Abolfazl Hosseinpour

Abolfazl Hosseinpour
University of North Carolina at Charlotte | UNC Charlotte · Department of Mechanical Engineering and Engineering Science

PhD

About

5
Publications
1,699
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172
Citations
Additional affiliations
July 2018 - present
University of North Carolina at Charlotte
Position
  • Research Assistant
Description
  • Gear metrology specifically on the development of a fast optical measurement of involute helical gears and an effective areal evaluation of measured data

Publications

Publications (5)
Conference Paper
Full-text available
Precision gears are widely used in automotive industry and wind energy applications. Gears play a major role in the quality of transmission systems in terms of generated noise, vibration, transmission capacity, lifetime, and weight. Manufacturing precision gears requires precision metrology to control the gear geometry in size and shape. So far, th...
Article
Full-text available
vibration modeling of carbon nanotubes comes with nonlinear equations which are difficult to solve exactly and analytically with any existing general analytical method. However, in many cases of developing symbolic solutions for the nonlinear equations, recourse is made to approximate analytical methods in which their accuracies largely depend on t...
Article
Due to the rapid development of process manufacturing, composite materials with graphene-reinforcement have obtained commercially notices in promoted engineering applications. For this regard, vibrational characteristics of a cylindrical nanoshell reinforced by graphene nanoplatelets (GPL) and coupled with piezoelectric actuator (PIAC) is investiga...
Conference Paper
Full-text available
Magnetic gearing is an emerging approach to avoid contact failures from the gear teeth interface of mechanical gearboxes through a non-contact torque transmission concept. In this concept, magnetic flux between the inner and outer rotors is modulated through an array of magnetic pieces called the cage rotor. Despite the non-contact nature of magnet...
Article
Full-text available
In this research, the topology and shape optimization of a MacPherson control arm has been accomplished to achieve lighter weight. Present automotive market demands low cost and light weight component to meet the need of fuel efficient and cost effective vehicle. This in turn gives the rise to more effective use of materials for automotive parts wh...

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