MRS Meetings and Events

 

EN07.05.06 2024 MRS Spring Meeting

Precision Microengineering of Curved Metallic Heat Transfer Surfaces for Fouling Inhibition

When and Where

Apr 23, 2024
5:00pm - 7:00pm

Flex Hall C, Level 2, Summit

Presenter

Co-Author(s)

Tobias Armstrong1,Liyang Chen1,Julian Schmid1,Thomas Schutzius1,2

ETH Zurich1,University of California, Berkeley2

Abstract

Tobias Armstrong1,Liyang Chen1,Julian Schmid1,Thomas Schutzius1,2

ETH Zurich1,University of California, Berkeley2
Crystallization fouling, an undesirable process where scale forms on surfaces, is pervasive in nature and technology, negatively impacting the energy and water industries. Work has progressed towards realizing surfaces with intrinsic antifouling properties, however, realizing precise, defect-free topography over large areas with complex curvature remains challenging. In this work, we successfully developed a technique allowing us to impart precise surface microstructure array patterns onto metallic heat transfer surfaces with isotropic and anisotropic curvatures. The patterning on curved surfaces is realized by four steps: photoresist microstructure generation on planar substrates; structure transfer to curved metallic surfaces under heat and pressure; metal deposition by electroplating/electroless plating; photoresist removal. We conducted preliminary tests on the heat transfer performance of copper substrates with and without micropatterns in heat-exchanger-like conditions and the results show that the surface micropatterns can effectively modify the heat transfer coefficient of the metallic substrate and the structures possess good tolerance to fluidic friction. Durable curved (super)hydrophobic metallic surfaces can be realized with such stable microstructures, which are promising to mitigate fouling issues and energy loss by inhibiting the onset of nucleation and reducing the adhesion of limescale crystallites.

Keywords

interface | metal | microstructure

Symposium Organizers

Woochul Kim, Yonsei University
Sheng Shen, Carnegie Mellon University
Sunmi Shin, National University of Singapore
Sebastian Volz, The University of Tokyo

Session Chairs

Woochul Kim
Sunmi Shin

In this Session

EN07.05.01
Thermal Conductance of Buried AlN Interfaces Measured by Dual-Frequency Time-Domain Thermoreflectance

EN07.05.03
Decoupling Electronic and Thermal Transport in Spinel Oxide

EN07.05.04
Temperature Dependent Electron Emission in Focused Ion Beam Microscopes

EN07.05.06
Precision Microengineering of Curved Metallic Heat Transfer Surfaces for Fouling Inhibition

EN07.05.07
Understanding Phonon Mediated Lattice Thermal Conductivity in Magnetic Trihalides

EN07.05.08
Synergetic Effect of Radiative Cooling and Thermal Energy Storage for Advanced Thermal Management

EN07.05.09
Temperature-Dependent Optical Properties of Monocrystalline CaF2, BaF2, and MgF2

EN07.05.10
Transient Active Cooling of Microscale Hot Spots Using Thermoelectric Devices

EN07.05.11
Improved Durability Nanotextured Aluminum Surfaces for Jumping Droplet Thermal Rectification

EN07.05.12
Effect of Fluorination on The Thermal Conductivity of Graphite Fluoride (CF)

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