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ESTABLISHMENT OF AN INLINE QUALITY ASSURANCE METHOD FOR FIBER SPRAYED PREFORMS

机译:建立纤维喷涂预成型件的内联质量保证方法

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Components made from fiber reinforced plastics are increasingly applied due to their high potential for lightweight design. However, the high material and production costs are critical for establishing components in cost sensitive markets like the automotive industry.A solution to reduce material costs is the additive 3D-fiber spraying process. This preforming technology enables cost-efficient and net-shaped manufacturing of long fiber (25 – 50 mm) preforms with minimal waste directly from the roving. Therefore, this preforming technology is interesting for parts with a complex geometry where textile preforming reaches its economical limitations regarding draping and nesting strategies.However, this technology is affected by process fluctuations. For reproducible properties, the 3D-fiber spraying process is integrated in a production unit. Within this unit, an inline quality assurance system based on detection of process fluctuations and a self-regulating compensation system is established.The inline quality metrology is realized by an optical system. Local deviations of fiber distribution and orientation are detected and used for individual compensation using continuous carbon fibers. The fiber pattern is shaped based on an inline simulation of the mechanical component properties.In this paper the suitability of the optical inline assurance system for the fiber spraying process is investigated.
机译:由于其轻质设计的高潜力,由纤维增强塑料制成的部件越来越多地施加。然而,高材料和生产成本对于在汽车行业等成本敏感市场中建立组件至关重要。降低材料成本的解决方案是添加剂3D纤维喷涂过程。这种预成型技术使得长纤维(25-50mm)的高纤维(25-50毫米)的净形制造具有直接从粗纱的最小废物。因此,这种预成型技术对于具有复杂几何形状的部件是有趣的,其中纺织品预成型达到了关于覆盖和嵌套策略的经济限制。但是,该技术受到流程波动的影响。对于可重复的性能,3D纤维喷涂过程集成在生产单元中。在本机中,建立了基于检测过程波动和自调节补偿系统的内联质量保证系统。内联质量计量由光学系统实现。检测纤维分布和取向的局部偏差,并使用连续碳纤维来用于单独的补偿。纤维图案成形为基于机械部件性质的内联模拟。本文研究了光学内联保证系统对纤维喷涂过程的适用性。

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