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The effect of sisal fiber content in the biocomposite product from injection molding process on its mechanical properties

机译:注射成型工艺对生物复合产品纤维含量的影响在其机械性能下

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Many products made of composite have been found in human everyday life. Products such as vehicle component, electrical appliances, household appliances to medical equipment are made from composite. Composites are composed more than one basic constituent material. Polymer Matrix Composite (PMC) is kind of composite that polymer (plastic) as the based component. Most of PMC use synthetic fiber-materials as filler, but several kinds of synthetic fiber - materials can cause damage of the environment and the price is expensive. Because of this undesirable properties, environmental friendly and cheap filler materials are searched to replace the materials that have been used. Currently, many researchers are doing research using natural fibers as an alternative reinforcement (filler) to form a new composite called biocomposite. One of the natural fibers that can be utilized is sisal fiber. Sisal fibers are derived from sisal plants that are widely found in Indonesia. Sisal fiber is an effective polymer filler and can alter the physical and mechanical properties of a polymer. This research was conducted by experimental study to make the product from biocomposite material by using injection molding machine, consisting of several composition of polypropylene (PP) as a matrix, sisal fiber (SS) as reinforcement (filler) and maleic anhydride polypropylene (MAPP) as adhesive. The mixed material is printed in the form of a tensile and impact test specimen by injection molding machine. Injection molded specimens will be tested for tensile strength and strength of shock or impact load. In addition, it will also check the temperature of the specimen melting through the DSC and its permeability configuration via SEM. From these test and examination, it is expected to know the mechanical properties, such as tensile strength and impact strength, of biocomposite material, melting temperature and its surface configuration. Sisal fiber bio-composite can be used as product material in injection molding process. The product results still indicate a slight shrinkage so it is necessary to adjust the value of the appropriate parameter process. The value of tensile strength increases with the addition of sisal fiber percentage to the biocomposite mixture, while the impact test decrease. The highest tensile strength and impact test are 32.14 Mpa and 1.54 kj/mm~2 respectively. The addition of sisal fiber makes the material becomes brittle. The visible void increases with the addition of sisal fibers.
机译:在人类日常生活中发现了由复合材料制成的许多产品。车辆部件,电器,家用电器等产品由复合材料制成。复合材料由一个以上的基本组成材料组成。聚合物基质复合物(PMC)是聚合物(塑料)作为基组分的复合材料的种类。大多数PMC使用合成纤维材料作为填料,但几种合成纤维材料会导致环境损坏,价格昂贵。由于这种不希望的性质,搜索环境友好和廉价的填充材料来取代已使用的材料。目前,许多研究人员正在使用天然纤维作为替代钢筋(填料)进行研究,以形成一种称为生物复合材料的新型复合材料。可以使用的一种天然纤维是Sisal纤维。 Sisal纤维源自印度尼西亚广泛发现的Sisal植物。 Sisal纤维是一种有效的聚合物填料,可以改变聚合物的物理和机械性能。该研究是通过实验研究进行的,通过使用注塑机使产品从生物复合材料制成,由几种聚丙烯(PP)作为基质,Sisal纤维(SS)作为增强件(填料)和马来酸酐聚丙烯(MAPP)组成。作为粘合剂。通过注塑机以拉伸和冲击试样的形式印刷混合材料。将测试注塑试样的抗拉强度和冲击或冲击载荷的强度。此外,还将通过SEM检查通过DSC熔化的样本温度及其渗透性配置。从这些测试和检查中,预计将知道生物复合材料,熔化温度及其表面构型的抗拉强度和冲击强度等机械性能。 Sisal纤维生物复合材料可用作注塑过程中的产品材料。产品结果仍然表示轻微收缩,因此有必要调整适当的参数过程的值。抗拉强度的值随着向生物复杂复合混合物的添加而增加,而冲击试验降低。最高拉伸强度和冲击试验分别为32.14MPa和1.54 kJ / mm〜2。添加Sisal纤维使材料变脆。随着添加Sisal纤维,可见空隙增加。

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