首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >UPSCALING SENSING MATERIALS WITH CHALLENGES OF SENSORS EMBEDDING IN POWDER BASED MATERIALS AND POLYMERS
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UPSCALING SENSING MATERIALS WITH CHALLENGES OF SENSORS EMBEDDING IN POWDER BASED MATERIALS AND POLYMERS

机译:在粉状材料和聚合物中嵌入传感器的挑战,升级传感材料

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This paper has explored and analyzed new routes to design new concepts of materials capable of feeling external effects and feed information back to a monitor and/or react through embedded actuators to resist any deformation. The material with its new artificial sensing property can be easily scaled-up to govern a whole structure at macro scale. The research has investigated a variety of manufacturing routes to build prototypes to be tested for the sake of characterization and performance assessment as well as cost analysis to assess effectiveness. This has included ultrasonic fiber optics embedding in thin Metals e.g. Aluminum which has shown some challenges to be discussed. The host materials included mainly layered manufacturing based materials e.g. powder based materials (Alloy A16061) and additive process e.g. 3D printing with ABS material. This work has considered samples with concepts having embedded fiber optics in 1D, 2D and 3D. The integrity of the fiber optics and the host materials as well as the sensors performance has been investigated under several conditions of pressure, temperature and geometric placement of the fiber optics. A parametric compromise between materials standard performance and integrity of the sensors is to be found.
机译:本文探索并分析了设计材料新概念的新途径,这些新概念能够感知外部影响并将信息反馈到监视器和/或通过嵌入式致动器做出反应以抵抗任何变形。具有新的人工感应特性的材料可以轻松按比例放大,以宏观方式控制整个结构。该研究调查了各种制造路线,以构建待测试的原型,以进行特性和性能评估以及成本分析以评估有效性。这包括将超声波光纤嵌入薄金属中,例如铝已经显示出一些需要讨论的挑战。主体材料主要包括分层的基于制造的材料,例如碳纳米管。粉末基材料(Alloy A16061)和附加工艺,例如使用ABS材料进行3D打印。这项工作考虑了具有在1D,2D和3D中嵌入光纤的概念的样本。在几种压力,温度和几何形状的光纤条件下,已经研究了光纤和主体材料的完整性以及传感器的性能。将在材料标准性能和传感器完整性之间找到一个参数折衷方案。

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