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Updated: Jan 13, 2026

Postproduction Processing of Electrospun Fibres for Tissue Engineering
Published on: August 9, 2012
ホウ素窒化物ナノチューブによるエレクトロスピニングシリカマイクロファイバーの機械的強化
Dingli Wang1, Nasim Anjum1, Zihan Liu1
1Department of Mechanical Engineering, State University of New York at Binghamton, Binghamton, NY 13902, USA.
Abstract:
We investigate the mechanical properties of electrospun boron nitride nanotube (BNNT)-reinforced silica nanocomposite microfibers. The incorporation of small amounts of BNNTs (0.1, 0.3, and 0.5 wt.%) into silica results in significant enhancements in the bulk mechanical performance, including up to a 26.4% increase in Young's modulus, a 19.4% increase in tensile strength, and a 12.8% increase in toughness. These improvements are attributed to the excellent nanotube alignment achieved via electrospinning and the effective transfer of interfacial loads at the BNNT-silica interface. Micromechanical analysis based on in situ Raman measurements reveals that the maximum interfacial shear stress in the electrospun BNNT-silica microfiber reaches about 341 MPa. This study provides new insights into the process-structure-property relationship and reinforcement mechanisms in nanotube-reinforced ceramic nanocomposites, thereby advancing the development of lightweight, strong, tough, and durable ceramic materials.
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