Objectives
To maximize engine performance, the most important factor is to maintain engine temperature, such as:
- • Optimize engine temperature by using nanotechnology particles that have magnetic properties and higher thermal conductivity than any other material.
- • Heat conduction also affects engine performance; the better the heat distribution, the more engine power.
- • Circulation of cooling water.
Nano Structure
It is known that colloid material containing nanoparticles that have magnetic properties has higher thermal conductivity than any other material. Nanofluid is based on the principle that when a small amount of nanoparticles are injected into regular fluid, such as water or oil, the fluid gains much higher thermal conductivity. Theories on nanofluid have been proven through yearly research, and the application of nanofluid technology is increasing. In addition to cooling devices for electronic parts, nanofluid is widely used for high-efficiency heat exchange devices, such as heat exchange systems, refrigerators, and automobile engines.
Cluster
When the cluster of water particles is small, the area that contacts the engine increases, thus the speed of heat absorption increases, and the cooling efficiency of the engine improves. The action mechanism of Car-Vita is based on its role as a catalyst that induces complete combustion and optimizes engine cooling by activating ions in the coolant in the automobile and turning it into nanofluid.
Action Principle