Master'sOpen Access

Microfluidics chip desing and analysis

2020
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Advisor: Doç. Sezgin Ersoy ; Dr. Öğr. Üyesi İshak Ertuğrul

Abstract (EN)

Micro-Electro-Mechanical Systems (MEMS) is an electromechanical integrated system where the feature size and operating range of the components are on a micro scale. Unlike conventional mechanical processing, the production of the MEMS device uses semiconductor manufacturing, which includes surface microprocessing and batch microprocessing, which can be compatible with an integrated circuit. These devices or systems have the ability to detect, control, activate, and create macro scale effects. Microfluidics chips are systems that enable microliters and smaller volumes of fluids to be controlled and moved within micro-scale (one millionth of a meter) channels. (We can compare it to microfluidics chips on a macro scale, like pipes or plumbing in homes.) Microfluidics chips are small chip systems that are used to monitor, control and control the flow of liquids, as in macro-scale examples, but a millionth of a meter. These systems, microfluidic chip technology, have become very popular for analysis in areas such as biochemistry and bioengineering in recent years. Chemical reactors are found in all equipment involved in a chemical process, such as heat exchangers, separators and mixers. Recently, it has been increasing its popularity in subjects such as artificial organ production. At the same time, microfluidic technology will be found in almost every person in the upcoming processes, and these microfluidic chips are instantly controlled from the human body, such as pulse, blood flow, blood pressure, and transmitting data such as location and location to the required locations. The subject to be handled in this project is as follows, three different microfluidic chips are designed. Any three-dimensional drawing environment where microfluidic design will take place will be needed. Some programs that can be used here like Catia, PTC Creo, NX, Invertor and SolidWorks and derivatives. The design completed in any of these three-dimensional environments requires preliminary analysis and testing in a virtual physical environment. For test and trials need a program so, we helped a program for testing by Comsol Multiphysics to obtain and preview also evaluate the designed chips in pressure and velocity. After the original design, pressure and velocity tests were carried out depending on the material and time from micro channels by using a sample fluid model, which is similar to a modeling of the combinations in the laboratory environment, but with a very small nano- or micro-liter level. At the same time, the flow directions of the fluids in the inlet and outlet channels are observed according to the change of pressure.

Author

Dr. İsmet Ünallı

How to Cite

İsmet Ünallı (Master Thesis). Microfluidics chip desing and analysis, 2020, Marmara University.

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