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Online Monitoring and Prediction of Thermo-Mechanics of AFP Based Thermoplastic Composites

机译:AFP基热塑性复合材料热力学的在线监测和预测

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摘要

Precision sensing in the characterization of complex additive manufacturing processes such as the Automated Fibre Placement (AFP) technique is important since the process involves a significant level of uncertainty in terms of quality and integrity of the manufactured product. These uncertainties can be monitored by embedding optical fibre Bragg grating (FBGs) sensors which provide accurate and simultaneous measurement of strain and temperature during the AFP process. The embedded sensors have been shown to remain resilient in continuous health monitoring after manufacturing. The thermal history obtained from the FBG sensors demonstrates a reduction of temperature on the bottom ply by up to 25% when the plies are laid one above the other. A numerical tool is developed to identify the physical parameters which may be responsible for the rise/fall of the temperature during ply layup. The numerical findings agree well with the sensor data and is extended to capture a breadth of parametric studies through the layup simulation. The model provides a comprehensive insight to the characteristics of the laid and the laying ply from a thermo-mechanics perspective.
机译:在复杂的增材制造过程(例如自动纤维铺放(AFP)技术)的表征中进行精确感测非常重要,因为该过程在制造产品的质量和完整性方面涉及很大程度的不确定性。这些不确定性可以通过嵌入光纤布拉格光栅(FBG)传感器进行监控,该传感器在AFP工艺期间可同时准确地测量应变和温度。嵌入式传感器已显示出在制造后连续进行健康监测时仍具有弹性。从FBG传感器获得的热历史表明,当将一层板叠放在另一层上时,底部层板的温度最多可降低25%。开发了一种数字工具来识别物理参数,这些物理参数可能会导致铺层过程中温度的升高/降低。数值结果与传感器数据非常吻合,并通过叠加仿真扩展到捕获广泛的参数研究。该模型从热力学角度提供了对铺层和铺层特性的全面了解。

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