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Dynamic Corrosion and Wear Testing of Corrosion Resistant Thermal Spray Coatings and Wrought Reference Material in Chlorine Containing Conditions with Low pH Values

机译:低pH值含氯条件下耐腐蚀热喷涂涂层的动态腐蚀和磨损测试

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Thermal spray coatings are widely used in sealed constructions where a specific seal material is sliding on the coating surface in aqueous conditions. Such applications are often highly corrosive and therefore limit the lifetime and increase the wear of the seal and the coating. In this work special test equipment was manufactured to study corrosion and wear performance of the specific test materials used under chlorine containing conditions at low pH-values. In the test procedure, a rotating seal material was pressed with certain pressure against the thermal spray coating material in the test solution and the wear of the seal and the weight loss of the coating material was measured during the test. Coating samples for the tests were prepared using HVAF, HVOF, twin wire arc spray and atmospheric plasma thermal spray techniques. Corrosion resistant stainless steel material EN1.4404 was tested as a reference together with the thermal sprayed coatings. Altogether four different seal materials were tested and the seal material was found to affect to the weight loss of the tested base material and also to the coated material during the corrosion wear tests. Pure graphite seals were seen to accelerate the wear rate of both bulk stainless steel material and the thermal spray coatings, as compared to the other seal materials involved in the tests. The HDPE polymer seal gave the lowest weight loss in the tests. Clear differences in corrosion wear resistance were found between tested thermal spray coatings. Clearly the best performance was achieved with plasma sprayed chromium oxide coating compared to the other tested coatings when glass fibre reinforced teflon was used as the seal material.
机译:热喷涂涂层广泛用于密封结构,其中特定密封材料在涂层表面上滑动在水性条件下。这些应用通常是高度腐蚀性的,因此限制了寿命并增加密封和涂层的磨损。在这项工作中,制造特殊的测试设备,以研究在低pH值下含氯条件下使用的特定试验材料的腐蚀和磨损性能。在试验过程中,在试验溶液中以一定的压力压制旋转密封材料,并在试验期间测量密封件的磨损和涂层材料的重量损失。使用HVAF,HVOF,双线电弧喷涂和大气等离子体热喷涂技术制备用于测试的涂层样品。耐腐蚀不锈钢材料EN1.4404与热喷涂涂层一起测试作为参考。测试了四种不同的密封材料,发现密封材料在腐蚀磨损试验期间对测试基材的重量损失和涂覆材料影响。与涉及试验中的其他密封材料相比,看到纯石墨密封件加速散装不锈钢材料和热喷涂涂层的磨损率。 HDPE聚合物密封在试验中产生最低的重量损失。在测试的热喷涂涂层之间发现了腐蚀耐磨性的清晰差异。显然,当使用玻璃纤维增​​强的Teflon作为密封材料时,与其他测试涂层相比,通过等离子体喷涂铬氧化铬涂层实现了最佳性能。

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