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It is also seen from the figure that the unstable fracture toughness obtained from STC specimen is compatible with that of TPBT specimen.
The maximum toughness obtained was very high (impact strength more than twenty-fold that of the PBT PAr matrix).
On an average cohesive toughness obtained using finite strip is 2.14 % and 3.29 % more than those obtained using infinite strip of plate for D = 500 mm and 200 mm, respectively.
For all values of distributed load width (0 ≤ β ≤ 0.15), the values of cohesive toughness obtained considering the finite strip plate is slightly higher than those obtained considering the infinite strip plate.
The authors also presented the results of the initial cracking toughness, cohesive toughness and unstable fracture toughness obtained using split tension cube test specimen and they were compared with those obtained using standard compact tension specimen.
The value of cohesive toughness obtained using equations presented elsewhere (Kumar and Pandey 2012) and the revised procedure in this work, varies with the value of β for STC specimen.
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Fe2B phase was characterized by higher fracture toughness, obtaining Kc = 2.42 ± 0.66 MPa·m1/2.
Mixed mode fracture toughness results are presented, as are Mode I and Mode II fracture toughness results obtained via Double Cantilever Beam (DCB) and End Notch Flexure (ENF) tests, respectively.
The estimated fracture toughness values obtained from the indentation technique showed good agreement (within approximately 10% error) with those from conventional fracture toughness tests.
The highest fracture toughness was obtained from the CF/EP specimens.
The highest fracture toughness was obtained from coating annealed in Ar at 800 °C.
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