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Comparison of performances of corn fiber plastic composites made from different parts of corn stalk

机译:玉米秸秆不同零件制成的玉米纤维塑料复合材料的比较

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摘要

Lignocellulosic fiber, as a reinforcing phase, significantly altered the mechanical properties of wood plastic composites (WPC). In this paper, the effects of the different parts of the corn stalk, i.e., the stem, ear, husk, cob and leaf, on the manufacture of corn fiber plastic composites (CFPC) were evaluated. Besides, the mechanical properties of the CFPC were affected by the composition in terms of the cellulose, hemicellulose and lignin fractions, which was also explored herein. Our data showed that hemicellulose and lignin have significant effects on all properties of CFPC. Typically, a high cellulose and lignin content improved the mechanical properties of the CFPC. The results indicated that when using the corn stem, with the highest cellulose content, as the reinforcement, the highest flexural strength (46.10 MPa) and tensile break strength (26.58 MPa) were achieved. However, the content of hemicellulose should be lower, which was correlated with the water resistance. Due to the high hemicellulose content in the corn leaf, the leaf-reinforced CFPC showed the poorest performance, with a flexural strength of 28.70 MPa and a tensile break strength of 15.98 MPa. Taken together, the results showed that the stem or cob was the more suitable corn fiber for the preparation of CFPC. (C) 2016 Published by Elsevier B.V.
机译:作为增强阶段的木质纤维素纤维显着改变了木塑复合材料(WPC)的机械性能。本文评价了玉米秸秆,即茎,耳,壳,玉米饼和叶片,对玉米纤维塑料复合材料(CFPC)的制造的影响的影响。此外,CFPC的机械性能在纤维素,半纤维素和木质素级分方面受组合物的影响,其在此探索。我们的数据显示,半纤维素和木质素对CFPC的所有性质产生显着影响。通常,高纤维素和木质素含量改善了CFPC的机械性能。结果表明,当使用玉米茎时,用最高纤维素含量作为增强,最高的弯曲强度(46.10MPa)和拉伸断裂强度(26.58MPa)。然而,半纤维素的含量应较低,与耐水性相关。由于玉米叶中的高半纤维素含量,叶增强的CFPC表现出最贫困的性能,弯曲强度为28.70MPa和拉伸断裂强度为15.98MPa。占据了结果表明,茎或玉米醇是制备CFPC的更合适的玉米纤维。 (c)2016年由Elsevier B.V发布。

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