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Fatigue Damage of the Gesso Layer in Panel Paintings Subjected to Changing Climate Conditions

机译:气候条件变化导致面板绘画中石膏层的疲劳损伤

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摘要

Numerical modelling was used to follow the moisture movement and strain in a composite system an unrestrained, single wood panel coated with a layer of gesso, in response to cyclic sinusoidal variations in relative humidity (RH). The allowable magnitude of the variations, below which physical damage of the gesso layer on the wood does not occur over a selected time of exposure, was derived as a function of cycle duration, panel thickness and moisture diffusion configuration. The dimensional response of wood substrate becomes subject to restraint by the applied layer of gesso. The panels do not respond significantly to diurnal fluctuations or shorter irrespectively of the panel thickness. The panels respond more and more significantly when the duration of the fluctuations increases until a certain critical period at which the panel fully responds to each cycle. The analysis of the data obtained indicates that moderate RH variations within the approximate range 50 +/- 15% are safe. This safe range was derived using the extremes of conservative criteria of the gessos fatigue fracture and assumption of worst-case wooden substrate response. The reduction of allowable amplitude of RH cycles because of decrease in the gessos modulus of elasticity and thickness is discussed.
机译:响应于相对湿度(RH)的周期性正弦变化,使用数值模型来跟踪复合系统中水分的移动和应变,该复合系统是覆盖有石膏层的不受约束的单一木板。根据循环持续时间,面板厚度和水分扩散配置,得出变化的允许幅度,在该幅度之下,木材上的石膏层在选定的暴露时间内不会发生物理损坏。木材基材的尺寸响应会受到石膏层的约束。无论面板厚度如何,面板对日间波动或较短的变化均无明显响应。当波动的持续时间增加,直到某个关键时期,专家组对每个周期做出完全响应时,专家组的反应越来越显着。对获得的数据的分析表明,在大约50 +/- 15%的范围内进行适度的RH变化是安全的。该安全范围是使用gessos疲劳断裂的保守标准的极端值和最坏情况的木制基板响应的假设得出的。讨论了由于gessos弹性模量和厚度的减小而导致的RH循环允许振幅的减小。

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