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Engine Coolant Technology, Performance, and Life for Light-Duty Applications

机译:轻型应用的发动机冷却剂技术,性能和寿命

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Recently there has been interest by motor vehicle manufacturers in developing longer-lived automotive engine coolants with an emphasis on organic acid technology (OAT). Paradoxically, the lifetime of conventional technology remains largely undefined. Concerns arising from the depleting nature of silicate have led to modern conservative change recommendations of 30 000 to 50 000 miles (~48 279 to 80 464 km).rnIn the present work, laboratory bench test, engine dynamometer and vehicle service data from traditional silicate, hybrid and nonsilicate coolants arc compared and contrasted. A new electrochemical test is used to examine passivation kinetics on aluminum. It is shown that performance and lifetime are independent of chemistry and cannot be generalized. Examples include an American silicate coolant with excellent performance on high-heat-rejecting aluminum (80 W/cm~2), European and American silicate coolants with performance defined lifetimes in excess of 300 000 miles (482 790 km), and an OAT coolant with laboratory high lead solder protection. It is concluded that the primary benefit of OAT is to meet global specifications that include chemical limitations.
机译:最近,汽车制造商对开发寿命更长的汽车发动机冷却剂感兴趣,其重点是有机酸技术(OAT)。矛盾的是,传统技术的寿命在很大程度上仍然不确定。由于硅酸盐的枯竭性引起的担忧已导致现代保守建议更改范围为30 000至50 000英里(〜48 279至80 464 km)。在当前工作中,实验室测试,发动机测功机和传统硅酸盐的车辆服务数据对比和对比了混合和非硅酸盐冷却剂。一种新的电化学测试用于检查铝的钝化动力学。结果表明,性能和寿命与化学性质无关,不能一概而论。例如:在高排热铝(80 W / cm〜2)上具有出色性能的美国硅酸盐冷却剂,性能定义寿命超过30万英里(482790 km)的欧洲和美国硅酸盐冷却剂以及OAT冷却剂具有实验室高铅焊料保护。结论是,OAT的主要好处是符合包括化学限制在内的全球规范。

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