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Influence of damage versus temperature on modal strains and neutral axis positions of beam-like structures

机译:损伤对温度的影响对梁状结构的模态应变和中性轴位置的影响

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Vibration-based Structural Health Monitoring is a non-destructive condition assessment method that exploits damage-related changes in the dynamic characteristics of a structure. The sensitivity of some commonly employed dynamic characteristics such as natural frequencies, to local damage of moderate severity might be lower than their sensitivity to environmental influences such as temperature. Modal strains are more sensitive to local damage, but the accurate dynamic monitoring of the very low strain levels that occur in civil engineering structures under ambient excitation became possible only recently. In this work, the influence of both temperature and damage on modal strains is experimentally investigated for a prestressed concreted beam in controlled laboratory conditions. Not only the modal strains themselves are considered, but also the neutral axis position under bending deformation, which relates directly to the bending stiffness. It is found that the induced temperature changes in the concrete beam do not have a measurable influence on the modal strains and neutral axis positions. The cracks that are induced in the beam by external loading in a progressive damage test do have a clear and local influence on the strain mode shapes and neutral axis positions, even at low damage levels.
机译:基于振动的结构健康监测是一种非破坏性状态评估方法,可利用结构动态特性中与损伤相关的变化。一些常用动态特性(例如自然频率)对中等强度局部损坏的敏感性可能低于其对环境影响(例如温度)的敏感性。模态应变对局部损伤更敏感,但是直到最近,才有可能对在环境激励下土木工程结构中发生的非常低的应变水平进行精确的动态监测。在这项工作中,在受控的实验室条件下,通过实验研究了温度和损伤对模态应变的影响。不仅要考虑模态应变本身,还要考虑弯曲变形下的中性轴位置,这直接关系到弯曲刚度。结果发现,混凝土梁中引起的温度变化对模态应变和中性轴位置没有可测量的影响。即使在低损伤水平下,在渐进式损伤试验中,外部载荷在梁中引起的裂纹对应变模式形状和中性轴位置也有明显的局部影响。

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