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In-situ monitoring of strain and temperature distributions during fused deposition modeling process

机译:熔融沉积建模过程中的应变和温度分布的原位监测

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The present work investigates the integration of fiber Bragg grating (FBG) sensors for continuous in-situ and in real-time monitoring of strain fields build up as well as of developed temperature profiles during the fabrication procedure of structures built via the Fused Deposition Modeling (FDM) technology. A methodology is presented for simultaneous monitoring of strain and temperature profiles from the recorded spectrum of an embedded optical sensor when the deposited material remains close to its glass transition temperature. The used FBG sensors were embedded either longitudinally or transversely to the test samples' long axis and within different layers of the structures. Analysis of the FBG recordings indicates that the generated residual strain values are significant during material consolidation of the deposited layers. It is also shown that the solidification induced strain levels and the developed temperature gradients are strongly influenced by the samples' position onto the building platform. The findings demonstrate that an embedded optical sensing system is proven to be a reliable choice for real-time monitoring of the FDM process and the printed part's quality. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本工作研究了光纤布拉格光栅(FBG)传感器的集成,以便在通过融合沉积建模(Fused Deposition Modeling)构建的结构的制造过程中,连续不断地进行原位和实时监测应变场的建立以及已开发的温度曲线( FDM)技术。提出了一种方法,当沉积的材料保持接近其玻璃化转变温度时,可同时从嵌入式光学传感器的记录光谱中监视应变和温度曲线。所使用的FBG传感器纵向或横向嵌入测试样品的长轴,并嵌入结构的不同层中。 FBG记录的分析表明,在沉积层的材料固结过程中,所产生的残余应变值非常重要。还表明,固化引起的应变水平和所形成的温度梯度受样品在建筑平台上的位置的强烈影响。研究结果表明,嵌入式光学传感系统被证明是实时监控FDM工艺和印刷零件质量的可靠选择。 (C)2016 Elsevier Ltd.保留所有权利。

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