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A Temperature Self-Compensated LPFG Sensor for Large Strain Measurements at High Temperature

机译:温度自补偿LPFG传感器,用于高温下的大应变测量

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摘要

In this paper, a $hbox{CO}_{2}$ laser-induced long-period fiber-grating (LPFG) optic sensor was packaged with a hybrid mechanism of elastic attachment and gauge length change for large strain measurements in a high-temperature environment. An emphasis was placed on the use of two cladding modes ($hbox{LP}_{06}$ and $ hbox{LP}_{07}$) of a single LPFG sensor for simultaneous strain and temperature evaluations so that exact temperature was used to compensate strain measurements. Both strain and temperature sensitivities of the LPFG sensor, as well as the strain transfer ratio due to a combined effect of elastic attachment and gauge length change, were analytically derived and validated with tension tests at elevated temperatures. The strain sensitivity of the LPFG sensor switched sign from negative for $hbox{LP}_{06}$ or lower modes to positive for $hbox{LP}_{07}$ or higher modes, whereas its temperature sensitivity remained positive. The sign switch for the strain sensitivity resulted from two competing changes of grating period and effective refractive index as the gratings are subjected to an axial strain. The LPFG sensor was demonstrated to be operational up to 700 $^{circ}hbox{C}$ for a strain measurement of up to 1.5%.
机译:在本文中,将$ hbox {CO} _ {2} $激光诱导的长周期光纤光栅(LPFG)光学传感器与弹性附着和标距变化的混合机制包装在一起,以便在高应力下进行大应变测量温度环境。重点是使用单个LPFG传感器的两种包层模式($ hbox {LP} _ {06} $和$ hbox {LP} _ {07} $)来同时进行应变和温度评估,以确保精确的温度为用于补偿应变测量。 LPFG传感器的应变和温度敏感性,以及由于弹性附着和标距长度变化的综合作用而产生的应变传递比,均经过分析得出,并通过在高温下的拉伸试验进行了验证。 LPFG传感器的应变灵敏度将符号从$ hbox {LP} _ {06} $或更低模式的负值切换为$ hbox {LP} _ {07} $或更高模式的正值,而其温度灵敏度保持正值。应变敏感性的符号开关是由光栅周期和有效折射率的两个相互竞争的变化引起的,因为光栅受到轴向应变。 LPFG传感器被证明在高达1.5%的应变测量下最高可工作700次。

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