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首页> 外文期刊>Journal of Applied Polymer Science >EFFECT OF FIBER TREATMENT ON THE MECHANICAL PROPERTIES OF LDPE-HENEQUEN CELLULOSIC FIBER COMPOSITES
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EFFECT OF FIBER TREATMENT ON THE MECHANICAL PROPERTIES OF LDPE-HENEQUEN CELLULOSIC FIBER COMPOSITES

机译:纤维处理对LDPE-羟乙基纤维素纤维复合材料力学性能的影响

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The degree of mechanical reinforcement that could be obtained by the introduction of henequen cellulosic fibers in a low-density polyethylene, LDPE, matrix was assessed experimentally. Composite materials of LDPE-henequen cellulosic fibers were prepared by mechanical mixing. The concentration of randomly oriented fibers in the composite ranged between 0 and 30% by volume. The tensile strength of these composite materials increased up to 50% compared to that of LDPE. There is also a noticeable increase in Young's modulus for the composite materials that compares favorably with that of LDPE. As expected, the addition of the fibers decreases the ultimate strain values for the composite materials. The thermal behavior of the LDPE henequen cellulosic fibers materials, studied by differential scanning calorimetry, DSC, showed that the presence of the fibers does not affect the thermal behavior of the LDPE matrix; thus, the interaction between fiber and matrix is probably not very intimate. Preimpregnation of the cellulosic fibers in a LDPE-xylene solution and the use of a silane coupling agent results in a small increment in the mechanical properties of the composites, which is attributed to an improvement in the interface between the fibers and the matrix. The shear properties of the composites also increased with increasing fiber content and fiber surface treatment. It was also noted that the fiber surface treatment improves fiber dispersion in the matrix. (C) 1997 John Wiley & Sons, Inc. [References: 24]
机译:通过在低密度聚乙烯(LDPE)基体中引入henequen纤维素纤维可以获得机械增强的程度。通过机械混合制备LDPE-henen纤维素纤维复合材料。复合物中无规取向纤维的浓度为0至30体积%。与LDPE相比,这些复合材料的拉伸强度提高了50%。与LDPE相比,复合材料的杨氏模量也有明显增加。如预期的那样,纤维的添加降低了复合材料的极限应变值。通过差示扫描量热法(DSC)研究了LDPE henequen纤维素纤维材料的热性能,结果表明,纤维的存在不会影响LDPE基质的热性能。因此,纤维与基质之间的相互作用可能不是很紧密。在LDPE-二甲苯溶液中预浸渍纤维素纤维和使用硅烷偶联剂会导致复合材料机械性能的小幅增加,这归因于纤维与基质之间界面的改善。随着纤维含量的增加和纤维表面处理的增加,复合材料的剪切性能也随之提高。还注意到纤维表面处理改善了纤维在基质中的分散。 (C)1997 John Wiley&Sons,Inc. [参考:24]

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