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Optimal design and fabrication of narrow-gauge compliant forceps
M. E. Aguirre
, G. R. Hayes
, R. A. Meirom
,
Mary I. Frecker
, C. L. Muhlstein
,
James Hansell Adair
Materials Research Institute (MRI)
Materials Science and Engineering
Penn State Cancer Institute
Cancer Institute, Experimental Therapeutics
Mechanical Engineering
One Health Microbiome Center
Research output
:
Contribution to journal
›
Article
›
peer-review
20
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Scopus citations
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Keyphrases
Analysis Solution
25%
Aspect Ratio
25%
Austenitic
25%
Blocked Force
25%
Bulk Material
25%
Ceramic Components
25%
Compliant Mechanism
25%
Compliant Mechanism Design
50%
Contact-aided
25%
Contact-aided Compliant Mechanism
25%
Design Optimization
25%
Design Process
25%
Experimental Determination
25%
Fabrication Methods
25%
Finite Element Analysis
25%
Forceps
100%
Forming Process
25%
Grain Size
25%
Large Deformation
25%
Manufacturing Constraints
25%
Manufacturing Methods
25%
Manufacturing Process
25%
Material Properties
50%
Mechanical Properties
25%
Meso
25%
Mesoscale Assembly
25%
Metallic Parts
25%
Minimally Invasive Surgery
25%
Multidisciplinary Projects
25%
Narrow-gauge
100%
Optimization Routine
50%
Particle Adhesion
25%
Penn State University
25%
Stainless Steel
25%
Strength of Materials
25%
Three-point Bending Test
25%
Tool Performance
50%
Transient Infiltration
25%
Yield Strength
25%
Engineering
Aspect Ratio
33%
Bulk Material
33%
Compliant Mechanism
100%
Design Method
33%
Design Optimization
33%
Experimental Determination
33%
Fabricated Part
66%
Fabrication Method
33%
Feature Size
33%
Finite Element Analysis
33%
Good Agreement
33%
Large Deformation
33%
Manufacturing Process
33%
Mechanism Design
66%
Mesoscale
66%
Mm Diameter
33%
Optimal Design
100%
Stainless Steel
33%
Yield Point
33%