首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Characterisation of the corrosion fatigue behaviour of brazed AISI 304L/BNi-2 joints in synthetic exhaust gas condensate
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Characterisation of the corrosion fatigue behaviour of brazed AISI 304L/BNi-2 joints in synthetic exhaust gas condensate

机译:合成废气冷凝物中钎焊AISI 304L / BNI-2关节腐蚀疲劳行为的表征

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摘要

Exhaust gas recirculation (EGR) with brazed heat exchangers is commonly used for the reduction of NO~(x)emissions of automotive diesel engines. Since the fatigue loading of brazed EGR coolers during the operation is superimposed by corrosive attack due to aggressive exhaust gases, the corrosion fatigue behaviour of brazed joints is relevant for the component design. In the present study, brazed AISI 304L/BNi-2 joints were cyclically tested in the synthetic exhaust gas condensate K2.2, using a corrosion cell, as well as in air after pre-corrosion acc. to VDA 230–214 with ageing durations of up to 6?weeks. A significant reduction of the fatigue strength at 2?×?10_(6)?cycles down to 43% was determined for superimposed and down to 22% for successive corrosion fatigue loading. A galvanostatic anodic polarisation of the specimens tested in situ was applied successfully for an efficient reproduction of the corrosion fatigue behaviour after the long-time and cost-intensive pre-corrosion. In this context, a novel test strategy with local strain measurements, using a newly developed extensometer, as well as electrical and electrochemical measurements was established for a precise corrosion fatigue assessment of the brazed joints. Microstructure-related corrosion fatigue damage mechanisms were evaluated using scanning electron microscopy.
机译:用钎焊热交换器的废气再循环(EGR)通常用于减少汽车柴油发动机的NO〜(x)排放。由于由于腐蚀性的废气,在操作期间钎焊EGR冷却器的疲劳负载叠加,因此钎焊接接头的腐蚀疲劳行为与部件设计相关。在本研究中,使用腐蚀细胞,在腐蚀性静脉粥样重复后的空气中,在合成的废气冷凝物K2.2中循环地测试钎焊的AISI 304L / BNI-2接头。到VDA 230-214,老化持续时间最长6?周。在2?×10_(6)时的疲劳强度的显着降低θ≤x≤10-(6)?对于连续的腐蚀疲劳负载,测定升高至43%的循环至43%。在长时间和成本密集的预腐蚀后,成功地应用原位测试样品的镀锌阳极偏振,以便有效再现腐蚀疲劳行为。在这种情况下,使用新开发的伸展计以及电化学测量的具有局部应变测量的新型测试策略,以及用于钎焊接头的精确腐蚀疲劳评估。使用扫描电子显微镜评估微观结构相关的腐蚀损伤机制。

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