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首页> 外文期刊>Tribology in Industry >Mechanical, Spectroscopic and Micro-structural Characterization of Banana Particulate Reinforced PVC Composite as Piping Material
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Mechanical, Spectroscopic and Micro-structural Characterization of Banana Particulate Reinforced PVC Composite as Piping Material

机译:香蕉颗粒增强PVC复合材料作为管道材料的机械,光谱和微观结构表征

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A banana particulate reinforced polyvinyl chloride (PVC) composite was developed with considerabley low cost materials having an overall light-weight and good mechanical properties for potential application as piping material. The specimen composite material was produced with the banana (stem) particulate as reinforcement using compression molding. Results showed that density and elastic Modulus of the composite decreases and increases respectively with increasing weight fraction of the particulate reinforcement. The tensile strength increased to a maximum of 42 MPa and then decreased steadily. The composition with optimum mechanical property (42 MPa) was determined at 8, 62 and 30 % formulation of banana stem particulates (reinforcement), PVC (matrix) and Kankara clay (filler) respectively with corresponding percentage water absorption of 0.79 %, Young’s Modulus of 1.3 GPa, flexural strength of 92 MPa and density of 1.24 g/cm3. Fourier Transform Infrared (FTIR) analysis of the constituents showed identical bands within the range 4000–1000 cm-1 with renown research work. Scanning Electron Microscopy (SEM) result showed fairly uniform distribution of constituents’ phases. X-Ray Fluorescence (XRF) confirms the X-ray diffraction (XRD) result of the presence of minerals of kaolinite, quartz, rutile and illite in the kaolin clay. Comparison with conventional piping materials showed the composite offered a price savings per meter length of 84 % and 25 % when compared with carbon steel and PVC material.
机译:开发了一种香蕉颗粒增强的聚氯乙烯(PVC)复合材料,它具有相当低廉的材料,具有整体轻巧和良好的机械性能,可潜在地用作管道材料。使用压缩成型法,以香蕉(茎)颗粒作为增强材料生产了复合材料样品。结果表明,复合材料的密度和弹性模量随颗粒增强剂重量分数的增加而分别降低和增加。拉伸强度最大增加到42 MPa,然后稳定下降。确定了具有最佳机械性能(42 MPa)的组合物,分别以8%,62和30%的香蕉梗颗粒(增强),PVC(基体)和Kankara粘土(填料)的配方确定,相应的吸水百分比为0.79%,杨氏模量强度为1.3 GPa,抗弯强度为92 MPa,密度为1.24 g / cm3。成分的傅立叶变换红外(FTIR)分析显示,在著名研究工作中,相同的波段在4000–1000 cm-1范围内。扫描电子显微镜(SEM)结果显示成分相的分布相当均匀。 X射线荧光(XRF)证实了高岭土中存在高岭石,石英,金红石和伊利石的矿物的X射线衍射(XRD)结果。与传统管道材料的比较表明,与碳钢和PVC材料相比,该复合材料每米长度可节省84%和25%的价格。

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