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首页> 外文期刊>Experimental Mechanics >Dual-Light-Path Optical Strain Gauge Using Diffraction Grating and Position-Sensitive Detectors for Deformation Measurement
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Dual-Light-Path Optical Strain Gauge Using Diffraction Grating and Position-Sensitive Detectors for Deformation Measurement

机译:使用衍射光栅和位置敏感探测器的双光路光学应变计进行变形测量

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摘要

In this paper, a dual-light-path optical strain gauge (DOSG) that measures surface deformation in real time using diffraction grating and position-sensitive detectors (PSDs) is proposed. In the DOSG, a beam splitter cube is utilized to divide an incident beam into two beams. One is applied in the main light path to measure specimen deformation, while the other is used in the assistant light path to eliminate disturbances from out-of-plane rotation and displacement of the specimen. Further, the disturbances as systemic errors are theoretically analyzed, and eliminated with the assistant light path during the experiment. Meanwhile, random errors, which are primarily due to ambient light, beam power, irradiation position and incidence angle, are studied to improve measurement accuracy. Benefiting from the utility of PSDs, the developed system achieves a strain resolution of 1 mu epsilon. In experiments, uniaxial tensile tests of aluminum alloy and Ni-based alloy confirm that the relative error of its elastic moduli is less than 3.4%, and the stress-strain curve exhibits a R-square value greater than 0.9951. In addition, the DOSG is extended to determine the mechanical behavior of Ni-based alloy at high temperatures up to 800 degrees C by combining it with an induction-heating apparatus and a tensile testing machine. These results verify that the proposed DOSG is feasible and reliable, with good potential for high-precision deformation measurement in both room temperature and high-temperature environments.
机译:在本文中,提出了一种使用衍射光栅和位置敏感检测器(PSDS)实时测量表面变形的双光路径光学应变仪(DOSG)。在DOSG中,利用分束器立方体将入射光束分成两个光束。一种用于测量样品变形的主光路上,而另一个用于助理光路,以消除来自平面外旋转和样本的位移的干扰。此外,在理论上分析了作为系统误差的干扰,并且在实验期间消除了助理光路。同时,研究了主要是由于环境光,光束功率,照射位置和入射角的随机误差,以提高测量精度。从PSD的效用中受益,发达系统实现了1亩ε的应变分辨率。在实验中,铝合金和Ni基合金的单轴拉伸试验证实,其弹性模量的相对误差小于3.4%,应力 - 应变曲线表现出大于0.9951的R-Square值。另外,通过将其与感应加热装置和拉伸试验机相结合,延长DOSG以确定高温高温下的Ni基合金的力学行为。这些结果验证所提出的DOSG是可行可靠的,在室温和高温环境中具有良好的高精度变形测量潜力。

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