John S. Strenkowski
Affiliations: | North Carolina State University, Raleigh, NC |
Area:
Mechanical EngineeringGoogle:
"John Strenkowski"Children
Sign in to add traineeSupasit Rodkwan | grad student | 2002 | NCSU |
Makita R. Phillips | grad student | 2014 | NCSU |
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Publications
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Yan J, Strenkowski JS. (2006) A finite element analysis of orthogonal rubber cutting Journal of Materials Processing Technology. 174: 102-108 |
Shih AJ, Luo J, Lewis MA, et al. (2004) Chip Morphology and Forces in End Milling of Elastomers Journal of Manufacturing Science and Engineering-Transactions of the Asme. 126: 124-130 |
Shih AJ, Lewis MA, Strenkowski JS. (2004) End Milling of Elastomers—Fixture Design and Tool Effectiveness for Material Removal Journal of Manufacturing Science and Engineering-Transactions of the Asme. 126: 115-123 |
Strenkowski JS, Hsieh CC, Shih AJ. (2004) An analytical finite element technique for predicting thrust force and torque in drilling International Journal of Machine Tools & Manufacture. 44: 1413-1421 |
Strenkowski JS, Shih AJ, Lin JC. (2002) An analytical finite element model for predicting three-dimensional tool forces and chip flow International Journal of Machine Tools & Manufacture. 42: 723-731 |
Athavale SM, Strenkowski JS. (1998) Finite Element Modeling Of Machining: From Proof-Of-Concept To Engineering Applications Machining Science and Technology. 2: 317-342 |
Strenkowski JS, Athavale SM. (1997) A Partially Constrained Eulerian Orthogonal Cutting Model for Chip Control Tools Journal of Manufacturing Science and Engineering-Transactions of the Asme. 119: 681-688 |
Athavale SM, Strenkowski JS. (1997) Material Damage-Based Model for Predicting Chip-Breakability Journal of Manufacturing Science and Engineering-Transactions of the Asme. 119: 675-680 |
Carroll JT, Strenkowski JS. (1988) Finite element models of orthogonal cutting with application to single point diamond turning International Journal of Mechanical Sciences. 30: 899-920 |
Strenkowski JS, Chu FH, Pilkey WD. (1981) Transient analysis of structural members using a continuous space continuous time method Computers & Structures. 14: 89-95 |