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首页> 外文期刊>Journal of Rheology >Modeling of interlayer contact and contact pressure during fused filament fabrication
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Modeling of interlayer contact and contact pressure during fused filament fabrication

机译:融合长丝制造期间层间接触与接触压力的建模

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摘要

An in-line rheometer and data acquisition system are used to monitor the melt pressure, melt temperature, and environmental temperatures while producing parts via fused filament fabrication (FFF). Melt pressures are observed to increase when printing parts with small layer heights, which is attributed to the confined space created between the nozzle and the previous layer (i.e., an exit pressure). These exit pressures (referred to as contact pressure) and the resulting interlayer contact areas are analyzed for 2863 layers created at 21 different processing conditions. The measured contact pressure was found to directly influence the shape of the layers and the resulting interlayer contact. An intimate contact model based on contact pressure is combined with a wetting model to accurately predict the interlayer contact of FFF parts. This pressure-driven intimate contact model for FFF shows strong agreement with the observed interlayer contact. No theoretical model has previously existed for predicting interlayer contact, so this research provides a critical component for developing a comprehensive part strength model. Both the measurements and proposed model are sufficiently simple and accurate for real-time analysis of FFF quality, so the described in-line sensors provide valuable quality insights and are recommended for future researchers, printer manufacturers, and end-users. (C) 2019 Author(s).
机译:在线流变仪和数据采集系统用于监测熔体压力,熔化温度和环境温度,同时通过熔丝长丝制造(FFF)产生部件。观察熔体压力以增加具有小层高度的零件,这归因于喷嘴和前一层之间产生的限制空间(即,退出压力)。分析这些出口压力(称为接触压力)和所得的层间接触区域,在21种不同的加工条件下产生的2863层。发现测量的接触压力直接影响层的形状和所得的层间接触。基于接触压力的紧密接触型号与润湿模型结合,以准确地预测FFF零件的层间接触。 FFF的这种压力驱动的亲密接触模型与观察到的层间接触表现出强烈的一致性。没有以前存在用于预测中间层接触的理论模型,因此该研究提供了开发综合零件强度模型的关键部件。测量和所提出的模型都足够简单,准确地进行FFF质量的实时分析,因此所描述的在线传感器提供有价值的质量见解,并建议未来的研究人员,打印机制造商和最终用户。 (c)2019年作者。

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