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A specially designed cruciform specimen for crack initiation and low capacity test machines was used to perform fatigue tests.
Therefore limiting the use of this specimen for crack propagation.
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However, it is shown in this paper that the previously reported experimental results obtained from the cracked Brazilian disc specimen for several glasses are always underestimated by fracture theories like the maximum tangential stress criterion.
For crack initiation experimental results have proven that the obtained design detail is effective, but there are no studies about the behavior of these specimens for crack propagation.
In SFRC loaded in flexure, the surface crack propagates rapidly through the depth of the specimen for small crack openings.
Finite element analysis was employed to show that the specimen compliance has a one-to-one correspondence with the Normalized Area (NA) or Normalized Harmonic Mean Radius (NHMR) independent of crack depth and crack aspect ratio and with the crack shape and specimen dimension for a range of crack and specimen dimensions.
Consequently, the feasibility of CIET specimen for estimating fatigue crack propagation behavior for small-sized components and precious materials has been evidently confirmed.
Three-point flexural testing was performed in the specimens for creating cracks in FS2 and CS2 specimens.
In this study, the mode I (opening) and mode II (sliding) mechanisms are differentiated within the single crystal specimens for slanted cracks.
The obtained values will be used to predict the fracture for different types of notches and cracked specimens under mode I; for cracked specimens under mixed mode and mode II has proposed a new approach which confirms that PUR foams can be treated as brittle materials.
The obtained values will be used to predict the fracture load in different types of notches and cracked specimens under mode I; for cracked specimens under mixed mode and mode II has defined a personal approach that confirms PUR foams can be treated as brittle materials.
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