A uniform thin-walled beam of constant wall thickness t has a cross- section in the shape of an isosceles triangle and is loaded with a cortical shear force Sy applies at the apex as shown in Figure 2. Assuming that the distribution of shear stress is according to the basic theory of bending, A) Calculate the distribution of shear flow over the cross-section as a function of Sy. 3 S, 52 2
A uniform thin-walled beam of constant wall thickness t has a cross- section in the shape of an isosceles triangle and is loaded with a cortical shear force Sy applies at the apex as shown in Figure 2. Assuming that the distribution of shear stress is according to the basic theory of bending, A) Calculate the distribution of shear flow over the cross-section as a function of Sy. 3 S, 52 2
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A uniform thin-walled beam of constant wall thickness t has a cross- section in
the shape of an isosceles triangle and is loaded with a cortical shear force Sy
applies at the apex as shown in Figure 2. Assuming that the distribution of shear
stress is according to the basic theory of bending,
A) Calculate the distribution of shear flow over the cross-section as a function of
Sy.
1
52
2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3c4f3954-ca55-4c44-a880-950b5dbabdd6%2Fe6771e2e-7d69-4ea1-b397-c1e248bf12d0%2Fvg3vkgj_processed.png&w=3840&q=75)
Transcribed Image Text:A uniform thin-walled beam of constant wall thickness t has a cross- section in
the shape of an isosceles triangle and is loaded with a cortical shear force Sy
applies at the apex as shown in Figure 2. Assuming that the distribution of shear
stress is according to the basic theory of bending,
A) Calculate the distribution of shear flow over the cross-section as a function of
Sy.
1
52
2
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