Abdul Azam Farah Atiqah, Rajendran Royan Nishata Royan, Yuhana Nor Yuliana, Mohd Radzuan Nabilah Afiqah, Ahmad Sahrim, Sulong Abu Bakar
Department of Mechanical and Manufacturing, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Bangi, Selangor Darul Ehsan 43600, Malaysia.
School of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Selangor Darul Ehsan 43600, Malaysia.
Polymers (Basel). 2020 Feb 19;12(2):475. doi: 10.3390/polym12020475.
In this study, a biodegradable, cheap and durable recycled high-density polyethylene (rHDPE) polymer reinforced with rice husk (RH) fibre was fabricated into a foam structure through several processes, including extrusion, internal mixing and hot pressing. The effect of filler loading on the properties of the foam and the influence of RH surface treatments on the filler-matrix adhesion and mechanical properties of the composite foam were investigated. The morphological examination shows that 50 wt.% filler content resulted in an effective dispersion of cells with the smallest cell size (58.3 µm) and the highest density (7.62 × 1011 sel/cm). This small cell size benefits the mechanical properties. Results indicate that the tensile strength and the Young's modulus of the alkali-treated RH/rHDPE composite foam are the highest amongst the treatments (10.83 MPa and 858 MPa, respectively), followed by UV/O, which has shown considerable increments compared with the untreated composite. The flexural and impact tests also show the increment in strength for the composite foam after chemical treatment. Although the UV/O surface treatment has minor influence on the mechanical enhancement of the composite foam, this method may be a reliable surface treatment of the fibre-reinforced composite.
在本研究中,一种由稻壳(RH)纤维增强的可生物降解、廉价且耐用的回收高密度聚乙烯(rHDPE)聚合物,通过挤出、内部混合和热压等多个过程被制成泡沫结构。研究了填料含量对泡沫性能的影响以及RH表面处理对复合泡沫填料-基体粘附力和机械性能的影响。形态学检查表明,50 wt.%的填料含量导致泡孔有效分散,泡孔尺寸最小(58.3 µm)且密度最高(7.62×10¹¹个泡孔/cm)。这种小泡孔尺寸有利于机械性能。结果表明,碱处理的RH/rHDPE复合泡沫的拉伸强度和杨氏模量在各种处理中最高(分别为10.83 MPa和858 MPa),其次是UV/O处理,与未处理的复合材料相比有显著提高。弯曲和冲击试验也表明化学处理后复合泡沫的强度有所增加。虽然UV/O表面处理对复合泡沫的机械增强作用较小,但该方法可能是一种可靠的纤维增强复合材料表面处理方法。