This paper presents theoretical analysis, design, fabrication and test of a microfluidic device (‘Micro hydrocyclone’) for separation of micron and sub-micron size solid particles from liquid in a particle-liquid mixture. A theoretical analysis of the micro hydrocyclone is performed to understand the physics and develop suitable design models. The structure of the proposed device is designed based on Bradley model, as it offers lower cut-size thus making it suitable for microfluidics applications. The operational parameters are derived from the dimensional group model. The device is fabricated with SU-8 photoresist on PMMA substrate using a combination of photolithography and micro-milling. Experiments are performed to demonstrate particle-...
This thesis summarises work towards a Lab-on-Chip (LOC). The request for faster and more efficient c...
In recent years, microfluidic devices have been increasingly used to separate particles such as coll...
The progress made by microfabrication technologies has escalated the interest in particle manipulati...
Separation of micro-particles is important in various industries for example food processing, biolog...
Design and fabrication of a microfluidic circuit for the separation of micron sized particle
Recent advances in microfluidic technologies have created a demand for a simple and efficient separa...
Microfluidics is a new and emerging field that has applications in a myriad of microfluidic industri...
Microfluidic systems are widely used for applications in biology, medicine and chemistry. Particles ...
Based on the size of particles, a microfluidic chip integrating micro particles capture, controlled ...
This paper deals with (i) fabrication of microfluidic devices using living radical photo-polymerizat...
This thesis documents the design, manufacture and testing of a passive and non-invasive micro-scale ...
Separation micro-particles based on physical characteristics is important in numerous applications s...
Microfluidic platforms are increasingly being used for separating a wide variety of particles based ...
For the first time, a miniaturized hydrodynamic chromatography chip system has been developed and te...
Microfluidic systems show excellent promise for analytical applications, due to their ability to rap...
This thesis summarises work towards a Lab-on-Chip (LOC). The request for faster and more efficient c...
In recent years, microfluidic devices have been increasingly used to separate particles such as coll...
The progress made by microfabrication technologies has escalated the interest in particle manipulati...
Separation of micro-particles is important in various industries for example food processing, biolog...
Design and fabrication of a microfluidic circuit for the separation of micron sized particle
Recent advances in microfluidic technologies have created a demand for a simple and efficient separa...
Microfluidics is a new and emerging field that has applications in a myriad of microfluidic industri...
Microfluidic systems are widely used for applications in biology, medicine and chemistry. Particles ...
Based on the size of particles, a microfluidic chip integrating micro particles capture, controlled ...
This paper deals with (i) fabrication of microfluidic devices using living radical photo-polymerizat...
This thesis documents the design, manufacture and testing of a passive and non-invasive micro-scale ...
Separation micro-particles based on physical characteristics is important in numerous applications s...
Microfluidic platforms are increasingly being used for separating a wide variety of particles based ...
For the first time, a miniaturized hydrodynamic chromatography chip system has been developed and te...
Microfluidic systems show excellent promise for analytical applications, due to their ability to rap...
This thesis summarises work towards a Lab-on-Chip (LOC). The request for faster and more efficient c...
In recent years, microfluidic devices have been increasingly used to separate particles such as coll...
The progress made by microfabrication technologies has escalated the interest in particle manipulati...