The same shaft, as in the previous question, is considered here again. Suppose that the shaft diameter is d=30 mm, and the keyway fillet radius is r-3 mm. What is the value of the static stress concentration factor (kt), based on the chart shown below? 4 3.75 Kt 3.5 3.25 C 2.75 2.5 2.25 2 0 0.02 0.04 Nominal stress... Torsion...= 16T nd³ 0.06 r/d d/4 d r 0.08 d/8 0.1 0.12

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Design analysis q7
The same shaft, as in the previous question, is considered here again. Suppose that
the shaft diameter is d=30 mm, and the keyway fillet radius is r-3 mm. What is the
value of the static stress concentration factor (kt), based on the chart shown below?
4
3.75
Kt
3.5
3.25
3
2.75
2.5
2.25
2
0
2.45
0.02
0.04
Nominal stress... Torsion...= 16T
nd³
0.06
r/d
d/4
d
r
0.08
d/8
0.1
0.12
Transcribed Image Text:The same shaft, as in the previous question, is considered here again. Suppose that the shaft diameter is d=30 mm, and the keyway fillet radius is r-3 mm. What is the value of the static stress concentration factor (kt), based on the chart shown below? 4 3.75 Kt 3.5 3.25 3 2.75 2.5 2.25 2 0 2.45 0.02 0.04 Nominal stress... Torsion...= 16T nd³ 0.06 r/d d/4 d r 0.08 d/8 0.1 0.12
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