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Studies on Effects of Different Cross-Linkers on the Properties of Starch-Based Wood Composites

机译:不同交联剂对淀粉基木材复合材料性能影响的研究

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摘要

A green route is demonstrated to prepare biobased composites from renewable resources like starch and soft wood with engineering aspects. In this process, three different cross-linkers such as glutaraldehyde (GA), dimethyloldihydroxyethyleneurea (DMDHEU), and N-methylol acrylamide (NMA) have been used to cross-link methyl methacrylate-grafted starch with wood flour. Water is used as a solvent and glycerol as a plasticizer in the preparation of wood starch composites. Effects of these cross-linkers on different properties of the composites have been investigated through a limiting oxygen index test and mechanical, dynamic mechanical, and thermogravimetric analysis. DMDHEU cross-linked composites show the least water uptake capacity compared to NMA- and GA-based cross-linked composites due to their better cross-linked structure as DMDHEU contains a higher number of functional groups. The interaction among polymer, cross-linker, and wood has been found to be the maximum in DMDHEU cross-linked composites as revealed by FTIR and SEM studies. DMDHEU cross-linked composites also exhibit higher mechanical and thermal properties.
机译:通过绿色途径可以从可再生资源(如淀粉和软木)中制备具有工程学意义的生物基复合材料。在此过程中,已使用了三种不同的交联剂,例如戊二醛(GA),二甲基氧代羟基乙烯脲(DMDHEU)和N-羟甲基丙烯酰胺(NMA)来使甲基丙烯酸甲酯接枝的淀粉与木粉交联。在木淀粉复合材料的制备中,水用作溶剂,甘油用作增塑剂。通过极限氧指数测试以及机械,动态机械和热重分析,研究了这些交联剂对复合材料不同性能的影响。与基于NMA和GA的交联复合材料相比,DMDHEU交联复合材料的吸水能力最低,这是因为DMDHEU包含更多的官能团,因此它们具有更好的交联结构。 FTIR和SEM研究表明,在DMDHEU交联复合材料中,聚合物,交联剂和木材之间的相互作用最大。 DMDHEU交联复合材料还具有较高的机械和热性能。

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