Composite structures with embedded electrical grids
A composite structure of a cargo body and a method of making the same are disclosed. The composite structure includes at least one electrical grid embedded within fiber-reinforced polymer (FRP) layers. The embedded electrical grid includes a plurality of conductive fibers and a plurality of insulating fibers integrated into a polymer matrix of the FRP layers. The embedded electrical grid may be used for power distribution, structural strengthening and stiffness, and/or puncture detection.
1. A laminated composite structure of a cargo body, the composite structure comprising:
a core layer;
an outer fiber-reinforced polymer layer coupled to the core layer;
an inner fiber-reinforced polymer layer coupled to the core layer; and
at least one electrical grid embedded within one or more of the outer and inner fiber-reinforced polymer layers, wherein the at least one electrical grid includes:
a first plurality of conductive fibers;
a second plurality of conductive fibers perpendicular to the first plurality of conductive fibers;
wherein the at least one electrical grid is embedded within one of the outer and inner fiber-reinforced polymer layers on one side of the core layer, the electrical grid further including a plurality of intermediate insulating fibers sandwiched between the first plurality of conductive fibers and the second plurality of conductive fibers;
wherein the composite structure is a sidewall of a refrigerated trailer, and further comprising a sensor coupled to at least two of a first plurality of subsets of the first plurality of conductive fibers or at least two of a second plurality of subsets of the second plurality of conductive fibers, wherein the sensor is at least one of a temperature sensor, a moisture sensor, a GPS sensor, a load sensor, and an accelerometer, the sensor configured to communicate a signal indicative of a state of the refrigerated trailer.
2. The composite structure of claim 1 , wherein:
the plurality of intermediate insulating fibers form a mat;
the first plurality of conductive fibers are stitched into one side of the mat; and
the second plurality of conductive fibers are stitched into another side of the mat.
3. The composite structure of claim 1 , wherein the first plurality of conductive fibers and the second plurality of conductive fibers provide structural reinforcement of the composite structure.
4. The composite structure of claim 1 , wherein the plurality of intermediate insulating fibers are glass.
5. The composite structure of claim 1 , wherein a polymer matrix from a corresponding one of the outer and inner fiber-reinforced polymer layers is integrated into the at least one electrical grid.
6. The composite structure of claim 1 , wherein:
the first plurality of subsets is powered in an alternating manner; and
the second plurality of subsets is powered in an alternating manner.
7. The composite structure of claim 1 , wherein the trailer includes a power source in electrical communication with the at least one electrical grid.
8. The composite structure of claim 7 , wherein the trailer includes a control system programmed to detect a break in the at least one electrical grid.
9. The composite structure of claim 8 , wherein the control system is programmed to identify a location of the break.
10. The composite structure of claim 1 , wherein the sensor is a temperature sensor.
11. A laminated composite structure of a cargo body, the composite structure comprising:
a core layer;
an outer fiber-reinforced polymer layer coupled to the core layer;
an inner fiber-reinforced polymer layer coupled to the core layer; and
at least one electrical grid embedded within one or more of the outer and inner fiber-reinforced polymer layers, wherein the at least one electrical grid includes:
a first plurality of conductive fibers;
a second plurality of conductive fibers perpendicular to the first plurality of conductive fibers;
wherein the at least one electrical grid is embedded within one of the outer and inner fiber-reinforced polymer layers on one side of the core layer, the electrical grid further including a plurality of intermediate insulating fibers extending between at least one of adjacent fibers of the first plurality of conductive fibers and adjacent fibers of the second plurality of conductive fibers.