This paper presents a new method of microfluidic chip fabrication using 3D design and 3D printing techniques. The printed materials are flexible and inexpensive. The fabrication procedure is time-saving and less complex. The water leakage and hydrophilic test are performed to prove the advantages over traditional methods. The flow rates of the printed pump chip have been tested under varied applied pneumatic pressures and pumping frequencies. A maximal flow rate of 16.08 μL/min is achieved at the driving frequency of about 10 Hz at pressure of 30 psi. And a maximal flow rate of 38.60 μL/min is achieved at the driving frequency of about 10 Hz at pressure of 40 psi.IEEE
Thesis (Master's)--University of Washington, 2018Microfluidic devices are tools for manipulating flu...
The goal of this work was to design and implement a microfluidic mixer-based chemical reactor using ...
The emergence of three dimensional (3D) printing has excited euphoric responses from researchers and...
This paper presents a new method of microfluidic chip fabrication using 3D design and 3D printing te...
The purpose of this project is to produce a microfluidic device for mechanical cell lysis. Microflu...
While 3D printing is increasingly used in most fields of engineering, its utilization for microfluid...
While 3D printing is increasingly used in most fields of engineering, its utilization for microfluid...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
A pneumatically actuated PDMS based microfluidic devices were designed and fabricated by soft-lithog...
A pneumatically actuated PDMS based microfluidic devices were designed and fabricated by soft-lithog...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
This paper presents design, implementation, and evaluation of a 3D printed miniature peristaltic pum...
The combination of microfluidics and photo-polymerization techniques such as stereolithography (SLA)...
During the last two decades, 3D printing technology has emerged as a valid alternative for producing...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are tools for manipulating flu...
The goal of this work was to design and implement a microfluidic mixer-based chemical reactor using ...
The emergence of three dimensional (3D) printing has excited euphoric responses from researchers and...
This paper presents a new method of microfluidic chip fabrication using 3D design and 3D printing te...
The purpose of this project is to produce a microfluidic device for mechanical cell lysis. Microflu...
While 3D printing is increasingly used in most fields of engineering, its utilization for microfluid...
While 3D printing is increasingly used in most fields of engineering, its utilization for microfluid...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
A pneumatically actuated PDMS based microfluidic devices were designed and fabricated by soft-lithog...
A pneumatically actuated PDMS based microfluidic devices were designed and fabricated by soft-lithog...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
This paper presents design, implementation, and evaluation of a 3D printed miniature peristaltic pum...
The combination of microfluidics and photo-polymerization techniques such as stereolithography (SLA)...
During the last two decades, 3D printing technology has emerged as a valid alternative for producing...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are tools for manipulating flu...
The goal of this work was to design and implement a microfluidic mixer-based chemical reactor using ...
The emergence of three dimensional (3D) printing has excited euphoric responses from researchers and...