The goal of a structural health monitoring system is to detect, locate, and identify damages in a structure during its lifetime. The concept of structural health monitoring is particularly important for fiber reinforced composites due to the complexity of the possible failure mechanisms. The goal of this work is to simulate the response of optical fiber Bragg grating sensors to multi-component loading for their implementation in structural health monitoring algorithms for composites. A simulation method is presented to determine the effects of axial, bending and shear loading on an embedded optical fiber Bragg grating sensor. The effect of fiber bending on the Bragg grating sensor is experimentally verified by embedding the sensor in a solid cone, clamped at the base and subjected to a point load at the apex. Next, a numerically efficient method to calculate the response of sensors embedded in a unidirectional composite is developed using both finite element analysis and optimal shear-lag theory and taking into account the above effects. The limitations of the optimal shear-lag theory are derived through comparison with the finite element results. The application of this method is demonstrated through a numerical example, simulating the response of sensors embedded in one fiber layer to a transverse crack.
[1]
H. Taylor,et al.
Bending effects in optical fibers
,
1984
.
[2]
Rhys Jones,et al.
Optical fibre sensors for health monitoring of bonded repair systems
,
2000
.
[3]
J. Nairn,et al.
On the use of planar shear-lag methods for stress-transfer analysis of multilayered composites
,
2001
.
[4]
K. Peters,et al.
Embedded optical fiber Bragg grating sensor in a nonuniform strain field: Measurements and simulations
,
2001
.
[5]
Kara Peters,et al.
Measurement of local bending moment using embedded optical fiber Bragg grating sensors
,
2002,
SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[6]
George Z. Voyiadjis,et al.
Mechanics of Composite Materials with MATLAB
,
2005
.
[7]
T. Okabe,et al.
Shear-lag versus finite element models for stress transfer in fiber-reinforced composites
,
2002
.
[8]
Hwa-Yaw Tam,et al.
Effects of pure bending on the sensing characteristics of fiber Bragg gratings
,
2000,
Other Conferences.
[9]
T. Erdogan.
Fiber grating spectra
,
1997
.