Internal Geometry Optimization of Angular Contact Ball Bearings

Journal Title: Machine Design - Year 2017, Vol 9, Issue 4

Abstract

Globally is known that cutting machine tools are challenged with increasing the performances as well as productivity, accuracy, product quality. All of these challenges are depend of various criteria, as is spindle set stiffness. Behavior of this assembly beside the main spindle, is very affected by ball bearing characteristic, as are ball bearing stiffness and dynamic capacity. Consequences of insufficient these two characteristic are not only inaccurate parts, but as well decreasing estimated lifetime of rolling bearings and vibration problem. Agricultural engineering involves a wide range of machines, equipment and implements. This ranges from tillage machines, tractors, tedders and balers to powerful harvesting equipment such as forage harvesters or combine harvesters. Even if the machines are very different, the operating conditions are always harsh. For the past several decades, significant efforts have been devoted to modeling and analysis of rolling-element bearings to aid in their design and application. [1] Commercial computational software with ability in field of finite element analysis and optimization has been used in order to obtain analysis how radius value of inner and outer groove affects to ball bearing behavior. Results from numerical study demonstrate that variation of both groove radius and their ratio has considerable effect to stiffness and dynamic capacity. Therefore, optimizing the values of groove radius can improve rolling bearing behavior.

Authors and Affiliations

Miloš Miloš, Aleksandar ŽIVKOVIĆ, Milan ZELJKOVIĆ, Dejan Lukić, Cvijetin MLAĐENOVIĆ

Keywords

Related Articles

Selection of Optimal Concept Solution for Preventing Wrong Fuel Using in Cars

Manufacturers have still not found an adequate solution to prevent misfueling, nor have they found a solution to prevent damage. Car manufacturers offer a very large number of technological innovations in cars, but they...

Contact Stresses and Deformations in Thrust Ball Bearing

The aim of this paper is to determine deformations and stresses in the statically loaded thrust ball bearing subjected to a centric external axial load. In this case, all balls in the bearing are equally engaged in the t...

The Conceptual Design of a Mobile Hydraulic Platform

The subject of this paper is the definition of the conceptual design of a mobile hydraulic platform. The hydraulic platform is a self-propelled machine that allows access to less accessible places, sensitive surfaces and...

Resistance of Screen-Printed PVC Foils to External Influence

The goal of this study was to examine the resistance of manually screen-printed PVC foils to external influences such as mechanical effect (colour rendering). Since this study includes an examination of transparent, self...

Spur Gear Design Streamlined

A design approach is presented that synthesizes spur gear design theory and practice into a coherent and systematic method. Simplification is achieved through reformulation of stress capacity models which is based on the...

Download PDF file
  • EP ID EP326930
  • DOI 10.24867/MD.9.2017.4.139-144
  • Views 106
  • Downloads 0

How To Cite

Miloš Miloš, Aleksandar ŽIVKOVIĆ, Milan ZELJKOVIĆ, Dejan Lukić, Cvijetin MLAĐENOVIĆ (2017). Internal Geometry Optimization of Angular Contact Ball Bearings. Machine Design, 9(4), 139-144. https://europub.co.uk./articles/-A-326930