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P13375 : Computer Controlled Hydraulic Nanomanipulator

P13375 : Computer Controlled Hydraulic Nanomanipulator. David Anderson Ryan Dunn Bryon Elston Elizabeth Fischer Robert Menna Guide : Bill Nowak Customer: Dr. Michael Schrlau (ME Department). Main Focus of Improvements. Reduce Backlash Increase Speed

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P13375 : Computer Controlled Hydraulic Nanomanipulator

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  1. P13375 : Computer Controlled Hydraulic Nanomanipulator David Anderson Ryan Dunn Bryon Elston Elizabeth Fischer Robert Menna Guide : Bill Nowak Customer: Dr. Michael Schrlau (ME Department)

  2. Main Focus of Improvements Reduce Backlash Increase Speed Provide Remote Access Capabilities Stop System Leakage Issue

  3. Design Concept (Mechanical) Cont.

  4. Engineering Specifications

  5. Engineering Specifications Continued

  6. Speed Testing • Find current and desired coordinates based on current position • Drive the motor in desired direction • Stop motor so as to approach desired coordinates • Measure actual end coordinate • Calculate speed based on time given by Matlab stopwatch function: “tic” and “toc” • Functions tic and toc run at start and stop commands; respectively

  7. Speed A stiffer return spring in x would improve reverse speed Stabilizing system would also improve speed Also should be noted that backlash does impact speed

  8. Backlash • Two observers • Observer 1: Camera Feed • Observer 2: Motor Rotation • Observer 1 ran the motors until motion was observed and Observer 2 reported number of revolutions

  9. Resolution Testing • A Matlab function was created to “step” the motors at speed 300/1000 for a period of 3 seconds • The motors were “stepped” repeatedly until a distinctly different location was observed • Matlab applied unscaled axes to the image • Conversion from Matlab Scale to Microscope: • Used ruler slide to find the conversion (see next slide) • Testing done at 40x

  10. Resolution Testing (Scaling) 762.18 pixels = 0.1 mm = 100 μm

  11. Resolution ~33 px ~12 px

  12. Items Still in Progress User’s Manual Update Information on Edge

  13. Suggestions for Future Work Further improve method of securing nanomanipulator (still using magnetic stand) Improve system resolution Improve carriage “wobble” – possibly use ball bearing tracks

  14. Eppendorf Software Update Eppendorf control implemented 2 versions (Eppendorf, Generic) Debug, comment and document Demonstration or Video?

  15. Eppendorf Future Work Merge software forks into 1 package Make networked vs. local an option Consult with Nick to compare and commit changes

  16. Lessons Learned • Dealing with Suppliers • Discuss items for purchase with the company’s engineers, not just sales • Communication regarding small quantities can be difficult • Give suppliers a sense of the future of your project – can help with discussion regarding quotes • ALWAYS follow up on any request for information or product • Importance of risk management • Need to have multiple back up plans • If not impractical, take time early on to recreate prior results – especially in specs you are seeking to improve • Machining ALWAYS takes longer than expected

  17. Acknowledgements The team would like to thank the following individuals for their help and guidance throughout this project. Guide: Bill Nowak Customer: Dr. Schrlau Charlie Tabb Nicholas Hensel Team P13371 Team P12371 Tim Patane of Component Supply

  18. Questions?

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