17.6 A solid steel shaft 3 in. in diameter and 4 ft long is fixed at one end and free at the other, as shown. The shaft is subjected to an axial tensile load of 50,000 lb. Compute the magnitude of the force P at the free end necessary to reduce the stress at point B to zero. Then compute the maximum combined stress at point A. atluen 50,000 lb P at pints Land N. Also, compare will A MT.BGMU8 4'-0" В KIMUN
17.6 A solid steel shaft 3 in. in diameter and 4 ft long is fixed at one end and free at the other, as shown. The shaft is subjected to an axial tensile load of 50,000 lb. Compute the magnitude of the force P at the free end necessary to reduce the stress at point B to zero. Then compute the maximum combined stress at point A. atluen 50,000 lb P at pints Land N. Also, compare will A MT.BGMU8 4'-0" В KIMUN
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:17.6 A solid steel shaft 3 in. in diameter and 4 ft long is fixed at
one end and free at the other, as shown. The shaft is subjected
to an axial tensile load of 50,000 lb. Compute the magnitude
of the force P at the free end necessary to reduce the stress
at point B to zero. Then compute the maximum combined
stress at point A.
10.00
50,000 lb
PROBLEM 17.6
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