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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >On the sensitivity and repeatability of fiber Bragg grating sensors used in strain and material degradation measurement of magnesium alloys under cyclic loads
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On the sensitivity and repeatability of fiber Bragg grating sensors used in strain and material degradation measurement of magnesium alloys under cyclic loads

机译:循环载荷下镁合金应变和材料降解测量中使用的光纤布拉格光栅传感器的灵敏度和重复性

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摘要

In the present study, for the first time, Fiber Bragg Grating (FBG) sensors are employed to measure the cyclic-strain induced on AZ31B extrusion samples during rotational bending tests (RBTs). The importance of this observation will be highlighted by considering the risk of failures under this circumstance in the modern technologies such as aerospace, while any in situ cyclic strain measurement has not been reported under RBTs. For this purpose, first, the accuracy of strain measurements captured by the FBG sensor in the elastic and plastic regimes is investigated by comparing the FBG measured strain with the data obtained simultaneously by a standard extensometer during uniaxial pull-push tests. The results confirm that the FBG sensor is able to measure the strain up to 1.3 % (plastic region) accurately. Next, the strains of the specimens are measured under different bending moments during RBTs in both the elastic and plastic regimes, hence monitoring the degradation of material during the test. The experiments uncover that the strain amplitude of the samples is decreased as the number of cycles increases in the plastic regime until the sample is stabilized. However, the strain response of the material under a bending moment of 2.5 Nm (in the elastic regime) remains constant during the test. This paper concludes that the measurement of strain amplitude evolution, with respect to the number of cycles, in a rotating bending cyclic test with FBG sensors is feasible with high level of accuracy and repeatability in the cyclic testing in the elastic region.
机译:在本研究中,首次采用光纤布拉格光栅(FBG)传感器来测量在旋转弯曲测试(RBT)期间AZ31B挤压样品上引起的循环应变。通过考虑这种情况下现代技术(如航空航天)在这种情况下的失效风险将突出此观察的重要性,而在RBT中尚未报告任何原位循环应变测量。为此,首先,通过将FBG测得的应变与标准引伸计在单轴推拉测试期间同时获得的数据进行比较,来研究FBG传感器在弹性和塑性状态下捕获的应变测量的准确性。结果证实,FBG传感器能够准确测量高达1.3%(塑性区域)的应变。接下来,在弹性和塑性状态下,在RBT期间,在不同的弯矩下测量样品的应变,从而监控测试过程中材料的降解。实验发现,在塑性状态下,样品的应变幅度会随着循环次数的增加而降低,直到样品稳定为止。但是,在测试过程中,材料在2.5 Nm的弯矩(处于弹性状态)下的应变响应保持恒定。本文得出结论,在带有FBG传感器的旋转弯曲循环测试中,相对于循环次数,测量应变幅度演变是可行的,并且在弹性区域的循环测试中具有很高的准确性和可重复性。

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