Neutron radiography for the study of water uptake in painting canvases and preparation layers

被引:0
|
作者
J. J. Boon
R. Hendrickx
G. Eijkel
I. Cerjak
A. Kaestner
E. S. B. Ferreira
机构
[1] Swiss Institute for Art Research (SIK-ISEA),Neutron Imaging and Activation Group, Laboratory for Neutron Scattering and Imaging
[2] FOM Institute AMOLF,undefined
[3] Paul Scherrer Institut,undefined
来源
Applied Physics A | 2015年 / 121卷
关键词
Water Uptake; Ground Layer; Moisture Uptake; Beam Hardening; Neutron Radiography;
D O I
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中图分类号
学科分类号
摘要
Easel paintings on canvas are subjected to alteration mechanisms triggered or accelerated by moisture. For the study of the spatial distribution and kinetics of such interactions, a moisture exposure chamber was designed and built to perform neutron radiography experiments. Multilayered sized and primed canvas samples were prepared for time-resolved experiments in the ICON cold neutron beamline. The first results show that the set-up gives a good contrast and sufficient resolution to visualise the water uptake in the layers of canvas, size and priming. The results allow, for the first time, real-time visualisation of the interaction of water vapour with such layered systems. This offers important new opportunities for relevant, spatially and time-resolved material behaviour studies and opens the way towards numerical modelling of the process. These first results show that cellulose fibres and glue sizing have a much stronger water uptake than the chalk–glue ground. Additionally, it shows that the uptake rate is not uniform throughout the thickness of the sized canvas. With prolonged moisture exposure, a higher amount of water is accumulating at the lower edge of the canvas weave suggesting a decrease in permeability in the sized canvas with increased water content.
引用
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页码:837 / 847
页数:10
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