Sistema RestArt per la ricomposizione ad alta precisione di opere d'arte lapidee frammentarie

Autori

  • Pietro Nardelli Architetto Via G. Calderini 68, Roma
  • Martina Pavan Giulia Pompa Ma.Co.Re'. s.r.l. Via G. Severano 35, 00161, Roma,
  • Silvia Borghini Museo Nazionale Romano Laboratorio Grandi Marmi via E. De Nicola 70, Roma
  • Ivan Roselli ENEA , R.C. Casaccia, Via Anguillarese 301, 00123, S. Maria di Galeria, Roma

DOI:

https://doi.org/10.48258/arc.v12i2.1805

Parole chiave:

sistema meccatronico, ricostruzione virtuale 3D, ricomposizione frammenti lapidei, restauro grandi statue

Abstract

The RestArt method is an innovative mechatronic-based procedure,
developed by the architect Nardelli, for high-precision reassembly of stone
fragments intended to improve the restoration of ancient statues
and architectural elements. The procedure comprises high-accuracy
3D laser scanning of two fragments positioned on the RestArt machine.
After virtual reconstruction through best-fitting algorithms, the machine
guides the drilling system for high-precision rods insertion and moves
one fragment to match the other one. The mechanical resistance of
stone specimens reassembled by the RestArt and the traditional methods
was tested by strong motion vibration experiments on shaking table.

Riferimenti bibliografici

Arbacea, L., Sonnino, E., Callieri, M., Dellepiane, M., Fabbri, M.,

Iaccarino Idelson, A. & Scopigno, R. (2013) Innovative uses of 3D digital

technologies to assist the restoration of a fragmented terracotta

statue. J. Cult. Herit. 14(4), 332-345.

De Canio, G., de Felice, G., De Santis, S.,Giocoli, A., Mongelli,

M.,Paolacci, F. & Roselli, I. (2016) Passive 3D motion optical data in

shaking table tests of a SRG-reinforced masonry wall. Earthquakes and

Structures 40(1), 53-71.

Di Pasquale, E., Ju, J.W., Askar, A. & à‡akmak, A.S. (1990) Relation

between Global Damage Indi-ces and Local Stiffness Degradation.

Journal of Structural Engineering, 116(5), 1440-56.

Fioriti, V., Roselli, I.,Tatà¬, A., Romano, R. & De Canio, G. (2018)

Motion Magnification Analysis for Structural Monitoring of Ancient

Constructions. Measurement 129, 375-380.

Gherardini, F., Santachiara, M. & Leali, F.(2018) 3D Virtual

Reconstruction and Augmented Reality Visualization of Damaged Stone

Sculptures. IOP Conf. Series: Materials Science and Engineering, vol.

, 012004.

Jo, Y. H., Hong, S., Jo, S. Y. & Yoon, M. K. (2020) Noncontact restoration

of missing parts of stone Buddha statue based on three-dimensional

virtual modeling and assembly simulation. Herit. Sci. 8(103).

Nardelli, P. (2021) Apparato per la rilevazione, misurazione e

movimentazione per ricomposizioni di oggetti fratturati e relative

a tecnica di utilizzo dello stesso. Brevetto Italiano applicazione n.

, data 1 Febbraio 2021.

Papaioannou, G., Schreck, T., Andreadis, A., Mavridis, P., Gregor, R.,

Vardis, K. & Sipiran, I. (2017) From Reassembly to Object Completion

- A Complete Systems Pipeline. ACM J. Comput. Cult. Herit.,10(2),

Article 8.

Polimeno, M. R., Roselli, I.,Luprano, V., Mongelli, M., Tatà¬, A. & De

Canio, G. (2018) A non-destructive testing methodology for damage

assessment of reinforced concrete buildings after seismic events.

Engineering Structures163, 122-136.

Rasheed, N. A. & Nordin, M. J. (2020) Reconstruction algorithm for

archaeological fragments using slope features. ETRI Journal 42(3), 420-

Rossi, M., Calderini, C., Roselli, I., Mongelli, M., De Canio, G. &

Lagomarsino, S. (2020) Seismic analysis of a masonry cross vault

through shaking table tests: the case study of the Dey Mosque in

Algiers. Earthquakes and Structures 18(1), 57-72.

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Pubblicato

2021-09-16

Come citare

Nardelli, P., Giulia Pompa, M. P., Borghini, S., & Roselli, I. (2021). Sistema RestArt per la ricomposizione ad alta precisione di opere d’arte lapidee frammentarie. Archeomatica, 12(2). https://doi.org/10.48258/arc.v12i2.1805

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