact
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Liu C.R., and Mittal S. Optimal pre-stressing the surface of a component by superfinish hard turning for maximum fatigue life in rolling contact. Wear 219 (1998) 128-140
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Review on hard turning and CBN cutting tools
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67349184852
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Tool life studies of two different sizes of nano-to-micro particles of CBN coated on TiN based composite tool for hard turning applications
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submitted for publication
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W. Nakkiew, C.R. Liu, W. Jiang, Tool life studies of two different sizes of nano-to-micro particles of CBN coated on TiN based composite tool for hard turning applications, Journal of Materials Processing Technology, submitted for publication.
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Journal of Materials Processing Technology
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A new methodology for predicting crack initiation life for rolling contact fatigue based on dislocation and crack propagation
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Liu C.R., and Choi Y. A new methodology for predicting crack initiation life for rolling contact fatigue based on dislocation and crack propagation. International Journal of Mechanical Sciences 50 (2008) 117-123
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67349284119
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Friction coefficients and heat partition of different CBN size distributions of advanced CBN-TiN composite coating for hard turning applications
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submitted for publication
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W. Nakkiew, C.R. Liu, Friction coefficients and heat partition of different CBN size distributions of advanced CBN-TiN composite coating for hard turning applications, Journal of Materials Processing Technology, submitted for publication.
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Journal of Materials Processing Technology
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Nakkiew, W.1
Liu, C.R.2
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