Title of article
J-integral evaluation for U- and V-blunt notches underMode I loading and materials obeying a power hardening law
Author/Authors
F. Berto · P. Lazzarin · Yu. G. Matvienko، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
19
From page
33
To page
51
Abstract
The paper deals with calculations of the
J-integral for a plate weakened by U- and V-blunt
notches under mode I loading in the case of a linear
and nonlinear elastic material. The main aim of the
study is to suggest simple equations suitable for rapid
calculations of the J-integral. The semicircular arc of
the notch, which is traction free, is assumed as integration
path and the J-integral is given as a function of
the strain energy over the notch edge. For a numerical
investigation of the strain energy density distribution on
the notch edge the equation W(θ) = Wmax cosδ(θ) has
been assumed, where δ has been determined from finite
element analyses. In particular, the following values of
the notch acuity a/ρ and the opening angle 2α have
been analyzed: 4≤a/ρ ≤400 and 0≤2α ≤3π/4.
Considering plates weakened by lateral and central
notches under symmetric mode I loading, the approximate
relationships for the strain energy density, which
require the presence of a non zero notch radius for
their application, and the J-integral are discussed firstly
considering a linear elastic material and then a material
obeying a power hardening law during the loading
phase. The predicted results of the J-integral areconsistent with those directly obtained from finite
element analyses
Keywords
Strain energy density distribution ·J-integral · U- and V-notches · Finite element results
Journal title
International Journal of Fracture
Serial Year
2007
Journal title
International Journal of Fracture
Record number
828542
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