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Increasing the sustainability of composite manufacturing processes by using algorithm-based optimisation and evaluation for process chain design

机译:通过使用基于算法的优化和过程链设计评估来增加复合制造工艺的可持续性

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摘要

Fibre reinforced plastics (FRP) are ideal for lightweight applications because of their superior weight-specific mechanical properties. Yet, many lightweight parts are still made of classic construction materials due to the resource and scrap intensive FRP production. The methods of operations research (OR) are a key enabler to overcome this problem and to facilitate a more sustainable use of production, planning and material resources. OR models are being used in other industries to reduce the costs for process planning by up to 45%. However, those methods have yet to be transferred and validated for planning of FRP production. The use of novel optimisation models offers the potential to utilise resources more efficiently and reduce development times by proper planning. This paper is about the development of a sustainable and resource-efficient methodology that implements OR models into the FRP planning process and offers the potential to reduce costs significantly.
机译:由于其优异的重量特异性机械性能,纤维增强塑料(FRP)是轻质应用的理想选择。 然而,由于资源和废料密集型FRP生产,许多轻质零件仍由经典建筑材料制成。 运营研究方法(或)是克服这个问题的关键推动者,并促进更可持续使用生产,规划和材料资源。 或模型在其他行业中使用,以将过程规划的成本降低至45%。 但是,这些方法尚未转移和验证以规划FRP生产。 新颖优化模型的使用提供了更有效地利用资源,并通过适当的规划降低发展时报的潜力。 本文是关于开发可持续和资源有效的方法,该方法实现或模拟FRP计划过程,并提供显着降低成本的可能性。

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