Q3. A solid shaft was made of alloy steel, it was welded to a flat plate by a specific size of fillet weld. If a torque is applied to the shaft, calculate the size of the weld joint. Power (Kw) Torque (Nm) Ductility (%) Ultimate stress (Mpa) 640 Yield stress Shear stress (Mpa) 400 (Mpa) 160 Compression stress (Mpa) 280 1000 30

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Use the provided data wherever you need.
Q3. A solid shaft was made of alloy steel, it was welded to a flat plate by a
specific size of fillet weld. If a torque is applied to the shaft, calculate the size of
the weld joint.
Torque
Power
(Kw)
Ultimate
stress (Mpa)
Ductility (%)
(Nm)
Yield stress Shear stress Compression
(Mpa)
400
stress (Mpa)
(Mpa)
160
640
280
1000
30
Modulus of
Modulus of
Fracture stress Bending Stress
(Mpa)
(Mpa)
Elasticity
(GPa)
Bending Moment
(Nm)
Factor of Safety
Rigidity (Gpa)
220
250
70
280
120
4
Transcribed Image Text:Use the provided data wherever you need. Q3. A solid shaft was made of alloy steel, it was welded to a flat plate by a specific size of fillet weld. If a torque is applied to the shaft, calculate the size of the weld joint. Torque Power (Kw) Ultimate stress (Mpa) Ductility (%) (Nm) Yield stress Shear stress Compression (Mpa) 400 stress (Mpa) (Mpa) 160 640 280 1000 30 Modulus of Modulus of Fracture stress Bending Stress (Mpa) (Mpa) Elasticity (GPa) Bending Moment (Nm) Factor of Safety Rigidity (Gpa) 220 250 70 280 120 4
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