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Preparation, processing and characterization of biodegradable wood flour/starch-cellulose acetate compounds

机译:可生物降解的木粉/醋酸淀粉纤维素化合物的制备,加工和表征

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摘要

A novel biodegradable material was prepared by compounding, in different proportions, pine wood flour (WF) and a commercial starch-cellulose acetate blend on a configurable co-rotating twin screw extruder. After pelletizing, the compounds were injection moulded and the mechanical and rheological properties of the mouldings determined. As the content of wood flour increases up to 50% (wt/wt), the tensile strength and the modulus improve significantly, whereas the toughness drops gradually. The effect of the wood flour content on the shear viscosity is complex, being impossible to establish a linear relationship between the two. The shear viscosity decreases with shear rate, but for a level of 40% and 50% of WF there is evidence of a quasi-Newtonian behaviour, irrespective of the test temperature. Compounds with 50% WF present the highest tensile strength and modulus but are difficult to process. However, the processability can be improved by using glycerol as plasticizer, without paying a too severe penalty in mechanical properties. In fact, by adding 15% glycerol (wt/wt), compounds with 50% WF can be successfully injection moulded into specimens with good mechanical properties.
机译:通过在可配置的同向双螺杆挤出机上将松木粉(WF)和市售淀粉-醋酸纤维素共混物以不同比例混合,制备了一种新型的可生物降解材料。造粒后,将化合物注塑成型,并确定成型品的机械和流变性能。随着木粉含量增加到50%(wt / wt),抗张强度和模量显着提高,而韧性逐渐下降。木粉含量对剪切粘度的影响是复杂的,不可能在两者之间建立线性关系。剪切粘度随剪切速率而降低,但是对于WF的40%和50%的水平,无论测试温度如何,都有类似牛顿行为的迹象。 WF为50%的化合物具有最高的抗张强度和模量,但难以加工。然而,通过使用甘油作为增塑剂可以改善可加工性,而不会在机械性能上付出太大的代价。实际上,通过添加15%的甘油(wt / wt),具有50%WF的化合物可以成功地注塑成具有良好机械性能的样品。

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  • 来源
    《Journal of Materials Science》 |2001年第20期|4903-4909|共7页
  • 作者单位

    Department of Polymer Engineering University of Minho;

    Department of Polymer Engineering University of MinhoDepartment of Polymer Science and Engineering Zhejiang University;

    Department of Polymer Engineering University of Minho;

    Department of Polymer Science and Engineering Zhejiang UniversityThe National Key Laboratory of Advanced Composites;

    Department of Polymer Engineering University of Minho;

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