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Pierced forgings: tool development for a combined single step process

机译:穿孔的锻件:用于单步组合工艺的工具开发

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摘要

Many forged parts e.g. connection rods or box spanners feature cavities, holes or apertures, which have to be produced in an additional process step (in many cases warm piercing). The residual material, that remains at the cross sectional area of the piercing punch, so called web, has to be pierced in an additional manufacturing step. By integrating this separately performed operation into the final forging step the process chain can be shortened. However, up to date there is no information available on how the process parameters influence quality relevant factors like dimensional accuracy, surface quality, and fibre orientation in the pierced area when forming and piercing operations are combined. Therefore, a combined forging-/piercing process was designed and performed in two projects. In the first project, not discussed in this paper, forging temperature, tool and work piece material as well as the thickness of the web have been investigated. The results of these investigations showed that the variation of the inserted mass and the forging temperature have a distinct effect on the dimensional and form accuracy of the work pieces. The second project investigated different geometries of the piercing punch and the influence of a different forming sequence on tool stress and material flow. The geometry of punch shows no effect on the geometrical tolerances of the piercing while an inappropriate forming sequence leads to failure of the tool.
机译:许多锻造零件,例如连接杆或套筒扳手具有空腔,孔或小孔,这些孔,孔或小孔必须在额外的处理步骤中制造(在许多情况下为热穿孔)。残留在穿孔冲头的横截面上的残留材料,即所谓的纤维网,必须在额外的制造步骤中穿孔。通过将此单独执行的操作集成到最终锻造步骤中,可以缩短工艺链。但是,到目前为止,尚无有关组合成型和穿孔操作时工艺参数如何影响质量相关因素(如尺寸精度,表面质量和穿孔区域中纤维取向)的信息。因此,在两个项目中设计并执行了组合的锻造/冲孔工艺。在本文未讨论的第一个项目中,研究了锻造温度,工具和工件材料以及腹板的厚度。这些研究的结果表明,插入质量和锻造温度的变化对工件的尺寸和形状精度有明显的影响。第二个项目研究了穿孔冲头的不同几何形状以及不同成型顺序对工具应力和材料流动的影响。冲头的几何形状对穿孔的几何公差没有影响,而不合适的成型顺序会导致工具损坏。

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