首页> 外文期刊>Taiwan Journal of Forest Science >Preparation and Characterization of Novel Indoor Usage of Wood-Plastic Composites from Polypropylene/Recycled Rice Straw
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Preparation and Characterization of Novel Indoor Usage of Wood-Plastic Composites from Polypropylene/Recycled Rice Straw

机译:聚丙烯/再生稻草木塑复合材料新颖的室内使用的制备与表征

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摘要

Most wood-plastic composites (WPCs) are fabricated using thermoplastics and sawdust (or other natural fibers). In this study, we used polypropylene (PP) and recycled rice straw (RS) as raw materials to prepare 22 types of WPCs for indoor use. We alsoincorporated chemical agents to enhance resistance to UV light, coupling capability, and flame retardancy. We then assessed how the PP/RS ratio and the addition of chemical agents affected the density of the resulting WPCs and the water-absorption rate (WAR), length-swelling rate (LSR), and microstructure. We also performed a thermogravimetric analysis, evaluated the weathering performance and flame retardancy, and measured the release of organic volatile matter (formaldehyde) to determine whether the proposed WPCs meet established standards for indoor usage. Samples prepared without a coupling agent exhibited increased WAR and LSR values with an increase in the content of recycled RS powder (24-h soaking test). Samples prepared with a coupling agent presented increased WAR values with an increase in soaking time when the content of recycled RS powder exceeded 50 phr (indicates the percentage of additives in rubber (or resin)) (28-day soaking test). The best composites evaluated in this study were self-extinguishing (limited oxygen index (LOI) = 27) and flameproof (based on V-0 criteria), exhibited low formaldehyde release (0.07 mg/L), and presented no differences in appearance before and after weathering tests.
机译:大多数木塑复合材料(WPC)是使用热塑性塑料和锯末(或其他天然纤维)制造的。本研究以聚丙烯(PP)和回收稻草(RS)为原料,制备了22种室内使用的WPC。我们还加入了化学试剂,以增强抗紫外线、偶联能力和阻燃性。然后,我们评估了PP/RS比和化学试剂的添加如何影响所得WPC的密度、吸水率(WAR)、长度膨胀率(LSR)和微观结构。我们还进行了热重分析,评估了耐候性和阻燃性,并测量了有机挥发物(甲醛)的释放,以确定拟定的WPC是否符合室内使用的既定标准。未使用偶联剂制备的样品显示,随着回收RS粉末含量的增加,WAR和LSR值增加(24小时浸泡试验)。当再生RS粉末的含量超过50份(表示橡胶(或树脂)中添加剂的百分比)时(28天浸泡试验),使用偶联剂制备的样品的WAR值随浸泡时间的增加而增加。本研究中评估的最佳复合材料为自熄型(限氧指数(LOI)=27)和隔爆型(基于V-0标准),甲醛释放量低(0.07 mg/L),风化试验前后外观无差异。

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