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Effect of Thermal Aging on the Corrosion and Microstructure of Friction-Stir Welded Alloy 22

机译:热时效对搅拌摩擦焊接合金22腐蚀和组织的影响

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摘要

The effect of thermal aging on the corrosion and microstructure of friction-stir welded (FSW) alloy 22 was investigated. Successful welds were produced with a polycrystalline cubic BN pin tool at a rotational speed of 200 rev min~(-1) and travel speed of 12.7 mm min~(-1). Topologically closed packed (TCP) phases of -50 to 300 nm size were identified in the weld nugget. The area fraction of the TCP phases in the weld nugget increased with aging temperature and time. General corrosion rates measured from the weight loss experiments for welds were relatively higher than for parent material. The corrosion rates increased with the increased aging temperature and time. Intergranular corrosion (IGC) resistance is greater in friction-stir welds compared with the parent material at all aging temperatures and times. The IGC depth increased with the aging temperature and time in the parent material. The IGC depth for the FSW weld nugget was minimal and did not change with thermal aging.
机译:研究了热时效对搅拌摩擦焊接(FSW)合金22腐蚀和组织的影响。用多晶立方BN销钉工具以200 rpm min-1(-1)的旋转速度和12.7 mm min-1(-1)的移动速度成功焊接。在焊接熔核中发现了-50至300 nm大小的拓扑密堆积(TCP)相。焊点熔核中TCP相的面积分数随时效温度和时间的增加而增加。根据焊缝失重实验测得的一般腐蚀速率相对高于母材。腐蚀速率随老化温度和时间的增加而增加。在所有时效温度和时间下,搅拌摩擦焊缝的耐晶间腐蚀(IGC)均比母材高。 IGC深度随着母材中的时效温度和时间而增加。 FSW熔核的IGC深度极小,并且不会随热时效而变化。

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