This work shows a suggestion to solve that problematic by sensors that were based in nanostructures, due to their robustness, short response time can help in extreme conditions that traditional sensors cannot get. This is depicted in Figure 8b, due to reduced consumed power from AMB, because of nanostructure effect over mechatronic systems. According to help visual explanation, Figure 8c shows a shaft setup for position of magnets (hybrid between passive magnet with electro-magnet) around it, from which electrical current can increase its temperature without a controlled model that was based in nanostructures, as it is proposed in this research.
Discussion and conclusions
It was verified the good effect to use position sensors that were based in nanostructures, because of the wide range of work, robustness and fast response time as a consequence of nanosystems integrated in macro systems: the mechatronic systems. By other side, it was evaluated that AMB systems can enhance by better way their performance, when it is analyzed strategies to evacuate the heat that was not produced, because of friction among the rotor and bearings. In other words, the heat that was produced, because of the source of energy, which provides to the electromagnet actuators. Additionally, it is suggested to evaluate models that were proposed in this work with particular cases, such as M3 (from figures 2 and 3 that were described above) could be a turbine, so it is suggested to analyze its dynamic, energetic and thermodynamic behavior as a consequence of nanostructures integration, as it is proposed in this research.
The author of this work expresses deep warm grateful to Mrs. Aleksandra Ulianova de Calderón for all her motivation and support in the development of this article and for the provided respective photos. Also, it is expressed thanks to Mr. Gonzalo Solano M. and Mr. Bruno Miranda Q., because of their support in simulation and experimental tests. Finally, it is expressed thanks to FONCAI team from PUCP, researchers from Energy Laboratory PUCP, and Director of Mechatronic Master program PUCP, owing to the financial support.
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