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The paper presents a new concept of micro-artefact, the fiber gauge, consisting of a set of optical fibers sticking out from a flat surface.
The modal analysis is carried out on composite beams having different fiber gauge lengths such as 10 mm, 20 mm, 30 mm, 40 mm and 50 mm.
On the contrary, the tensile strength remained unchanged with increasing crystalline domain orientation, and was shown to be independent of the fiber gauge length, thus implying that failure is not due to flaws obeying weakest link statistics.
The fiber gauge can be applied to calibration of most contact or non-contact instruments for characterization of surface topographies and 3D micro-geometries, such as micro- or nano-CMMs, optical instruments, etc. Different designs and dimensions allow for realization of structures that can be adapted to various instruments calibration needs.
Similar(56)
The underlying time scale for rupture is the time scale for a typical fiber of gauge length δ to fail under the applied load σ; this time can be quite different from that measured by stress-rupture tests on single fibers at an unrelated laboratory gauge length L0.
Fiber optic gauges were utilized in high flexural and shear regions and conventional resistive gauges were placed in eighteen locations to provide behavioral understanding of the composite material strengthening.
In this paper, we designed an optical fiber bidirectional strain gauge bonded on each single detecting point.
This paper describes a monitoring system based on fiber optic strain gauge sensors used to reconstruct in real time the form of a sail.
The developed long gauge Fiber Bragg Grating (LG-FBG) strain sensors were mounted on the bottom of the box girder bridge.
A novel long-gauge fiber optic sensor has been developed to measure the averaged strain within a long gauge length.
The borehole monitoring system includes boreholes with inclinometers, water pressure and water level gauges, fiber sensors.
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CEO of Professional Science Editing for Scientists @ prosciediting.com