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BIOGRAPHICAL SKETCH OF DR. C. STEVE SUH Department of ...

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<strong>BIOGRAPHICAL</strong> <strong>SKETCH</strong> <strong>OF</strong> <strong>DR</strong>. C. <strong>STEVE</strong> <strong>SUH</strong><strong>Department</strong> <strong>of</strong> Mechanical Engineering, 3123TAMUTexas A&M University, College Station, Texas 77843-3123, U.S.A.Voice: (979) 845-1417; Fax: (979) 845-3081; E-mail: ssuh@tamu.eduDegrees: Ph.D. in Mechanical Engineering, Texas A&M University, 1997Years <strong>of</strong> Service on Texas A&M Faculty:Director, Institute for Innovation and Design in Engineering (2008-Date)Associate Pr<strong>of</strong>essor (2004 - Date)Assistant Pr<strong>of</strong>essor (1998 - 2004)Interest Areas:Nonlinear time-frequency control; Laser ultrasonic thermometry; Characterization andcontrol <strong>of</strong> manufacturing instability; Engineering design; MEMS and NEMS fabrication;High-performance 3D microelectronic packaging; Wave propagation; Thermo-Elasto-Viscoplastodynamics.Other Related Experience:Post-Doctoral Fellow, Space Power Institute, Auburn University (10/97-8/98)Post-Doctoral Research Associate, Texas A&M University (9/96 - 9/97)Design Instructor, Texas A&M University (9/95 - 9/96)Research and Teaching Assistant, Texas A&M University (9/91 - 8/95)Research and Residence Assistant, Auburn University (9/89 - 8/91)Manufacturing Project Engineer, AIDC, Taiwan (8/86 - 8/89)Manufacturing Engineer, Aerospace Industry Development Ctr, Taiwan (11/84-8/86)Selected Publications (2002-2012):1. Halfmann, E.B., Suh, C.S., and Hung, N.P., (2012) “Dynamics <strong>of</strong> Turning OperationPart I: Experimental Analysis Using Instantaneous Frequency,” ASME TransactionsJournal <strong>of</strong> Manufacturing Science and Engineering. Submitted on 3-6-2012.2. Halfmann, E.B., Suh, C.S., and Hung, N.P., (2012) “Dynamics <strong>of</strong> Turning OperationPart II: Model Validation and Stability at High Speed,” ASME Transactions Journal <strong>of</strong>Manufacturing Science and Engineering. Submitted on 3-6-2012.3. Halfmann, E.B. and Suh, C.S., (2012) “On The Temporal and Spectral Characteristics<strong>of</strong> Micro-Milling Dynamics,” International Journal <strong>of</strong> Machine Tools and Manufacture.Submitted on 4-30-2012.4. Liu, M.-K., and Suh, C.S., (2012) “Synchronization <strong>of</strong> Chaos in Simultaneous Time-Frequency Domain,” Applied Mathematical Modelling. Submitted on 7-3-2012.5. Liu, M.-K., Halfmann E.B., and Suh, C.S., (2012) “Multi-Dimensional Time-FrequencyControl <strong>of</strong> Micro-Milling Instability,” Journal <strong>of</strong> Vibration and Control. In press. OnlineFirst available on 11-9-2012.6. Liu, M.-K., and Suh, C.S., (2012) “On Controlling Milling Instability and Chatter at HighSpeed,” Journal <strong>of</strong> Applied Nonlinear Dynamics, 1(1), pp. 59-72.7. Liu, M.-K., and Suh, C.S., (2012) “Simultaneous Time-Frequency Control <strong>of</strong> Bifurcationand Chaos,” Communications in Nonlinear Science and Numerical Simulations, 17/6,pp. 2539-2550.8. Liu, M.-K., and Suh, C.S., (2012) “Temporal and Spectral Responses <strong>of</strong> A S<strong>of</strong>teningDuffing Oscillator Undergoing Route-To-Chaos,” Communications in NonlinearScience and Numerical Simulations, 17/12, pp. 5217-5228.9. Vedantham, V., Suh, C.S., and Chona, R., (2011) “Laser Induced Stress WaveThermometry for In-Situ Temperature and Thickness Characterization <strong>of</strong> Single


Crystalline Silicon Wafer Part I – Theory and Apparatus,” Experimental Mechanics,Vol. 51, pp. 1103-1114.10. Vedantham, V., Suh, C.S., and Chona, R., (2011) “Laser Induced Stress WaveThermometry for In-Situ Temperature and Thickness Characterization <strong>of</strong> SingleCrystalline Silicon Wafer Part II – Experimental Results,” Experimental Mechanics,Vol. 51, pp. 1115-1122.11. Qi, X., Liu, L., Suh, C.S., and Chona, R., (2010) “Elasto-Viscoplastic WaveThermometry for Silicon Wafer Processing,” International Journal <strong>of</strong> AppliedMechanics, Vol. 2, No. 4, pp. 827-849.12. Qi, X., and Suh, C.S., (2010) “Elasto-Viscoplastic Response <strong>of</strong> Silicon ToFemtosecond Laser Heating at Elevated Temperature,” Journal <strong>of</strong> Thermal Stresses,Vol. 34, pp. 115-137.13. Gegg, B., Suh, C.S. and Luo, A.C.J., (2010) “Modeling and Theory <strong>of</strong> IntermittentMotions In A Machine Tool With A Friction Boundary,” ASME Transactions Journal <strong>of</strong>Manufacturing Science and Engineering, Vol. 132, pp. 041001-1-9.14. Gegg, B., Suh, C.S. and Luo, A.C.J., (2010) “A Parameter Study <strong>of</strong> The EccentricityFrequency and Amplitude and Chip Length Effects on A Machine Tool With MultipleBoundaries,” Communications in Nonlinear Science and Numerical Simulations, 15/9,pp. 2575-2602.15. Qi, X., and Suh, C.S., (2009) “Generalized Thermo-Elastodynamics forSemiconductor Materials Subject to Ultrafast Heating - Part I: Model Description andValidation,” International J. <strong>of</strong> Heat and Mass Transfer, Vol. 53, pp. 41-47.16. Qi, X., and Suh, C.S., (2009) “Generalized Thermo-Elastodynamics forSemiconductor Materials Subject to Ultrafast Heating - Part II: Near-Field Responseand Damage Evaluation,” International J. <strong>of</strong> Heat and Mass Transfer, Vol. 53, pp. 744-752.17. Gegg, B., Luo, A.C.J., and Suh, C.S., (2009) “Sliding Motions On A Periodically Time-Varying Boundary For A Friction-Induced Oscillator,” Journal <strong>of</strong> Vibration and Control,15(5), pp. 671–703.18. Qi, X., and Suh, C.S., (2009) “Ultrafast Laser Induced Elastodynamics in SingleCrystalline Silicon - Part I: Model Formulation,” Journal <strong>of</strong> Thermal Stresses, Vol. 32,pp. 477-493.19. Qi, X., and Suh, C.S., (2009) “Ultrafast Laser Induced Elastodynamics in SingleCrystalline Silicon - Part II: Near-Field Response,” Journal <strong>of</strong> Thermal Stresses, Vol.32, pp. 494-511.20. Oh, Y., Suh, C.S. and Sue H.-J., (2008) “On Failure Mechanisms in Flip ChipAssembly – Part 1: Short-Time Scale Wave Motion,” ASME Transactions Journal <strong>of</strong>Electronic Packaging, Vol. 130, 021008-1-11.21. Oh, Y., Suh, C.S. and Sue H.-J., (2008) “On Failure Mechanisms in Flip ChipAssembly – Part 2: Optimal Underfill and Interconnecting Materials,” ASMETransactions Journal <strong>of</strong> Electronic Packaging, Vol. 130, 021009-1-9.22. Gegg, B., Luo, A.C.J., and Suh, C.S., (2008) “Grazing Bifurcations <strong>of</strong> A HarmonicallyExcited Oscillator Moving On A Time-Varying, Translation Belt,” Nonlinear Analysis:Real World Applications, Vol.9, pp. 2156-2174.23. Dassanayake, A.V. and Suh, C.S., (2008) “On Nonlinear Cutting Response and ToolChatter in Turning Operation,” Communications in Nonlinear Science and NumericalSimulations, 13, pp.979-1001.24. Dassanayake, A.V. and Suh, C.S., (2007) “Machining Dynamics Involving Whirling.Part I: Model Development and Validation,” Journal <strong>of</strong> Vibration and Control, 13(5), pp.475-506.


25. Dassanayake, A.V. and Suh, C.S., (2007) “Machining Dynamics Involving Whirling.Part II: Machining States Described by Nonlinear and Linearized Models,” Journal <strong>of</strong>Vibration and Control, 13(5), pp. 507-526.26. Yang, B. and Suh, C.S., (2006) "On Fault Induced Nonlinear Response andInstability," Journal <strong>of</strong> Mechanical Science, Vol. 48, Issue 10, pp. 1103-1125.27. Baltaza-Lopez, M.E., Burger, C.P., Chona, R. and Suh, C.S., (2005) “Study <strong>of</strong> WaveMotion on Tubulars Using Broadband Laser Ultrasound,” Experimental Mechanics. Vol.45, No. 5, pp. 427-432.28. Nagaraj, M. and Suh, C.S., (2005) “On Short Time Scale Stress Wave Phenomena andInitiation <strong>of</strong> Mechanical Faults in Flip Chip Configurations,” IEEE Transactions onDevice and Material Reliability, Vol. 5, No. 2, pp. 224-230.29. Yang, B. and Suh, C.S., (2005) "Nonlinear Characteristics <strong>of</strong> A Cracked Rotor-JournalBearing System," Proc. IMechE Part K: Journal <strong>of</strong> Multi-Body Dynamics, Vol. 219, No.K1, pp. 87-108.30. Rabroker, G.A., Suh, C.S., and Chona, R. (2005) “Laser Induced Stress WaveThermometry Applied to Silicon Wafer Processing," Experimental Mechanics. Vol. 45,No. 1, pp.3-8.31. Lin, Y.-J., Suh, C.S. and Noah, S.T., (2004) “On the Characteristics and Mechanism <strong>of</strong>Rolling Instability and Chatter," ASME Journal <strong>of</strong> Manufacturing Science andEngineering, Vol. 125, No. 4, pp 778-786.32. Peng, X., Yu, Y., Chan, A.K., and Suh, C.S., (2004) “Non-Contact UltrasonicInspection <strong>of</strong> Medical Catheters for Polymeric Bond Defects,” Materials and Design,Vol. 25, No. 7, pp. 603-614.33. Yang, B. and Suh, C.S., (2004) "On The Characteristics <strong>of</strong> Bifurcation and NonlinearDynamic Response," ASME Transactions Journal <strong>of</strong> Vibration and Acoustics. Vol.126, No.4, pp. 574-579.34. Yang, B. and Suh, C.S., (2004) "On The Nonlinear Features <strong>of</strong> Time-DelayedFeedback Oscillators," Communications in Nonlinear Science and NumericalSimulations, 9/5, pp: 515-529.35. Yang, B. and Suh, C.S., (2003) "Interpretation <strong>of</strong> Crack Induced Nonlinear ResponseUsing Instantaneous Frequency," Mechanical Systems and Signal Processing, Vol 18,No. 3, pp: 491-513.36. Chona, R., Suh, C.S., and Rabroker, G.A., (2003) "Characterizing Defects in Multi-Layer Materials Using Guided Ultrasonic Waves," Journal <strong>of</strong> Optics and Lasers inEngineering, Vol. 40, Issue 4, pp. 371-378.37. Yang, B, Suh, C.S., and Chan, A.K., (2002) "Characterization and Detection <strong>of</strong> Crack-Induced Rotary Instability," ASME Transactions Journal <strong>of</strong> Vibration and Acoustics, Vol.124, No.1, pp. 40-48.38. Suh, C.S., Khurjekar, P.P., and Yang, B., (2002) "Characterization and Identification <strong>of</strong>Dynamic Instability in Milling Operation," Mechanical Systems and Signal Processing,Vol. 16, No. 5, pp. 829-848.Authorships:1. (Book) Suh, C.S., and Liu, M.-K., Control <strong>of</strong> Cutting and Machining Instability: Time-Frequency Approach for Precision Micro and Nano Machining, John Wiley and Sons,2013. (Available 2013)2. (Book) Gegg, B., Suh, C.S., and Luo, A.C.J., Machine Tool Vibrations and CuttingDynamics, Springer Science, New York, N.Y., 2011. ISBN 978-1-4419-9800-2.3. (Book Chapter) Gegg, B., Suh, C.S., and Luo, A.C.J., “Chapter 3 – Analytical Prediction<strong>of</strong> Interrupted Cutting Periodic Motions in A Machine Tool,” Nonlinear Science andComplexity (eds., J.A.T. Machado et al.), Springer Science, 2011.


4. (Book Chapter) Gegg, B., Suh, C.S., and Luo, A.C.J., “Chapter 8 - A Parameter Study<strong>of</strong> A Machine Tool with Multiple Boundaries,” Dynamical Systems: Discontinuity,Stochasticity and Time Delay (ed., A.C.J. Luo), Springer Verlag, 2010.5. (Book Chapter) Luo, A.C.J., Gegg, B., and Suh, C.S., “Grazing Phenomena in AHarmonically Excited Oscillator With Dry-Friction On A Sinusoidally Time-VaryingTraveling Surface,” Transactions <strong>of</strong> Nonlinear Science & Complexity, Vol. 1 (eds.,A.C.J. Luo, L. Dai, and H.R. Hamidzadeh), pp. 121-133, World Scientific, 2007.6. (Book Chapter) Dassanayake, A.V. and Suh, C.S., “A 3D Turning Model for TheInterpretation <strong>of</strong> Machining Stability and Chatter,” Transactions <strong>of</strong> NonlinearScience & Complexity, Vol. 1 (eds., A.C.J. Luo, L. Dai, and H.R. Hamidzadeh), pp. 149-163, World Scientific, 2007.Editorships:1. Associate Editor, Journal <strong>of</strong> Applied Nonlinear Dynamics, 2011-date.2. Guest Editor, Journal <strong>of</strong> Vibration and Control, Vol. 13, No. 5, May 2007.Patents: “UDIMC – Universal Dynamic Instability Mitigation and Control,” 2011. (TAMUS 3448Disclosure <strong>of</strong> Invention filed through TAMUS Office <strong>of</strong> Technology Commercialization(OTC) on June 21, 2011.)"Thermo-Acousto-Photonic Nondestructive Evaluation (TAP-NDE) and the GaborWavelet Transform (GWT) Applied to Quality Inspection <strong>of</strong> Small Diameter PolymericCatheter Tubing," 2001. (TAMUS Disclosure <strong>of</strong> Invention 1739TEES01. Provisionalpatent application filed on April 23, 2002.) “Method and Apparatus for Interconnecting Parent and Lateral Wellbores,” 1997.(Filed by Halliburton Energy Services, Carrollton, Texas.)Selected Invited Seminars (2010-2012): “Power Density: An Alternative to Characterizing Fatigue Performance Subject toVariable Loading and Impact,” Schlumberger 2012 EUREKAMechanical Workshop on Problem, Cause & Solution (PCS), Houston, Texas, 8-22-2012. “Mitigation <strong>of</strong> Chatter and Cutting Instability at High Speed,” Schlumberger CHPC,Houston, Texas, 11-02-2011. “Fostering Innovation in Mechanical Engineering Design Education at Texas A&MUniversity,” Schlumberger CHPC, Houston, Texas, 11-02-2011. “ABET-Accredited Mechanical Engineering Program at Texas A&M University – AnOverview,” College <strong>of</strong> Engineering, China Agricultural University, 6-28-2010. “Fostering Innovation in Mechanical Engineering Design Education at Texas A&MUniversity,” College <strong>of</strong> Engineering, China Agricultural University, 6-28-2010. “IIDE Design Methodologies and Advanced Structural-Web Molding Technology,”College <strong>of</strong> Engineering, China Agricultural University, 6-29-2010. “Laser Ultrasonic Thermometry for In-Situ Characterization <strong>of</strong> SemiconductorMaterial,” College <strong>of</strong> Engineering, China Agricultural University, 6-29-2010. “Short-Time Scale Dynamic Failure Modes in A Through-Silicon-Via (TSV) Flip-ChipConfiguration,” College <strong>of</strong> Engineering, China Agricultural University, 6-30-2010.Research Project Sponsors:NSF DoD/DLA DOI/MMS AAR-TTCI CONACYTUSDA Schlumberger Texas Higher Education Coordination Board (THECB)


Scientific and Pr<strong>of</strong>essional Society Memberships/Offices:TAMU – Ford Fellow ASME – Member ASEE - Member Sigma Xi – MemberSelected Design Projects and Sponsors:Multidisciplinary DesignNanoliters Metering - 1SchlumbergerNanoliters Metering - 2SchlumbergerOptical CellSchlumbergerNanosatelliteBoeingCHDT Tool ModificationSchlumbergerMultilateral Hole FinderSchlumbergerSystem DesignHTHP Polymeric Seal CharacterizerSchlumbergerNanosatelliteBoeingInnovative Precision ActuatorHalliburton Energy ServicesMaintenance Tools for FABApplied MaterialsDust StormApplied MaterialsSnow GlobeApplied MaterialsCement MixerHalliburton Energy ServicesMartian Trans-Hab and Rover DesignsNASA – Johnson Space CenterOn-line Optics-based Thermometry for Wafer FAB SEMATECHManufacturing Based DesignVIV SuppressionShell Global SolutionsPortable Polymer Tubing FuserSchlumbergerNose Landing Gear Light HousingBoeing CompanyV6 Vehicle Rear Subframe DesignFord MotorDown-Hole Safety Valve DesignHalliburton Energy ServicesIn-House Universal Running Tool TesterHalliburton Energy ServicesHigh-Pressure Swivel Pipe Joint DesignHalliburton Energy ServicesDesign OptimizationOcean Thermal Energy Converter (OTEC) Lockheed MartinPercussion Drillbit DesignDrilltech MissionSBS Injection SystemURS Corp.Vortex Shedding Suppression for Cylindrical Fluor DanielStructuresV6 Vehicle Subframe OptimizationFord MotorMechanical Design“Doghouse” CoverTrelleborg OffshoreTop-Hole Dual Gradient (THDG) Design I Integrated Ocean Drilling ProgramTop-Hole Dual Gradient (THDG) Design II Minerals Management ServicesHigh Temperature Metal-to Metal SealHalliburton Energy ServicesThermadrumA&M ConcreteV8 Vehicle Subframe DesignFord MotorMDT Flexible Joint DesignSchlumbergerPrecision Electrical-Mechanical Valve Design SchlumbergerS<strong>of</strong>tware DevelopmentBCTC Analysis ToolSchlumbergerShape Charge Design ToolSchlumberger

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