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Published byRose Gibbs Modified over 9 years ago
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Scaling Down - The Optimal Choice? Fritz B. Prinz Departments of Mechanical Engineering and Materials Science and Engineering Stanford University Stanford, CA 94 305
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Outline Scaling laws –Physics –Engineering performance (power, power density) –Mechanical tolerances Manufacturing Processes Examples –Turbine engine –Mites (millimeter sized flaps) –Mesicopter
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A World Apart 10 4 - 10 2 10 -4 mm -1 10 -1 mm -1
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Scaling of Strength and Stiffness Failure Load Failure Load per Weight Bending Stiffness per Weight Beam
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Scaling of Moving Objects Find relation between: –Mass m –Length l –Time t
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Physics of Scaling (forget heat loss)
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Scaling of Length and Time k = 2 elastic K= -1 electro - static motor, gravity (Kepler’s third law)
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Scaling of Mass For v << c Relativisitic:
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Scaling of Power
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Electro Static Motors In theory: Assuming all dimensions e.g. gaps can be scaled down
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Constant Field E = constant In practice:
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Scaling of Critical Dimensions? Electro static /magnetic motors Tolerance l
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A Manufacturing Issue Determined by manufacturing process Determines quality of machine Traditional mechanical machines Integrated circuits Even May not be achievable
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Turbine Combustion Engines Power Density (1/l) - Thrust to Weight T/W = 5.6 T/W= 7.6
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M-Dot Micro Engine for Drone Aircraft Thrust (N)Operating Temp. ( O C) Thrust-to-weight ratio Weight (g) Current (metal) design Design incorporating ceramics
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From RP and CNC to... 2000 1960 1990 Shape Deposition Manufacturing ( SDM) RPCNC
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Mold Shape Deposition Manufacturing –Builds wax molds via SDM using Soldermask temporary part material –Gel cast ceramic slurry into –sacrificial mold Sangkyun Kang:
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Ceramic Inlet Nozzle Fully dense Silicon Nitride RMS ~ 0,5 micro meter Strength ~ 400 - 600 Mpa as sintered
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‘Shape Assembled’ Mechanism
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Micro Flaps for Aero Elastic Control Maximize flight time of Unmanned Air Vehicle (UAV) Front view
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Suggested Solution Aeroelastic control using trailing edge effects –Concept Span-wise lift control via micro-flaps Micro-flaps
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Approach Design & Manufacture Micro-flaps Small size (6 mm) Large deflection (± 75°) Frequency (10s HZ) Material strength Requirements Airfoil Flap Surface 6 mm
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Actuating Mechanism
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Build Sequence in SDM 3 2 6 5 4 1
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SDM Fabrication of Multiple Flaps
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Micro Flap for Aero - Elastic Control Clearance ~ 50 micron
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The Mesicopter: a Miniature Helicopter
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Aerodynamics New results for very low Re airfoils Very thin sections required Maximum lift increases as Re decreases below 10,000
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Rotor Optimization Chord, twist, RPM, blade number designed using nonlinear optimization 3D analysis based on Navier-Stokes section data Rotor matched with measured motor performance (50 000rpm)
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Aerodynamics Navier-Stokes analysis of rotor sections at unprecedented low Reynolds number Novel results of interest to Mars airplane program Nonlinear rotor analysis and optimization code
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SDM Rotor Manufacturing 1. Micro-machine bottom surface of rotor on wax 2. Cast epoxy 3. Remove excess epoxy 4. Machine top surface of rotor 5. Melt wax
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Scaled Down Mesicopter Insect-Scale Aerodynamics 3D Micro- Manufacturing Power / Control / Sensors
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Mesomotor REM-Aufnahme des 2mm-Motors Explosions- ansicht des Motors Rotor Stator Anker- spule
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Shaping of Electrodes Sputtering of seed layer SEM Micro- graph of etched silicon Plating SEMMicro- graph of plated electrode
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EDM of Amorphous Metals Electro Discharge Machining
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Massively Parallel Mechanical Systems One Electro Static MotorMany Electro Static Motors
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