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Rapid Electrochemical Screening of Engine Coolants. Correlation of Electrochemical Potentiometric Measurements with ASTM D 1384 Glassware Corrosion Test

机译:发动机冷却剂的快速电化学筛选。电化学电位测量与ASTM D 1384玻璃器皿腐蚀试验的相关性

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Engine coolants are typically subjected to comprehensive performance evaluations that involve multiple laboratory and field tests. These tests can take several weeks to conduct and can be expensive. The tests can involve everything from preliminary chemical screening to long term fleet tests. An important test conducted at the beginning of coolant formula development to screen the corrosion performance of engine coolants is described in ASTM D 1384. If the coolant formula passes this test, it is then subjected to more rigorous testing. Conducting the test described in ASTM D 1384 takes two weeks, and determining the coolant corrosion performance under several test parameters can take resources and lime that users seldom have. Therefore, it is very desirable to have tests that can be used for rapid screening and quality assurance of coolants. The purpose of this study was to conduct electrochemical tests that can ultimately be used for quick initial screening of engine coolants. The specific intent of the electrochemical tests is to use ASTM D 1384 as a model and to attempt to duplicate its results. Implementation of the electrochemical tests could accelerate the process of selecting promising coolant formulas and reduce coolant evaluation time and cost. Various electrochemical tests were conducted to determine the corrosion performance of several engine coolant formulas. The test results were compared to those obtained from the ASTM D 1384 test. These tests were conducted on the same metal specimens and under similar conditions as those used in the ASTM D 1384 test. The electrochemical tests included the determination of open circuit potential (OCP) for the various metal specimens, anodic and cathodic polarization curves for the various metal specimens, corrosion rate for metal specimens involved in a galvanic triad, and critical pitting potential (CPP) for aluminum (pitting of aluminum engine components and cooling systems is a cause for concern). The details for the methods and the correlation of the results to ASTM D 1384 tests results will be presented.
机译:发动机冷却剂通常经过综合性能评估,涉及多个实验室和现场测试。这些测试可能需要几周才能进行,并且可能是昂贵的。测试可以涉及从初步化学筛查到长期舰队测试的一切。在冷却液开发开始以筛选发动机冷却剂的腐蚀性的重要测试在ASTM D 1384中描述了。如果冷却剂式通过该试验,则经过更严格的测试。进行ASTM D 1384中描述的测试需要两周时间,并在几个测试参数下确定冷却剂腐蚀性能可以采用用户很少有资源和石灰。因此,非常希望具有可用于快速筛选和冷却剂质量保证的测试。本研究的目的是进行电化学测试,最终可以用于快速初始筛选发动机冷却剂。电化学测试的具体目的是使用ASTM D 1384作为模型,并尝试复制其结果。电化学试验的实施可以加速选择有前途的冷却剂公式的过程,并减少冷却剂评估时间和成本。进行各种电化学测试以确定多种发动机冷却剂配方的腐蚀性。将测试结果与来自ASTM D 1384试验获得的测试结果进行比较。这些试验在相同的金属样品上并在类似条件下进行,如ASTM D 1384试验所使用的那些。电化学测试包括开路电位的用于各种金属试样,对各种金属试样阳极和阴极极化曲线,腐蚀速率为参与电镀三单元组金属的标本,和临界点蚀电位(CPP)对铝的判定(OCP) (铝合金发动机部件和冷却系统的蚀是令人担忧的原因)。将提出方法和结果与ASTM D 1384测试结果的方法的细节。

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