Effect of Holding Time and Temperature of Hot Pressing on Tensile Strength of Biodegradable Plastic Made of Carrageenan

F. Imaduddin, Palgunadi Sastra, W. W. Raharjo, P. Wullandari, Ridwan Ridwan
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Abstract

The most significant environmental problem was caused by plastic. One way to handle plastic waste was using biodegradable plastic because it faster decomposes naturally. Biodegradable plastic can be made from carrageenan by the hot press method. This method can make biodegradable plastic with large dimensions. However, the plastic quality depended on the holding time, temperature, and pressure selected during the hot pressing process. Therefore, this research is conducted to determine the effect of holding time and temperature in the hot press process on the tensile strength of biodegradable plastic made from carrageenan. The composition of the biodegradable plastic material used was 35% carrageenan, 35% polyvinyl alcohol (PVA), and 30% glycerol. In the manufacture of composites, the holding time was varied: 10, 20, 30, and 40 minutes, as well as the process temperature varied from 100, 110, 120, and 130 °C. The tensile strength of the composite was observed through tensile testing using a Universal Testing Machine. FTIR, XRD, and SEM tests were also conducted to sharpen the analysis. The addition of holding time led to an increase in the tensile strength of biodegradable plastics. The highest tensile strength was obtained at a holding time of 30 minutes with a value of 4.45 MPa. After 30 minutes, the tensile strength of the biodegradable composite decreased. Meanwhile, the addition of process temperature caused a decrease in the tensile strength of biodegradable plastics. The highest tensile strength was obtained at a process temperature of 100 °C with a value of 5.28 MPa.
保温时间和热压温度对卡拉胶可生物降解塑料抗拉强度的影响
最严重的环境问题是由塑料引起的。处理塑料垃圾的一种方法是使用可生物降解塑料,因为它可以更快地自然分解。生物可降解塑料可由卡拉胶热压法制备。这种方法可以制造出大尺寸的可生物降解塑料。然而,塑料的质量取决于保温时间、温度和热压过程中选择的压力。因此,本研究旨在确定热压过程中保温时间和温度对卡拉胶制成的生物降解塑料抗拉强度的影响。所使用的可生物降解塑料材料的组成为35%的卡拉胶,35%的聚乙烯醇(PVA)和30%的甘油。在复合材料的制造过程中,保温时间为10、20、30和40分钟,工艺温度为100、110、120和130℃。采用万能试验机对复合材料进行拉伸试验,观察其抗拉强度。同时进行了FTIR、XRD、SEM等测试,使分析更加精细。保温时间的增加导致生物降解塑料的抗拉强度增加。保温时间为30 min时拉伸强度最高,为4.45 MPa。30min后,生物降解复合材料的抗拉强度下降。同时,工艺温度的升高导致生物降解塑料的抗拉强度降低。当工艺温度为100℃时,拉伸强度最高,为5.28 MPa。
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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