2016
DOI: 10.1007/978-3-319-46460-2_4
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Towards Behavior Design of a 3D-Printed Soft Robotic Hand

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Cited by 49 publications
(25 citation statements)
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“…A fully 3D-printed soft hand-shaking robot that feels how hard you squeeze its hand and squeezes back accordingly was created as a metaphor for how soft robotics technology can improve Human-Robot Interaction (HRI). Soft robotic hand used in this work was originally built as a case study for behavior design in 3D-printed soft robotics [31]. The field of soft robotics focuses on the use of materials with YoungâȂŹs moduli in the range of that of soft biological materials in order to improve the safety and adaptability of robots [32].…”
Section: Applicationmentioning
confidence: 99%
“…A fully 3D-printed soft hand-shaking robot that feels how hard you squeeze its hand and squeezes back accordingly was created as a metaphor for how soft robotics technology can improve Human-Robot Interaction (HRI). Soft robotic hand used in this work was originally built as a case study for behavior design in 3D-printed soft robotics [31]. The field of soft robotics focuses on the use of materials with YoungâȂŹs moduli in the range of that of soft biological materials in order to improve the safety and adaptability of robots [32].…”
Section: Applicationmentioning
confidence: 99%
“…The approximation results are listed as follows: With (8) and (9), position of the fingertip can be derived once resistance change of three position feedback modules is measured.…”
Section: ) Relationship Between Resistance and Joint Bending Anglementioning
confidence: 99%
“…The palm part of the hand was 3D printed with rigid material. A soft robotic hand proposed by Scharff et al had ten air chambers in total for actuation including the wrist's movement [8]. The specialty of this work was that the whole hand was totally 3D printed (selective laser sintering, in particular) with flexible materials.…”
Section: Introductionmentioning
confidence: 99%
“…In some processes, a bath of base material is irradiated with light, from which a component is formed by chemical reaction. These include selective laser sintering with powder [27] and stereolithography with liquid resin [28,29]. The remaining powder or resin can be reused after filtering out unintentionally reacted particles.…”
Section: Additive Production Processesmentioning
confidence: 99%