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相对湿度对棕榈叶手稿机械性能的影响:短期效应与长期老化

Influence of Relative Humidity on the Mechanical Properties of Palm Leaf Manuscripts: Short-Term Effects and Long-Term Aging.

作者信息

Zhang Wenjie, Wang Shan, Guo Hong

机构信息

Key Laboratory of Archaeomaterials and Conservation, Institute of Cultural Heritage and History of Science & Technology, University of Science and Technology Beijing, Ministry of Education, Beijing 100083, China.

Chinese Academy of Cultural Heritage, Beijing 100029, China.

出版信息

Molecules. 2024 Nov 28;29(23):5644. doi: 10.3390/molecules29235644.

Abstract

Palm leaf manuscripts are a valuable part of world cultural heritage. Studying the mechanical properties of palm leaf manuscripts and their changes due to environmental influences is of great significance for understanding the material characteristics, aging mechanisms, and preventive conservation of these manuscripts. This study used dynamic vapor sorption (DVS) and a thermomechanical analyzer (TMA) to investigate the changes to the mechanical properties of palm leaf manuscripts in response to different relative humidity conditions and different time periods. The short-term study results show that exposure to varying relative humidities leads to changes in the equilibrium moisture content (EMC) of palm leaf manuscripts, causing the bending strength of the samples to decrease significantly with increasing humidity. The bending modulus initially increases and then decreases as the humidity increases. Moreover, the greater the desorption hysteresis of the samples, the more pronounced the changes to the mechanical properties. Therefore, a stable environment in terms of humidity can prevent changes in the mechanical properties of palm leaf manuscripts, thereby preventing the onset of degradation. The results of the long-term aging studies indicate that prolonged exposure to either very dry or very humid conditions greatly affects the mechanical properties of palm leaf manuscripts, which is detrimental to their preservation. The samples kept at 50% RH did not exhibit significant signs of deterioration, with no notable changes in their mechanical properties or chemical structure. This suggests that 50% RH is a relatively optimal humidity condition for the preservation of palm leaf manuscripts.

摘要

棕榈叶手稿是世界文化遗产的重要组成部分。研究棕榈叶手稿的机械性能及其因环境影响而发生的变化,对于了解这些手稿的材料特性、老化机制和预防性保护具有重要意义。本研究使用动态蒸汽吸附(DVS)和热机械分析仪(TMA)来研究棕榈叶手稿在不同相对湿度条件和不同时间段下机械性能的变化。短期研究结果表明,暴露在不同的相对湿度下会导致棕榈叶手稿的平衡水分含量(EMC)发生变化,随着湿度的增加,样品的弯曲强度显著降低。随着湿度的增加,弯曲模量最初增加然后降低。此外,样品的解吸滞后越大,机械性能的变化就越明显。因此,在湿度方面保持稳定的环境可以防止棕榈叶手稿的机械性能发生变化,从而防止降解的发生。长期老化研究结果表明,长时间暴露在非常干燥或非常潮湿的条件下会极大地影响棕榈叶手稿的机械性能,这对其保存不利。保存在50%相对湿度下的样品没有出现明显的劣化迹象,其机械性能或化学结构没有显著变化。这表明50%相对湿度是保存棕榈叶手稿相对最佳的湿度条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f5c/11643737/66249d64b3cd/molecules-29-05644-g001.jpg

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