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ANTI-CORROSIVE COATING USING RECYCLED HIGH DENSITY POLYETHYLENE FOR AUTOMOTIVE CHASSIS

机译:用于汽车底盘的再生高密度聚乙烯的防腐蚀涂层

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Both high corrosion costs and an over-abundance of plastic waste have significant global impacts. This research seeks to help in both areas by utilizing recycled plastic as an anticorrosive coating. Many plastic-based coatings, especially those developed in more recent years, already contain recycled content. This research, which utilizes 100% recycled high density polyethylene (HDPE) as a powder coat, will add to the increasingly sustainable catalog of anti-corrosive coatings. The HDPE was applied to mild steel samples with traditional electrostatic powder coating equipment. The coating thickness was measured using scanning electron microscope (SEM) characterized and was found to be roughly 116 μm. The SEM analysis did not reveal any porosity in the coating. The immersion corrosion test in 5% H_2SO_4 for 2-3 days showed corrosion products at the bottom of the beaker. The maximum corrosion obtained was 424.4 mills/year (mpy) after 70.45 hours of immersion and the minimum corrosion obtained was 0.0 mpy after 5.58 hours of immersion. The acid immersion tests indicated that the corrosion started from the edges and advanced towards the inner surfaces. The coating on the edges was not uniform and may be porous. The salt immersion test in 5% NaCl solution by mass showed the sign of corrosion products after 5.5 hours and increased with time. A few samples showed corrosion over 25% of the surface after 70.5 hours of immersion. This is again attributed to the fact that the edges were not coated completely. The corrosion resistance can be improved by avoiding the sharp edges on the part.
机译:高腐蚀成本和过度丰富的塑料废物具有显着的全球影响。该研究旨在通过利用再循环塑料作为防腐蚀涂层来帮助两种区域。许多塑料涂料,特别是近年来发展的涂料,已经含有再生含量。该研究利用100%再循环的高密度聚乙烯(HDPE)作为粉末涂层,将增加越来越可持续的抗腐蚀涂层目录。用传统的静电粉末涂料设备将HDPE应用于温和的钢样品。使用扫描电子显微镜(SEM)测量涂层厚度,并且发现大约为116μm。 SEM分析没有透露涂层中的任何孔隙率。在5%H_2SO_4中浸入腐蚀试验2-3天显示烧杯底部的腐蚀产品。在浸渍70.45小时后获得的最大腐蚀是424.4米/年(MPY),浸泡5.58小时后获得的最小腐蚀是0.0 mpy。酸浸渍试验表明腐蚀从边缘开始并向内表面推进。边缘上的涂层不均匀,并且可能是多孔的。 5%NaCl溶液中的盐浸渍试验按质量显示5.5小时后腐蚀产物的迹象,随时间增加。在浸渍70.5小时后,少量样品显示出超过25%的表面腐蚀。这再次归因于边缘未完全涂覆的事实。通过避免部件上的锋利边缘可以提高耐腐蚀性。

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