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Mechanical and morphological properties of coextruded wood plastic composites with glass fiber-filled shell

机译:玻璃纤维填充壳共挤木塑复合材料的力学和形态学性能

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Coextrusion technology makes various properties of wood plastic composites (WPCs) highly tunable. However, structural and material optimization of core-shell shaped WPCs is needed to balance manufacturing cost, processing efficiency, and product performance. In this study, various systems of coextruded WPCs were designed and analyzed using short glass fiber (SGF)-filled shells in combination with three core systems (i.e., weak, moderate, and strong). A comparison of the composite flexural property of the manufactured WPCs (i.e., modulus and strength) shows that SGF reinforcements in the shell layer were optimized at high SGF loading levels regardless of core qualities. Also, SGF alignments in the shell layer played an important role in determining the flexural property of the WPCs. When the shell modulus and strength were lower than these of the core, the increase of shell thickness led to reduced composite properties. On the other hand, when the shell properties were higher than the core properties, the opposite was true. Composite impact strength increased with shell thickness increase for all three core systems. However, at a given shell thickness, the impact strength decreased with the addition of SGFs in the shell. Further increase of SGFs in the shell led to somewhat increased impact strength. The structure-property relationship plots provide a design guide for optimizing performance of coextruded WPCs with various combinations of core-shell qualities. POLYM. COMPOS., 37:824-834, 2016. (c) 2014 Society of Plastics Engineers
机译:共挤技术使木塑复合材料(WPC)的各种性能高度可调。但是,需要优化核壳形WPC的结构和材料,以平衡制造成本,加工效率和产品性能。在这项研究中,使用短玻璃纤维(SGF)填充的外壳与三个核心系统(即弱,中和强)组合设计和分析了各种共挤出WPC系统。所制造的WPC的复合挠曲性能(即模量和强度)的比较表明,壳层中的SGF增强材料在高SGF负载水平下均得到优化,而与芯质量无关。而且,壳层中的SGF排列在确定WPC的弯曲特性方面也起着重要作用。当壳模量和强度低于芯的模量和强度时,壳厚度的增加导致复合材料性能降低。另一方面,当壳的性能高于核的性能时,情况恰恰相反。对于所有三个核心系统,复合材料的冲击强度都随外壳厚度的增加而增加。但是,在给定的壳体厚度下,冲击强度会随着在壳体中添加SGF而降低。壳中SGF的进一步增加导致冲击强度有所提高。结构-属性关系图为优化具有各种核壳质量组合的共挤出WPC的性能提供了设计指南。 POLYM。 COMPOS。,37:824-834,2016.(c)2014年塑料工程师学会

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