首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Direct injection molding of hybrid polypropylene/wood-fiber composites reinforced with glass fiber and carbon fiber
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Direct injection molding of hybrid polypropylene/wood-fiber composites reinforced with glass fiber and carbon fiber

机译:用玻璃纤维和碳纤维加固杂交聚丙烯/木纤维复合材料的直接注射成型

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摘要

Wood-plastic composites (WPC), made of wood fiber (WF) and thermoplastics, have been well developed and commercialized in construction, packaging, automotive, and furniture industry over the past three decades, as they are environmentally friendly and require less maintenance compared with natural wood. Polypropylene (PP) is one of major thermoplastics used in WPC. However, the relatively poor mechanical properties of WPC prevent them from penetrating into other structural applications where strong mechanical properties are required. To enhance the mechanical properties of PP/WF composites, this paper applies one-step direct injection molding to produce the hybrid WPC with glass fiber (GF) and carbon fiber (CF). Compared with those of PP/WF composites, the tensile strength and tensile modulus of PP/WF/GF hybrid composites increased 30% and 26%, respectively, and the tensile strength and tensile modulus of PP/WF/CF hybrid composites increased 38% and 78%, respectively. Apart from the significant increase of mechanical properties, the additional benefit of hybrid WPC was that their flame-retarding property was improved. Particularly, the dripping behavior (or fire spreading) during burning associated with WPC was significantly reduced or eliminated for the hybrid composites. In addition, the water absorption and the surface roughness of hybrid composites were also studied. This study demonstrates that it is feasible to make hybrid WPC with one-step injection molding, and hybrid WPC open the door to their potential structural applications.
机译:由木纤维(WF)和热塑性塑料制成的木材塑料复合材料(WPC)在过去三十年中,在建筑,包装,汽车和家具行业方面发达和商业化,因为它们是环保的,并且需要更少的维护用天然木材。聚丙烯(PP)是WPC中使用的主要热塑性塑料之一。然而,WPC的相对较差的机械性能防止它们穿透到需要强机械性能的其他结构应用中。为了增强PP / WF复合材料的机械性能,本文采用一步式直接注塑,用玻璃纤维(GF)和碳纤维(CF)产生杂化WPC。与PP / WF复合材料的组复合材料相比,PP / WF / GF杂化复合材料的拉伸强度和拉伸模量分别增加了30%和26%,PP / WF / CF杂化复合材料的拉伸强度和拉伸模量增加了38%分别为78%。除了机械性能的显着增加之外,杂种WPC的额外益处是其阻燃性质得到改善。特别地,对于杂种复合材料,显着减少或消除了与WPC相关的燃烧期间的滴水行为(或火蔓延)。此外,还研究了杂化复合材料的吸水率和表面粗糙度。这项研究表明,它是使混合WPC与一步法注塑可行的,混合木塑打开大门,他们的潜在结构应用。

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