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May 6, 2016Advanced Materials Technologies254 citations

Flexible and Stretchable Strain Sensing Actuator for Wearable Soft Robotic Applications

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JYJoo Chuan YeoHYHong Kai YapWXWang Xi

Key Points

  • To develop a flexible pneumatic actuator integrated with a stretchable strain sensor for wearable applications.
  • Integrated a flexible pneumatic actuator with a stretchable strain sensor in a glove.
  • Fabricated the strain sensor using screen-printed silver nanoparticles on an elastomeric substrate.
  • Assessed the actuator's ability to detect bending and finger movement patterns.
  • Achieved high conductivity of approximately 8 Ω sq –1 for the strain sensor.
  • Detected deformations beyond 20% with a gauge factor exceeding 50,000.
  • Enabled real-time detection of irregular movement patterns and measurement of finger stiffness.

Abstract

Despite the emergence of flexible and stretchable actuators, few possess sensing capabilities. Here, we present a facile method of integrating a flexible pneumatic actuator with stretchable strain sensor to form a soft sensorized actuator. The elastomeric actuator comprises a microchannel connected to a controlled air source to achieve bending. The strain sensor comprises a thin layer of screen‐printed silver nanoparticles on an elastomeric substrate to achieve its stretchability and flexibility while maintaining excellent conductivity at ≈8 Ω sq –1 . By printing a mesh network of conductive structures, our strain sensor is able to detect deformations beyond 20% with a high gauge factor beyond 50 000. The integration of a pneumatic soft actuator with our sensing element enables the measurement of the extent of actuator bending. To demonstrate its potential as a rehabilitation sensing actuator, we fit the sensorized actuator in a glove to further analyze finger kinematics. With this, we are able to detect irregular movement patterns in real time and assess finger stiffness or dexterity.

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Cite This Study

Yeo et al. (2016) studied this question.

synapsesocial.com/papers/6a0fd5df9e54838161fd41e9https://doi.org/10.1002/admt.201600018
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