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首页> 外文期刊>Polymer Degradation and Stability >Ultraviolet weathering of HDPE/wood-flour composites coextruded with a clear HDPE cap layer
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Ultraviolet weathering of HDPE/wood-flour composites coextruded with a clear HDPE cap layer

机译:HDPE /木粉复合材料的紫外线风化与透明的HDPE覆盖层共挤出

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摘要

This study examined the effect coextruding a clear HDPE cap layer onto HDPE/wood-flour composites has on the discoloration of coextruded composites exposed to accelerated UV tests. Chroma meter, FTIR-ATR, XPS, SEM, and UV vis measurements accounted for the analysis of discoloration, functional groups, and degree of oxidation of both uncapped (control) and coextruded composites before and after UV exposures. Two separate discoloration characteristics occurred in the discoloration of composites. For uncapped WPCs (control), chemical changes due to photooxidation resulted in darkening followed by physical changes, including loss of colored wood components from the surface, as well as increased roughness on the surface, which led to lightening of WPCs. By contrast, because a hydrophobic cap layer prevented the loss of colored components from the surface, coextruding a clear hydrophobic HDPE cap layer over WPCs significantly decreased the discoloration during the weathering process. Photooxidation of wood components at the interface accounted for the discoloration of coextruded WPCs before the failure of cap layer. Moreover, as the cap layer absorbed a specified amount of UV light and reduced oxygen available to interface, it decreased the photooxidation rate at the interface compared to that at the WPCs surface.
机译:这项研究研究了将透明的HDPE盖层共挤出到HDPE /木粉复合材料上对暴露于加速紫外线测试的共挤出复合材料变色的影响。色度计,FTIR-ATR,XPS,SEM和UV可见光测量可分析未覆盖(对照)和共挤出复合材料在暴露于紫外线前后的变色,官能团和氧化程度。复合材料的变色发生了两个独立的变色特性。对于未封端的WPC(对照),由于光氧化作用引起的化学变化导致颜色变深,随后发生物理变化,包括表面上有色木料成分的损失以及表面粗糙度的增加,这导致WPC变轻。相比之下,由于疏水性覆盖层防止了有色成分从表面流失,因此在WPC上共挤出透明的疏水性HDPE覆盖层可显着减少风化过程中的变色。在覆盖层失效之前,界面处木材成分的光氧化作用是共挤出WPC变色的原因。此外,由于覆盖层吸收了指定量的紫外线并减少了可用于界面的氧气,因此与WPC表面相比,它降低了界面处的光氧化速率。

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