A thin plate, of thickness 4 cm, subjected to tensile stress is modelled by two 2D-triangular elements as shown in Figure Q4. The two applied forces are F2y = -72.7 kN and F3y = -51.5 kN. The plate is made of steel, E = 210 GN/m² and has a Poissons ratio, v = 0.3. Calculate the x deflection of the 3rd node. Give your answer in mm. 4 3 F3y 40 cm 2 1 2 80 cm Fzy
A thin plate, of thickness 4 cm, subjected to tensile stress is modelled by two 2D-triangular elements as shown in Figure Q4. The two applied forces are F2y = -72.7 kN and F3y = -51.5 kN. The plate is made of steel, E = 210 GN/m² and has a Poissons ratio, v = 0.3. Calculate the x deflection of the 3rd node. Give your answer in mm. 4 3 F3y 40 cm 2 1 2 80 cm Fzy
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![A thin plate, of thickness 4 cm, subjected to tensile stress is modelled by
two 2D-triangular elements as shown in Figure Q4. The two applied
forces are F2y = -72.7 kN and F3y = -51.5 kN. The plate is made of steel,
E = 210 GN/m² and has a Poissons ratio, v = 0.3. Calculate the x
deflection of the 3rd node. Give your answer in mm.
4
3
F3y
40 cm
2
1
2
80 cm
Fzy](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1cce7720-ec23-43e9-aa83-41bad0fe27f6%2F5b360252-9c5c-4b42-8616-cfec02724e45%2Fmk290wu_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A thin plate, of thickness 4 cm, subjected to tensile stress is modelled by
two 2D-triangular elements as shown in Figure Q4. The two applied
forces are F2y = -72.7 kN and F3y = -51.5 kN. The plate is made of steel,
E = 210 GN/m² and has a Poissons ratio, v = 0.3. Calculate the x
deflection of the 3rd node. Give your answer in mm.
4
3
F3y
40 cm
2
1
2
80 cm
Fzy
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