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Pneumatic Energy Sources for Autonomous and Wearable Soft Robotics
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Document Date: 2015-03-05 16:38:26


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File Size: 459,72 KB

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City

Corvallis / Worcester / Bedford / Ithaca / WEHNER ET / Cambridge / /

Company

Honeywell / SLM / iRobot / Mary Ann Liebert Inc. / /

Currency

pence / /

Facility

Carnegie Mellon University / Wyss Institute / Worcester Polytechnic Institute / Cornell University / Oregon State University / Harvard University / /

IndustryTerm

chemical ratios / battery energy output / air compressor technologies / system energy density / pneumatic energy sources / fiberglass composites / gas delivery system / chemical breaking / consistent comparison between technologies / stationary systems / lower net fuel energy density / low-pressure applications / ambient solar energy / air compression energy / energy density values / energy storage mechanism / chemical fuel / gas law / net fuel energy density / energy-harvesting / gross fuel energy density / energy density / pressurized working gas / energy sources / reaction products / cold gas / pneumatic energy / air compression energy data / direct chemical reaction options / chemical reaction / high energy densities / rubber / supply pneumatic energy / retail outlet36 / control hardware / thermal management / gross fuel energy densities / energy / theoretical energy density / power applications / soft robotic applications / nominal energy content / steel cylinders / stored energy / pneumatic energy source / chemical reactions / energy source / transmission systems / hot highpressure gas / useable energy / soft robotic power systems / universal gas constant / steel tank / energy density drops / fuel energy / safety hardware / resultant gas cools / harmful chemical byproducts / paint ball / gas pressure / Nominal energy / energy densities / higher gross fuel energy density / net fuel energy densities / little energy / high energy / compression energy / pneumatic systems / pressure flow rate energy / gross energy density / nonideal gas / direct chemical reaction / even chemical / kPa energy drops / manufacturing reasons / system energy capacity / therapeutic applications / Battery-measured energy / fuel systems / pressurized gas / /

Organization

Wyss Institute / Harvard University / MIT / Oregon State University / Department of Chemistry and Chemical Biology / Cornell University / School of Mechanical and Aerospace Engineering / School of Computer Science / School of Engineering and Applied Sciences / Robotics Institute / US Federal Reserve / Worcester Polytechnic Institute / Carnegie Mellon University / Pittsburgh / Harvard University / Boston / /

Person

Parker Hargraves / /

Position

designer / controller / /

Product

iRiver H10 Portable Audio Device / /

ProvinceOrState

Alabama / Oregon / New York / Pennsylvania / Massachusetts / /

Technology

air compressor technologies / ATM / heat transfer / Thermodynamics / /

URL

www.liebertpub.com/soro / www.liebertpub / /

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