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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Investigations on the process window for friction stir assisted double-sided incremental forming with synchronous bonding of steel and aluminum alloy sheets
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Investigations on the process window for friction stir assisted double-sided incremental forming with synchronous bonding of steel and aluminum alloy sheets

机译:钢铝合金板同步粘接摩擦搅拌辅助双面增量成形工艺窗口研究

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摘要

Dissimilar steel/Al laminates are more widely utilized in lightweight and anti-vibration structures while the preparation and forming processes remain challenging due to obvious difference in materials properties. In this work, separated DC05 and AA5052-H32 sheets are used to fabricate truncated conical laminated parts by a novel pin-less friction stir assisted double-sided incremental forming with synchronous bonding process. The peeling force of formed parts as a metric of bonding strength is evaluated to obtain parameters window based on response surface method. The effects of step down, rotation speed of master tool, wall angle, and their cross terms on bonding strength are investigated. The present work established a functional model to determine optimal parameter combination for better bonding strength. Working temperature and forming force are consistent through process evolution. Optimal solution is also conducted to obtain ultimate forming depth and better surface finish of truncated parts. The findings in this work can help deeply understand the fabrication procedures and thermomechanical results in dissimilar bonding-with-forming processes.
机译:异种钢/铝层压板在轻质和抗振结构中的应用更为广泛,但由于材料性能的明显差异,制备和成型工艺仍然具有挑战性。本工作采用分离的DC05和AA5052-H32片材,通过一种新型的无销搅拌摩擦辅助双面增量成型和同步键合工艺制备截锥形层压件。评估成型件的剥离力作为粘接强度的指标,以基于响应面法获得参数窗口。研究了下压、主刀具转速、壁角及其交叉项对粘接强度的影响。本工作建立了一个功能模型,以确定最佳参数组合以获得更好的粘接强度。工作温度和成型力在工艺演变过程中保持一致。此外,还进行了最佳求解,以获得截断零件的最终成型深度和更好的表面光洁度。本研究结果有助于深入了解不同键合与成型工艺的制备过程和热力学结果。

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