A Multi-Component Automated Laser-Origami System for Cyber-Manufacturing

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Abstract

Cyber-manufacturing systems can be enhanced by an integrated network architecture that is easily configurable, reliable, and scalable. We consider a cyber-physical system for use in an origami-type laser-based custom manufacturing machine employing folding and cutting of sheet material to manufacture 3D objects. We have developed such a system for use in a laser-based autonomous custom manufacturing machine equipped with real-time sensing and control. The basic elements in the architecture are built around the laser processing machine. They include a sensing system to estimate the state of the workpiece, a control system determining control inputs for a laser system based on the estimated data and user's job requests, a robotic arm manipulating the workpiece in the work space, and middleware, named Etherware, supporting the communication among the systems. We demonstrate automated 3D laser cutting and bending to fabricate a 3D product as an experimental result.

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Ko, W. H., Srinivasa, A., & Kumar, P. R. (2017). A Multi-Component Automated Laser-Origami System for Cyber-Manufacturing. In IOP Conference Series: Materials Science and Engineering (Vol. 272). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/272/1/012013

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