Moonbase
← Back to Awards
robotics automation and controlNASA · NASANASA

Reversible Androgynous Mechanical Fastener

NASA Ames Research Center·2023·ACTIVE
Donate

INSTITUTION

NASA Ames Research Center

PRINCIPAL INVESTIGATOR

FUNDING

YEAR

2023

MOONBASE SCORE

0/100

LOADING MOONBASE SCORE

Abstract

The androgynous fastener is lightweight and facilitates assembly through simple actuation with large driver-positioning tolerance requirements. This fastener provides a high-strength, reversible mechanical connection and may be used in high strength-to-weight ratio structural systems, such as lattice structure systems. The androgynous fastener resists tensile and shear forces upon loading of the lattice structure system thereby ensuring that the struts of the lattice structure system govern the mechanical behavior of the system. The androgynous fastener eliminates building-block orientation requirements and allows assembly in all orthogonal build directions. This androgynous fastener may be captive in building-block structural elements thereby minimizing the logistical complexity of transporting additional fasteners. Integration of a plurality of the androgynous fasteners into a high performance, robotically managed, structural system reduces launch energy requirements, enables higher mission adaptivity and decreases system life-cycle costs. The androgynous fastener is beneficial in any application where robotic end effectors are used to join structural components (or other parts) together. It may be particularly desirable for applications requiring frequent movement of hardware to an assembly site to replace joint connections. Researchers at NASA Ames Research Center have developed an androgynous fastener with high misalignment tolerance characteristics, which is suitable for robotic actuation. This fastener was developed in conjunction with a high-performance building-block structural system that can be robotically assembled by robust collective automated assembly into large, reconfigurable structures ranging from assembly of lunar habitats to terrestrial structures. The fastener mechanisms employ alignment principles similar to the International Berthing and Docking Mechanism (IBDM) in order to relax the positioning requirements of the assembly robots. This novel androgynous fastener provides the desired performance required for robotic assembly of the structural systems and also minimizes or eliminates the problems and disadvantages associated with conventional or traditional fasteners.

robotics automation and controlstructural systemslattice structuresgenderlesscouplerrobotic assemblyfastenerreconfigurable structuresrotationally symmetric fastenermodular structuresandrogynouslattice building blockson-orbit assemblylattice structured systemsdiscrete building blocksconnectorautonomous robotic assemblyinter-block fastenerrobotic end effector engagement tolerancemodular roboticsgenderless connectionNASA Ames Research CenterReversible fastenermechanical connectionhigh strength-to-weight ratiomisalignment toleranceautomated assemblyInternational Berthing and Docking Mechanism

Are you the primary organization running this research?

The two tools below are built for the principal investigator & host institution behind this project.