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首页> 外文期刊>Journal of Cellular Plastics >Part II - Effect of Wood Fiber Length and Content on Cell Morphology and Physico-mechanical Properties:Microcellular Injection Molded Wood Fiber-PP Composites
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Part II - Effect of Wood Fiber Length and Content on Cell Morphology and Physico-mechanical Properties:Microcellular Injection Molded Wood Fiber-PP Composites

机译:第二部分-木纤维长度和含量对细胞形态和物理力学性能的影响:微孔注射成型木纤维-PP复合材料

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摘要

Microcellular wood fiber reinforced PP composites,a new development using bio-fiber strengthened plastic,are prepared in an injection molding process.The microcellular composites with five different types of wood fibers (hard wood fiber,finer hard wood fiber,soft wood fiber,finer soft wood fiber,and long wood fiber) are examined.The influence of wood fiber content (30-60% by weight) on the microcellular properties is also investigated.Microcell morphology (cell size,shape,and distribution) is observed using optical light and scanning electron micrographs (SEMs).The wood fiber length,geometry,and content strongly affected the microcellular structures of wood-PP composites.Composites with finer wood fibers possess better microcellular structures,and at a constant chemical foaming content,the higher percentage of wood fiber results in composites with smaller microcells.Due to the finer microcellular structures,finer wood fibers also result in improved physico-mechanical properties.
机译:用生物纤维增强塑料开发的一种新的微孔木纤维增强PP复合材料是通过注塑工艺制备的。该微孔复合材料具有五种不同类型的木纤维(硬木纤维,细粉硬木纤维,软木纤维,细粉)。检查了软木纤维和长木纤维)。还研究了木纤维含量(30-60%重量)对微孔性能的影响。使用光观察微孔的形态(孔尺寸,形状和分布)木纤维的长度,几何形状和含量强烈影响木-聚丙烯复合材料的微孔结构。具有较细木纤维的复合材料具有更好的微孔结构,并且在恒定的化学发泡含量下,较高的百分比木纤维导致复合材料的微孔较小。由于微孔结构更细,木纤维越细,其物理机械性能也越好。

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