Study of triacetate cinematographic films and magnetic audio track by infrared spectroscopy

Q3 Materials Science Koroze a ochrana materialu Pub Date : 2018-02-01 DOI:10.2478/kom-2018-0005
V. Knotek, P. Korandová, R. Kalousková, M. Ďurovič
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引用次数: 3

Abstract

Abstract Most of the cinematographic film collections stored in film archives are made on a triacetate base, and from the 1950s to the 1980s, a magnetic track was used to record sound. With a large number of archive materials, archives often do not know the chemical composition of film bases, history of use and degradation rates. Therefore, the chemical composition of three films with a magnetic audio track and one representative of the modern film FOMAPAN were investigated by infrared spectroscopy. Selected samples were artificially aged at elevated temperatures and humidity, and the rate of degradation of the film was evaluated by infrared spectroscopy, dimensional changes and gravimetric analysis. Based on the measurements, all of the examined films were made from cellulose triacetate and the binder of the magnetic trackswas cellulose nitrate. To determine the degree of degradation of the binder of the audio track and the triacetate base, a degradation index was created which expresses the ratio of the bandwidths of the characteristic groups in the infrared spectra. It is shown that infrared spectroscopy makes it easy to determine the chemical composition of cinematographic films and to quantify the rate of degradation and the current state of the film base using a suitably chosen degradation index.
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红外光谱法研究三乙酸盐电影胶片和磁音轨
摘要保存在电影档案中的大多数电影收藏都是在三乙酸盐的基础上制作的,从20世纪50年代到80年代,人们使用磁轨道来记录声音。由于档案材料数量庞大,档案馆往往不知道胶片基质的化学成分、使用历史和降解率。因此,通过红外光谱法研究了三种具有磁性音轨的薄膜和一种代表现代薄膜FOMMAPAN的化学成分。选定的样品在高温和湿度下人工老化,并通过红外光谱、尺寸变化和重量分析评估薄膜的降解速率。根据测量结果,所有检查的薄膜都是由三乙酸纤维素和磁性轨道的粘合剂硝酸纤维素制成的。为了确定音轨的粘合剂和三乙酸酯碱的降解程度,创建了一个降解指数,该指数表示红外光谱中特征基团的带宽之比。研究表明,红外光谱法可以很容易地确定电影胶片的化学成分,并使用适当选择的降解指数来量化降解速率和胶片基底的当前状态。
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来源期刊
Koroze a ochrana materialu
Koroze a ochrana materialu Materials Science-Materials Science (all)
CiteScore
3.00
自引率
0.00%
发文量
8
审稿时长
14 weeks
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