Jose Seiko, Shanumon Puthenpurackal Shajimon, Paul Annmi, Mathew Jessen, Thomas Sabu
School of Chemical Sciences, Mahatma Gandhi University, Kottayam 686560, Kerala, India.
Textile Manufacturing and Textile Chemistry Division, ICAR-Central Sheep and Wool Research Institute, Avikanagar 304501, Rajasthan, India.
Polymers (Basel). 2022 Nov 12;14(22):4882. doi: 10.3390/polym14224882.
In the reported study, two composites, namely sisal-wool hybrid composite (SWHC) and pineapple leaf fibre(PALF)-wool hybrid composite (PWHC) were prepared by mixing natural rubber with equal quantities of wool with sisal/PALF in a two-roll mixing mill. The mixture was subjected to curing at 150 °C inside a 2 mm thick mold, according to the curing time provided by the MDR. The physico-mechanical properties of the composite ., the tensile strength, elongation, modulus, areal density, relative density, and hardness were determined and compared in addition to the solvent diffusion and thermal degradation properties. The hybrid composite samples were subjected to accelerated aging, owing to temperature, UV radiation, and soil burial tests. The cross-sectional images of the composites were compared with a scanning electron microscopic analysis at different magnifications. A Fourier transform infrared spectroscopic analysis was conducted on the hybrid composite to determine the possible chemical interaction of the fibres with the natural rubber matrix.
在该报道的研究中,通过在双辊混合机中将天然橡胶与等量的羊毛以及剑麻/菠萝叶纤维进行混合,制备了两种复合材料,即剑麻-羊毛混杂复合材料(SWHC)和菠萝叶纤维-羊毛混杂复合材料(PWHC)。根据门尼粘度计(MDR)提供的硫化时间,将混合物在2毫米厚的模具内在150℃下进行硫化。除了溶剂扩散和热降解性能外,还测定并比较了复合材料的物理机械性能,即拉伸强度、伸长率、模量、面密度、相对密度和硬度。由于温度、紫外线辐射和土壤掩埋试验,对混杂复合材料样品进行了加速老化。在不同放大倍数下通过扫描电子显微镜分析对复合材料的横截面图像进行了比较。对混杂复合材料进行了傅里叶变换红外光谱分析,以确定纤维与天然橡胶基体之间可能的化学相互作用。