TY - JOUR
T1 - Fiber-optic composite cure sensor
T2 - Monitoring the curing process of composite material based on intensity modulation
AU - Li, Chensha
AU - Cao, Maosheng
AU - Wang, Rongguo
AU - Wang, Zhengping
AU - Qiao, Yingjie
AU - Wan, Libing
AU - Tian, Qiu
AU - Liu, Haitao
AU - Zhang, Deqing
AU - Liang, Tongxiang
AU - Tang, Chenhe
PY - 2003/9
Y1 - 2003/9
N2 - With the aid of the latest fiber-optic sensing technology, parameters in the cure process of thermosetting resin composite can be monitored entirely and efficiently. Based on the behavior of the refractive of resin matrix and intensity modulation of the transmitted light, experiment results of viscosity measurement in composite cure process using fiber-optic sensors are presented. The sensor signal can be used to monitor the process, detect the time when the viscosity of resin matrix is lowest and the end of the cure without calibration. The experiments of monitoring curing process of composite materials are successively made in hot-press, model autoclave and large autoclave in the manufacture field, the results are consistent and fit very well with the results of numerical simulation and the results monitored by dynamic dielectric sensor. With this technology, the cure process becomes more apparent and controllable, which will greatly improve the cured products and reduce the cost.
AB - With the aid of the latest fiber-optic sensing technology, parameters in the cure process of thermosetting resin composite can be monitored entirely and efficiently. Based on the behavior of the refractive of resin matrix and intensity modulation of the transmitted light, experiment results of viscosity measurement in composite cure process using fiber-optic sensors are presented. The sensor signal can be used to monitor the process, detect the time when the viscosity of resin matrix is lowest and the end of the cure without calibration. The experiments of monitoring curing process of composite materials are successively made in hot-press, model autoclave and large autoclave in the manufacture field, the results are consistent and fit very well with the results of numerical simulation and the results monitored by dynamic dielectric sensor. With this technology, the cure process becomes more apparent and controllable, which will greatly improve the cured products and reduce the cost.
KW - A. Polymer-matrix composites (PMC)
KW - B. Curing
KW - B. Magnetic properties
UR - http://www.scopus.com/inward/record.url?scp=0043270388&partnerID=8YFLogxK
U2 - 10.1016/S0266-3538(03)00118-0
DO - 10.1016/S0266-3538(03)00118-0
M3 - Article
AN - SCOPUS:0043270388
SN - 0266-3538
VL - 63
SP - 1749
EP - 1758
JO - Composites Science and Technology
JF - Composites Science and Technology
IS - 12
ER -