An aluminum hollow shaft 200 mm outside diameter, 100 mm inside diameter and 500 mm length from lathe chuck is to be face turned at end. Its end face is finished at rotational speed of 400 rpm using feed rate of 0.25 mm/rev. The side cutting edge angle or lead angle of the tool is 300. How much cutting time and maximum power is needed to finish the facing operation with 4 mm depth of cut. What is likely to be a perpendicularity error in this operation? Specific cutting energy = 0.025 W/ kN mm3 /min and E = 50

Precision Machining Technology (MindTap Course List)
2nd Edition
ISBN:9781285444543
Author:Peter J. Hoffman, Eric S. Hopewell, Brian Janes
Publisher:Peter J. Hoffman, Eric S. Hopewell, Brian Janes
Chapter5: Turning
Section5.3: Machining Operations On The Lathe
Problem 5RQ: Calculate spindle RPM and machining time for cutting a 1.5" diameter 4" long at 225 SFPM using a...
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An aluminum hollow shaft 200 mm outside diameter, 100 mm inside diameter and 500 mm length from lathe chuck is to be face turned at end. Its end face is finished at
rotational speed of 400 rpm using feed rate of 0.25 mm/rev. The side cutting edge angle or lead angle of the tool is 300. How much cutting time and maximum power is
needed to finish the facing operation with 4 mm depth of cut. What is likely to be a perpendicularity error in this operation? Specific cutting energy = 0.025
W/
kN
mm3
|min
and E = 50
mm2
Transcribed Image Text:An aluminum hollow shaft 200 mm outside diameter, 100 mm inside diameter and 500 mm length from lathe chuck is to be face turned at end. Its end face is finished at rotational speed of 400 rpm using feed rate of 0.25 mm/rev. The side cutting edge angle or lead angle of the tool is 300. How much cutting time and maximum power is needed to finish the facing operation with 4 mm depth of cut. What is likely to be a perpendicularity error in this operation? Specific cutting energy = 0.025 W/ kN mm3 |min and E = 50 mm2
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