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Deformation mechanism of hydrogen-assisted ionic polymer metal composite actuator
Masaki Omiya
, Masato Kurokawa
Department of Mechanical Engineering
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peer-review
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Dive into the research topics of 'Deformation mechanism of hydrogen-assisted ionic polymer metal composite actuator'. Together they form a unique fingerprint.
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Mathematics
Ionic Polymer-metal Composite
100%
Hydrogen
65%
Actuator
63%
Palladium
29%
Electrode
27%
Voltage
18%
Movement
16%
Electrolyte
15%
Absorption
11%
Artificial muscle
11%
Microactuator
10%
Driving Force
7%
Moment
7%
Robot
6%
Polymers
5%
Water
5%
Membrane
5%
Flexibility
5%
Decrease
4%
Engineering & Materials Science
Hydrogen
39%
Actuators
37%
Polymers
35%
Metals
31%
Composite materials
28%
Palladium
21%
Positive ions
20%
Electrodes
16%
Electrolytes
10%
Electric potential
8%
Bending moments
5%
Muscle
5%
Membranes
4%
Robots
3%
Water
2%
Chemical Compounds
Ionic Polymer
67%
Hydrogen
24%
Composite Material
24%
Metal
22%
Voltage
17%
Length
14%
Cation
14%
Palladium
12%
Behavior as Electrode
12%
Flexibility
6%
Force
5%
Weight
4%