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On-line monitoring of multi-component strain development in a tufting needle using optical fibre Bragg grating sensors

机译:使用光纤布拉格光栅传感器在线监测簇绒针中多组分应变的发展

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摘要

Dynamic loadings induced on a tufting needle during the tufting of dry carbon fibre preform via a commercial robot-controlled tufting head were investigated in situ and in real-time using optical fibre Bragg grating (FBG) sensors bonded to the needle shaft. The sensors were configured such that the axial strain and bending moments experienced by the needle could be measured. A study of the influence of thread and thread type on the strain imparted to the needle revealed axial strain profiles which had equivalent trends but different magnitudes. The mean of the maximum axial compression strains measured during the tufting of a 4-ply quasi-isotropic carbon fibre dry preform were - 499 ± 79 με, - 463 ± 51 με and - 431 ± 59 με for a needle without thread, with metal wire and with Kevlar® thread, respectively. The needle similarly exhibited bending moments of different magnitude when the different needle feeding configurations were used.
机译:使用结合在针杆上的光纤布拉格光栅(FBG)传感器对通过商用机器人控制的簇绒头进行的干式碳纤维预成型件的簇绒过程中,在簇绒针上产生的动态载荷进行了现场和实时研究。传感器配置为可以测量针头承受的轴向应变和弯矩。对线和线类型对施加到针的应变的影响的研究表明,轴向应变曲线具有相同的趋势,但幅度不同。在四层准各向同性碳纤维干式预制棒的簇绒过程中测得的最大轴向压缩应变的平均值为-499±79με,-463±51με和-431±59με,对于无螺纹的金属针电线和带有Kevlar®螺纹的电线。当使用不同的针进给配置时,针类似地表现出不同幅度的弯矩。

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