Title of article :
Indentation technique for estimating the fracture toughness of 7050 aluminum alloy with the Berkovich indenter
Author/Authors :
Jiang Li، نويسنده , , Fuguo Li، نويسنده , , Min He، نويسنده , , Fengmei Xue، نويسنده , , Mingjie Zhang، نويسنده , , Chengpeng Wang، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2012
Abstract :
A nondestructive and convenient technique was proposed to estimate the fracture toughness for 7050 aluminum alloy using an indentation system equipped with a Berkovich indenter based on the continuum damage mechanics. With the increase of indentation loads P, the material damage was exhibited on the effective elastic modulus E*. It was found that natural logarithms of the effective elastic modulus E* versus them of plastic indentation depth hp approximated great linear relationship, the critical effective elastic modulus image can be obtained based on the basic concepts of continuum damage mechanics using the elongation δ of the standard uniaxial tensile tests, subsequently the critical plastic indentation depth image can be obtained using the extrapolation method. Consequently the critical indentation energy per unit area γ* can be obtained based on the quadratic polynomial fitting between the indentation load P and the plastic indentation depth hp, and then the value of the fracture toughness Kc can be obtained. Both indentation tests and conventional compact tensile tests were conducted to verify the agreement of the results.
Keywords :
A. Non-ferrous and alloy , G. Non-destructive testing , E. Fracture , E. mechanical
Journal title :
Materials and Design
Journal title :
Materials and Design