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首页> 外文期刊>Journal of Applied Polymer Science >Accelerated weathering properties of compatibilized composites made from recycled HDPE and nonmetallic printed circuit board waste
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Accelerated weathering properties of compatibilized composites made from recycled HDPE and nonmetallic printed circuit board waste

机译:由回收的HDPE和非金属印刷电路板废料制成的相容性复合材料的加速耐候性

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The main aim of this work is to examine the influence of the contents of nonmetallic printed circuit board (PCB) waste component on the photodegradation of recycled high-density polyethylene (rHDPE) composites. The properties tested were chemical changes, flexural properties, color stability, water absorption, leaching properties, and crystallinity changes of the composites after exposure to 2,000 h of accelerated weathering. Surface degradation for composites with nonmetallic PCB was less compared to unfilled rHDPE mainly because glass fibers covered almost the whole surface of specimens, acting as a protective layer, thus, slowing down the photodegradation reaction. Incorporation of compatibilizer in rHDPE/PCB composites had played an important role in resisting degradation due to UV exposure. All the composite samples became lighter in the early stages of weathering exposure; however, compatibilized composites showed less lightening and reduction on strength and modulus. Carbonyl index increases with exposure time indicating that the oxidation reaction continuously occurred during the aging process. Incorporation of compatibilizer had successfully reduced the water absorption uptake by the composites and effectively delayed some degradation properties of weather-ing. (c) Wiley Periodicals, Inc.
机译:这项工作的主要目的是研究非金属印刷电路板(PCB)废物成分的含量对回收的高密度聚乙烯(rHDPE)复合材料光降解的影响。所测试的特性是在暴露于2,000 h的加速风化后,复合材料的化学变化,挠曲特性,颜色稳定性,吸水率,浸出特性和结晶度变化。与非填充rHDPE相比,具有非金属PCB的复合材料的表面降解较少,这主要是因为玻璃纤维几乎覆盖了样品的整个表面,起到了保护层的作用,从而减慢了光降解反应的速度。在rHDPE / PCB复合材料中掺入相容剂在抵抗由于紫外线暴露引起的降解中起了重要作用。在风化暴露的早期,所有复合材料样品都变得更轻。但是,相容的复合材料的增白效果较小,强度和模量降低。羰基指数随暴露时间的增加而增加,表明在老化过程中连续发生氧化反应。增容剂的加入成功降低了复合材料的吸水率,并有效地延缓了风化作用的某些降解性能。 (c)威利期刊有限公司

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