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Effect of wood sawdust content on rheological and structural changes,and thermo-mechanical properties of PVC/sawdust composites

机译:木屑含量对PVC /木屑复合材料流变和结构变化及热机械性能的影响

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The use of untreated sawdust as a filler in poly(vinyl chloride)(PVC)was examined-the effects of sawdust content on structural and thermal changes,and rheological and mechanical properties being of main interest.The results revealed that the torque and die entrance pressure drop values during mixing were independent of sawdust particles up to 23.1 wt%.The extrudate swell monotonically decreased up to 33.3 wt% sawdust content.Smooth wood-like texture with controllable size of the extrudate could be obtained at a sawdust content greater than 33.3 wt%.Tensile,impact,flexural and hardness properties of the PVC/sawdust composites considerably decreased with up to 16.7 wt% sawdust content before leveling off for higher wawdust loadings.The composites having sawdust higher than 16.7 wt% showed a benefit of cost savings.The decreases in the mechanical properties of PVC with sawdust are explained in association with the presence of moisture,interfacial defects between fibre and polymer,and fibre dispersions in the PVC matrix.Thermal degradations of PVC in PVC/sawdust composites were evidenced by a decrease in decomposition temperature and an increase in polyene sequences,which were caused by Cl cleavage due to strong hydrogen bonds of fibre-PVC molecules.The maximum of tan delta transition and the glass transition temperature were found to improve with sawdust content as a result of re-formation of hydrogen bonds between the macromolecules of the fibre and the polymer.The overall results in this work suggest that the properties of PVC/sawdust composites were strongly influenced by sawdust content up to 16.7 wt%.Beyond this value the effect of sawdust content on the properties was comparatively smal.
机译:检验了使用未处理的木屑作为聚氯乙烯(PVC)的填充剂-木屑含量对结构和热变化的影响,并且流变和机械性能是主要关注点。结果表明,扭矩和模头进入混合过程中的压降值不依赖于高达23.1 wt%的木屑颗粒。挤出物的溶胀单调降低至33.3 wt%的木屑含量;当木屑含量大于33.3时,可以获得具有可控挤出物尺寸的光滑木纹结构PVC /木屑复合材料的拉伸,冲击,挠曲和硬度性能明显下降,锯末含量最高可达到16.7 wt%,然后由于较高的木屑含量而趋于稳定。木屑含量高于16.7 wt%的复合材料显示出节省成本的好处解释了木屑对聚氯乙烯的机械性能的下降与水分的存在,纤维与聚合物之间的界面缺陷以及纤维的关系PVC /木屑复合材料中PVC的热降解表现为分解温度降低和多烯序列增加,这是由于PVC-PVC分子具有很强的氢键导致Cl裂解而导致的。由于纤维和聚合物大分子之间氢键的重新形成,棕褐色转变温度和玻璃化转变温度随木屑含量的增加而提高。这项工作的总体结果表明,PVC /木屑的性能高达16.7 wt%的木屑含量对复合材料的影响很大。超过此值,木屑含量对性能的影响相对较小。

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