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OPTIMIZATION OF SMALL-SCALE HYDRAULIC STRUCTURES FOR POWERED EXOSKELETONS
Jeffrey J. Bies
,
William Durfee
Mechanical Engineering
Research output
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Chapter in Book/Report/Conference proceeding
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Conference contribution
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Dive into the research topics of 'OPTIMIZATION OF SMALL-SCALE HYDRAULIC STRUCTURES FOR POWERED EXOSKELETONS'. Together they form a unique fingerprint.
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Engineering
Fluid Flow
100%
Design Process
100%
Power Fluid
100%
Hydraulics
100%
External Load
100%
Fluid Mechanics
100%
Hydraulic System
100%
System Efficiency
100%
Solid Mechanics
100%
Finite Volume Method
100%
Structural Support
100%
Flow Path
100%
Software Application
100%
Pressure Drop
100%
Degree Bend
100%
Learning System
100%
Hydraulic Structure
100%
Passive Cooling
100%
Assistive Technologies
100%
Case Study
100%
Keyphrases
Powered Exoskeleton
100%
Hydraulic Structure
100%
Generative Design
100%
Multiphysics
66%
Sensitivity Analysis
66%
System Weight
66%
Machine Learning
33%
Heat Transfer
33%
High Pressure
33%
Fluid Mechanics
33%
Design Process
33%
Fluid Flow
33%
Hydraulics
33%
Fluid Power
33%
Python
33%
Software Application
33%
Flow Path
33%
Process Optimization
33%
Surface Temperature
33%
Pressurized Fluids
33%
Hydraulic System
33%
Pressure Drop
33%
Method Analysis
33%
Battery Sizing
33%
Structural Support
33%
Passive Cooling
33%
Solid Mechanics
33%
Finite Volume Method
33%
Assistive Technology
33%
Produce Design
33%
Exoskeleton
33%
Geometry Refinement
33%
90-degree Bend
33%
Untethered
33%
Volume Sensitivity
33%
Generative Design Algorithms
33%
Various Applications
33%
External Load
33%
Meshing
33%