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LOCALIZED CORROSION RESISTANCE OF AUTOMOTIVE EXHAUST ALLOYS

机译:汽车排气合金的局部耐蚀性

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Corrosion in automotive exhaust systems can be broadly classified as (a) cold end corrosion and (b) hot end corrosion. For the cold end, the requirements include inside-out perforation corrosion resistance and cosmetic corrosion resistance. Perforation corrosion causes noticeable degradation in noise quality and may even affect the back pressure. For the hot end, the key concern has been perforation corrosion resistance. With the use of oxygen sensors in catalytic converters, the failure criteria will become more stringent.rnNumerous accelerated corrosion tests have been used to rank materials for the Hot End and the Cold End. These include (a) Continuous Test, (b) Cyclic Tests - Hot End, (c) Cyclic Tests - Cold End, (d) Electrochemical Ranking. In this paper we evaluate some of the commonly used exhaust materials in these accelerated tests. These accelerated tests are easy to use, inexpensive to run as compared to proving ground testing or trailer testing and can provide information in a relatively short time. Here we report lab work to date on some of the accelerated corrosion testing for perforation corrosion resistance. Note that these tests are useful for ranking materials only. Life expectancy of the material can be given only after a correlation is established between the accelerated tests and field performance. The electrochemical tests were designed to gain insight into pit growth kinetics in the accelerated tests.
机译:汽车排气系统中的腐蚀大致可分为(a)冷端腐蚀和(b)热端腐蚀。对于冷端,要求包括由内而外的穿孔耐腐蚀性和外观耐腐蚀性。穿孔腐蚀会导致噪声质量明显下降,甚至可能影响背压。对于热端,关键问题是抗穿孔腐蚀。随着在催化转化器中使用氧气传感器,失效标准将变得更加严格。■已使用多种加速腐蚀测试对热端和冷端的材料进行排名。其中包括(a)连续测试,(b)循环测试-热端,(c)循环测试-冷端,(d)电化学等级。在本文中,我们评估了这些加速测试中一些常用的排气材料。与试验场测试或拖车测试相比,这些加速测试易于使用且运行成本低廉,并且可以在相对较短的时间内提供信息。在这里,我们报告了迄今为止针对穿孔抗腐蚀性的一些加速腐蚀测试的实验室工作。请注意,这些测试仅对材料排名有用。只有在加速试验和现场性能之间建立了相关性之后,才能给出材料的预期寿命。电化学测试旨在深入了解加速测试中的点蚀生长动力学。

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