Audel Industrial Multi-Craft Mini-Ref by Thomas Bieber Davis(auth.)

By Thomas Bieber Davis(auth.)

Content material:
Chapter 1 Machining (pages 1–18):
Chapter 2 Metals (pages 19–23):
Chapter three upkeep and Rebuilding (pages 24–31):
Chapter four equipment Inspection and dimension (pages 32–58):
Chapter five Lubrication (pages 59–68):
Chapter 6 Bearings (pages 69–87):
Chapter 7 Shaft Alignment (pages 88–94):
Chapter eight V?Belt Drives (pages 95–112):
Chapter nine Mechanical Bushings (pages 113–117):
Chapter 10 electrical energy (pages 118–121):
Chapter eleven electrical automobiles (pages 122–137):
Chapter 12 Centrifugal Pumps (pages 138–154):
Chapter thirteen commercial enthusiasts (pages 155–173):
Chapter 14 Welding (pages 174–177):
Chapter 15 Miscellaneous info (pages 178–186):

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Extra resources for Audel Industrial Multi-Craft Mini-Ref

Sample text

A less than normal amount of force. Bearing life will be excellent. Spot check only if problems develop. Force levels are low. 15 in/sec A normal amount of force. Bearing life should correspond with manufacturer’s expectations. Spot check only if problems develop. Force levels are normal. The bearing life is decreased by 8 times. Pay attention. Attempt to troubleshoot to determine source of forces. 45 in/sec Triple the amount of force expected. The bearing life is decreased by 27 times. Take action.

Answer: 2 mils peak to peak. VIBRATION MEASUREMENT 47 ■ 4 mils Vibration #1 and Vibration #2 have the same displacement but different frequencies. Vibration #3 (shown next) has the same frequency as Vibration #1 but different displacement. Vibration #3 1 second What is the frequency of Vibration #3 graphed here in CPM? Count the cycles in 1 second and multiply by 60. CPM = CPS u 60 CPM = 8 cycles per second u 60 = 480 cycles per minute What is the displacement? Answer: 4 mils peak to peak. Vibration #2 and Vibration #3 are more severe than Vibration #1.

002 3,600 1,800 1,200 C. 001 VIBRATION VELOCITY – IN/SEC – PEAK 52 Conversely, if the frequency of the vibration increases but the displacement remains the same, this also results in a higher level of forces on the bearing. Look at the chart. There is a vibration of 1 mil with a frequency of 3600 CPM. It shows the same frequency as the first example but a different displacement. Again the vibration is in the “slightly rough” area. Bearing failure will again be expected prematurely. 00 UG RO UG H H RO UG H O D IN /SE 4 C.

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