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Study on flexural performance of fabricated natural fiber hybrid polypropylene composite: an experimental investigation through designed experiments

机译:天然纤维杂化聚丙烯复合材料弯曲性能的研究:通过设计实验的实验研究

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Purpose-This paper aims to investigate the flexural properties i.e. the flexural strength and the flexural modulus under the influence of selected input variables, namely; fiber type, fiber loading and fiber size in fabricated natural fiber polymeric composites through using Taguchi's design of experiment methodology.Design/methodology/approach-The Taguchi's design of experiment approach has been used to scheme a suitable combination to fabricate the polymeric composites. Pure polypropylene (PP) has been chosen as a matrix material, whereas two types of fibers, namely; wood powder (WP) i.e. sawdust and rice husk powder (RHP), have been used as a reinforcement in the matrix. Microstructure analysis of fabricated and tested samples has also been evaluated and analyzed using a scanning electron microscope. This analysis has divulged that at moderate fiber size and higher fiber loading, no gap or cavities presented between the fillers and matrix particles, which illustrates the good interfacial bonding between the materials. Findings-The flexural strength of the wood powder pure polypropylene (WPPP) composite decreases if the fiber content gets increased beyond 20 Wt.%. In addition, the flexural strength of hybrid composite (WPRHPPP) has been revealed to get improved more in comparison to composites with single fiber as reinforcement. Furthermore, the flexural modulus of WPPP composite has also increased with the increase in fiber loading. It has been concluded that reinforcement size plays an imperative role in influencing the flexural modulus. The optimum parametric setting for the flexural strength and the flexural modulus has been devised as; fiber type-WPRHP, fiber loading -10 Wt.% and fiber size-600 μm; and fiber type-WP, fiber loading-30 Wt.% and fiber size-1,180 μm, respectively. The microstructure images clearly revealed that during conducted flexural tests, some particles get disturbed from their bonded position that mainly represents the plastic deformation. Social implications-The fabricated polymer materials proposed in the research work are green and environmentally friendly. Originality/value-The natural fiber-based composites are possessing wide-spread requirements in today's competitive structure of manufacturing and industrial applications. The fabrication of the natural fiber-based composites has also been planned through the designed experiments (namely; Taguchi Methodology- L_9 orthogonal array matrix), which, further, makes the analysis more fruitful and qualitative too. The fabricated polymer materials proposed in the research work are green and environmentally friendly. Shisham WP has been rarely used in the past researches; therefore, this factor has been included for the present work. The injection molding process is used to fabricate the three different polymer composite by varying the fiber weight percentage and fiber size.
机译:目的-本文旨在研究挠曲特性,即在选定输入变量的影响下的挠曲强度和挠曲模量;即通过Taguchi的实验方法设计,可以制备天然纤维聚合物复合材料的纤维类型,纤维载量和纤维尺寸。设计/方法/方法-Taguchi的实验方法设计用于规划合适的组合,以制造聚合物复合材料。纯聚丙烯(PP)已被选作基质材料,而两种类型的纤维,即;木粉(WP),即锯末和稻壳粉(RHP)已用作基质中的增强剂。加工和测试样品的微观结构分析也已使用扫描电子显微镜进行了评估和分析。该分析表明,在中等尺寸的纤维和较高的纤维负载下,填料和基体颗粒之间没有间隙或空洞,这说明了材料之间的良好界面结合。结论-如果纤维含量增加到20 Wt。%以上,则木粉纯聚丙烯(WPPP)复合材料的抗弯强度会降低。此外,与以单纤维为增强材料的复合材料相比,杂化复合材料的抗弯强度(WPRHPPP)已显示出更多的提高。此外,WPPP复合材料的弯曲模量也随着纤维载荷的增加而增加。已经得出结论,增强尺寸在影响弯曲模量中起着至关重要的作用。弯曲强度和弯曲模量的最佳参数设定被设计为:光纤类型为WPRHP,光纤负载为-10 Wt。%,光纤尺寸为600μm;和WP型纤维,纤维负载量为30 Wt。%,纤维尺寸为1,180μm。显微组织图像清楚地表明,在进行挠曲测试期间,一些颗粒从其结合位置受到干扰,这主要代表塑性变形。社会意义-研究工作中提出的人造高分子材料是绿色环保的。原创性/价值-天然纤维基复合材料在当今竞争激烈的制造和工业应用结构中具有广泛的要求。还通过设计的实验(即Taguchi Methodology-L_9正交阵列矩阵)计划了天然纤维基复合材料的制造,这进一步使分析也更加富有成效和定性。研究工作中提出的人造高分子材料是绿色环保的。 Shisham WP在过去的研究中很少使用。因此,此因素已包括在本工作中。通过改变纤维的重量百分比和纤维尺寸,使用注射成型工艺来制造三种不同的聚合物复合材料。

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