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Professor ADAM CLARE's Outputs (4)

Anisotropic Icephobic Mechanisms of Textured Surface: Barrier or Accelerator? (2024)
Journal Article
Yang, D., Zheng, Y., Li, J., Clare, A. T., Choi, K.-S., & Hou, X. (2024). Anisotropic Icephobic Mechanisms of Textured Surface: Barrier or Accelerator?. ACS Applied Materials and Interfaces, 16(27), 35852-35863. https://doi.org/10.1021/acsami.4c08004

Icing has been seen as an economic and safety hazard due to its threats to aviation, power generation, offshore platforms, etc., where passive icephobic surfaces with a surface texturing design have the potential to address this problem. However, the... Read More about Anisotropic Icephobic Mechanisms of Textured Surface: Barrier or Accelerator?.

Driving next generation manufacturing through advanced metals characterisation capability (2024)
Journal Article
Clare, A., Seita, M., Speidel, A., Collins, P., & Clark, M. (2024). Driving next generation manufacturing through advanced metals characterisation capability. Scripta Materialia, 246, Article 116009. https://doi.org/10.1016/j.scriptamat.2024.116009

Understanding the effects of manufacturing methods upon materials has driven constant innovation for over 300 years. While our ability to fabricate metallurgical wonders extends into the annals of history our ability to understand the scientific prin... Read More about Driving next generation manufacturing through advanced metals characterisation capability.

Microstructural evolution in laser melted boron alloyed Ti-6Al-4V (2024)
Journal Article
Hizli, H., Zou, Z., Murray, J., Clare, A., & Simonelli, M. (2024). Microstructural evolution in laser melted boron alloyed Ti-6Al-4V. Journal of Alloys and Compounds, 981, Article 173762

Grain refinement in cast titanium alloys has been demonstrated through the addition of boron (B) in hypoeutectic concentration. However, there is still a poor understanding of how effective B is towards microstructural refinement under rapid solidifi... Read More about Microstructural evolution in laser melted boron alloyed Ti-6Al-4V.

Phase change surfaces with porous metallic structures for long-term anti/de-icing application (2024)
Journal Article
Yang, D., Bao, R., Clare, A. T., Choi, K.-S., & Hou, X. (2024). Phase change surfaces with porous metallic structures for long-term anti/de-icing application. Journal of Colloid and Interface Science, 660, 136-146. https://doi.org/10.1016/j.jcis.2024.01.091

Hypothesis
Ice mitigation has received increasing attention due to the severe safety and economic threats of icing hazards to modern industries. Slippery icephobic surface is a potential ice mitigation approach due to its ultra-low ice adhesion stre... Read More about Phase change surfaces with porous metallic structures for long-term anti/de-icing application.