The internal shear force V at a certain section of an aluminum beam is 6.9 kN. If the beam has the cross section shown (assume a=29 mm, b-72 mm, tw-t-5 mm, d=82 mm), determine: (a) the shear stress that point H, which is located 29 mm above the bottom surface of the tee shape. (b) the maximum horizontal shear stress Tmax in the tee shape. bf MPa. H a Answers: (a)th = (b) Tmax kw i i MPa.

Structural Analysis
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Chapter2: Loads On Structures
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Give the following problem a try. If you get stuck, here is one way to work it: Essential Solution Video.
The internal shear force V at a certain section of an aluminum beam is 6.9 kN. If the beam has the cross
section shown (assume a=29 mm, b=72 mm, tw-t-5 mm, d=82 mm), determine:
(a) the shear stress that point H, which is located 29 mm above the bottom surface of the tee shape.
(b) the maximum horizontal shear stress Tmax in the tee shape.
bf
MPa.
H
Answers:
(a)th =
(b) Tmax=
kw
i
i
MPa.
Transcribed Image Text:Give the following problem a try. If you get stuck, here is one way to work it: Essential Solution Video. The internal shear force V at a certain section of an aluminum beam is 6.9 kN. If the beam has the cross section shown (assume a=29 mm, b=72 mm, tw-t-5 mm, d=82 mm), determine: (a) the shear stress that point H, which is located 29 mm above the bottom surface of the tee shape. (b) the maximum horizontal shear stress Tmax in the tee shape. bf MPa. H Answers: (a)th = (b) Tmax= kw i i MPa.
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