Title :
Piezo inkjet drop-on-demand experimentation platform manufactured with rapid prototyping techniques enabling future technologies
Author :
Kagerer, Markus ; Eiler, K.L. ; Ottnad, T. ; Irlinger, Franz ; Lueth, Tim C.
Author_Institution :
Inst. of Micro Technol. & Med. Device Technol., Tech. Univ. Munchen, München, Germany
Abstract :
A novel experimentation platform, which is based on a piezoelectrically driven inkjet printhead and on a support plate, is presented. A huge number of fluids has to be ejected due to the large variety of possible applications for inkjet printheads. Each fluid with its special characteristics usually requires a redesign of the printhead to be able to be ejected. This inkjet printhead is manufactured in a batch process with rapid prototyping techniques in order to be able to be adapted to new boundary conditions in a time saving manner. The manufacturing time only amounts less than 30 minutes. The inkjet printhead is inserted into a support plate. Here, it is electrically as well as fluidically connected without any soldering or gluing processes. Heating elements, temperature as well as pressure sensors, and a fluid reservoir are integrated. The reproducibility of experiments is thereby given. Furthermore, printing fluids with solid-liquid phase transition is possible. The inkjet printhead can be changed within only one minute.
Keywords :
heating elements; ink jet printing; phase transformations; piezoelectric devices; pressure sensors; rapid prototyping (industrial); solid-liquid transformations; batch process manufacturing; electrical connection; experiments reproducibility; fluid reservoir; fluidic connection; future technologies; heating elements; manufacturing time; piezoelectrically driven inkjet printhead; piezoinkjet drop-on-demand experimentation platform; pressure sensors; printhead redesign; printing fluids; rapid prototyping techniques; solid-liquid phase transition;
Conference_Titel :
Robotics and Biomimetics (ROBIO), 2012 IEEE International Conference on
Conference_Location :
Guangzhou
Print_ISBN :
978-1-4673-2125-9
DOI :
10.1109/ROBIO.2012.6491140