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首页> 外文期刊>Journal of Polymers and the Environment >Biodegradability and Thermal Properties of Novel Natural Rubber/ Linear Low Density Polyethylene/Thermoplastic Starch Ternary Blends
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Biodegradability and Thermal Properties of Novel Natural Rubber/ Linear Low Density Polyethylene/Thermoplastic Starch Ternary Blends

机译:新型天然橡胶/线性低密度聚乙烯/热塑性淀粉三元共混物的生物降解性和热性能

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摘要

This work aimed to prepare biodegradable thermoplastic elastomers based on NR/LLDPE/TPS ternary simple blends to achieve some exclusive properties, i.e., good biodegradability in terms of water absorption and weight loss after burial, together with reasonable mechanical and thermal properties. A comparative study on biodegradability and other related properties of NR/LLDPE binary and NR/LLDPE/TPS ternary blends was performed. It was found that increasing the TPS proportion decreased storage modulus and complex viscosity. In addition, the size of dispersed TPS domains in the NR/LLDPE co-continuous matrix increased with TPS proportion, while the mechanical properties in terms of 100% moduli, tensile strength, elongation at break, and hardness decreased. This might be attributed to decreased interfacial adhesion with increasing size of TPS domains. Furthermore, increasing the TPS loading in the blend reduced the temperatures for 5 or 50% mass loss (T (5) or T (50)) and the degradation temperature (T (d) ). However, the biodegradability improved, in terms of increased water absorption and weight loss after burial in soil, with the loading level of TPS.
机译:这项工作旨在制备基于NR / LLDPE / TPS三元简单共混物的可生物降解的热塑性弹性体,以实现某些独特的性能,即,在吸水率和埋藏后失重方面具有良好的生物降解性,以及合理的机械和热性能。进行了NR / LLDPE二元混合物和NR / LLDPE / TPS三元混合物的生物降解性及其他相关性能的比较研究。发现增加TPS比例降低了储能模量和复数粘度。此外,NR / LLDPE共连续基体中分散的TPS域的大小随TPS比例的增加而增加,而机械性能(以100%模量,拉伸强度,断裂伸长率和硬度表示)降低。这可能归因于随着TPS结构域大小的增加,界面粘附性降低。此外,增加共混物中的TPS含量可降低5%或50%质量损失的温度(T(5)或T(50))和降解温度(T(d))。然而,就TPS的负载水平而言,就增加的吸水率和在土壤中埋葬后的重量损失而言,生物降解性得到了改善。

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