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Emerging Technology: Report on Development of an Enhanced Plastisol Coating System for Atmospheric, Transitional, and Soil and/or Water Immersed Applications on Steel Substrates.

机译:新兴技术:报告大气,过渡和土壤和/或钢基材上浸渍应用增强塑性溶胶涂料系统的报告。

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For the past seven years we have been testing a plasticized polyvinyl chloride formulation with the goal of developing and patenting an Enhanced Plastisol Coating (EPC) formulation and application System (EPCS) for the purpose of corrosion mitigation over a wide range of industries. Plasticized polyvinyl chloride has been shown over decades of use to be durable and effective as an anti-corrosion coating1. Our research comparing EPC to widely used coatings, along with Four-Tier Testing by EPRI(1) and other independent research facilities, has shown that EPC performs well in atmospheric, transitional, and in water and/or soil immersed applications. In December 2012, the Alabama Department of Transportation(2) completed a Coastal Exposure Test of the EPC in Orange Beach, Alabama. An EPC-coated, galvanized steel post was placed in the bay at Perdido Pass for 13 months alongside a galvanized post. Results indicated that the EPC prevented rust and degradation at the splash zone, and was impermeable to marine life below and UV above. In stark contrast, the integrity of the galvanized steel post was severely compromised by red rust and pitting. Because the EPC requires heat to cure, we have developed an EPCS to apply it. We found that EPC reacts with a specific type of infrared energy, within a certain wavelength range, to achieve a cured state. The EPCS utilizes an array of infrared generators and moves over the substrate surface by way of a variety of drive systems. The EPCS has been demonstrated and proven to work on large, smooth substrates, applying a > 62 mil EPC layer. In conclusion, we believe the development of the EPCS provides multiple industries with a single, effective coating for atmospheric, transitional, and immersion applications.
机译:在过去的七年中,我们一直在测试塑化的聚氯乙烯制剂,其目的是开发和专利增强塑性溶胶涂层(EPC)配方和应用系统(EPC),以腐蚀于各种行业。已显示塑化的聚氯乙烯数十年来耐用,有效地作为抗腐蚀涂布1。我们的研究将EPC与广泛使用的涂料相比,以及EPRI(1)和其他独立研究设施的四层测试,表明EPC在大气,过渡和水和/或土壤浸没应用中表现出色。 2012年12月,阿拉巴马州的交通部(2)完成了阿拉巴马州橙海滩EPC的沿海曝光试验。将EPC涂层的镀锌钢柱放在普通岛通过13个月的镀锌岗位。结果表明,EPC防止了飞溅区的生锈和降解,并且在上述海洋生物和紫外线上是不可渗透的。在鲜明对比中,镀锌钢柱的完整性被红色锈和点蚀严重损害。因为EPC需要加热来治愈,所以我们开发了一个EPC来应用它。我们发现EPC在一定波长范围内以特定类型的红外能量反应,以实现固化状态。 EPCS利用红外发电机阵列并通过各种驱动系统移动基板表面。 EPCS已经证明并证明了在大型光滑的基板上工作,应用A> 62密耳EPC层。总之,我们认为EPC的发展提供了多种行业,具有用于大气,过渡和浸没应用的单一,有效的涂层。

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