Task 2 A force is applied in the beam shown in Figure 2. The beam is made of wood (E= 12.5 GPa, G=13 GPa, v = 0.43 (longitudinal)). An N load is acting downward, where n is the last three digits of your UWE ID number (for instance, for student 14020174, n is 174). Find the displacement at the head of beam (point of applied load) and as well as maximum stress in beam in two different cases: a=15 cm a=30 cm

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter9: Deflections Of Beams
Section: Chapter Questions
Problem 9.5.32P: The compound beam shown in the figure consists of a cantilever beam AB (length L) that is...
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the theoritcal part. consider the load N as 495 Newtons. take a 15 only for cross section. find the deflection for it analytically.
Task 2
A force is applied in the beam shown in Figure 2. The beam is made of wood (E= 12.5 GPa,
G=13 GPa, v = 0.43 (longitudinal)). A n N load is acting downward, where n is the last three
digits of your UWE ID number (for instance, for student 14020174, n is 174). Find the
displacement at the head of beam (point of applied load) and as well as maximum stress in
beam in two different cases:
a=15 cm
a=30 cm
You will model and analyse the beam in the ANSYS environment. Write a brief report
discussing the results and the effect of cross section on stress concentration in the corners at
the end of beam.
N
Corner
Fixed end
2a
Corner
150 cm
Figure 2
Transcribed Image Text:Task 2 A force is applied in the beam shown in Figure 2. The beam is made of wood (E= 12.5 GPa, G=13 GPa, v = 0.43 (longitudinal)). A n N load is acting downward, where n is the last three digits of your UWE ID number (for instance, for student 14020174, n is 174). Find the displacement at the head of beam (point of applied load) and as well as maximum stress in beam in two different cases: a=15 cm a=30 cm You will model and analyse the beam in the ANSYS environment. Write a brief report discussing the results and the effect of cross section on stress concentration in the corners at the end of beam. N Corner Fixed end 2a Corner 150 cm Figure 2
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