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Friction Stir Welding Process Development of AA7075 for Hot Stamping Applications

机译:用于热冲压应用的AA7075摩擦搅拌焊接工艺开发

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摘要

In order to compete with advanced high strength steels (AHSS) such as dual-phase (DP) or temperature induced plasticity (TRIP) in structural parts, some automotive manufacturers are looking to introduce high strength aluminum alloys that have high peak-aged mechanical properties like AA7075. Formability of these high strength aluminum alloys is possible through hot stamping. Hot stamping refers to simultaneously forming and quenching a blank that is initially at an elevated temperature. Material efficiency can be obtained by using tailor welded blank sections which could lead to weight reductions between 10 and 12%. Friction stir welding (FSW), as a solid-state welding process, has already been proven suitable without hot cracking issues when welding AA7075. However, abnormal grain growth (AGG) issues arise when post-weld operations at high temperature are required such as solution heat treatment or hot stamping operations. This paper details the development of FSW process parameters which will be adapted to hot stamping to effectively join tailor welded AA7075 blanks.
机译:为了与结构部件中的双相(DP)或温度诱导塑性(TRIP)等高级高强度钢(AHSS)竞争,一些汽车制造商正在寻求引入具有高峰值时效机械性能的高强度铝合金。像AA7075。这些高强度铝合金的可成型性可通过热冲压实现。热冲压是指同时形成和淬火最初处于高温的毛坯。通过使用定制的焊接毛坯段可以提高材料效率,这可以使重量减少10%到12%。搅拌摩擦焊(FSW)作为一种固态焊接工艺,已被证明适用于焊接AA7075且无热裂问题。但是,当需要高温下的焊后操作(例如固溶热处理或热冲压操作)时,会出现异常晶粒生长(AGG)问题。本文详细介绍了FSW工艺参数的开发,这些工艺参数将适用于热冲压,以有效地连接定制焊接的AA7075毛坯。

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