Problem Statement Based on Problem 5-87 from the textbook. Both pulleys are fixed to the shaft and as the shaft turns with constant angular velocity, the power of pulley A is tramsitted to pulley B. Determine the horizontal tension T in the belt on pulley B and the x, y, z components of reaciotn at the journal bearing C and thrust bearing D. The bearings are in proper alignment and exrt only force reactions on the shaft. 300 mm 250 mm 200 mm F₁ F₂ 80 mm A D -150 mm F3
Problem Statement Based on Problem 5-87 from the textbook. Both pulleys are fixed to the shaft and as the shaft turns with constant angular velocity, the power of pulley A is tramsitted to pulley B. Determine the horizontal tension T in the belt on pulley B and the x, y, z components of reaciotn at the journal bearing C and thrust bearing D. The bearings are in proper alignment and exrt only force reactions on the shaft. 300 mm 250 mm 200 mm F₁ F₂ 80 mm A D -150 mm F3
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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F1: 55 N, F2: 90 N, F3: 50 N, Theta: 47 degrees

Transcribed Image Text:Problem Statement
Based on Problem 5-87 from the textbook.
Both pulleys are fixed to the shaft and as the
shaft turns with constant angular velocity,
the power of pulley A is tramsitted to pulley
B. Determine the horizontal tension T in the
belt on pulley B and the x, y, z components
of reaciotn at the journal bearing C and
thrust bearing D. The bearings are in proper
alignment and exrt only force reactions on
the shaft.
300 mm
250 mm.
200 mm
80 mm
A
D
-150 mm
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