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首页> 外文期刊>International Scholarly Research Notices >Tuning the Mechanical Properties of Tapioca Starch by Plasticizers, Inorganic Fillers and Agrowaste-Based Fillers
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Tuning the Mechanical Properties of Tapioca Starch by Plasticizers, Inorganic Fillers and Agrowaste-Based Fillers

机译:通过增塑剂,无机填料和基于农作物味的填料来调整木薯淀粉的机械性能

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Mechanical properties of tapioca starch-based films were tuned by different additives and additive combinations. The additives included plasticizers (glycerol, sorbitol, and citric acid), inorganic fillers (halloysite and kaolin), and agrowaste-based fillers (milled wood flour and rice bran). In addition, new biobased additives were prepared from wood flour and rice bran through liquefaction reaction. Through different additive combinations, starch-based materials with significant differences in tensile properties were designed. Addition of halloysite nanoclay resulted in materials with improved tensile strength at break and rather low strain at break. The effect of kaolin on tensile strength was highly dependent on the used plasticizer. However, in most combinations the addition of kaolin resulted in materials with intermediate tensile strength and strain at break values. The addition of milled wood flour and rice bran improved the tensile strength, while the addition of liquefied fillers especially liquefied rice bran increased the strain at break indicating that liquefied rice bran could have potential as a plasticizer for starch blends.
机译:通过不同的添加剂和添加剂组合来调节木薯淀粉基薄膜的机械性能。添加剂包括增塑剂(甘油,山梨糖醇和柠檬酸),无机填料(硅藻土和高岭土)和基于农作物味的填料(磨木粉和米糠)。另外,通过木粉和米糠的液化反应制备了新的生物基添加剂。通过不同的添加剂组合,设计了拉伸性能差异显着的淀粉基材料。添加埃洛石纳米粘土导致材料具有改善的断裂拉伸强度和相当低的断裂应变。高岭土对拉伸强度的影响高度取决于所用的增塑剂。然而,在大多数组合中,高岭土的添加导致材料具有中等的拉伸强度和断裂值应变。加入磨碎的木粉和米糠可提高抗张强度,而添加液化填料(尤其是液化米糠)则可增加断裂应变,这表明液化米糠可以作为淀粉共混物的增塑剂。

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