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Probing the potential of structured and surface functionalized tools for dry cold forging of aluminium

机译:探索用于干冷锻造铝的结构化和表面功能化工具的潜力

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In order to reduce friction and wear in cold forging of aluminium and its alloys a tremendous amount of lubricants is used. The main task of the liquid lubricants is the separation of tool and workpiece surfaces to avoid adhesion and abrasion. From an ecological and economical point of view, a reduction of the consumption of lubricants is meaningful. Novel surface modification techniques have been investigated to enable dry cold forming. In previous work, a reduced wear by adhesion of aluminium to an AISI H11 ESR tool steel surface was detected for a combination of laser polishing and a subsequent surface functionalization. Here, structured surfaces combined with surface functionalization are investigated regarding their wear behaviour. Therefore, different structures are realized on AISI H11 ESR tool steel surfaces by laser structuring. These structures are aligned parallel and perpendicular to the material flow direction. Furthermore, different structure depths are generated. It is evident that the laser induced surface melting causes both, a reduced micro roughness as well as a homogenized elementary distribution. Moreover, the surfaces are functionalized with an octadecylphosphonic acid selfassembled monolayer (C18PA-SAM). The SAM’s distal alkyl termini functionalize the tool steel surface und thus only weak van-der-Waals interactions are present in the aluminium-tool steel interface rendering an interaction, which is expected to be similar to the interaction in conventionally lubricated aluminium forming. Finally, the surfaces are appraised regarding their wear behaviour in a compression-torsion-wear tribometer. The different experimental results document the potential of the here investigated combined tool surface modification. Although, the performance of a lubricated process is not completely reached a reduction in friction and wear can be achieved compared to unmodified tools.
机译:为了减少铝及其合金的冷锻过程中的摩擦和磨损,使用了大量的润滑剂。液体润滑剂的主要任务是分离工具和工件表面,以避免粘附和磨损。从生态和经济的角度来看,减少润滑剂的消耗是有意义的。已经研究了新颖的表面改性技术以实现干冷成型。在先前的工作中,通过将铝粘附到AISI H11 ESR工具钢表面上,减少了磨损,并进行了激光抛光和随后的表面功能化处理。在此,研究了结合表面功能化的结构化表面的磨损行为。因此,通过激光结构化,可以在AISI H11 ESR工具钢表面上实现不同的结构。这些结构平行且垂直于材料流动方向排列。此外,产生了不同的结构深度。显然,激光诱导的表面熔化会导致微观粗糙度降低和元素分布均匀化。此外,表面用十八烷基膦酸自组装单层(C18PA-SAM)功能化。 SAM的远端烷基末端可对工具钢表面进行功能化,因此铝-工具钢界面中仅存在弱的范德华相互作用,从而提供了一种相互作用,这有望与常规润滑铝成型过程中的相互作用相似。最后,在压扭磨损摩擦计中对表面的磨损行为进行评估。不同的实验结果证明了本文研究的组合工具表面改性的潜力。尽管未完全达到润滑过程的性能,但与未修改的工具相比,摩擦和磨损的减少得以实现。

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