Search NASA⌕ Search

NASA NTRS · 20130013470

Precise Truss Assembly using Commodity Parts and Low Precision Welding

Abstract

We describe an Intelligent Precision Jigging Robot (IPJR), which allows high precision assembly of commodity parts with low-precision bonding. We present preliminary experiments in 2D that are motivated by the problem of assembling a space telescope optical bench on orbit using inexpensive, stock hardware and low-precision welding. An IPJR is a robot that acts as the precise "jigging", holding parts of a local assembly site in place while an external low precision assembly agent cuts and welds members. The prototype presented in this paper allows an assembly agent (in this case, a human using only low precision tools), to assemble a 2D truss made of wooden dowels to a precision on the order of millimeters over a span on the order of meters. We report the challenges of designing the IPJR hardware and software, analyze the error in assembly, document the test results over several experiments including a large-scale ring structure, and describe future work to implement the IPJR in 3D and with micron precision.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Komendera, Erik, Reishus, Dustin, Dorsey, John T., Doggett, William R., Correll, Nikolaus. 2013-04-22. Precise Truss Assembly using Commodity Parts and Low Precision Welding. https://ntrs.nasa.gov/citations/20130013470

Cite the original work for its findings. Save a collection to share your selection of sources.