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首页> 外文期刊>Materials science forum >Performance and Evaluation of Low Cost Sugarcane Bagasse - Polypropylene Biocomposites as Candidate Material for Automotive Parcel Tray
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Performance and Evaluation of Low Cost Sugarcane Bagasse - Polypropylene Biocomposites as Candidate Material for Automotive Parcel Tray

机译:低成本甘蔗渣-聚丙烯生物复合材料作为汽车包裹托盘的候选材料的性能和评估

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摘要

Many auto manufacturers such as Mercedes Benz, Toyota and DaimlerChrysler have already embraced natural fiber composites into both interior and exterior parts and are looking to expand the uses of this composites. They have to balance the changing public demands of greater comfort, better driving performances, and higher safety standards with the environmental requirements. Based on the preliminary study using 20 to 30 wt.% NaOH treated sugarcane bagasse fibers to make biocomposites with polypropylene matrix, the tensile strength obtained was variably, in the range between 8.31 to 20.59 MPa. A further study was required to improve the strength of the composites in comparison with the specified flexural strength required by the industry for automotive parcel tray. The sugarcane bagasse fibers obtained from the sugar mill were used and alkali treated with 10% v/v NaOH at various soaking time of 2, 4, and 6 hours. Biocomposite samples were prepared from 25/75 wt.% ratio sugarcane fibers/polypropylene (PP). The highest tensile strength of 14.35 MPa was obtained from the samples with sugarcane fibers receiving two-hour alkali treatment. However, the highest flexural strength (37.78 MPa) was gained on the samples made from sugarcane fibers with 4 hours alkali treatment. This value has met the strength specification of two materials for current parcel trays which were made from monomaterial of polypropylene and woodboard composite which their flexural strengths were 35.6 MPa and 37.57 MPa, respectively. Structural studies using scanning electron microscopy (SEM) on the fracture surface of tensile tested samples show two different orientations of bagasse fibres in PP matrix, i.e. a group was in longitudinal orientation and other in transversal orientation.
机译:许多汽车制造商,例如梅赛德斯·奔驰,丰田和戴姆勒·克莱斯勒,已经在内部和外部部件中采用了天然纤维复合材料,并希望扩大这种复合材料的用途。他们必须在不断变化的公共需求,更高的舒适性,更好的驾驶性能以及更高的安全标准与环境要求之间取得平衡。基于使用20至30 wt。%NaOH处理的甘蔗渣纤维制备具有聚丙烯基质的生物复合材料的初步研究,获得的拉伸强度在8.31至20.59 MPa之间变化。与汽车包裹托盘行业所需的指定挠曲强度相比,需要进一步研究以提高复合材料的强度。使用从制糖厂获得的甘蔗渣纤维,并在2、3和6小时的各种浸泡时间下用10%v / v NaOH进行碱处理。由25/75重量%的甘蔗纤维/聚丙烯(PP)制备生物复合材料样品。从甘蔗纤维经过2小时碱处理的样品中获得了14.35 MPa的最高拉伸强度。但是,甘蔗纤维经4小时碱处理后的样品获得了最高的弯曲强度(37.78 MPa)。该值满足了目前的包裹托盘的两种材料的强度规格,这两种材料是由聚丙烯和木板复合材料制成的,其抗弯强度分别为35.6 MPa和37.57 MPa。在拉伸测试样品的断裂表面上使用扫描电子显微镜(SEM)进行的结构研究表明,甘蔗渣纤维在PP基体中有两种不同的取向,即一组在纵向取向,另一组在横向取向。

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