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Tests on Material Compatibility of Phase Change Materials and Selected Plastics

机译:相变材料和所选塑料的材料兼容性测试

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摘要

Practical applications of Phase Change Materials (PCMs) often require their encapsulation in other materials, such as metals or plastics. This raises the issue of compatibility between PCMs and encapsulating materials, which has still not been sufficiently addressed. The study presented here follows existing research and provides experimental evaluation of the suitability of selected PCMs for proposed integration in building structures. Two organic PCMs, two inorganic PCMs and three representative plastics (polypropylene (PP-H), high density polyethylene (PE-HD) and polyvinylchloride (PVC-U)) were selected for compatibility tests. Evaluation of the results is based on the mass variations of the plastic samples during the test period. Plastic samples were immersed in PCMs and subjected to periodic heating and cooling (for 16 weeks) in a small environmental chamber simulating real operational conditions. The results show that the organic PCMs have a greater ability to penetrate the PE-HD and PP-H compared with the inorganic PCMs. The penetration of all PCMs was most notable during the first four weeks of the experiment. Later it slowed down significantly. Overall, the mass changes in PE-HD and PP-H samples did not exceed 6.9% when immersed in organic PCMs and 1.8% in inorganic PCMs. PVC-U samples exhibited almost negligible (less than 0.1%) mass variation in all cases.
机译:相变材料(PCM)的实际应用通常要求将其封装在其他材料中,例如金属或塑料。这就提出了PCM与封装材料之间的兼容性的问题,该问题仍未得到充分解决。此处提出的研究是在现有研究基础上进行的,并提供了对选定PCM在建筑结构中建议的适用性的实验评估。选择了两种有机PCM,两种无机PCM和三种代表性的塑料(聚丙烯(PP-H),高密度聚乙烯(PE-HD)和聚氯乙烯(PVC-U))进行兼容性测试。结果的评估基于测试期间塑料样品的质量变化。将塑料样品浸入PCM中,并在一个模拟实际操作条件的小型环境室内进行定期加热和冷却(持续16周)。结果表明,与无机PCM相比,有机PCM具有更大的穿透PE-HD和PP-H的能力。在实验的前四个星期,所有PCM的渗透最为明显。后来,它明显减慢了速度。总体而言,浸入有机PCM中的PE-HD和PP-H样品的质量变化不超过6.9%,而浸入无机PCM中的质量变化不超过6.9%。在所有情况下,PVC-U样品的质量变化几乎可以忽略不计(小于0.1%)。

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