A low cost manufacturing method for creating polymer microfluidic devices with microfeatures that have near optical surface quality is described in this paper. The manufacturing method involves laser micromachining, partial hot embossing, and molding (LHEM) to create polymethylmethacrylate (PMMA) mold masters for device replication. A metallic hot intrusion mask with the desired microfeatures is first machined by laser and then used to produce the mold master by pressing the mask onto a PMMA substrate under applied heat and pressure. The resultant 3D micro-reliefs have near optical quality surface finishes. Design parameters such as the height and width of the extruded features are investigated in this study. The experimental results demons...
This paper deals with CO2 laser machining of a suitable amorphous polymer (PMMA) as a flexible techn...
The conventional fabrication methods for microfluidic devices require cleanroom processes that are c...
Microfluidics provides an opportunity to create low cost devices that can potentially contain many e...
Disposable microfluidic systems are used to avoid sample contamination in a variety of medical and e...
A method for rapid fabrication of mold masters for soft-molding of polydimethylsiloxane (PDMS) micro...
Lab-on-a-chip (LOC) and other microfluidic devices for medical applications need to be mass produced...
In this work we present a micro manufacturing platform for the production of polymeric microfluidic ...
In this work we present a micro manufacturing platform for the production of polymeric microfluidic ...
Microfluidic platform technology has presented a new strategy to detect and analyze analytes and bio...
A growing number of microsystem technology (MST) applications, particularly in the field of microflu...
A non-lithographic process of rapidly fabricating metallic micromold masters for the manufacture of ...
Laser engraving has considerable potential for the rapid and cost effective manufacturing of polymer...
The difficulty in translating conventional microfluidics from laboratory prototypes to commercial pr...
For four decades, microfluidics technology has been used in exciting, state-of-the-art applications....
CO2 laser machining represents a flexible technique for the rapid fabrication of miniaturized polyme...
This paper deals with CO2 laser machining of a suitable amorphous polymer (PMMA) as a flexible techn...
The conventional fabrication methods for microfluidic devices require cleanroom processes that are c...
Microfluidics provides an opportunity to create low cost devices that can potentially contain many e...
Disposable microfluidic systems are used to avoid sample contamination in a variety of medical and e...
A method for rapid fabrication of mold masters for soft-molding of polydimethylsiloxane (PDMS) micro...
Lab-on-a-chip (LOC) and other microfluidic devices for medical applications need to be mass produced...
In this work we present a micro manufacturing platform for the production of polymeric microfluidic ...
In this work we present a micro manufacturing platform for the production of polymeric microfluidic ...
Microfluidic platform technology has presented a new strategy to detect and analyze analytes and bio...
A growing number of microsystem technology (MST) applications, particularly in the field of microflu...
A non-lithographic process of rapidly fabricating metallic micromold masters for the manufacture of ...
Laser engraving has considerable potential for the rapid and cost effective manufacturing of polymer...
The difficulty in translating conventional microfluidics from laboratory prototypes to commercial pr...
For four decades, microfluidics technology has been used in exciting, state-of-the-art applications....
CO2 laser machining represents a flexible technique for the rapid fabrication of miniaturized polyme...
This paper deals with CO2 laser machining of a suitable amorphous polymer (PMMA) as a flexible techn...
The conventional fabrication methods for microfluidic devices require cleanroom processes that are c...
Microfluidics provides an opportunity to create low cost devices that can potentially contain many e...