The technique described in this paper is for one-side thermal diffusivity measurement. A single stripe-shaped pulse provided by a flash lamp is used to heat the front surface of a specimen slab. Classical methods for estimating a parameter out of a distribution involve fitting the temperature distribution with its theoretical model [1][2]. With the technique described in this paper the evolution of the temperature distribution along a line perpendicular to the heated stripe is analyzed in the frequency domain. An estimate of the thermal diffusivity is then obtained from comparison of the phase component behavior with an abacus similarly built from the theoretical model.

Novel front surface thermal diffusivity measurement method based on phase analysis

A Braggiotti;S Marinetti
2000

Abstract

The technique described in this paper is for one-side thermal diffusivity measurement. A single stripe-shaped pulse provided by a flash lamp is used to heat the front surface of a specimen slab. Classical methods for estimating a parameter out of a distribution involve fitting the temperature distribution with its theoretical model [1][2]. With the technique described in this paper the evolution of the temperature distribution along a line perpendicular to the heated stripe is analyzed in the frequency domain. An estimate of the thermal diffusivity is then obtained from comparison of the phase component behavior with an abacus similarly built from the theoretical model.
2000
INGEGNERIA BIOMEDICA
Istituto per le Tecnologie della Costruzione - ITC
Inglese
NONDESTRUCTIVE EVALUATION OF AGING MATERIALS AND COMPOSITES IV
Conference on Nondestructive Evaluation of Aging Materials and Composites IV
288
293
0-8194-3611-9
MAR 08-09, 2000
NEWPORT BEACH, CA
diffusivity measurement
one-side test
flash heating
phase analysis
2
none
Braggiotti, A; Marinetti, S
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/188886
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