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首页> 外文期刊>Journal of Applied Polymer Science >Lignocellulosic fiber reinforced composites: Influence of compounding conditions on defibrization and mechanical properties
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Lignocellulosic fiber reinforced composites: Influence of compounding conditions on defibrization and mechanical properties

机译:木质纤维素纤维增强复合材料:复合条件对去纤维化和机械性能的影响

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This work describes a systematic study of the compounding conditions by twin-screw extrusion on the defibrization process that modulates the fiber aspect ratio and in turn the mechanical properties. Composites made of polycaprolactone reinforced by 20% hemp fibers were prepared by melt blending. The influence of the extrusion parameters (screw speed, feed rate, barrel temperature, and screw profile) and the initial fiber moisture content on both the fiber dimensions and the mechanical performance of the composite was investigated. The fiber aspect ratio increased when the fibers were water plasticized, principally at a higher feed rate and under a moderated extrusion temperature. The screw speed slightly influenced the fiber dimensions. Flow modeling was used to estimate the specific mechanical energy provided to the fibers, which ranged from 300 to 1700 kWh/t. Independent of the screw profile, a decrease in fiber length with an increase in energy was observed. The evolution of the fiber length and aspect ratios with respect to energy can be accurately described by an exponential function.
机译:这项工作描述了在脱纤过程中通过双螺杆挤出对混纺条件的系统研究,该过程可调节纤维的长径比,进而调节机械性能。通过熔融共混制备由20%麻纤维增强的聚己内酯制成的复合材料。研究了挤出参数(螺杆速度,进料速度,料筒温度和螺杆轮廓)和初始纤维含水量对复合材料的纤维尺寸和机械性能的影响。当纤维被水塑化时,纤维长径比增加,主要是在较高的进料速率和适度的挤出温度下。螺杆速度稍微影响了纤维尺寸。流动模型用于估计提供给纤维的比机械能,范围为300至1700 kWh / t。与螺杆轮廓无关,观察到纤维长度随着能量的增加而减少。纤维长度和长宽比相对于能量的变化可以通过指数函数准确描述。

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