Arturo Pascuzzo
RicercatoreBiografia
Arturo Pascuzzo è Ricercatore Tenure-Track (RTT) in Scienza delle Costruzioni presso l’Università Telematica Pegaso.
Ha conseguito la laurea in Ingegneria Edile-Architettura nel 2011 presso l’Università della Calabria con voto 110/110 e lode con menzione, discutendo una tesi dal titolo “Problemi di modellazione strutturale nei ponti strallati di grande luce soggetti a carichi viaggianti”.
Ha completato il dottorato di ricerca in ingegneria dei materiali e delle strutture presso l’Università della Calabria nel 2015, discutendo una tesi dal titolo “Advanced structural analyses of cable-supported bridges”.
Dal 2019 al 2024 è stato Ricercatore a tempo determinato di tipo A (RTDA) presso il Dipartimento di Ingegneria Civile dell'Università della Calabria.
Il 1° febbraio del 2022 ha conseguito l'Abilitazione Scientifica Nazionale (ASN 2021/2023) alle funzioni di professore universitario di Seconda Fascia nelSettore Concorsuale 08/B2 - SCIENZA DELLE COSTRUZIONI.
Collabora con vari enti di ricerca nazionali ed internazionali. A livello internazionale si sottolineano le collaborazioni con la Faculdade de Engenharia da Universidade do Porto (FEUP), l’Universidad Politécnica de Madrid (UPM) e il King Abdullah University of Science and Technology (KAUST) (Arabia Saudita).
A livello nazionale, ha partecipato alla redazione del progetto MIUR-PRIN 2020 n. 2020EBLPLS “Opportunities and challenges of nanotechnology in advanced and green construction materials”, focalizzato sulle opportunità e sfide della nanotecnologia nei materiali da costruzione.
Presso l'Università Telematica Pegaso è membro del Consiglio di Corso di Studi in Ingegneria Civile, Classe L-7. E' inoltre membro della Commissione di Laurea per la valutazione delle prove finali del Corso di Studio in Ingegneria Civile, classe L-7.
Facoltà
Materia d'insegnamento
Scienza delle costruzioni
Ricevimento
Venerdì 11:00-12:00
Modalità di prenotazione degli uffici
Pubblicazioni
Articoli su riviste scientifiche internazionali
Ammendolea, A., Fabbrocino, F., Leonetti, L., Lonetti, P., Pascuzzo, A.. An efficient moving-mesh strategy for predicting crack propagation in unidirectional composites: Application to materials reinforced with aligned CNTs, Composite Structures, Vol. 352, Article number 118652, 15 January 2025. DOI: 10.1016/j.compstruct.2024.118652.
Greco, F., Leonetti, L., Lonetti, P., Nevone Blasi, P., Pascuzzo, A., Porco, G.. An interface-based microscopic model for the failure analysis of masonry structures reinforced with timber retrofit solutions, Frattura ed Integrità Strutturale, Vol. 18, Issue 70, Pages 210-226, September 2024. DOI: 10.3221/IGF-ESIS.70.12.
Ammendolea, D., Greco, F., Leonetti, L., Lonetti, P., Pascuzzo, A., Fatigue crack growth simulation using the moving mesh technique, Fatigue and Fracture of Engineering Materials and Structures, John Wiley and Sons Inc. 2023; 46(12): 4606-4627. doi:10.1111/ffe.14155
Greco, F., Lonetti, P., Pascuzzo, A., Sansone, G., An Analysis of the Dynamic Behavior of Damaged Reinforced Concrete Bridges under Moving Vehicle Loads by Using the Moving Mesh Technique, Structural Durability & Health Monitoring, Tech Science Press, 2023, 17(6), 457-483. https://doi.org/10.32604/sdhm.2023.030075.
Ammendolea, D., Greco, F., Leonetti, L., Lonetti, P., Pascuzzo, A., A numerical failure analysis of nano-filled ultra-high-performance fiber-reinforced concrete structures via a moving mesh approach, Theoretical and Applied Fracture Mechanics, Elsevier Ltd., Vol. 125, Article number 103877, June 2023. DOI: 10.1016/j.tafmec.2023.103877. ISSN: 01678442.
Gaetano, D., Greco, F., Leonetti, L., Lonetti, P., Pascuzzo, A., Ronchei, C., An interface-based detailed micro-model for the failure simulation of masonry structures, Engineering Failure Analysis, Elsevier Ltd., Vol. 142, Article number 106753, December 2022, DOI: 10.1016/j.engfailanal.2022.106753. ISSN: 13506307.
Pascuzzo, A., Greco, F., Lonetti, P., Ammendolea, D., Dynamic fracture analysis in quasi-brittle materials via a finite element approach based on the combination of the ALE formulation and M?integral method, Engineering Failure Analysis, Elsevier Ltd., Vol. 141, Article number 106627, November 2022. DOI: 10.1016/j.engfailanal.2022.106627. ISSN: 13506307.
Greco, F., Gaetano, D., Leonetti, L., Lonetti, P., Pascuzzo, A., Skrame, A., Structural and seismic vulnerability assessment of the Santa Maria Assunta Cathedral in Catanzaro (Italy): classical and advanced approaches for the analysis of local and global failure mechanisms, Frattura ed Integrità Strutturale, Vol. 16, Issue 60, Pages 464-487, April 2022. DOI: 10.3221/IGF-ESIS.60.32. ISSN: 19718993.
Gaetano, D., Greco, F., Leonetti, L., Pascuzzo, A., Skrame, A., Comparative finite element modelling approaches for the seismic vulnerability analysis of historical masonry structures: the case study of the Cathedral of Catanzaro (Italy), International Journal of Masonry Research and Innovation, Vol. 7, Issue 6, Pages 600 – 623, 2022. DOI: 10.1504/IJMRI.2022.10044503. ISSN: 20569459.
Pascuzzo, A., Greco, F., Leonetti, L., Lonetti, P., Pranno, A., Ronchei, C., Investigation of mesh dependency issues in the simulation of crack propagation in quasi-brittle materials by using a diffuse interface modeling approach, Fatigue and Fracture of Engineering Materials and Structures, Taylor and Francis Inc., Vol. 45, Issue 3, March 2022, Pages 801-820. DOI: 10.1111/ffe.13635. ISSN: 8756758X.
Greco, F., Ammendolea, D., Lonetti, P., Pascuzzo, A., Crack propagation under thermo-mechanical loadings based on moving mesh strategy, Theoretical and Applied Fracture Mechanics, Elsevier Ltd., Vol. 114, Article number 103033, August 2021. DOI: 10.1016/j.tafmec.2021.103033. ISSN: 01678442.
Ammendolea, D., Greco, F., Lonetti, P., Luciano, R., Pascuzzo, A., Crack propagation modeling in functionally graded materials using Moving Mesh technique and interaction integral approach, Composite Structures, Elsevier Ltd., Vol. 269, Article number 114005, 1 August 2021. DOI: 10.1016/j.compstruct.2021.114005. ISSN: 02638223.
Pascuzzo, A., Yudhanto, A., Alfano, M., Lubineau, G., On the effect of interfacial patterns on energy dissipation in plastically deforming adhesive bonded ductile sheets, International Journal of Solids and Structures, Elsevier Ltd., Vol. 198, Pages 31-40, August 2020. DOI: 10.1016/j.ijsolstr.2020.04.001. ISSN: 00207683.
Greco, F., P. Lonetti, Pascuzzo, A., A moving mesh FE methodology for vehicle–bridge interaction modeling, Mechanics of Advanced Materials and Structures, Taylor and Francis Inc., Vol. 27, Issue 14, Pages 1256-1268, 15 July 2020. DOI: 10.1080/15376494.2018.1506955. ISSN: 15376494.
Lonetti, P., Pascuzzo, A., A Practical Method for the Elastic Buckling Design of Network Arch Bridges, International Journal of Steel Structures, Vol. 20, Issue 1, Pages 311-329, 1 February 2020. DOI: 10.1007/s13296-019-00282-8. ISSN: 15982351.
Lonetti, P., Pascuzzo, A., Aiello, S., Instability design analysis in tied-arch bridges, Mechanics of Advanced Materials and Structures, Taylor and Francis Inc., Vol. 26, Issue 8, PAGES 716-726, 2019. DOI: 10.1080/15376494.2017.1410911. ISSN: 15376494.
Funari, M. F., Lonetti, P., Pascuzzo, A., A moving cohesive mesh formulation to predict debonding phenomena in layered structures, Journal of Computational Engineering and Physical Modeling, Vol. 1, Issue 2, Pages 16-26, April 2018. DOI: 10.22115/CEPM.2018.132122.1028.
Bruno, D., Lonetti, P., Pascuzzo, A., A numerical study on network arch bridges subjected to cable loss, International Journal of Bridge Engineering (IJBE), Vol. 6, Issue 2, Pages 41-59, 2018. WOS:000456107800003. ISSN: 2241-7443.
Bruno, D., Lonetti, P., Pascuzzo, A., An optimization model for the design of network arch bridges, Computers and Structures, Elsevier Ltd. Vol. 170, Pages 13-25, 1 July 2016. DOI: 10.1016/j.compstruc.2016.03.011. ISSN: 00457949.
Lonetti, P., Pascuzzo, A., Davanzo, A., Dynamic Behavior of Tied-Arch Bridges under the Action of Moving Loads, Mathematical Problems in Engineering, Hindawi Limited., Vol. 2016, Article number 2749720, 17 Pages, 2016. DOI: 10.1155/2016/2749720. ISSN: 1024123X.
Lonetti, P., Pascuzzo, A., A numerical study on the structural integrity of self-anchored cable-stayed suspension bridges, Frattura ed Integrita Strutturale. Gruppo Italiano Frattura. Vol. 10, Issue 38, Pages 359-376, 2016. DOI: 10.3221/IGF-ESIS.38.46. ISSN: 19718993.
Lonetti, P., Pascuzzo, A., Vulnerability and failure analysis of hybrid cable-stayed suspension bridges subjected to damage mechanisms, Engineering Failure Analysis. Elsevier Ltd., Vol. 45, Pages 470-495, October 2014. DOI: 10.1016/j.engfailanal.2014.07.002. ISSN: 13506307.
Lonetti, P., Pascuzzo, A., Design analysis of the optimum configuration of self-anchored cable-stayed suspension bridges, Structural Engineering and Mechanics. Techno Press. Vol. 51, Issue 5, Pages 847-866, 10 September 2014. DOI: 10.12989/sem.2014.51.5.847. ISSN: 12254568.
Lonetti, P., Pascuzzo, A., Optimum design analysis of hybrid cable-stayed suspension bridges, Advances in Engineering Software. Elsevier Ltd. Vol. 73, Pages 53-66, July 2014. DOI: 10.1016/j.advengsoft.2014.03.004. ISSN: 09659978.
Greco, F., Lonetti, P., Pascuzzo, A., Dynamic analysis of cable-stayed bridges affected by accidental failure mechanisms under moving loads, Mathematical Problems in Engineering. Hindawi Limited. Volume 2013, Article number 302706, 20 Pages. DOI: 10.1155/2013/302706. ISSN: 10.1155/2013/302706.
Atti di convegno Internazionali
Greco, F., Lonetti, P., Pascuzzo, A., Sansone, G., A numerical model based on moving mesh FE for vehicle bridge interaction, Journal of Physics: Conference Series, 2647 (2024), 152006, IOP Publishing, Part of special issue: XII International Conference on Structural Dynamics, 02-05 July 2023, Delft, Netherlands. DOI:10.1088/1742-6596/2647/15/152006.
Ammendolea, D., Greco, F., Leonetti, L., Lonetti, P., Pascuzzo, A., Penna, R., A moving mesh-based numerical investigation of the failure response of nano-filled ultra-high-performance concrete structures. Part of special issue: 27th International Conference on Fracture and Structural Integrity (IGF27), Rome (IT), February 21-24, 2023. Procedia Structural Integrity, Vol. 47, 2023, Pages 488-502. DOI: 10.1016/j.prostr.2023.07.075.
Penna, R., Feo, L., Lovisi, G., Pascuzzo, A., A stress-driven model incorporating surface energy effects for the bending analysis of functionally graded nanobeams with loading discontinuities. Part of special issue: 27th International Conference on Fracture and Structural Integrity (IGF27), Rome (IT), February 21-24, 2023. Procedia Structural Integrity, Vol. 47, 2023, Pages 789-799. DOI: 10.1016/j.prostr.2023.07.040.
Greco, F., Ammendolea, D., Lonetti, P., Pascuzzo, A., Simulation of dynamic fracture in quasi-brittle materials using a finite element modeling approach enhanced by moving mesh technique and interaction integral method. Part of special issue: 2nd Mediterranean Conference on Fracture and Structural Integrity: MedFract2, 2022. Procedia Structural Integrity, Vol. 41, Issue C, Pages 576-588, 2022. DOI: 10.1016/j.prostr.2022.05.066.
Gaetano, D., Greco, F., Leonetti, L., Nevone Blasi, P., Pascuzzo, A., A hybrid cohesive/volumetric multiscale finite element model for the failure analysis of fiber-reinforced composite structures. Part of special issue: 2nd Mediterranean Conference on Fracture and Structural Integrity: MedFract2, 2022. Procedia Structural Integrity, Vol. 41, Issue C, Pages 439-451. DOI: 10.1016/j.prostr.2022.05.050.
Pascuzzo, A., Greco, F., Ammendolea, D., Lonetti, P., Gaetano, D., On the combination of Moving Mesh technique and M-integral method for predicting crack propagation mechanisms in Functionally Graded Materials. Part of special issue: 7th International Conference on Crack Paths (CP2021). Procedia Structural Integrity, Vol. 39, 2022, Pages 649-662.
Greco, F., Leonetti, L., Lonetti, P., Pascuzzo, A., Ronchei, C., Crack propagation analysis in masonry structures via an inter-element cohesive fracture approach: assessment of mesh dependency issues. Part of special issue: 7th International Conference on Crack Paths (CP2021). Procedia Structural Integrity, Vol. 39, 2022, Pages 638-648.
Greco, F., Ammendolea, D., Lonetti, P., Pascuzzo, A., Simulation of dynamic fracture in quasi-brittle materials using a finite element modeling approach enhanced by moving mesh technique and interaction integral method. Part of special issue: 2nd Mediterranean Conference on Fracture and Structural Integrity. Procedia Structural Integrity, Vol. 41, 2022, Pages 576-588.
Gaetano, D., Greco, F., Leonetti, L., Nevone Blasi, P., Pascuzzo, A., A hybrid cohesive/volumetric multiscale finite element model for the failure analysis of fiber-reinforced composite structures. Part of special issue: 2nd Mediterranean Conference on Fracture and Structural Integrity. Procedia Structural Integrity, Vol. 41, 2022, Pages 439-451.
Ammendolea, D., Greco, F., Lonetti, P., Pascuzzo, A., An effective modeling approach based on the ALE and M-integral for simulating crack propagation under thermo-mechanical loadings. Part of special issue: 26th International Conference on Fracture and Structural Integrity. Procedia Structural Integrity, Vol. 33, 2021, Pages 858-870.
Greco, F., Leonetti, L., Luciano, R., Pascuzzo, A., Ronchei, C., A detailed micro-model for brick masonry structures based on a diffuse cohesive-frictional interface fracture approach, Part of special issue: 1st Virtual Conference on Structural Integrity (VCSI1). Procedia Structural Integrity, Vol. 25, 2020, Pages 334-347.
Ammendolea, D., Greco, F., Lonetti, P., Nevone Blasi, P., Pascuzzo, A., Crack growth propagation modeling based on moving mesh method and interaction integral approach. Part of special issue: 1st Virtual European Conference on Fracture (VECF1), Procedia Structural Integrity, Vol. 28, 2020, Pages 1981-1991.
Ammendolea, D., Greco, F., Nevone Blasi, P., Lonetti, P., Pascuzzo, A., Strategies to improve the structural integrity of tied-arch bridges affected by instability phenomena. Part of special issue: 1st Virtual Conference on Structural Integrity (VCSI1). Procedia Structural Integrity, Vol. 25, 2020, Pages 454-464.
Ammendolea, D., Bruno, D., Greco, F., Lonetti, P., Pascuzzo, A., An investigation on the structural integrity of network arch bridges subjected to cable loss under the action of moving loads, Part of special issue: 1st Virtual Conference on Structural Integrity (VCSI1). Procedia Structural Integrity Vol. 25, 2020, Pages 305-315.
Greco, F., Lonetti, P., Pascuzzo, A., Structural integrity of tied arch bridges affected by instability phenomena. Part of special issue: 25th International Conference on Fracture and Structural Integrity. Procedia Structural Integrity, Vol. 18, 2019, Pages 891-902.
Pascuzzo, A., Alfano, M., Lubineau, G., Defect-tolerance in adhesive joints with patterned interfaces, in Adhesion 19 - 14th International Triennial Conference on the Science and Technology of Adhesion and Adhesives (2019), Bristol, England
Bruno, D., Greco, F., Lonetti, P., Pascuzzo, A., Structural optimization and design analysis of long span cable supported bridges, in Multi-Physics Modeling of Solids, in International Colloquium of Mechanics. (2014), ENSTA, ParisTech, Palaiseau, France
Lonetti, P., Pascuzzo, A., Sarubbo, R., Dynamic Behavior of Cable Supported Bridges Affected by Corrosion Mechanisms under Moving Loads, in COMSOL Conference Europe (2012), Milan, Italy.
Bruno, D., Greco, F., Lonetti, P., Pascuzzo, A., Dynamic analysis of long span cable-stayed bridges under the action of moving loads, in International Conference IBSBI 2011. "Innovations on Bridges and Soil-Bridge Interaction". (2011), Athens, Greece.
Atti di convegno Nazionali
Pascuzzo, A., Greco, F., Lonetti, P., Ammendolea, D., Sansone, G., Numerical modeling of dynamic crack propagation mechanisms using a moving mesh technique based on the ALE formulation. Part of special issue: 25th Conference of the Italian Association of Theoretical and Applied Mechanics, AIMETA 2022, Palermo 4-8 September 2022. Materials Research Proceedings, Vol. 26, 2023, Pages 267-272. DOI: 10.21741/9781644902431-44.
Gaetano, D., Greco, F., Leonetti, L., Nevone Blasi, P., Pascuzzo, A., Multiscale failure analysis of fiber-reinforced composite structures via a hybrid cohesive/volumetric nonlinear homogenization strategy, Part of special issue: 25th Conference of the Italian Association of Theoretical and Applied Mechanics, AIMETA 2022, Palermo 4-8 September 2022. Materials Research Proceedings, Vol. 26, 2023, Pages 607-612. DOI: 10.21741/9781644902431-98.
Bruno, D., Funari, M. F., Lonetti, P., Pascuzzo, A., Instability design analysis in Network Arch bridges, in Recenti sviluppi nell’ingegneria strutturale (2018), Maratea (PZ), Italia.
Bruno, D., Leonetti, L., Lonetti, P., Pascuzzo, A., Design analysis of the optimum configuration of hybrid cable-stayed suspension bridges, in Problemi attuali e prospettive nell’ingegneria delle strutture (2013) Maratea (PZ), Italia.