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PVD Coated Tools and Surface-Structured Workpieces in Dry Cold Forming of Steel

机译:PVD涂层工具和表面结构化工件在干冷成型钢中

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Cold forming, particularly forward impact extrusion, is used for mass production of steel components. To ensure robust forming processes, the workpieces are usually phosphated and then soaped as well as mineral oil-based lubricants are used. As these lubricants are often harmful to the environment and health, alternative approaches are to be investigated from an ecological, economic and legislative perspective. To achieve dry, lubricant-free cold forming of steel, two approaches are being pursued here. The tool-sided approach focuses on self-lubricating hard coatings, which are deposited on the forming tools by means of physical vapor deposition (PVD). The developed coating system CrAlN+Mo:S is synthesized in an industrial coating unit by a hybrid sputtering process, which combines direct current (DC) and high power pulsed magnetron sputtering (HPPMS) technology. The coating consists of a hard matrix CrAlN which is modified by Mo and S to provide friction reduction due to the in situ formation of MoS_2 reaction layers under tribological load. The workpiece-sided approach focuses on the surface structuring by shot peening with various peening materials and particle shapes. In order to evaluate the influence of the self-lubricating tool coating CrAlN+Mo:S and the various workpiece topographies, dry full forward impact extrusion tests were carried out in an industrial scale with coated and uncoated tools. On the one hand, a one-shouldered die geometry and on the other hand a two-shouldered die geometry were tested. The field trials reveal that for both die geometries, the tool coating significantly reduces the punch force and the wear compared to the uncoated dies. Depending on the workpiece topography, it was shown that a smoother surface leads to reduced adhesive wear. Furthermore, it was proven that the dies with an opening diameter of D = 31.4 mm and an outlet diameter of d= 20.7 mm could be coated continuously over a length of l = 50 mm on the entire inner surface. After the dry field trials, the CrAlN+Mo:S coating remained completely intact. Hence, the developed coating system CrAlN+Mo:S exhibits great potential to conduct dry, lubricant-free cold forming of steel at industrial scale.
机译:冷成型,特别是前进的冲击挤出,用于批量生产钢组分。为了确保鲁棒形成过程,工件通常是磷化,然后使用矿物油基润滑剂。由于这些润滑剂往往对环境和健康有害,因此将从生态,经济和立法角度调查替代方法。为了达到干燥,无润滑的钢的冷成型,在此追求两种方法。刀具侧的方法侧重于通过物理气相沉积(PVD)沉积在成形工具上的自润滑硬涂层。通过混合溅射工艺在工业涂层单元中合成开发的涂层系统CRALN + MO:将直流(DC)和高功率脉冲磁控溅射(HPPMS)技术相结合。涂层包括由Mo和S修饰的硬质基质CRALN,其由于在摩擦载荷下原位形成MOS_2反应层的原位形成而提供摩擦降低。工件侧方法专注于用各种喷丸材料和颗粒形状射击喷丸的表面结构。为了评估自润滑工具涂层CRALN + MO:S和各种工件拓扑的影响,在具有涂层和未涂覆的工具的工业规模中进行干燥的全向抗冲击试验。一方面,测试一个肩部模具几何形状,另一方面测试了双肩部的模具几何形状。现场试验表明,对于模具几何形状,与未涂层的模具相比,工具涂层显着降低了冲击力和磨损。取决于工件形貌,表明更平滑的表面导致粘合剂磨损降低。此外,证明是D = 31.4mm的开口直径的模具和D = 20.7mm的出口直径可以在整个内表面上连续地涂覆在L = 50mm的长度上。在干燥的田间试验后,Craln + Mo:涂层完全完整。因此,发达的涂料系统CRALN + MO:S在工业规模处表现出干燥,无润滑的冷成型的巨大潜力。

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