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Mechanical Physical and Thermal Properties of Sugar Palm Nanocellulose Reinforced Thermoplastic Starch (TPS)/Poly (Lactic Acid) (PLA) Blend Bionanocomposites

机译:糖棕榈纳米纤维素增强热塑性淀粉(TPS)/聚(乳酸)(PLA)混合脱硫复合材料的机械物理和热性能

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摘要

In this paper, sugar palm nanocellulose fibre-reinforced thermoplastic starch (TPS)/poly (lactic acid) (PLA) blend bionanocomposites were prepared using melt blending and compression moulding with different TPS concentrations (20%, 30%, 40%, 60%, and 80%) and constant sugar palm nanocellulose fibres (0.5%). The physical, mechanical, thermal, and water barrier properties were investigated. The SEM images indicated different TPS loading effects with the morphology of the blend bionanocomposites due to their immiscibility. A high content of TPS led to agglomeration, while a lower content resulted in the presence of cracks and voids. The 20% TPS loading reduced the tensile strength from 49.08 to 19.45 MPa and flexural strength from 79.60 to 35.38 MPa. The thermal stability of the blend bionanocomposites was reduced as the TPS loading increased. The thickness swelling, which corresponded to the water absorption, demonstrated an increasing trend with the increased addition of TPS loading.
机译:本文采用熔融混合和压缩成型,制备糖棕榈纳米纤维素纤维增强热塑性淀粉(TPS)/聚(乳酸)(PLA)共混脱硫复合材料,具有不同的TPS浓度(20%,30%,40%,60%和80%)和恒定的糖棕榈纤维素纤维(0.5%)。研究了物理,机械,热和水屏障性质。 SEM图像指示由于它们不含不混溶的混合物脱硫复合物的形态而不同的TPS负载效应。高含量的TPS导致凝聚,而较低的内容导致裂缝和空隙的存在。 20%TPS加载从49.08至19.45MPa和弯曲强度的抗拉强度降低,抗弯强度为79.60至35.38MPa。随着TPS负载的增加,混合物脱硫复合材料的热稳定性降低。与吸水率相对应的厚度膨胀表明,随着增加的TPS负载增加,呈增加趋势。

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