首页> 外文会议>Sensors, 2011 IEEE >Fibre optic strain and configuration sensing in engineering components produced by additive layer rapid manufacturing
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Fibre optic strain and configuration sensing in engineering components produced by additive layer rapid manufacturing

机译:通过增材制造快速生产的工程组件中的光纤应变和配置传感

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Additive layered rapid manufacturing offers the ability to create physical parts with little or no restriction from shape complexity. Modelling and validation of this new technology requires embedded sensors which challenges conventional sensor technology. In this work, fibre Bragg gratings [FBG] have been embedded inside components made from a polymer during the manufacturing process of layer-by-layer additive manufacturing technology by laser sintering of powder layers using a commercial EOS P730 system. The technique is based on the insertion of a fibre carrier component, replacing a removable ‘place holder’ during an interruption of the build process. Tensile test specimens have been subjected to extended cyclic tensile loading trials at low strain levels of up to 400 µ-strain. The test specimen show stable and reproducible response over a period in excess of 330 days and 142000 load cycles. Polyimide and acrylic jacketed fibres have been trialled and the effect of minor deformations of the component through internal stresses depending on the fibre jacket type is discussed.
机译:附加的分层快速制造提供了创建物理零件的能力,而形状复杂性几乎没有限制。这种新技术的建模和验证需要嵌入式传感器,这对传统传感器技术提出了挑战。在这项工作中,在使用商业EOS P730系统对粉末层进行激光烧结的逐层增材制造技术制造过程中,已将光纤布拉格光栅[FBG]嵌入由聚合物制成的组件内。该技术基于插入纤维载体组件,在构建过程中断期间替换可移动的“占位器”。拉伸试验样品已经在高达400 µ-应变的低应变水平下进行了扩展的循环拉伸载荷试验。测试样品在超过330天和142000个加载周期的时间内显示出稳定且可重复的响应。已经对聚酰亚胺和丙烯酸护套的纤维进行了试验,并讨论了取决于纤维护套类型的部件通过内应力引起的微小变形的影响。

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