Dept. of Metallurgical & Material Engineering, Jadavpur University, Kolkata-700032, India
*Corresponding Author Email: cppartho@yahoo.co.in
Online published on 27 November, 2015.
As demand for electrical energy is rising and concern for environment is augmenting, the onus lies on generation of power at high voltage levels in a cost effective and eco-friendly manner. Against this backdrop, the article dwells upon the concept of generation of electric potential difference (PD) at higher levels by piezoelectric technique, wherein, the thermal stress created in one member (polypropylene cubic bar) develops mechanical stress in another member (piezoelectric cubic quartz bar), and the mechanical stress thus developed, is responsible for the generation of the PD. A proto type experimental set up is illustrated. The article is followed by suggestions and possible applications. The article distinctly concludes that a temperature increase (Tr) of 1K in one member may generate a PD of 11.754 kV in another member, subject to limitation of 235.08 kV for Tr of 20 K, which are substantial for real life applications. The article is just a humble attempt from the academic point of view.
Piezoelectricity, Polypropylene-quartz combination, Thermal stress, Mechanical stress, Young's modulus, Voltage sensitivity