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Characterization of flexible Poly(vinyl butyral)/wood flour composites

机译:柔性聚乙烯醇缩丁醛/木粉复合材料的表征

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The purpose of this study is to deeply characterize a flexible poly(vinyl butyral) (PVB)/wood flour (WF) recycled composite produced by an efficient and simplified processing strategy. The mixing of the PVB/WF composite (25, 40 and 55 wt%) was performed in a single screw extruder equipped with a Maillefer screw with mixer block type pineapple in the metering zone, with the screw operating in starved feed condition in its feeding zone. Thermogravimetric analysis showed that the thermostability of PVB is the limiting factor for the composite processing window and that prior drying of wood flour and PVB is important to avoid hydrolytic degradation. Although SEM analysis has shown the presence of WF aggregates when a high content of reinforcement is added, the extrusion process disperses the wood flour relatively well. The composites have a good interphase adhesion even without a coupling agent. Relative and true density linearly increased with wood flour incorporation, as predicted by the simple rule of mixture. The hardness of pure PVB is 18 Shore D and the composite with 55% WF has 60 Shore D hardness, an increase of 230%. The incorporation of the WF reduced the PVB damping effect but did not change significantly the glass transition temperature, kept around 30 degrees C. This study is very positive when the objective is the production of a flexible and natural composite from recycled materials in a simple and economically attractive way.
机译:这项研究的目的是通过高效且简化的加工策略来深度表征柔性聚乙烯醇缩丁醛(PVB)/木粉(WF)再生复合材料。 PVB / WF复合材料(25、40和55 wt%)的混合是在单螺杆挤出机中进行的,该挤出机配备了Maillefer螺杆,并在计量区内装有混合块式菠萝,螺杆在饥饿的进料条件下操作区。热重分析表明,PVB的热稳定性是复合加工窗口的限制因素,并且事先干燥木粉和PVB对于避免水解降解很重要。尽管SEM分析表明添加高含量的增强剂后会存在WF聚集体,但挤出过程可使木粉相对分散。即使没有偶联剂,复合材料也具有良好的相间粘合性。如混合的简单规则所预测的,相对密度和真实密度随木粉的加入而线性增加。纯PVB的硬度为18邵氏D,而WF为55%的复合材料的肖氏D硬度为60,增加了230%。 WF的加入降低了PVB的阻尼作用,但并未显着改变玻璃化转变温度(保持在30摄氏度左右)。当目标是由回收材料以简单,简单的方式生产柔性天然复合材料时,这项研究是非常积极的经济上有吸引力的方式。

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