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Processing Effects on Mechanical Properties and Creep Behaviors of Wood-Microbial Polyester Composites

机译:对木微生物聚酯复合材料的机械性能和蠕变行为的处理效果

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U.S. market of wood plastic composites (WPCs) has been forecasted to have an a rapid growing rate. Petroleum-based polyolefin, i.e. polyethylene (PE) and polypropylene (PP), is primarily used to produce WPCs. WPCs are widely used in non-structural construction applications, i.e. outdoor decks and window frame. However, fossil oil cannot be sustainably produced, on the research and development of renewable and sustainable plastics is now an urgent issue while fossil oil is depleting. A microbial polyester, polyhydroxybutyrate (PHB), can be generated via bio-reaction of microbe or bacteria. These bacteria convert carbohydrate components from agriculture resource to PHB as metabolism process, and then store PHB as then-energy source. PHB is commonly been compared with PP due to their similar chemical structure and mechanical properties. As the reason, many of research studies have been investigated properties of natural fiber reinforced PHB composites.
机译:预计,木塑复合材料(WPC)的市场塑料复合材料(WPC)率已经存在迅速增长。石油基聚烯烃,即聚乙烯(PE)和聚丙烯(PP),主要用于产生WPC。 WPC广泛用于非结构施工应用,即室外甲板和窗框。然而,无能为力地生产化石油,对可再生和可持续塑料的研究和开发现在是一个紧急问题,而化石油耗尽。微生物聚酯,聚羟基丁酸酯(PHB)可以通过微生物或细菌的生物反应产生。这些细菌将碳水化合物组分从农业资源转化为PHB作为代谢过程,然后将PHB储存为THE-LETION源。由于其类似的化学结构和机械性能,通常与PP进行比较PHB。作为原因,许多研究研究已经研究了天然纤维增强PHB复合材料的性质。

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