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Predictive Tools for Coolant Development: An Accelerated Aging Procedure for Modeling Fleet Test Results

机译:冷却液开发的预测工具:用于模拟车队测试结果的加速老化程序

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The objective of this study was to develop an accelerated aging test (AAT) for conventional and extended life coolants that will predict coolant composition and performance after 100 000 or more miles (160 930 km) of use. The procedure was developed by examining the effects of a series of cooling system metals, their surface area and the amount of each used, test temperature, glycol concentration, and test time on important chemical and physical properties of the test coolant. The chemical and physical properties evaluated included the accumulation of glycol degradation products, the depletion rate of active inhibitors, the pH drop, and the presence of corrosion products in solution. In addition, the test coolant performance was evaluated in ASTM D 1384 and D 4340. The effects of variation in the test procedure on the coolant were compared to actual coolant from extended duration fleet tests. The test procedure selected gave test coolant with composition, physical properties, and performance that compared favorably with the fleet test fluid. The test performance was validated by comparing the properties of a series fluids after this test to corresponding fluids removed from vehicles after extended use. An example of fluid development using this procedure is presented. Further areas of investigation are suggested. It is recommended that the general test procedure be considered for adoption as an ASTM test method for evaluation of the extended performance of fluids in automotive and light duty cooling systems.
机译:这项研究的目的是针对常规和延长寿命的冷却液开发加速老化测试(AAT),以预测在使用100000英里或更长时间(160930 km)后的冷却液成分和性能。通过检查一系列冷却系统金属,其表面积和每种使用量,测试温度,乙二醇浓度和测试时间对测试冷却剂重要化学和物理性能的影响,开发了该程序。评估的化学和物理性质包括乙二醇降解产物的积累,活性抑制剂的耗竭率,pH下降以及溶液中腐蚀产物的存在。此外,在ASTM D 1384和D 4340中评估了测试冷却液的性能。将测试程序变化对冷却液的影响与延长车队测试中的实际冷却液进行了比较。所选的测试程序为测试冷却液提供了成分,物理性能和性能,与车队测试液相比具有优势。通过比较此测试后的一系列液体的特性与长期使用后从车辆中排出的相应液体的性能,来验证测试性能。给出了使用此程序进行流体开发的示例。建议进一步的研究领域。建议考虑采用通用测试程序作为ASTM测试方法,以评估汽车和轻型冷却系统中流体的扩展性能。

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