Method for forming elongated composite tubular
A method and apparatus for forming an elongate tubular from a composite material. The composite material includes fibers and epoxy resin that are disposed around an elongated mandrel. The fibers are wound around the outer circumference of the mandrel and the epoxy resin may be applied to the fibers, before, during, or after, being wound onto the mandrel. A trough is provided that supports the mandrel between ends of the mandrel. An example trough includes a flexible membrane supported on its lateral ends to resemble a catenary.
1. A method of forming a composite tubular comprising:
a. supporting a length of a mandrel between opposite ends of a frame;
b. mounting a trough below the mandrel;
c. winding a composite of filament around the mandrel;
d. providing a liquid polymer matrix in the trough, so that the filament and liquid polymer matrix form a composite;
e. biasing the trough upwardly against the weight of the mandrel and the filaments being wound on the mandrel to reduce sag in the mandrel; and
f. separating the composite of filaments and polymer matrix from the mandrel to provide a substantially straight composite tubular.
2. The method of claim 1 , wherein step e comprises:
making at least a portion of the trough flexible;
sealing a perimeter of the trough;
forming a chamber below the trough; and
applying fluid pressure to the chamber to exert an upward force on the trough.
3. The method of claim 1 , further comprising installing the composite tubular onto a drilling system, flowing a pressurized fluid through the composite tubular that is for use in a choke and kill operation.
4. The method of claim 1 , further comprising, dispensing a portion of the polymer matrix into the trough and creating a liquid film between the trough and the filament being wound onto the mandrel.
5. The method of claim 1 , further comprising sealing ends of the mandrel to the ends of the frame.
6. The method of claim 1 , wherein the liquid polymer matrix is added directly into the trough or directly onto the filament.