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Process monitoring during manufacturing of large-scale composite parts

机译:大型复合部件制造过程中的过程监控

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Abstract: One of the inherent problems with the processing of composites is the development of internal stresses and the resulting warpage, which results in out-of-tolerance components. This investigation examines possible fiber-optic sensor methods, which can be applied to measure internal strain and thus residual stress during production. Extrinsic Fabry-Perot Interferometers (EFPI) and Bragg gratings are utilizes to monitor the strain behavior during manufacturing of large-scale composite parts. Initially, a 24 in $MUL 18 in $MUL 1 in thick part was manufactured using the vacuum- assisted resin transfer molding (VARTM) technique. In this part, one Bragg grating, multiple thermocouples and a resin flow sensor (SMARTweave) were integrate to measure the flow and cure behavior during production. An AGEMA thermal image camera verified the temperature history on the part surface. In addition, several EFPI's and Bragg gratings were implemented into three temperature history on the part surface. In addition, several EFPI's and Bragg gratings were implemented into three 13 ft $MUL 32 ft $MUL 20.3 in civilian bridge deck test specimens manufactured with the VARTM process. The Bragg gratings showed great promise to capture the changes in strain due to the residual stress during cure. The actual implementation of fiber optics into large composite parts is a challenge and the problems of sensor survivability in these parts are addressed in this study. The fiber optic measurements in combination with SMARTweave's ability to monitor flow could lead to a sensor system, which allows feedback for process control of the VARTM technique. In addition, the optical fibers will be used for health monitoring during the lifetime of the part. !7
机译:摘要:复合材料加工的固有问题之一是开发内部应力和由此产生的翘曲,这导致耐受性分量。该研究检查了可能的光纤传感器方法,可应用于测量内部菌株并因此在生产过程中的残余应力。外在法布里 - 珀罗干涉仪(EFPI)和布拉格光栅利用在大规模复合部件制造过程中监测应变行为。最初,使用真空辅助的树脂转移成型(Vartm)技术制造厚部1的24美元的$ MUL 18。在该部分中,一个布拉格光栅,多个热电偶和树脂流量传感器(Smartweave)被整合以测量生产过程中的流动和固化行为。 AGEMA热图像摄像机验证了部分表面上的温度历史。此外,几个EFPI和布拉格光栅被实施到零件表面上的三个温度历史中。此外,在采用Vartm工艺制造的平民桥式甲板试样中实施了几个EFPI和Bragg光栅的三个13英尺32英尺$ 32 FUL 20.3。布拉格光栅表明,由于固化期间残余应力,捕获应变的变化很大。将光纤的实际实施成为大型复合部件是挑战,本研究中解决了这些零件中的传感器生存能力问题。结合Smartweave监控流动能力的光纤测量可能导致传感器系统,这允许反馈用于Vartm技术的过程控制。此外,光纤将用于部件的寿命期间的健康监测。 !7

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