Title: Stresses in Thin-walled Pressure Vessels (I) (Hoop Stress
1Stresses in Thin-walled Pressure Vessels (I)
(Hoop Stress)
(Longitudinal Stress)
2Stresses in Thin-walled Pressure Vessels (II)
3Stress State under General Combined Loading
4Plane Stress Transformation
5Mohrs Circle for Plane Stress
6Principal Stresses
7Maximum Shear Stress
8Mohrs Circle for 3-D Stress Analysis
9Mohrs Circle for Plane Strain
10Strain Analysis with Rosette
11Typical Rosette Analysis
emax
ea ex
eb ex/2 ey/2 ?xy/2
emin
ec ey
gmax
ea ex
emax
eb ex/4 3ey/4 ?xy/4
emin
gmax
ec ex/4 3ey/4 - ?xy/4
12Stress Analysis on a Cross-section of Beams
13Stress Field in Beams
Stress trajectories indicating the direction of
principal stress of the same magnitude.
14Re-visit of Pressure Vessel Stress Analysis
15Relations among Elastic Constants
16Constitutive Relations under Tri-axial Loading
17Dilatation and Bulk Modulus
For the special case of hydrostatic loading
-----
sx sy sz p
where DV/V is called Dilatation or Volumetric
Strain.
Define Bulk Modulus K as
18Failure Criterion for Ductile Materials(Yielding
Criterion)
19Comparison of Yielding Criteria
Tresca Criterion (Max. Shear Stress)
s1 sY
s2 sY
s1 s2 sY
Von Mises Criterion (Max. Distortion Energy)