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Avoiding abnormal grain growth in thick 7XXX aluminium alloy friction stir welds during T6 post heat treatments

机译:在T6后热处理期间避免厚7xxx铝合金摩擦搅拌焊接异常晶粒生长

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摘要

Friction stir welding (FSW) is becoming an essential welding technique in the aerospace industry. However, friction stir welds are usually weaker than the parent material. The dissipated heat causes a softening of the 7XXX series aluminium alloys. Post-welding heat treatments are used to restore the highest strength after welding. The reference treatment is composed of two-steps heating: a solution heat treatment typically at 470 °C for 30 min, quench in water followed by artificial aging 120 °C for 24 h. These treatments are responsible for very significant grain coarsening in the weld nugget zone known as secondary recrystallization, sometimes leading to abnormal grain growth (AGG). This is particularly true for thick plates. This secondary recrystallization phenomenon is detrimental for tensile performances. A detailed analysis of the conditions leading to secondary recrystallization during post-welding heat treatments is provided. A procedure to avoid secondary recrystallization in FSWed joints is then highlighted. Thermal cycles during welding are controlled by welding on a low thermal conductivity backing plate (i.e. stainless steel) which avoids very fine grains in the bottom of the weld nugget. This new procedure opens the path to excellent welds presenting at least the strength and ductility of the T6 base material.
机译:摩擦搅拌焊接(FSW)正在成为航空航天行业的基本焊接技术。然而,摩擦搅拌焊缝通常比母体材料弱。耗散的热量导致7xxx系列铝合金软化。焊接后热处理用于焊接后恢复最高强度。参考处理由两步加热组成:溶液热处理通常在470℃下30分钟,淬灭水中,然后人工老化120℃。24小时。这些治疗负责在称为二次重结晶的焊缝区中的非常显着的谷物粗化,有时导致异常的晶粒生长(AGG)。厚板尤其如此。这种二次重结晶现象对拉伸性能有害。提供了对焊接后热处理期间的二次重结晶的条件的详细分析。然后突出了一种避免在FSWED关节中的二次重结晶的过程。焊接期间的热循环是通过焊接在低热导流背板(即不锈钢)上的焊接而控制的,该焊接在焊缝块的底部避免非常细的颗粒。该新过程打开了至少焊接的路径,其至少呈现T6基础材料的强度和延展性。

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