The Effect of Using Clay-CaCO3 as Filler on Tensile Strength, %Elongation, and Young's Modulus Value in Modified Poly Lactic Acid (PLA)

Aisyah Alifatul, Tri Widjaja, H. Ni’mah, Endarto Yudho Wardhono, Atha Pahlevi, Efra Sariyunardi
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Abstract

Plastic is an important necessity with the characteristics of being light, strong, relatively cheap, and durable. However, plastic cannot decompose in a short time so that it becomes a pollutant. The using of Poly lactic acid (PLA) is an alternative to synthetic plastics substitute such as Low-Density Polyethylene (LDPE) because it is degradable. However, PLA is brittle, so it requires a plasticizer in the form of additives, namely Polyethylene glycol (PEG) 200 and fillers in the form of clay and CaCO3 to improve the mechanical properties of PLA which is brittle and has poor toughness. The purpose of this study was to determine the effect of adding additives to mechanical properties of PLA. The method used is solvent blending using chloroform as a solvent, stirring at 200 rpm for 6 hours at 30 . The research was conducted through testing the effect of the ratio of filler addition on the condition that the ratio of PLA/Additives was constant, i.e., 70%PLA/30% Additives. The resulting film is white and slightly transparent and has a smooth surface. The effect of adding additives in the form of plasticizers and fillers was tested through Dynamic Mechanical Analysis (DMA) analysis to determine the value of tensile strength, Young's modulus, and elongation break. The best result was obtained at a ratio of 25%CaCO3/Clay, which was increasing elongation at break 7.62%. It also indicated with best decreased percentage value of Young’s modulus, and highest crystallinity index of 39.86%. The worst value is obtained in variant of 50%CaCO3/Clay that indicated with lowest tensile strength and decreased of % elongation at break. From this study, the best variant was recommended as a laminating plastic, that does not require high tensile strength for application.
使用粘土-CaCO3 作为填料对改性聚乳酸 (PLA) 的拉伸强度、拉伸率和杨氏模量值的影响
塑料是一种重要的生活必需品,具有轻便、坚固、相对便宜和耐用的特点。然而,塑料无法在短时间内分解,因此成为一种污染物。使用聚乳酸(PLA)可以替代低密度聚乙烯(LDPE)等合成塑料替代品,因为它可以降解。然而,聚乳酸比较脆,因此需要添加剂形式的增塑剂,即聚乙二醇(PEG)200 和粘土和 CaCO3 形式的填料,以改善聚乳酸脆且韧性差的机械性能。本研究的目的是确定添加添加剂对聚乳酸机械性能的影响。采用的方法是以氯仿为溶剂进行溶剂混合,以 200 转/分的速度在 30°C 下搅拌 6 小时。研究是在聚乳酸/添加剂比例不变的条件下,即 70%PLA/30% 添加剂的条件下,通过测试填料添加比例的影响来进行的。所得薄膜为白色,微透明,表面光滑。通过动态力学分析(DMA)确定拉伸强度、杨氏模量和断裂伸长率的值,测试了以增塑剂和填料形式添加添加剂的效果。当 CaCO3/Clay 的比例为 25% 时,结果最佳,断裂伸长率增加了 7.62%。这也表明杨氏模量的百分比值下降幅度最大,结晶度指数最高,为 39.86%。50%CaCO3/Clay变体的数值最差,抗拉强度最低,断裂伸长率百分比下降。根据这项研究,建议将最佳变体用作不需要高拉伸强度的层压塑料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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