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Investigations on ageing of wood-plastic composites for outdoor applications: A meta-analysis using empiric data derived from diverse weathering trials

机译:户外用木塑复合材料的老化研究:一项荟萃分析,使用了来自各种耐候试验的经验数据

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The successful development of durable wood-plastic composite (WPC) cladding is a challenge for the industry. Due to the organic fibres in the compound it is though doubtable if WPC performs satisfyingly in a fa ade application which is expected to last 50 years. This paper provides insights from a study to find out how ageing of WPC cladding can be assessed by relevant norms and which material components best support durability aspects. Based on these, a meta-analysis using 44 empirically generated data from 12 papers in the field of accelerated weathering, thermohygric conditioning and fungal decay of WPCs was conducted. It was found that high values of modulus of rupture (MOR) and Young's modulus (MOE) are considered key to an engineering design of WPC facades. Both parameters are appropriate indicators to describe the ageing of WPC cladding. Weathering of WPC decreases MOE more than MOR. Exposure to UV-radiation is more harmful than frost-thaw cycling. In order to minimize a loss in value in MOR and MOE, the use pf polyethylene in extruded panels with large-sized hardwood fibres under low content is recommended. Hence, these basic findings add higher value to a product development. (C) 2016 Lucerne University of Applied Sciences - Engineering & Architecture. Published by Elsevier Ltd.
机译:耐用的木塑复合材料(WPC)覆层的成功开发对行业构成挑战。由于复合物中的有机纤维,尽管WPC在可持续使用50年的幕墙应用中能否令人满意地发挥作用,但仍值得怀疑。本文提供了一项研究的真知灼见,以发现如何通过相关规范评估WPC覆层的老化以及哪些材料成分最能支持耐用性方面。在此基础上,进行了荟萃分析,使用了来自WPC的加速风化,热湿条件调节和真菌腐烂领域的12篇论文的44个经验生成的数据。人们发现,高的断裂模量(MOR)和杨氏模量(MOE)值被认为是WPC外墙工程设计的关键。这两个参数都是描述WPC覆层老化的合适指标。 WPC的耐候性比MOR更能降低MOE。暴露于紫外线辐射比冻融循环有害得多。为了最大程度地降低MOR和MOE的价值损失,建议在低含量的大型硬木纤维挤出面板中使用pf聚乙烯。因此,这些基本发现为产品开发增加了更高的价值。 (C)2016卢塞恩应用科技大学-工程与建筑。由Elsevier Ltd.发布

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