Y. Yanawati, N. H. Baharudin
Decrease the thicknesses of steel sheets will increase the power factor of the 0.5 Hp induction motor. This paper presents the effect of thicknesses in power factor for non-oriented electrical steel sheets. The study was carried out by using Finite Element Method (FEM) software for both thicknesses. Based on the analysis, it shows that the thickness of 0.35 mm has increment of 4% for the power factor compared to 0.50 mm.
@article{440e306b-4f83-4a2a-b377-a3199ae59255,
title={Power Factor Performance on 0.35 Mm and 0.50 Mm Thicknesses of Steel Sheets for 0.5 Hp Induction Motor Using FEM Software},
author={Y. Yanawati and N. H. Baharudin},
year={2012},
language={en}
}TY - JOUR TI - Power Factor Performance on 0.35 Mm and 0.50 Mm Thicknesses of Steel Sheets for 0.5 Hp Induction Motor Using FEM Software AU - Y. Yanawati AU - N. H. Baharudin PY - 2012 LA - en ER -
Arthur C. Reardon
This publication, edited by Arthur C. Reardon and published by ASM International®, serves as a comprehensive guide in the field of materials science.
P Card, J Canterford
This document presents a collection of papers from the METPLANT 2011 conference focusing on metallurgical plant design and operating strategies. The o
R. H. PARKER
This second edition of 'An Introduction to Chemical Metallurgy' aims to enhance the understanding of metallurgical processes through a comprehensive o
Chiranjib Kumar Gupta
This book provides a comprehensive overview of the field of chemical metallurgy, addressing both common and less common metals. The objective of the v