This paper presents a case study in which conoscopic, non-invasive, photoelastic techniquesand the associated model are applied for the first time to investigate the internal stress stateof the PbWO4 (PWO) uniaxial crystal, cut normal to the crystallographic a-c plane and withnon-uniform thickness.As a matter of facts indeed, in the mass production of crystals it is rather probable to havespecimen of non-constant thickness. In addition, the crystal cut, normal to the a-c plane, leadto a complex fringes structure and modeling. This can affect the fringe patterns interpretation,and in turn the interpretation of the stress state within the sample. In this paper we analyzethe dependence of some model parameters on the thickness, and the relative interpretationof the fringe pattern in order to obtain a reliable measure of the stress for observations normalto the a-c plane. This procedure can speed up the crystal analysis whatever the thickness ofthe crystal is.

Optimization of the photoelastic conoscopic fringe pattern processing for the stress measurement on uniaxial PWO crystal cut parallel to the a-c plane and with variable thickness / Natali, P. P.; Francesca, Cherubini; Davi', Fabrizio; Montalto, L.; Rinaldi, Daniele. - In: JOURNAL OF INSTRUMENTATION. - ISSN 1748-0221. - ELETTRONICO. - 17:(2022). [10.1088/1748-0221/17/02/P02021]

Optimization of the photoelastic conoscopic fringe pattern processing for the stress measurement on uniaxial PWO crystal cut parallel to the a-c plane and with variable thickness

P. P. Natali
Primo
;
Davi Fabrizio;L. Montalto
Penultimo
;
Rinaldi Daniele
Ultimo
2022-01-01

Abstract

This paper presents a case study in which conoscopic, non-invasive, photoelastic techniquesand the associated model are applied for the first time to investigate the internal stress stateof the PbWO4 (PWO) uniaxial crystal, cut normal to the crystallographic a-c plane and withnon-uniform thickness.As a matter of facts indeed, in the mass production of crystals it is rather probable to havespecimen of non-constant thickness. In addition, the crystal cut, normal to the a-c plane, leadto a complex fringes structure and modeling. This can affect the fringe patterns interpretation,and in turn the interpretation of the stress state within the sample. In this paper we analyzethe dependence of some model parameters on the thickness, and the relative interpretationof the fringe pattern in order to obtain a reliable measure of the stress for observations normalto the a-c plane. This procedure can speed up the crystal analysis whatever the thickness ofthe crystal is.
2022
Detection of defects, Scintillators and scintillating fibres and light guides, Scintillators, Scintillation and light emission processes (solid, gas and liquid scintillators)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11566/294521
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