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All Outputs (3)

Failure modes of CF-PEEK overmoulded onto unidirectionally reinforced CF-LM-PAEK: Multi-scale pull-off testing and microscopy investigation of rib stiffened geometries (2025)
Journal Article
Parsons, A. J., Molinar-Díaz, J., Koptelov, A., Darby, W., Hooshmand, H., Hernandez Ledezma, F. U., Thomsen, O. T., Belnoue, J. P., & Harper, L. T. (2025). Failure modes of CF-PEEK overmoulded onto unidirectionally reinforced CF-LM-PAEK: Multi-scale pull-off testing and microscopy investigation of rib stiffened geometries. Composites Part B: Engineering, 305, Article 112700. https://doi.org/10.1016/j.compositesb.2025.112700

Overmoulding is a manufacturing technique used to create structural composite components with complex shapes, combining regions of continuous and short fibre reinforcement. It is possible to produce structural parts at high rates, whilst minimising m... Read More about Failure modes of CF-PEEK overmoulded onto unidirectionally reinforced CF-LM-PAEK: Multi-scale pull-off testing and microscopy investigation of rib stiffened geometries.

Framework for uncertainty evaluation in optical surface topography measurement using a virtual instrument (2025)
Journal Article
Hooshmand, H., Pappas, A., Isa, M. A., Su, R., Haitjema, H., Piano, S., & Leach, R. (2025). Framework for uncertainty evaluation in optical surface topography measurement using a virtual instrument. Measurement, 253(Part D), Article 117604. https://doi.org/10.1016/j.measurement.2025.117604

Uncertainty evaluation in the measurement of surfaces with complex topography using optical techniques remains a challenge due to the complex interaction between light and the surfaces. The ISO 25178 part 600 specification standard simplifies uncerta... Read More about Framework for uncertainty evaluation in optical surface topography measurement using a virtual instrument.

On‐Demand Sintering of Gold Nanoparticles via Controlled Removal of o‐Nitrobenzyl Thiol Ligands Under Record‐Low Power for Conductive Patterns (2025)
Journal Article
Im, J., Heaton, C., Putri, N. R. E., Liu, C., Usuba, J., Butler, K., Fay, M., Han, G. G. D., Hooshmand, H., Thompson, A., Wildman, R., Hague, R., Turyanska, L., & Tuck, C. (2025). On‐Demand Sintering of Gold Nanoparticles via Controlled Removal of o‐Nitrobenzyl Thiol Ligands Under Record‐Low Power for Conductive Patterns. Advanced Science, 12(12), Article 2415496. https://doi.org/10.1002/advs.202415496

Metal nanoparticles-based nanoinks have shown potential for fabricating metallic components essential to the realization of innovative 3D-printed electronic devices. However, fabricating metallic patterns on flexible, heat-sensitive substrates remain... Read More about On‐Demand Sintering of Gold Nanoparticles via Controlled Removal of o‐Nitrobenzyl Thiol Ligands Under Record‐Low Power for Conductive Patterns.