Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for self-cleaning, anti-icing and/or condensation heat transfer applications where the durability of the coating is an issue. In this work, we fabricate two metallic non-wetting surfaces with varying number and size of the roughness tiers without further hydrophobic coating procedure. The wetting behaviour and the condensation performance is then addressed. On one hand, the surface resembling a rose petal exhibits a sticky non-wetting behaviour as drops wet the microscopic roughness features with the consequent enhanced drop adhesion. In turn, this stickiness leads to filmwise condensation. On the other hand, the surface resembling a lotus leaf p...
Engineering the dropwise condensation of water on surfaces is critical in a wide range of applicatio...
The scientific objective of the present thesis is to investigate dropwise condensation (DWC) over wa...
Modification of surfaces to enable dropwise condensation is a promising approach for achieving high ...
Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for ...
Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Micro/nano-structured superhydrophobic surfaces can enhance dropwise condensation via coalescence-i...
Water condensation is an ubiquitous phenomenon that happens widely in nature. It is also used in ind...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Superhydrophobic state on natural materials and synthesized surfaces has been exploited in a broad r...
Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging ...
Superhydrophobic surfaces represent a promising strategy to consistently promote dropwise condensati...
Droplet nucleation and condensation are ubiquitous phenomena in nature and industry. Over the past c...
This report examines the dropwise condensation heat transfer performance on additively manufactured ...
The manipulation of the water wetting properties of heat exchangers into dropwise condensation by th...
Engineering the dropwise condensation of water on surfaces is critical in a wide range of applicatio...
The scientific objective of the present thesis is to investigate dropwise condensation (DWC) over wa...
Modification of surfaces to enable dropwise condensation is a promising approach for achieving high ...
Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for ...
Non-wetting surfaces engineered from intrinsically hydrophilic metallic materials are promising for ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Micro/nano-structured superhydrophobic surfaces can enhance dropwise condensation via coalescence-i...
Water condensation is an ubiquitous phenomenon that happens widely in nature. It is also used in ind...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Superhydrophobic state on natural materials and synthesized surfaces has been exploited in a broad r...
Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging ...
Superhydrophobic surfaces represent a promising strategy to consistently promote dropwise condensati...
Droplet nucleation and condensation are ubiquitous phenomena in nature and industry. Over the past c...
This report examines the dropwise condensation heat transfer performance on additively manufactured ...
The manipulation of the water wetting properties of heat exchangers into dropwise condensation by th...
Engineering the dropwise condensation of water on surfaces is critical in a wide range of applicatio...
The scientific objective of the present thesis is to investigate dropwise condensation (DWC) over wa...
Modification of surfaces to enable dropwise condensation is a promising approach for achieving high ...