An analysis of targeted properties of materials used for preservation and storage of heritage collections

Gabriela Aleksić, T. Cigula, Suzana Pasanec Preprotić
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Abstract

The aim of this study was to stress the importance of investigating the prop- erties of preservation enclosure materials in order to identify the ones that are able to protect their contents more efficiently. Since not all information on materials is covered by international standards and technical specifica- tions, nine paper-based materials used for making preservation enclosures (file folders, passepartouts, boxes etc.) were investigated. A selective analysis of the materials' properties was carried out to determine smoothness, water absorptiveness, water wettability, water vapor permeability, tensile strength, folding endurance, bursting strength, puncture strength, as well as loss of bursting strength caused by dry heat and 100% RH. Results obtained from measuring smoothness, water absorptiveness, water wettability and water vapor transmission rate indicate that a material outside of ISO 16245:2009 grammage requirements for making file covers can exhibit more desirable properties than the one that meets multiple standards for storage and preservation. Additionally, results showed that bursting strength of enclosure materials was significantly affected by both extreme microclimate condi- tions. However, 100% RH had affected bursting strength of the investigated materials more than dry heat. The presented procedure proved to be a useful indicator of materials’ properties within the context of heritage collections preservation and storage.
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对用于文物收藏保存和储存的材料的目标特性进行分析
本研究的目的是强调研究保鲜外壳材料特性的重要性,以确定能够更有效地保护其内容物的材料。由于并非所有材料信息都包含在国际标准和技术规范中,因此对用于制作保存箱的九种纸质材料(文件夹、通行证、盒子等)进行了调查。对材料的性能进行了选择性分析,以确定光滑度、吸水性、水润湿性、水蒸气渗透性、拉伸强度、耐折叠性、爆裂强度、穿刺强度以及由干热和100%RH引起的爆裂强度损失。通过测量光滑度、吸水性、水润湿性和水蒸气透过率获得的结果表明,不符合ISO 16245:2009克重要求的文件封面材料可能比符合多种储存和保存标准的材料表现出更理想的性能。此外,研究结果表明,两种极端小气候条件对围护材料的爆裂强度都有显著影响。然而,100%RH对所研究材料的爆裂强度的影响大于干热。所提出的程序被证明是在遗产藏品保护和储存的背景下材料性质的有用指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of graphic engineering and design
Journal of graphic engineering and design Engineering-Computational Mechanics
CiteScore
1.40
自引率
0.00%
发文量
16
审稿时长
10 weeks
期刊最新文献
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