@article{
	11589_1343,
	author = { Boccaccio A  and  Martino F  and  Pappalettere C },
	title = {A Novel Moiré-based Optical Scanning Head for High Precision Contouring},
	year = {9999},
	journal = {INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY}
}
@article{
	11589_3143,
	author = { Casavola C  and  Pappalettera G  and  Pappalettere C },
	title = {Remarks on designing an optical sensor for 3D reconstruction of dental elements},
	year = {9999},
	journal = {THE SCIENTIFIC WORLD JOURNAL}
}
@article{
	11589_58646,
	author = { Jallouf  S  and  Casavola  C  and  Pappalettere  C  and  Pluvinage  G },
	title = {Assessment of undercut defect in a laser welded plate made of Ti-6Al-4V titanium alloy with probabilistic domain failure assessment diagram},
	year = {9999},
	journal = {ENGINEERING FAILURE ANALYSIS},
	volume = {59},
	url = {http://www.scopus.com/record/display.uri?eid=2-s2.0-84946782281&origin=resultslist&sort=plf-f&src=s&sid=67DF65C4AC29A54B14F5A9B6B5C5925C.Vdktg6RVtMfaQJ4pNTCQ%3a90&sot=autdocs&sdt=autdocs&sl=18&s=AU-ID%2812143630400%29&relpos=0&citeCnt=0&searchTerm=},
	doi = {10.1016/j.engfailanal.2015.11.018},	
	pages = {17--27}
}
@article{
	11589_58649,
	author = { Casavola  C  and  Cazzato  A  and  Moramarco  V  and  Pappalettere  C },
	title = {Orthotropic mechanical properties of Fused Deposition Modelling parts described by Classical Laminate Theory},
	year = {9999},
	journal = {MATERIALS & DESIGN},
	volume = {90},
	url = {http://www.sciencedirect.com/science/article/pii/S0264127515307516},
	doi = {http://dx.doi.org/10.1016/j.matdes.2015.11.009},	
	pages = {453--458}
}
@conference{
	11589_18456,
	author = { Boccaccio A  and  Lamberti L  and  Papi M  and  De Spirito M  and  Pappalettere C },
	title = {A deeper look into immature porcine zona pellucida visco-hyperelasticity},
	year = {2016},
	publisher = {Springer},
	address = {New York},
	volume = {6},
	booktitle = {Mechanics of Biological Systems and Materials. Volume 6. Proceedings of the 2015 SEM Annual Conference on Experimental and Applied Mechanics},
	abstract = {The usual assumption made in mechanical characterization of soft biotissues with Atomic Force Microscopy (AFM) is that the specimen behaves as a purely elastic material. However, there is a limit indentation rate below which viscous effects can be neglected. A parametric study including about 200 FEM analyses shows that in the case of immature porcine zona pellucida (ZP) samples viscous effects become more significant for sharp tips. A linear relationship between the limit indentation rate and the geometry of the AFM probe is derived for the porcine ZP samples analyzed in this study},
	doi = {10.1007/978-3-319-21455-9_9},	
	pages = {85--89}
}
@article{
	11589_897,
	author = { Di Comite Mariasevera  and  Crincoli Vito  and  Fatone Laura  and  Ballini Andrea  and  Mori Giorgio  and  Rapone Biagio  and  Boccaccio Antonio  and  Pappalettere Carmine  and  Grassi Felice  and  Favia Angela },
	title = {Quantitative Analysis of Defects at the Dentin-Post Space in Endodontically Treated Teeth},
	year = {2015},
	journal = {MATERIALS},
	volume = {8},
	doi = {10.3390/ma8063268},	
	pages = {3268--3283}
}
@article{
	11589_58657,
	author = { Barile  Claudia  and  Casavola  Caterina  and  Pappalettera  Giovanni  and  Pappalettere  Carmine },
	title = {Considerations on Acoustic Emissions in Ti Grade 5 during Fatigue Test},
	year = {2015},
	journal = {PROCEDIA ENGINEERING},
	volume = {109},
	keywords = {Acoustic Emission; Crack Propagation; Fatigue; Titanium grade 5; Engineering (all)},
	url = {http://www.sciencedirect.com/science/journal/18777058},
	doi = {10.1016/j.proeng.2015.06.239},	
	pages = {320--326}
}
@article{
	11589_58659,
	author = { Casavola  Caterina  and  Cazzato  Alberto  and  Moramarco  Vincenzo  and  Pappalettere  Carmine },
	title = {Influence of the clamps configuration on residual stresses field in friction stir welding process},
	year = {2015},
	journal = {JOURNAL OF STRAIN ANALYSIS FOR ENGINEERING DESIGN},
	volume = {50},
	keywords = {finite element method; Friction stir welding; infrared thermography; residual stress; temperature field; Mechanical Engineering; Mechanics of Materials; Applied Mathematics; Modeling and Simulation},
	url = {http://sdj.sagepub.com/content/by/year},
	doi = {10.1177/0309324715573361},	
	pages = {232--242}
}
@article{
	11589_58658,
	author = { Barile  Claudia  and  Casavola  Caterina  and  Pappalettera  Giovanni  and  Pappalettere  Carmine },
	title = {Fatigue Damage Monitoring by Means of Acoustic Emission and Thermography in Ti Grade 5 Specimens},
	year = {2015},
	journal = {PROCEDIA ENGINEERING},
	volume = {114},
	keywords = {Acoustic Emission; Crack Propagation; Fatigue; Thermography; Titanium grade 5; Engineering (all)},
	url = {http://www.sciencedirect.com/science/journal/18777058},
	doi = {10.1016/j.proeng.2015.08.096},	
	pages = {487--492}
}
@article{
	11589_58673,
	author = { Z  Azari  and  C I  Pruncu  and  C  Casavola  and  C  Pappalettere },
	title = {Characterization and prediction of cracks in coated materials: direction and length of crack propagation in bimaterials},
	year = {2015},
	journal = {INTERNATIONAL SCHOLARLY RESEARCH NOTICES},
	volume = {2015},
	url = {http://www.hindawi.com/journals/isrn/2015/594147/},
	doi = {http://dx.doi.org/10.1155/2015/594147},	
}
@inbook{
	11589_58118,
	author = { Casavola  C  and  Pappalettera  G  and  Pappalettere  C },
	title = {Design of a Double‐Illumination espi system for the measurement of very slow motions},
	year = {2015},
	publisher = {Springer},
	address = {new york},
	volume = {3},
	booktitle = {CONFERENCE PROCEEDINGS OF THE SOCIETY FOR EXPERIMENTAL MECHANICS SERIES},
	pages = {97--102}
}
@conference{
	11589_58688,
	author = { Pappalettere  C  and  Barile  C  and  Casavola  C  and  Pappalettera  G },
	title = {Hybrid Experimental-Numerical Methodology for Mechanical Characterization of Materials},
	year = {2015},
	booktitle = {CAM 2015 - Congrès Algérien de Mécanique 25-29 octobre 2015, El Oued- Algérie}
}
@inbook{
	11589_58669,
	author = { Casavola  C  and  Cazzato  A  and  Moramarco  V  and  Pappalettere  C },
	title = {Temperature field in fsw process: Experimental measurement and numerical simulation},
	year = {2015},
	publisher = {Springer},
	journal = {CONFERENCE PROCEEDINGS OF THE SOCIETY FOR EXPERIMENTAL MECHANICS SERIES},
	volume = {6},
	booktitle = {CONFERENCE PROCEEDINGS OF THE SOCIETY FOR EXPERIMENTAL MECHANICS SERIES},
	keywords = {Finite element method; Friction stir welding; Infrared thermography; Temperature field; Welded joint; Engineering (all); Computational Mechanics; Mechanical Engineering},
	url = {http://www.springer.com/series/8922},
	doi = {10.1007/978-3-319-06989-0_24},	
	pages = {177--186}
}
@inbook{
	11589_19088,
	author = { BARILE C  and  CASAVOLA C  and  PAPPALETTERA G  and  PAPPALETTERE C },
	title = {Hybrid thermography and acoustic emission testing of fatigue crack propagation in Aluminum Samples},
	year = {2015},
	publisher = {Springer},
	journal = {CONFERENCE PROCEEDINGS OF THE SOCIETY FOR EXPERIMENTAL MECHANICS SERIES},
	volume = {66},
	booktitle = {CONFERENCE PROCEEDINGS OF THE SOCIETY FOR EXPERIMENTAL MECHANICS SERIES},
	pages = {247--252}
}
@conference{
	11589_58691,
	author = { Barile  C  and  Casavola  C  and  Pappalettera  G  and  Pappalettere  C },
	title = {Acoustic emission in Titanium grade 5 during uniaxial fatigue testing},
	year = {2015},
	booktitle = {M2D2015 – 6th International Conference on Mechanics and Materials in Design, Azores/Portugal, 26-30 July 2015}
}
@conference{
	11589_58692,
	author = { Barile  C  and  Casavola  C  and  Pappalettera  G  and  Pappalettere  C },
	title = {Advanced Approaches For Mechanical Characterization On Innovative Materials},
	year = {2015},
	booktitle = {INASE - 2015 International Conference on Mechanical Engineering, Vienna, Austria, March 15-17, 2015}
}
@article{
	11589_1279,
	author = { Boccaccio A  and  Lamberti L  and  Papi M  and  De Spirito M  and  Pappalettere C },
	title = {Effect of AFM probe geometry on visco-hyperelastic characterization of soft materials},
	year = {2015},
	journal = {NANOTECHNOLOGY},
	volume = {26},
	abstract = {Atomic force microscopy (AFM) nanoindentation is very suited for nano- and microscale mechanical characterization of soft materials. Although the structural response of polymeric networks that form soft matter depends on viscous effects caused by the relative slippage of polymeric chains, the usual assumption made in the AFM-based characterization is that the specimen behaves as a purely elastic material and viscous forces are negligible. However, for each geometric configuration of the AFM tip, there will be a limit indentation rate above which viscous effects must be taken into account to correctly determine mechanical properties. A parametric finite element study conducted on 12 geometric configurations of a blunt cone AFM tip (overall, the study included about 200 finite element analyses) allowed us to determine the limit indentation rate for each configuration. The selected tip dimensions cover commercially available products and account for changes in tip geometry caused by serial measurements. Nanoindentation rates cover typical experimental conditions set in AFM bio-measurements on soft matter. Viscous effects appear to be more significant in the case of sharper tips. This implies that, if quantitative data on sample viscosity are not available, using a rounded indenter and carrying out experiments below the limit indentation rate will allow errors in the determination of mechanical properties to be minimized.},
	doi = {10.1088/0957-4484/26/32/325701},	
}
@article{
	11589_61746,
	author = { Pettini  Francesco  and  Corsalini  Massimo  and  Savino  Maria Grazia  and  Stefanachi  Gianluca  and  Di Venere  Daniela  and  Pappalettere  Carmine  and  Monno  Giuseppe  and  Boccaccio  Antonio },
	title = {Roughness analysis on composite materials (Microfilled, nanofilled and silorane) after different finishing and polishing procedures},
	year = {2015},
	journal = {THE OPEN DENTISTRY JOURNAL},
	volume = {9},
	abstract = {The finishing and polishing of composite materials affect the restoration lifespan. The market shows a variety of finishing and polishing procedures and the choice among them is conditioned by different factors such as the resulting surface roughness. In the present study, 156 samples were realized with three composite materials, -microfilled, nanofilled and silorane-, and treated with different finishing and polishing procedures. Profilometric analyses were carried out on the samples' surface, the measured roughness values were submitted to statistical analysis. A complete factorial plan was drawn up and two-way analysis of variance (ANOVA) was carried out to investigate whether the following factors affect the values of roughness: (i) material; (ii) polishing/finishing procedure. Tukey post-hoc test was also conducted to evaluate any statistically significant differences between the material/procedure combinations. The results show that the tested materials do not affect the resulting surface quality but roughness values depend on the finishing/polishing procedure adopted. The procedures that involve: (a) the finishing with medium Sof-Lex discs and (b) the finishing with two tungsten carbide multi-blade milling cutters Q series and UF series are those that allow the lowest values of roughness to be obtained.},
	keywords = {Composite; Finishing; Polishing; Profilometer; Surface roughness; Dentistry (all)},
	url = {http://www.benthamscience.com/open/todentj/index.htm},
	doi = {10.2174/1874210601509010357},	
	pages = {357--367}
}
@conference{
	11589_16538,
	author = { Boccaccio A  and  Brunelli R  and  Lamberti L  and  Papi M  and  Parasassi T  and  De Spirito M  and  Pappalettere C },
	title = {A preliminary investigation on the mechanical behavior of umbilical cord with moiré techniques},
	year = {2015},
	publisher = {Springer},
	address = {NEW YORK},
	volume = {3},
	booktitle = {Proceedings of the 2014 SEM Annual Conference on Experimental and Applied Mechanics, Greenville (USA), June 2014. Volume 3: Advancement of Optical Methods in Experimental Mechanics},
	abstract = {The umbilical cord is a peculiar and complex structure, about 50–60 cm in length and 1–2 cm in diameter, that is essentially composed of three vessels, i.e. the umbilical vein and two umbilical arteries, arranged in coils around the vein surrounded by a great amount of support tissue, the Wharton’s Jelly (WJ) that binds and encases the umbilical vessels. WJ is a mucoid connective tissue (5 % cells, 95 % extracellular matrix) described as a three-dimensional spongy network of interlacing collagen fibers and small woven bundles of glycoprotein microfibrils with an interdispersed soluble phase composed by hydrophylic hyaluronans and proteoglycans. WJ grants the protection of the umbilical vessels against compressive forces due to fetal movements and uterine contractions and is very important to guarantee venous and arterial umbilical blood flows. WJ response to mechanical loading is not well understood; another unsolved problem concerns WJ putative contribution to store and release the energy of the cardiac cycle, therefore in maintaining the anterograde flow in the cord arteries. This article presents a preliminary study on the mechanical behavior of umbilical cord. For that purpose, an optical set up based on intrinsic moire´ will be developed. Slices cut in the transverse directions of the cord will be submitted to equibiaxial tests and specimen deformations will be monitored in real time with moire´ by printing a grating on the cord slice. In this way, it will be possible to gather information on the mechanical anisotropy of the cord},
	doi = {10.1007/978-3-319-06986-9_5},	
	pages = {47--52}
}
@conference{
	11589_16549,
	author = { Boccaccio A  and  Lamberti L  and  Papi M  and  Douet C  and  Goudet G  and  De Spirito M  and  Pappalettere C },
	title = {Study on the visco-hyperelastic behavior of the zona pellucida},
	year = {2015},
	publisher = {Springer},
	address = {NEW YORK},
	volume = {3},
	booktitle = {Proceedings of the 2014 SEM Annual Conference on Experimental and Applied Mechanics, Greenville (USA), June 2014. Volume 3: Advancement of Optical Methods in Experimental Mechanics},
	abstract = {The zona pellucida (ZP) is a specialized extracellular matrix surrounding the developing oocyte. This thick matrix consists of different types of glycoprotein, which have different roles in fertilization. Nowadays several techniques are developed and refined to establish the ZP mechanical response. The assumption at the basis of these methods is that the ZP behaves like an elastic body, dissipative forces are neglected, and thus the Young modulus value remains unaffected by probe dynamics. On the contrary dissipative force are strongly regulated by the slippage of ZP chains past one another whereas the absolute reaction force value is mainly due to the architecture of the ZP structure (number of cross-links and distances between knots). Elastic deflection is then due to the ability of each chain to stretch, whereas viscous flow is caused by the sliding of the molecules over one another. Therefore viscous reaction forces generated by the ZP have to be considered one of the main player in regulating the sperm transit but their peculiar behavior along the ZP structure is still poorly understood. In this context, for the first time, we developed and verified a visco-hyperelastic model able to reproduce the ZP reaction force stressed at different probe rate},
	doi = {10.1007/978-3-319-06986-9_6},	
	pages = {53--62}
}
