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Riferimenti bibliografici [1] Andreini M. “Comportamento all‟incendio di pareti in muratura: aspetti teorici, normativi e sperimentali”,

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Riferimenti bibliografici

259

Riferimenti bibliografici

[1] Andreini M. “Comportamento all‟incendio di pareti in muratura:

aspetti teorici, normativi e sperimentali”, Tesi di Laurea A.A.

2008/2009;

[2] Allison J. A. and Giles e. Bristow, “The effects of fire on rock

weathering: some further considerations of laboratory experimental simulation”Earth Surf. Process. Landforms 24, 707-713 (1999); [3] Allison J. A. and Giles e. Bristow, “The effects of fire on rock

weathering: - an experimental study. In Rock Weathering and Landform Evolution, Robinson DA, Williams RGB (eds).

Wiley:Chichester. 41-56 (1994);

[4] Chakrabarti B., Yates T. and Lewry A.,” Effect of fire damage on

natural stonework in buildings”, Construcrion and Building Materials,

Vol. 10, No. 1, pp. 539-544, (1996);

[5] Di Nigro, “progettazione di strutture in acciaio e composte

acciaio-calcestruzzo in caso di incendio”, Ulrico Hoepli, 2010;

[5] Franzini M., Lezzerini M., “Le pietre dell‟edilizia medievale pisana e

lucchese (Toscana occidentale), 2- I calcari selciferi del Monte Pisano”, Atti Soc. tosc. Nat. Mem., Serie A, pagg. 1-8 105 (1998);

[6] Goudie A.S., Allison R. J., Mclaren S.J., “The relations between

modulus of elasticity and temperature in the context of the experimental simulation of rock weathering by fire”, Earth surface processes and

landforms, Vol. 17, 605-615 (1992);

[7] Hajpál M, “Changes in Sandstones of Historical Monuments Exposed

to Fire or High Temperature”, Fire Technology, 38, 373–382, 2002;

Hajpál M., ”The behavior of natural building stones by heat effect”, Fracture and failure of natural stones, 439-445;

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[8] Hajpál M., Törok Á., “Effect of temperature changes on the

mineralogy and physical properties of sandstones. A laboratory Study”,

Restoration of Buildings and Monuments, Vol. 11, No 4, 1-8 (2005); [9] Hajpál M., Törok Á.,”Petrophisical and mineralogical studies of burnt

sandstones”, Proceeding 2nd

international PhD Symposium 1998 Budapest, 476-485 (1998);

[10] McCabe S., Smith B. J., Warke P.A.,” Exploitation of inherited

weakness in fire-damaged building sandstone: the „fatiguing‟ of „shocked‟ stone”, Engineering Geology 115, 217–225 (2010);

[11] McCabe S., Smith B. J., Warke P.A., “Sandstone response to salt

weathering following simulated fire damage: a comparison of the effects of furnace heating and fire”, Earth surface processes and

landforms, Vol. 32, 1874 - 1883 (2007);

[12] Ponticelli L., Caciolai M., “Resistenza al fuoco delle costruzioni”, UTET Scienze tecniche, Torino, 2008;

[13] Sippel J, Siegesmund S, Weiss T, et al. “Decay of natural stones

caused by fire damage”, Geological Society, London, Special

Publications 2007; v. 271; p. 139-151;

[14] Tratebas A. M., Cervey N. V., Dorn I. R., “The effect of fire on rock

art: microscopic evidence reveals the importance of weathering rinds”,

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