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The magnitude of the material inhomogeneity term is evaluated for cracks in an inhomogeneous welded joint made of a high-strength low-alloy steel.
The so-called material inhomogeneity effect, which influences the crack driving force in inhomogeneous materials, has recently been found to contribute to the excellent behavior of some fracture resistant biomaterials.
The effect of the material inhomogeneity is captured in form of a quantity called "material inhomogeneity term", Cinh.
There is no evidence of material inhomogeneity affecting the results of classification.
Material inhomogeneity parameter (m) is a power in the mentioned power law function.
Material inhomogeneity parameter (n) is a power in the mentioned power law function.
The material inhomogeneity term, Cinh, can have the same order of magnitude as Jfar.
In the dynamic analysis, as research parameters, material inhomogeneity and foundation constants are considered.
This difference can be quantitatively expressed through an additional crack-driving force term the material inhomogeneity term, Cinh.
The model is utilized to select combinations of multi-size strands so as to minimize material inhomogeneity.
Directions of wave propagation and material inhomogeneity are chosen in an arbitrary way.
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