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Piezo-Electrochemical Transducer Effect Intercalated Graphite Micro-Electromechanical Actuators
Piezo-Electrochemical Transducer Effect Intercalated Graphite Micro-Electromechanical Actuators
111,68
124,09 €
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The purpose of this research is to investigate the Piezo-Electrochemical Transducer (PECT) effect in intercalated graphite as a possible mechanism of actuation for micro-electromechanical systems (MEMS). This dissertation presents the results of research into the PECT effect in H2SO4-intercalated graphitized carbon fibers, including both electrical and mechanical characteristics of this effect. PECT fibers achieve up to 1.7% strain at 1.4 V of applied potential. In contrast, the piezoelectric m…
  • Publisher:
  • ISBN-10: 1249836514
  • ISBN-13: 9781249836513
  • Format: 18.9 x 24.6 x 1.1 cm, softcover
  • Language: English
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Piezo-Electrochemical Transducer Effect Intercalated Graphite Micro-Electromechanical Actuators (e-book) (used book) | bookbook.eu

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The purpose of this research is to investigate the Piezo-Electrochemical Transducer (PECT) effect in intercalated graphite as a possible mechanism of actuation for micro-electromechanical systems (MEMS). This dissertation presents the results of research into the PECT effect in H2SO4-intercalated graphitized carbon fibers, including both electrical and mechanical characteristics of this effect. PECT fibers achieve up to 1.7% strain at 1.4 V of applied potential. In contrast, the piezoelectric material polyvinylidene difluoride (PVDF) generates only 0.01% strain and polysilicon thermal expansion between 0.02 and 0.06% strain depending on the thermal conductivity of the particular polysilicon that the actuators are fabricated in.

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  • Author: Glen A Kading
  • Publisher:
  • ISBN-10: 1249836514
  • ISBN-13: 9781249836513
  • Format: 18.9 x 24.6 x 1.1 cm, softcover
  • Language: English English


The purpose of this research is to investigate the Piezo-Electrochemical Transducer (PECT) effect in intercalated graphite as a possible mechanism of actuation for micro-electromechanical systems (MEMS). This dissertation presents the results of research into the PECT effect in H2SO4-intercalated graphitized carbon fibers, including both electrical and mechanical characteristics of this effect. PECT fibers achieve up to 1.7% strain at 1.4 V of applied potential. In contrast, the piezoelectric material polyvinylidene difluoride (PVDF) generates only 0.01% strain and polysilicon thermal expansion between 0.02 and 0.06% strain depending on the thermal conductivity of the particular polysilicon that the actuators are fabricated in.

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