37 results on '"Culpepper, Martin L."'
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2. Effects of chirality and impurities on the performance of carbon nanotube-based piezoresistive sensors
3. Scaling electromechanical sensors down to the nanoscale
4. Design of piezoresistive-based MEMS sensor systems for precision microsystems
5. Design of a low-cost, precision belt-drive machine for high-throughput nanomanufacturing
6. Synthesis of precision serial flexure systems using freedom and constraint topologies (FACT)
7. A screw theory basis for quantitative and graphical design tools that define layout of actuators to minimize parasitic errors in parallel flexure systems
8. Synthesis of multi-degree of freedom, parallel flexure system concepts via freedom and constraint topology (FACT). Part II: Practice
9. Modeling 3D magnetic fields for precision magnetic actuators that use non-periodic magnet arrays
10. Two-layer electroplated microcoils with a PECVD silicon dioxide interlayer dielectric
11. Comparison of molecular simulation and pseudo-rigid-body model predictions for a carbon nanotube-based compliant parallel-guiding mechanism
12. A dual-purpose positioner-fixture for precision six-axis positioning and precision fixturing: Part I. Modeling and design
13. A dual-purpose positioner-fixture for precision six-axis positioning and precision fixturing: Part II. Characterization and calibration
14. Design of contoured microscale thermomechanical actuators
15. Quasi-kinematic couplings for low-cost precision alignment of high-volume assemblies
16. Design of a six-axis micro-scale nanopositioner—μHexFlex
17. Design of integrated eccentric mechanisms and exact constraint fixtures for micron-level repeatability and accuracy
18. Design of a low-cost nano-manipulator which utilizes a monolithic, spatial compliant mechanism
19. Design of quasi-kinematic couplings
20. Noise Mitigation Techniques for Carbon Nanotube-Based Piezoresistive Sensor Systems
21. A building block synthesis approach for precision flexure systems with integrated, strain-based position sensing
22. Deterministic Switching of Hierarchy during Wrinkling in Quasi-Planar Bilayers.
23. Engineering Electrical Interfaces to Silicon via Indium Solder.
24. Thermomechanical Actuator-Based Three-Axis Optical Scanner for High-Speed Two-Photon Endomicroscope Imaging.
25. Characterization of the Dip Pen Nanolithography Process for Nanomanufacturing.
26. Design of Contoured Microscale Thermomechanical Actuators.
27. Corrigendum to “A screw theory basis for quantitative and graphical design tools that define layout of actuators to minimize parasitic errors in parallel flexure systems” [Precis. Eng. 34 (4) (2010) 767–776]
28. Corrigendum to “Synthesis of multi-degree of freedom, parallel flexure system concepts via Freedom and Constraint Topology (FACT)—Part I: Principles” [Precis. Eng. 34 (April (2)) (2010) 259–270]
29. A surface diffusion model for Dip Pen Nanolithography line writing.
30. Control of carbon nanotube geometry via tunable process parameters.
31. Difference between bending and stretching moduli of single-walled carbon nanotubes that are modeled as an elastic tube.
32. Simulation of a carbon nanotube-based compliant parallel-guiding mechanism: A nanomechanical building block.
33. Correction to “Design of Contoured Thermomechanical Actuators and Pulsing Actuation to Enhance Dynamic Performance” [Apr 12 340-349].
34. Torque Measurement With Compliant Mechanisms.
35. A multi-axis MEMS sensor with integrated carbon nanotube-based piezoresistors for nanonewton level force metrology.
36. Thermomechanical Actuator-Based Three-Axis Optical Scanner for High-Speed Two-Photon Endomicroscope Imaging.
37. Design of a Catheter-Based Device for Performing Percutaneous Chordal-Cutting Procedures.
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