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Lecture 12 – Review for Exam 1
Instructor: Prof. Marcial Gonzalez
Spring, 2020ME 323 – Mechanics of Materials
Reading assignment: HW1-HW3
News: Ready for the exam?
Exam 1- Wednesday February 12th , 8:00-10:00 p.m., room LYNN 1136
(please arrive 15 minutes before the exam and bring a picture ID)
- Formula sheet will be provided (already uploaded to Blackboard)
- Those of you who require extra accommodation please inform me before Friday 7th, 9:30 a.m.
- Start working on the lecture book!
Announcements
2
https://www.purdue.edu/freeform/me323/
3
Summary of topics
- State of stress vs. state of strain (generalized Hooke’s law)
- Bolted and pinned joints.
- Axial deformations (statically indeterminate problems)
- Thermal loads
- Torsional deformations (statically indeterminate problems)
- Truss structures (statically indeterminate problems)
- Lectures 1–10 (shear force/bending moment diagrams NOT included)
Review
6
Direct shear: Bolted joint & Pinned joint
Shear stress and strain
Average shear stress: Average shear stress:
7
Axial deformation (summary)- Geometry of the solid body: straight, slender member with cross section that
is either constant or that changes slowly along the length of the member.- Kinematic assumptions: cross sections, which are plane and are perpendicular
to the axis before deformation, remain plane and remain perpendicular to the axis after deformation. In addition, cross sections do not rotate about the axis.
- Material behavior: isotropic linear elastic material; small deformations.
- Equilibrium:
Axial deformation
Strain:
Elongation:
Homogeneous:
Homogeneous:
Homogeneous, constant cross section, no body forces, thermal load:
Homogeneous, loaded with body forces:
8
Torsional deformation (summary)- Geometry of the solid body: straight, slender member with circular cross
section that changes slowly along the length of the member.- Kinematic assumptions: the axis remains straight and inextensible. Cross
sections, which are plane and are perpendicular to the axis before deformation, remain plane and perpendicular after deformation. Radial lines remain straight and radial as the cross section rotates about the axis
- Material behavior: isotropic linear elastic material; small deformations.
- Equilibrium: (torque-twist equation)
Torsion
Shear strain
Total angleof rotation
Homogeneous:
Homogeneous:
Homogeneous, constant cross section:
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9
Axial deformations
Review problems
Problem 9) Compatibility conditionsFor a small angle of rotationand member AD rigid:
staticallyindeterminate
structures
Problem 10) Compatibility conditions
1) Free body diagram2) Equilibrium equations3) Force-displacement behavior4) Compatibility conditions5) Solve for unknowns
10
Indeterminate trusses
Review problems
1) Free body diagram2) Equilibrium equations3) Force-displacement behavior4) Compatibility conditions5) Solve for unknowns
staticallyindeterminate
structures
Problems 12-13) Compatibility conditions
with B fixed (angle measured at D from x-axis to
the member counterclockwise)
with C fixed
with D fixed
Review problems
Torsional deformations
Example 16Statically indeterminate.Determine the maximum shear stress in the steel and the maximum shear stress in the aluminum.
11
Example 17Determine the total rotation at D.Determine the state of stress at given points.
Example 18Select dimensions that fulfill design constrains
- Start working on the lecture book!
12
https://www.purdue.edu/freeform/me323/lecture-notes/430-section/
Review problems
Conceptual examples (40 short questions!!)