GP

G. Pitarresi

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3 records found

Journal article (2017) - G. Catalanotti, C. Furtado, T. Scalici, G. Pitarresi, F. P. van der Meer, PP Camanho
The effect of through-thickness compressive stress on mode II interlaminar fracture toughness is investigated experimentally and replicated numerically. The modified Transverse Crack Tensile specimen recently proposed by the authors is used, together with an experimental device designed to apply a constant transverse compressive stress on the surface of the specimen. Experiments are conducted using IM7/8552 specimens for different compressive stresses, ranging from 0 to 100 MPa, covering all the practical applications commonly encountered in the aeronautical industry (e.g., tightened filled holes or bolted joints). It is shown that mode II interlaminar fracture toughness increases with the applied compressive through-thickness stress. Finally, experiments are replicated using appropriate numerical models based on cohesive elements that take into account frictional effects. A good agreement between numerical predictions and experiments is found. ...
Conference paper (2017) - G. Catalanotti, T. Scalici, G. Pitarresi, Frans van der Meer
The effect of through-thethickness compressive stress on the mode II interlaminar fracture toughness is investigated experimentally and replicated numerically. It is shown that the mode II interlaminar fracture toughness increases with the applied compressive through-the-thickness stress. A good agreement between numerical predictions and experiments is found. ...

An experimental and numerical study

Journal article (2016) - T. Scalici, G. Pitarresi, G. Catalanotti, F. P. van der Meer, A. Valenza
Several problems arise when measuring the mode II interlaminar fracture toughness using a Transverse Crack Tension specimen; in particular, the fracture toughness depends on the geometry of the specimen and cannot be considered a material parameter. A preliminary experimental campaign was conducted on TCTs of different sizes but no fracture toughness was measured because the TCTs failed in an unacceptable way, invalidating the tests. A comprehensive numerical and experimental investigation is conducted to identify the main causes of this behaviour and a modification of the geometry of the specimen is proposed. It is believed that the obtained results represent a significant contribution in the understanding of the TCT test as a mode II characterization procedure and, at the same time, provide new guidelines to characterize the mode II crack propagation under tensile loads. ...