Fiber Diameter Control

Fiber diameter control is the deliberate adjustment of a fiber’s thickness during fabrication, a key factor in determining its mechanical, structural, and transport properties. In bioengineering, electrospinning controls diameter by stretching a charged polymer solution into a jet, while parameters such as polymer concentration, flow rate, applied voltage, and collector distance influence jet thinning and solvent evaporation. Producing consistent diameters helps researchers tailor porosity, surface area, degradation, and cell interactions in fibrous materials. This control supports the design of tissue-engineering scaffolds, drug-delivery systems, filtration materials, and other biomimetic structures with reproducible performance.

Fiber Diameter Control - Related Videos

Research

JoVE Journal - Bioengineering

Composite Scaffolds of Interfacial Polyelectrolyte Fibers for Temporally Controlled Release of Biomolecules

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Cited by 3 •

2015

Scaffolds for tissue engineering need to recapitulate the complex biochemical and biophysical microenvironment of the cellular niche. Here, we show the use of interfacial polyelectrolyte complexation fibers as a platform to create composite, multi-component polymeric scaffolds with sustained biochemical release.

Microfluidic Dry-spinning and Characterization of Regenerated Silk Fibroin Fibers

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Cited by 6 •

2017

A protocol for the microfluidic spinning and microstructure characterization of regenerated silk fibroin monofilament is presented.

Extraction of Ramie Fiber in Alkali Hydrogen Peroxide System Supported by Controlled-release Alkali Source

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Cited by 6 •

2018

Presented here is a protocol for extraction of ramie fiber in alkali hydrogen peroxide system supported by controlled-release alkali source.

Education

JoVE Science Education - Engineering

Propeller Characterization: Variations in Pitch, Diameter, and Blade Number on Performance

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2023

Source: Shreyas Narsipur, Mechanical and Aerospace Engineering, North Carolina State University, Raleigh, NC A propeller is a twisted airfoil, where the angle of the chord changes with respect to the location, along the radial station, as shown in Figure 1. Propellers are widely used in aircraft and watercraft propulsion systems thereby necessitating detailed characterizations of propellers to design high performance vehicles. Figure 1. Chord, thickness, and pitch at a radial station. One of...

Fabricating Metamaterials Using the Fiber Drawing Method

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Cited by 23 •

2012

Metamaterials at terahertz frequencies offer unique opportunities, but are challenging to fabricate in bulk. We adapt the fabrication procedure for microstructured polymer optical fibers to inexpensively fabricate metamaterials potentially on an industrial scale. We produce polymethylmethacrylate fibers containing ~10 μm diameter indium wires separated by ~100 μm, which exhibit a terahertz plasmonic response.

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