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Measures for controlling the material flow when extruding sheet-bulk metal forming parts from coil

机译:从卷材挤出薄板金属金属形成零件时控制材料流量的措施

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The increasing demand for lightweight design requires functional integration. This poses challenges to conventional manufacturing processes due to the rising geometrical complexity of components. The application of bulk forming operations to sheet metal, named sheet-bulk metal forming (SBMF), is one approach to overcome these challenges. Currently, mainly pre-cut blanks are applied in research of SBMF. Production from coil, in contrast, would combine the advantages of SBMF with the advantages of manufacturing from a coil regarding high output quantity. To research SBMF from coil, a lateral and a backward extrusion process are set up. In addition to a reduced geometrical accuracy of the parts, which is known from SBMF of pre-cut blanks, an anisotropic material flow is identified as a coil-specific challenge. The aim of this research is to investigate measures that extend the forming limits by means of a material flow control. For this purpose, a combined numerical-experimental approach is applied in order to analyze and evaluate an adaption of the width of the coil, the feed width, and the local friction as measures for material flow control. Particularly local adaptation of friction by means of modified tool surfaces reduces the anisotropic material flow and improves the geometrical accuracy of the parts.
机译:对轻质设计的需求不断增加需要功能集成。由于部件的几何复杂性上升,这对传统制造过程构成了挑战。将块状成型操作在金属板上的应用,名为块状金属成形(SBMF)是一种克服这些挑战的方法。目前,主要在SBMF的研究中应用预切割空白。相比之下,线圈的生产将结合SBMF的优点与关于高输出量的线圈制造的优点。为了从线圈研究SBMF,建立横向和后向挤出过程。除了从预切割坯料的SBMF中已知的部分的几何精度降低,各向异性材料流程被识别为线圈特定的挑战。该研究的目的是研究通过材料流量控制延长形成限制的措施。为此目的,应用组合的数值实验方法,以分析和评估线圈的宽度,进料宽度和局部摩擦的适应作为材料流量控制的措施。特别是通过改进的工具表面对摩擦的局部适应降低了各向异性材料流程并提高了部件的几何精度。

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