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Natural Fiber-Plastic Composites for Construction Applications

机译:建筑用天然纤维-塑料复合材料

摘要

Natural fiber-plastic composites containing natural fibers as dispersed phase (filler) and polypropylene as matrix are an important and emerging type of compounds used in construction, automotive, consumer products, etc. To evaluate and understand the properties of NFPCs in construction industry, it is important to check the mechanical properties of laboratory prepared NFPCs with various fibers, polypropylene grades and additives. To achieve this goal, the fibers are needed to be ground and be thoroughly analyzed for fiber sizes distributions and aspect ratios distributions to identify the size and shape of fibers to correlate such information with mechanical properties of the NFPC. In this dissertation, it was found that oat hull fibers were smaller than bagasse fibers on average and had lower aspect ratios compared to bagasse fibers.Using Minitab software, two-level factorial experimental design was employed in three design of experiments (DOEs) to check the effect of fiber type, fiber content, coupling agent content, impact modifier type and impact modifier content on mechanical and impact properties of NFPC. Samples as per DOE runs were conditioned, compounded with twin screw co-rotating extruder, injection molded and tested. The results indicated that bagasse interacts much better compared to oat hull with coupling agent. As well, styrene copolymerized with ethylene/propylene rubber appeared to be more effective in increasing impact properties. Coupling agent appeared to very effective increasing tensile properties although had mild deteriorating effect on impact properties. It was found that compared to unfilled polypropylene, bagasse as a natural filler was very effective on Flexural properties, however, bagasse decreased the tensile properties when compared to unfilled polypropylene. SEM microscopy was used to observe mechanism of impact and appeared to support numerical tests results of Izod Impact Energy responses. Statistical methods generally validated the results and best normal residual plot fit was for Izod Impact results which was almost linear. The worst fit however, belonged to mean failure Energy results. Statistical validity of results was also considered in detail using normal residual plots and were reported in detail for each DOE. Generally, the results were validated with some exceptions.It is important to evaluate and understand the effect of UV weathering on properties of commercially available NFPC products. To achieve this goal, a Design of experiment was designed to run tests for effect of weathering and physical impact location on multi-axial impact properties of an NFPC product. Commercial products were cut to size and impacted by multi-axial impact tester and work versus displacement graphs were generated. Effect of UV weathering and impact location was studied on Multi-Axial impact responses of NFPC commercial roofing product and results indicated UV weathering deteriorated total energy, energy to maximum load and maximum load of roofing product. The location of impact either in middle or side or with/without back reinforcement, was not found to be effective on multi-axial impact properties The statistical method used was mildly validated using normal residual plots.
机译:含有天然纤维作为分散相(填料)和聚丙烯作为基质的天然纤维-塑料复合材料是一种重要的新兴类型的化合物,用于建筑,汽车,消费品等领域。要评估和了解NFPC在建筑行业的性能,对于检查实验室准备的含各种纤维,聚丙烯等级和添加剂的NFPC的机械性能非常重要。为了实现该目标,需要对纤维进行研磨,并对纤维的尺寸分布和纵横比分布进行彻底分析,以识别纤维的尺寸和形状,从而将此类信息与NFPC的机械性能相关联。本研究发现,燕麦壳纤维平均比蔗渣纤维小,长宽比比蔗渣纤维小。使用Minitab软件,在三个实验设计中采用了二级析因实验设计(DOE)进行检测。纤维类型,纤维含量,偶联剂含量,抗冲改性剂类型和抗冲改性剂含量对NFPC力学性能和冲击性能的影响。调节DOE运行的样品,与双螺杆同向旋转挤出机混合,注塑成型并进行测试。结果表明,与带有偶联剂的燕麦壳相比,蔗渣的相互作用要好得多。同样,与乙烯/丙烯橡胶共聚的苯乙烯似乎在提高冲击性能方面更有效。偶联剂似乎具有非常有效的增加拉伸性能的作用,尽管对冲击性能有轻微的恶化作用。已经发现,与未填充的聚丙烯相比,甘蔗渣作为天然填料对挠曲性能非常有效,但是与未填充的聚丙烯相比,甘蔗渣降低了拉伸性能。 SEM显微镜用于观察冲击的机理,似乎支持了艾佐德冲击能量响应的数值测试结果。统计方法通常可以验证结果,并且最佳的法线残留图拟合是针对几乎线性的Izod Impact结果的。然而,最差的拟合度是指平均失败的Energy结果。还使用正常残差图详细考虑了结果的统计有效性,并详细报告了每个DOE。一般而言,除某些例外情况外,结果均经过验证。重要的是评估和了解紫外线风化对市售NFPC产品性能的影响。为了实现此目标,设计了一个实验设计来进行测试,以测试风化和物理冲击位置对NFPC产品多轴冲击性能的影响。将商品切成一定尺寸,并通过多轴冲击测试仪进行冲击,并生成功与位移的关系图。研究了紫外线风化和冲击位置对NFPC商业屋面产品的多轴冲击响应的影响,结果表明,紫外线风化会降低总能量,最大负荷和最大负荷的能量。在中轴或侧面或有/无背面加固的冲击位置均未发现对多轴冲击特性有效。所使用的统计方法已通过正常残差图进行了轻度验证。

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    Shafiee Monfared Ehsan;

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  • 年度 2016
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  • 正文语种 en
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