Basics of Structural Analysis

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Introduction

Structural analysis using about high school level physics and maths.

Aim to calculate fiberglass cansat structure

Basic theory

Principle of superposition: linearity. Displacement at location from forces and </math>P_2</math> located at different positions is calculated as

The energy principle: giving the total energy as which is called strain energy. For linear deformation this gives .

Virtual work principle.

Dead loads, live loads, impact loads (impact factor), wind loads.

Equilibrium.

Forces:

  • Normal force and axial force (out-of-plane forces, in-plane forces)
  • Shearing force . Thus we have . is the intensity of applied (normal?) force.
  • Bending moment and thus .
  • Torsion (of a plate)
  • Curvature and twist

Hooke's law hold for linear elastic material: , where is the bending stress. The force is .

Plate

  • Torsion (of a plate)
  • Curvature and twist .

Curvature in the direction is the rate of change of the slope with respect to arch length, giving


Strains in a plate .

Von Kármán strains.

Beam

Forces:

  • Normal force and axial force
  • Shearing force . Thus we have . is the intensity of applied (normal?) force.
  • Bending moment and thus .

Deflection of beams

The deflection of a beam.

The strain in the filament is due to the different lengths of filaments in bended beam. which for linear elastic material (using Hooke's law) gives where is bending stress



Radius of curvature , and .

Column

Column is a vertical beam.

Cylindrical Pipe

Axial stress

The force due to the pressure is

The axial stress is


The pressure effect

The longitudinal stress and hoop (radial) stress.


where is the internal pressure, is the mean diameter of cylinder and Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle t} is the wall thickness. Also, .

Applying Hooke's law and the fact that we get

where is the Poisson's ratio and is the Young's modulus.

Glassfiber Cansat

References

https://scholarshare.temple.edu/bitstream/handle/20.500.12613/7150/Udoeyo-Textbook-2020.pdf?sequence=1

https://tiij.org/issues/issues/spring2006/12_Dues-Accepted/Dues.pdf