JoVE Logo

S'identifier

Understanding the calculations and concepts related to double-collar bearings is essential for engineers and designers to optimize the performance of these components in various applications. By analyzing the bearing under different conditions, one can ensure that it can withstand the forces and moments experienced during operation. This knowledge enables better decision-making when designing and selecting bearings for specific purposes and configurations. Consider a double-collar bearing with specific dimensions and an axial force applied to it.

Figure 1

To find the maximum frictional moment that the double-collar bearing can withstand, the following expression can be used:

Equation 1

The maximum frictional moment can be calculated by rearranging the expression and substituting the values of the forces supported by both collars.

Consider a scenario where the applied axial force on the double-collar bearing increases. To determine the minimum torque needed to overcome the friction, first calculate the moment for both collars caused by the frictional forces using the frictional moment equations and substituting the values.

Equation 2

Equation 3

Next, equate the sum of moments about the z-axis to zero and substitute the known values. The required minimum torque to overcome the friction in the modified configuration can be evaluated.

Equation 4

Tags

BearingsDouble collar BearingsFrictional MomentAxial ForceTorque CalculationMoment AnalysisPerformance OptimizationEngineering DesignFrictional ForcesDecision making

Du chapitre 8:

article

Now Playing

8.17 : Bearings: Problem Solving

Friction

257 Vues

article

8.1 : Friction à sec

Friction

324 Vues

article

8.2 : Friction statique

Friction

694 Vues

article

8.3 : Friction cinétique

Friction

865 Vues

article

8.4 : Caractéristiques du frottement sec

Friction

442 Vues

article

8.5 : Types de problèmes de friction

Friction

493 Vues

article

8.6 : Friction : résolution de problèmes

Friction

185 Vues

article

8.7 : Coins

Friction

1.0K Vues

article

8.8 : Forces de frottement sur les vis

Friction

1.1K Vues

article

8.9 : Mouvement imminent vers le haut

Friction

228 Vues

article

8.10 : Vis autobloquante

Friction

1.4K Vues

article

8.11 : Vis : résolution de problèmes

Friction

379 Vues

article

8.12 : Forces de frottement sur les courroies plates

Friction

831 Vues

article

8.13 : Courroies plates : résolution de problèmes

Friction

316 Vues

article

8.14 : Roulements de pivot

Friction

1.1K Vues

See More

JoVE Logo

Confidentialité

Conditions d'utilisation

Politiques

Recherche

Enseignement

À PROPOS DE JoVE

Copyright © 2025 MyJoVE Corporation. Tous droits réservés.