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Dynamic strain measurements of a cantilever using the improved bonding fiber Bragg grating

机译:使用改进的粘结光纤布拉格光栅测量悬臂的动态应变

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For a surface mounted fiber Bragg grating (FBG) strain sensor, this study used an improved bonding method that distributes cement only on the two ends of the grating and leaves the grating free from cement. According to a recent numerical study, for a conventional surface mounted FBG strain sensor its relationship between average strains (within its glued grating) and voltage signals is nonlinear and changeable depending on the variation patterns of strain gradients (within its glued grating) in a strain history. By contrast, the relationship for the improved bonding one is linear because of the constant zero strain gradient within the glue-free grating. To experimentally verify the linear relationship for the improved bonding fiber Bragg grating (IBFBG), this study set up a cantilever with both the IBFBG and a resistance strain gauge surface mounted in close proximity, and the vibration responses were induced by impactions of a free-falling steel ball on the cantilever's surface. Experimental results indicate that dynamic calibrations of an IBFBG by using a commonly used resistance strain gauge are possible because both sensors in close proximity have their changes of voltage signals almost proportional to each other.
机译:对于表面安装的布拉格光纤光栅(FBG)应变传感器,本研究使用了一种改进的粘结方法,该方法仅在光栅的两端分配水泥,而使光栅中没有水泥。根据最近的一项数值研究,对于常规的表面安装FBG应变传感器,其平均应变(在其粘合光栅内)与电压信号之间的关系是非线性的,并且可根据应变中应变梯度(在其粘合光栅内)的变化模式而变化。历史。相比之下,由于无胶光栅内的零应变梯度恒定,因此改进的键合关系是线性的。为了通过实验验证改进的粘结光纤布拉格光栅(IBFBG)的线性关系,本研究建立了一个悬臂,其IBFBG和电阻应变仪表面紧密相邻,并且振动响应是由自由振动的冲击引起的。悬臂表面掉落的钢球。实验结果表明,通过使用常用的电阻应变仪对IBFBG进行动态校准是可能的,因为两个紧密靠近的传感器的电压信号变化几乎彼此成比例。

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