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Thermoplastic starch with deep eutectic solvents and montmorillonite as a base for composite materials

机译:具有深层共晶溶剂的热塑性淀粉和蒙脱石作为复合材料的碱

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摘要

Thermoplastic starch (TPS) materials were prepared from potato starch, deep eutectic solvents (DES) as plasticizers [choline chloride (ChCI) with urea (U) or imidazole (IM) at molar ratio 1:2 and 3:7, respectively] and urea intercalated montmorillonite (UM). Extrusion and thermocompression were used as processing methods. It was found that UM resulted in decreasing melt viscosities of TPS composite materials at processing temperature range (120-140 degrees C), especially pronounced when ChCl/IM was applied. XRD revealed differences between values door parameter for UM and TPS/DES-UM materials, as well as amorphization of the starch-based films. Thermomechanical, mechanical properties and contact angle values were dependent on the type of applied plasticizer and UM content. Moreover, it was found that increasing clay content resulted in decrease of TPS/UM composites thermal conductivity.
机译:热塑性淀粉(TPS)材料由马铃薯淀粉,深的共晶溶剂(DES)作为增塑剂[胆碱氯化物(CHCI),分别以摩尔比为1:2和3:7的脲(U)或咪唑(IM)。 尿素嵌入蒙脱石(嗯)。 挤出和热压用作加工方法。 发现UM导致在加工温度范围(120-140℃)时降低TPS复合材料的熔体粘度,特别是在施用CHCL / IM时。 XRD揭示了UM和TPS / DES-UM材料的值门参数之间的差异,以及基于淀粉的薄膜的非晶化。 热机械,机械性能和接触角值取决于应用增塑剂和UM含量的类型。 此外,发现增加粘土含量导致TPS / UM复合材料的导热率降低。

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