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Mechanical Behavior of Environment-Friendly Green Composites Fabricated with Starch-Based Resin and Short MAO Fibers

机译:用淀粉基树脂和短毛纤维制备的环保绿色复合材料的机械性能

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Environmentally friendly green composites were fabricated from a natural cellulosic fiber (MAO fiber) and a biodegradable starch-based resin through hot-pressing. The effects of fiber length and alkali surface treatment on mechanical properties of the green composites were investigated. Fiber lengths of 2.5, 5, 10, and 20 mm were used and fiber weight content was adjusted to 56%, to obtain short fiber composites with random orientation. Ultimate tensile strength increased with increasing the fiber length up to 10 mm and remained almost constant for further increases in fiber length. Fracture strain for the composites fabricated with fiber length of 2.5 mm showed the smallest value of approximately 2 %, which is less than that of MAO fiber. This might be attributed to the debonding at the fiber/matrix interface. Fracture strains of the green composites with fibers longer than 2.5 mm were almost constant and were comparable to the fracture strains of MAO fiber indicating that the fracture properties were controlled by the fiber. Both tensile strength and Young's modulus values were increased by alkali surface-treatment for MAO fibers. The reason for this behavior seems that alkali treatment increases the fiber/matrix interfacial adhesion strength primarily by removing lignin.
机译:通过热压从天然纤维素纤维(MAO纤维)和可生物降解的淀粉基树脂制造环保的绿色复合材料。研究了纤维长度和碱表面处理对绿色复合材料力学性能的影响。使用2.5,5,10和20mm的纤维长度,并将纤维重量含量调节至56%,以获得具有随机取向的短纤维复合材料。随着纤维长度的增加,增强抗拉强度随着纤维长度的增加而增加,并且对于纤维长度的进一步增加,几乎保持恒定。用于纤维长度为2.5mm制造的复合材料的断裂菌株显示出约2%的最小值,其小于MAO纤维的值。这可能归因于光纤/矩阵界面处的借方。具有较长2.5mm的纤维的绿色复合材料的骨折菌株几乎是恒定的,并且与MAO纤维的骨折菌株相当,表明骨折性能由纤维控制。通过对MAO纤维的碱表面处理增加拉伸强度和杨氏模量值。这种行为的原因似乎碱性处理主要通过除去木质素来增加纤维/基质界面粘附强度。

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