Nikmatin Siti, Hermawan Bambang, Irmansyah Irmansyah, Indro Mohammad Nur, Kueh Ahmad Beng Hong, Syafiuddin Achmad
Department of Physics, Faculty of Mathematics and Natural Sciences, Bogor Agricultural University, 16680 Bogor, Indonesia.
Construction Research Centre (CRC), Institute for Smart Infrastructure and Innovative Construction (ISIIC), Faculty of Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia.
Materials (Basel). 2018 Dec 22;12(1):34. doi: 10.3390/ma12010034.
The performance of helmet prototypes fabricated from acrylonitrile butadiene styrene composites filled with oil palm empty fruit bunch fibers was evaluated. The fibers were produced using a milling procedure, while the composites were fabricated using a single-screw extrusion. The physical characteristics of the produced fibers, which are water content, size, and density, were investigated. In addition, the mechanical properties of the produced helmets, including shock absorption, yield stress, frequency, and head injury criterion (HIC), were examined. The impact strength of the produced helmets increases with the rise of filler content. In addition, the helmets were also able to withstand a considerable pressure such that the transmitted pressure was far under the maximum value acceptable by the human skull. The present work also found that HICs exhibited by the investigated helmet prototypes fulfill all the practical guidelines as permitted by the Indonesian government. In terms of novelty, such innovation can be considered the first invention in Indonesia since the endorsement of the use of motorcycle helmets.
对由填充油棕空果串纤维的丙烯腈-丁二烯-苯乙烯复合材料制成的头盔原型进行了性能评估。纤维采用研磨工艺生产,而复合材料则采用单螺杆挤出工艺制造。研究了所生产纤维的物理特性,即含水量、尺寸和密度。此外,还检查了所生产头盔的机械性能,包括减震、屈服应力、频率和头部损伤准则(HIC)。所生产头盔的冲击强度随着填料含量的增加而提高。此外,头盔还能够承受相当大的压力,使得传递的压力远低于人类头骨可接受的最大值。目前的工作还发现,所研究的头盔原型所表现出的HIC符合印度尼西亚政府允许的所有实际指导方针。就新颖性而言,自批准使用摩托车头盔以来,这种创新可被视为印度尼西亚的第一项发明。