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A case study on the capability of rapid tooling thermoplastic laminating moulds for manufacturing of CFRP components in autoclaves

机译:高压釜中CFRP组分制造快速工具热塑性层压模具的案例研究

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Additive manufacturing (AM) is most used in prototype production and other processes upstream of series production. However, in recent years additive manufacturing has also moved into series production environments substituting for established systems. With AM, it is possible to improve production in terms of material consumption, manufacturing costs, and lightweight design. Accordingly, it is possible to create complexly arched laminating moulds directly from the CAD-model instead of milling them from solid material as is frequently done for the production of carbon fibre reinforced plastic (CFRP) components in autoclaves. This work analyses the potential of CFRP-laminating moulds as rapid tooling moulds generated by fused deposition modeling. A rounded cuboid will be considered with different reinforcement patterns as well as various wall thicknesses. Normal autoclave conditions will be simulated with pressure variation and high temperature stress varying over time. In conclusion, the results prove the capability of rapid tooling thermoplastic laminating moulds for manufacturing CFRP components in autoclaves.
机译:添加剂制造(AM)最可用于原型生产和串联生产上游的其他过程。然而,近年来,添加剂制造也搬入了代替已建立的系统的串联生产环境。随着我,可以在材料消费,制造成本和轻质设计方面改善生产。因此,可以直接从CAD模型中形成复杂的拱形层压模具,而不是将它们从固体材料研磨,如经常用于在高压釜中生产碳纤维增强塑料(CFRP)组分。这项工作分析了CFRP层压模具作为通过融合沉积建模产生的快速工具模具的潜力。将圆形长方体与不同的加强图案以及各种壁厚进行考虑。将模拟正常高压灭菌条件,随着时间的推移,压力变化和高温应力变化。总之,结果证明了用于制造高压釜中CFRP组分的快速工具热塑性层压模具的能力。

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