首页> 外文期刊>IEEE sensors journal >In-Situ Monitoring, Identification and Quantification of Strain Deformation in Composites Under Cyclic Flexural Loading Using Nylon/Ag Fiber Sensor
【24h】

In-Situ Monitoring, Identification and Quantification of Strain Deformation in Composites Under Cyclic Flexural Loading Using Nylon/Ag Fiber Sensor

机译:使用尼龙/ AG光纤传感器在循环弯曲负载下复合材料中应变变形的原位监测,识别和定量

获取原文
获取原文并翻译 | 示例
           

摘要

Despite having vast structural applications, Composites are not exempt from limitations and are susceptible to deforming during operation. Therefore, it is essential to develop in-situ monitoring systems to avoid their catastrophic failure or high repairing cost. So, the objective of this study was to monitor the deformation behavior of composites subjected to cyclic flexural deformation in real-time using a Nylon/Ag fiber sensor. Nylon/Ag fiber sensor was integrated at different direction i.e. 0 degrees, +45 degrees, 90 degrees, -45 degrees gradually between each ply of the composite specimens which were then machined in star shape where each leg signified the direction of the sensor. These specimens were then tested under cyclic flexural deflection at the strain rate of 2mm/min for 10 cycles. Mechanical results of composite specimens and electrical response of each Nylon/Ag sensor fiber showed excellent repeatability however, each Nylon/Ag fiber sensor showed a specific resistance behavior because of their respective position. The increase or decrease in the resistance of the fiber sensor signified the presence of tensile or compressive strain respectively and the intensity of the signal quantified the amount of deformation. The results confirmed that the fiber sensor showed good potential as flexible sensor reinforcement in composites for in-situ monitoring, identification and quantification of the deformation.
机译:尽管具有巨大的结构应用,复合材料不免受限制,并且在操作期间易于变形。因此,必须开发原位监测系统,以避免其灾难性的故障或高修复成本。因此,本研究的目的是使用尼龙/ AG光纤传感器实时监测经受循环弯曲变形的复合材料的变形行为。尼龙/ Ag光纤传感器以不同的方向整合在不同方向上,在复合样本的每个层之间逐渐逐渐地逐渐达到,然后在恒星形状中加工,其中每个腿表示传感器的方向。然后以2mm / min的应变速率在10毫米循环的循环弯曲挠曲下测试这些样本。然而,每个尼龙/ Ag传感器纤维的复合试样的机械结果和电气响应显示出优异的重复性,因此每个尼龙/ Ag光纤传感器都显示出特定的电阻行为,因为它们各自的位置。光纤传感器的电阻的增加或减少分别表示拉伸或压缩菌株的存在,并且信号的强度量化了变形量。结果证实,光纤传感器在复合材料中显示出柔性传感器加强件,用于原位监测,识别和量化变形。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号