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High Speed Tapered Roller Bearing Optimization

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Presentation on theme: "High Speed Tapered Roller Bearing Optimization"— Presentation transcript:

1 High Speed Tapered Roller Bearing Optimization
Brady Walker 3/11/08

2 Background The intent of this project is to determine the optimal cup, cone and rib angle for various speeds. Historically, tapered roller bearings have not been used for high speed applications however they have shown promise if designed properly.

3 Approach Determine Force Balance/Internal Loading
Determine Cage Speed & Centrifugal Loading Determine Contact Stress for line contact Determine Contact Stress for point contact Write program to analyze tapered bearing with varying geometry Results/Conclusion

4 Force Balance/Internal Loading

5 Cage Speed and Centrifugal Loading
Centrifugal Loading is derived from: Cage Speed is derived from:

6 Contact Stress for Line Contact

7 Contact Stress for Point Contact

8 Contact Stress for Point Contact
90-af D1/2 df/2 rII2 h af L2

9 FORTRAN CODE COMPLETE Program Output theta= 1.57079637050629
v= E-002 L2= d3a= phia= E-003 h= E-002 d3= Dmean= omega= Fc= Qi= Qo= Qf= rI1= rI2= rII2= rhoI E-002 rhoI E-002 rhoII E+000 rhoII E-002 rhosum E-002 Program Input ENTER CUP ANGLE (DEG) 15 d1= r= dm= lt= leff= z= ENTER SHAFT SPEED (RPM) 8000 speed= Thrust= Rx= Ry= astar= bstar= a= b= E-002 Qf= max sigma= delta= E-004 max subsurface shear= depth to max shear= E-002 Qimax Qomax=

10 Hertzian Contact Stress Profile for Rib- Roller End Contact
Results An example bearing was analyzed with the FORTRAN program and the Hertzian contact stress for the cup, cone and rib were determined: s (psi) _____ Cone Contact Stress _____ Cup Contact Stress x (in) y (in) s (psi) y (in) Hertzian Contact Stress Profile for Cup and Cone Hertzian Contact Stress Profile for Rib- Roller End Contact

11 Results Optimum cup angles were determined based on bearing speeds (DN). DN (million) Cup Angle (deg) 0.25 40 0.50 0.75 30 1.00 25 1.50 20 2.00 15 3.00 10


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