Shigley's Mechanical Engineering Design (McGraw-Hill Series in Mechanical Engineering)
Shigley's Mechanical Engineering Design (McGraw-Hill Series in Mechanical Engineering)
10th Edition
ISBN: 9780073398204
Author: Richard G Budynas, Keith J Nisbett
Publisher: McGraw-Hill Education
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Chapter 7, Problem 39P
To determine

The dimensions for a 1.250in basic size close running fit.

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Estimate the life in hours of a 02-30 mm angular-contact ball bearing subjected to 20,000 revolutions per cycle. Each cycle consists of a radial load of 15 kN for 6 min, and then a change in load to 25.05 kN for 4 min. Determine the expected life of the bearing, in millions of revolutions, for each load, assuming the bearing has a C10 value of 20.3 kN.  The expected life of the bearing for 15 kN load is ___ × 106 revolutions.   The expected life of the bearing for 25.05 kN load is  ____× 106 revolutions.
Dynamic load number C = 40500 N, revolution n = 840 rpm and Fr = 4500 of 6309 single row fixed radial bearing carrying N load; (a) Check and interpret whether it is selected correctly for Lh=20000 hours. (b) Calculate the dynamic load number of the bearing when the load remains the same and the life is doubled.
In a particular application, the radial load acting on a ball bearing is 5 kN and the expected life for 90% of the hearings is 8000 Calculate the dynamic load carrying capacity of the bearing, when the shaft rotates at 1450 rpm.

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Shigley's Mechanical Engineering Design (McGraw-Hill Series in Mechanical Engineering)

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