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John P. Swensen

6 accepted papers

2020

Design of a Highly-Maneuverable Pneumatic Soft Actuator Driven by Intrinsic SMA Coils (PneuSMA Actuator)

IROS 2020poster

This paper presents the design of a new soft pneumatic actuator whose direction and magnitude of bending may be precisely controlled via activation of different shape memory alloy (SMA) springs within the actuator, in conjunction with pneumatic actuation. This design is inspired by examples seen in…

Cited by 7SourceScholar
2020

Resultant Radius of Curvature of Stylet-and-Tube Steerable Needles Based on the Mechanical Properties of the Soft Tissue, and the Needle

IROS 2020poster

Steerable needles have been widely researched in recent years, and they have multiple potential roles in the medical area. The flexibility and capability of avoiding obstacles allow the steerable needles to be applied in the biopsy, drug delivery and other medical applications that require a high de…

Cited by 0SourceScholar
2019

Configuration Modeling of a Soft Robotic Element with Selectable Bending Axes

IROS 2019poster

This paper presents an approach for modeling new soft robotic materials which possess the ability to control directional stiffness. These materials are inspired by biological systems where movements are enabled by variable stiffness tissue and contraction of localized muscle groups. Here a low-melti…

Cited by 0SourceScholar
2017

Compliant, bi-stable mechanisms with multiple stiffnesses through controlled spring buckling

ICRA 2017poster

The ability to change stiffness is a capability exhibited through the animal kingdom, with many recent advances in tunable stiffness in the area of robotics. In this paper, we propose a mechanism design that provides the ability to make modular subcomponents with tunable stiffness by creating a bi-s…

Cited by 0SourceScholar
2015

Design of mesoscale active cells for networked, compliant robotic structures

IROS 2015poster

We present the design of simple, centimeter-scale modular actuation units (“Active Cells”) and passive compliant nodes that are electromechanically networked to create macroscopically deformable Modular Active Cell-based Structures (MACROs). Each Active Cell is a single degree-of-freedom linear actu…

Cited by 7SourceScholar
2015

Injected 3D electrical traces in additive manufactured parts with low melting temperature metals

ICRA 2015poster

While techniques exist for the rapid prototyping of mechanical and electrical components separately, this paper describes a method where commercial Additive Manufacturing (AM) techniques can be used to concurrently construct the mechanical structure and electronic circuits in a robotic or mechatroni…

Cited by 13SourceScholar