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Aerodynamically assisted jetting and threading for processing concentrated suspensions containing advanced

Sumathy Arumuganathar1, Nicolai Suter, Peter Walzel

  • 1BioPhysics Group, Department of Mechanical Engineering, University College London, London, UK.

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|November 29, 2008
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Summary

Material sciences integrate physical and life sciences, focusing on material structure and fabrication. This review explores an emerging fabrication approach with broad applications across scientific disciplines.

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Area of Science:

  • Materials science, bridging physical and life sciences.
  • Interdisciplinary research encompassing materials, processing, and structure.
  • Exploration of micro- to nanometre scale materials and biological structures.

Background:

  • Material science traditionally spans physical sciences but is increasingly integrated with life sciences.
  • Fabrication processes are crucial for linking material properties to their structures.
  • Processing innovations have significantly contributed to interdisciplinary scientific advancement.

Purpose of the Study:

  • To review a rapidly developing fabrication technique.
  • To highlight the technique's extensive applications in both physical and life sciences.
  • To underscore the role of fabrication in unifying diverse scientific fields.

Main Methods:

  • Literature review of emerging fabrication approaches.
  • Analysis of processing techniques and their impact on material structure.
  • Examination of applications across physical and biological sciences.

Main Results:

  • Identification of a key fabrication approach with wide-ranging utility.
  • Demonstration of fabrication's role in bridging material science and biological systems.
  • Highlighting the interdisciplinary nature of modern material science.

Conclusions:

  • Fabrication is a fundamental aspect of material science, connecting materials to their structures.
  • Emerging fabrication techniques offer novel solutions across physical and life sciences.
  • The integration of processing is key to advancing interdisciplinary scientific discovery.