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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Effect of Film Crystallinity on Environmental Stress Cracking in Polyester Film Laminated on Steel Sheets for Interior Building Materials
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Effect of Film Crystallinity on Environmental Stress Cracking in Polyester Film Laminated on Steel Sheets for Interior Building Materials

机译:薄膜结晶度对室内建筑材料钢板层压聚酯薄膜环境应力开裂的影响

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Polyvinyl chloride coated steel sheets were generally used as interior building materials because of their embossing decorativeness, bending formability and durability. However the polyvinyl chloride generates harmful gases when it's disposed of. Hence substitution of the resin was demanded from the environmental point of view. We have developed polyester film laminated steel sheets as the substitution and already reported that especially polybutylene terephthalate (PBT) film laminated ones were superior to the polyvinyl chloride coated ones as conventional materials. In some tests for durability, however, we found that crack occurred at the bent portion of the film when it was dipped in alkaline solution. A degree of the crack changed by laminating conditions of the film and aging time after bending. This phenomena implies that the transition of crystallinity in the film due to the laminating condition relates to the generation of the cracking. Here, the crack is considered to be a kind of environmental stress cracking. In this paper, we investigated the cracking at the bent portion of the PBT film laminated steel sheets, which was caused by dipping into alkaline solution. The crack size of the bent portion was larger than that occurred at the plane portion. The more the crystallinity of the film had, the larger the crack size was. In low crystallinity, the crack was inclined to decrease with aging after bending. At 40 deg C aging, the crack rapidly decreased when comparing to that at 25 deg C aging.
机译:聚氯乙烯涂覆的钢板由于其压花装饰性,弯曲成形性和耐久性而通常用作室内建筑材料。但是,聚氯乙烯处理后会产生有害气体。因此,从环境的观点出发,要求替代树脂。我们已经开发出聚酯薄膜层压钢板作为替代品,并且已经报道,特别是聚对苯二甲酸丁二酯(PBT)薄膜层压钢板优于传统材料的聚氯乙烯涂层钢板。但是,在一些耐久性试验中,我们发现,将薄膜浸入碱性溶液中时,薄膜的弯曲部分会出现裂纹。裂纹的程度根据膜的层压条件和弯曲后的时效时间而变化。这种现象表明,由于层压条件,薄膜中的结晶度转变与裂纹的产生有关。在此,裂纹被认为是一种环境应力裂纹。在本文中,我们研究了PBT薄膜层压钢板弯曲部分的开裂,该开裂是由于浸入碱性溶液引起的。弯曲部分的裂纹尺寸大于平面部分的裂纹尺寸。膜的结晶度越多,裂纹尺寸越大。在低结晶度下,弯曲倾向于随着弯曲后的老化而减小。与25℃时效相比,在40℃时效时,裂纹迅速减小。

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