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Transferring momentum: Novel drop protection concept for mobile devices
Kevin Hughes
, Rade Vignjevic
, Fergal Corcoran
, Omkar Gulavani
,
Tom De Vuyst
, James Campbell
, Nenad Djordjevic
Department of Engineering and Technology
School of Physics, Engineering & Computer Science
Centre for Climate Change Research (C3R)
Materials and Structures
Centre for Engineering Research
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Citations (Scopus)
61
Downloads (Pure)
Overview
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Keyphrases
Accelerometer Data
50%
Analysis Leads Design
50%
Backing Plate
50%
Body Injury
100%
Bond Angle
50%
Castellation
50%
Comparison with Experimental Data
50%
Damage Location
50%
Delamination
50%
Dependent Features
50%
Device Independence
50%
Edge-on Impact
50%
Elastomer
100%
Explicit Finite Element Analysis
50%
Finite Element Model
50%
Glass Properties
50%
High Stiffness
50%
Impact Angle
100%
Impact Device
50%
Impact Load
50%
Internal Structure
50%
IPad
100%
Loss Function
50%
MIL-STD-810
50%
Mobile Devices
100%
Mobile Phone
50%
Numerical Prediction
50%
Passive Protection
50%
Peak Acceleration
50%
Resultant Acceleration
50%
Sensitivity Study
50%
Stiffness
50%
Engineering
Backplate
50%
Bonding Angle
50%
Damage Location
50%
Delamination
50%
Elastomer
100%
Finite Element Analysis
50%
Finite Element Modeling
50%
Impact Angle
100%
Impact Loads
50%
Internal Structure
50%
Internals
50%
Mobile Phones
50%
Numerical Prediction
50%
Peak Acceleration
50%
Sensitivity Study
50%
Material Science
Accelerometer
50%
Delamination
50%
Elastomer
100%
Finite Element Method
50%
Finite Element Modeling
50%
Glass Property
50%
Impact Loads
50%