Northwestern University researchers offer a 3D printing solution for fabricating porous fiber analogs with high dimensional accuracy. Built on micro-Continuous Liquid Interface Production (μCLIP) technology, the approach combines a native 4K UV light engine upgrade with a physics-based photopolymerization model that compensates for curing errors. The platform targets nonwoven material digital twins with pore volume distribution deviation of 5% or less, verified by micro-CT.
This solution addresses the challenge of producing porous fiber analogs that faithfully replicate digital twin designs. Built on micro-Continuous Liquid Interface Production (μCLIP), a continuous vat photopolymerization process, the approach delivers micron-scale resolution and high geometric fidelity for complex microstructures. By upgrading the UV light engine to native 4K resolution and applying a physics-based model that compensates for radical diffusion and curing-induced errors, the technology enables fabrication of nonwoven porous analogs with tight agreement to their digital models. Potential applications include nonwoven material research, filtration media development, tissue engineering scaffolds, and other fields requiring precise replication of porous architectures.
Key features:
The μCLIP platform has been developed and validated over the past decade, with demonstrated capability for micron-scale fabrication of complex architected materials. Prior results include successful production of spinodal lattice structures with excellent scalability and geometric fidelity. The proposed work advances the technology through a hardware upgrade to native 4K resolution and the development of a validated photopolymerization model with iterative CAD-based compensation. Validation will include calibration artifacts and porous fiber analogs, with quantitative micro-CT comparison of printed parts against their digital twins. The deliverable is a 1.5 × 1.5 × 0.5 cm nonwoven porous analog demonstrating 5% or less deviation in pore volume distribution.
Northwestern University is a comprehensive private research university with campuses in Evanston and downtown Chicago and a collaborative, cross‑disciplinary culture. Integration with a major hospital system enables clinical research, diverse patient access, and rapid translation from bench to bedside. Shared research cores, prototyping facilities, a campus incubator, and dedicated corporate engagement teams make it straightforward to scope projects, structure agreements, and place talent. Research is supported by competitive federal funding from agencies such as NIH, NSF, DOE, and DoD, complemented by foundation and industry partnerships. A dedicated technology transfer office advances IP strategy, licensing, and startup formation.