Kadek Rihendra, Dantes, Nyoman Pasek Nugraha, Edi Elisa, Putu Heri Yudistira, ✉. Kadek, Rihendra Dantes
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引用次数: 1
摘要
本研究旨在研究碱处理对竹纤维增强聚酯复合材料冲击强度和断裂模式的影响。这种复合材料由聚酯树脂作为基体和竹纤维作为填料或增强剂组成。使用的碱性处理时间为5% NaOH,从1小时到4小时,以确定冲击试样的断裂模式的显微图像。本研究采用实验方法,因变量为冲击强度和断口形态的显微图像,自变量为碱处理时间1小时、2小时、3小时和4小时。标本采用手铺法打印。通过根据ASTM D 6110-04进行连续试验来确定冲击强度。冲击试验结果表明,冲击强度在碱性处理前2小时呈上升趋势,在碱性处理后3小时、4小时呈下降趋势。竹纤维绳经碱性处理2小时冲击强度最高,达到1373.89 J/M2。断口形貌的显微图像分析表明,碱处理2小时断口效果最佳,断裂机制为脆性断裂。
ANALISIS PENGARUH VARIASI WAKTU PERLAKUAN ALKALI TERHADAP KEKUATAN IMPACT KOMPOSIT POLYESTER YANG DIPERKUAT SERAT BAMBU
This study aimed to determine the effect of alkali treatment on the impact strength and fracture pattern of bamboo fiber reinforced polyester composites. This composite consisted of polyester resin as a matrix and bamboo fiber as a filler or reinforcement. The alkaline treatment time used was 5% NaOH from 1 hour to 4 hours and to determine the microscopic image of the fracture pattern of the impact test specimen. This study used an experimental method with the dependent variable being the impact strength and microscopic images of the fracture pattern, and the independent variable was the alkali treatment time 1 hour, 2 hours, 3 hours and 4 hours. Specimens were printed using the hand lay-up method. The impact strength was known by performing consecutive tests based on ASTM D 6110-04. Based on the results of the impact test, it showed that the impact strength increased until the alkaline treatment 2 hours ago and decreased at 3 hours, and 4 hours. The highest impact strength was shown in the alkaline treatment of bamboo fiber rope 2 hours with an impact strength value of 1373.89 J/M2. The examination of the microscopic image of the fracture pattern obtained the best fracture in 2 hours alkali treatment with a brittle fracture mechanism.