Namhun Kim
Ulsan National Institute of Science and Technology · Engineering
About the Lab
Professor Namhun Kim's research lab specializes in advanced manufacturing technologies, with a strong focus on additive manufacturing (3D/4D printing), smart materials integration, and intelligent process optimization. The lab explores innovative applications of shape memory polymers in multistable 4D-printed structures and develops decision-support systems for multi-objective scheduling in AM networks. It also investigates intelligent control strategies for multi-phase electric machines and quantifies manufacturing complexity in mixed-model assembly systems using information-theoretic approaches. The lab bridges materials science, manufacturing systems, and data-driven process control to enhance product quality, design freedom, and system efficiency.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Four-dimensional (4D) printing can add active and responsive functions to three-dimensional (3D) printed objects in response to various external stimuli. Light, among others, has a unique advantage of remotely controlling structural changes to obtain predesigned shapes. In this study, we demonstrate multicolor 4D printing of shape-memory polymers (SMPs). Using color-dependent selective light absorption and heating in multicolor SMP composites, we realize remote actuation with light illumination.
Additive manufacturing (AM) became widespread through several organizations due to its benefits in providing design freedom, inventory improvement, cost reduction, and supply chain design. Process planning in AM involving various AM technologies is also complicated and scarce. Thus, this study proposed a decision-support tool that integrates production and distribution planning in AM involving material extrusion (ME), stereolithography (SLA), and selective laser sintering (SLS). A multi-objectiv
Abstract 3D printing of smart materials, called “four‐dimensional” (4D) printing, adds active, responsive functions to 3D‐printed structures. Shape memory polymers (SMPs) can be employed as an active material in 4D printing, and this could be useful for a wide range of potential applications. New design for 4D printing is presented here by introducing SMPs into rotational multistable structures. Two different digital SMPs are employed to enable large‐angle, thermal actuation in a controlled mann
Three-dimensional (3D) printing is ideal for the fabrication of various customized 3D components with fine details and material-design complexities. However, most components fabricated so far have been static structures with fixed shapes and functions. Here we introduce bistability to 3D printing to realize highly-controlled, reconfigurable structures. Particularly, we demonstrate 3D printing of twisting and rotational bistable structures. To this end, we have introduced special joints to constr
Research Areas
Dive deeper into Namhun Kim's research on Nubint
Open this lab's papers in the app to read with AI, summarize, and cite in your writing.