Head and system for continuously manufacturing composite hollow structure
A head is disclosed for use with a continuous manufacturing system. The head may have a housing, a fiber guide rotatably disposed at least partially inside the housing, and a diverter disposed at an end of the housing. The diverter may be configured to divert radially outward a matrix-coated fiber passing through the fiber guide.
1. A head for a continuous manufacturing system, comprising:
a housing;
a fiber guide rotatably disposed at least partially inside the housing, the fiber guide having a generally closed end and an open end, an annular wall extending between the generally closed and open ends, and at least one axially oriented passage formed in the annular wall and being configured to receive a matrix-coated fiber;
a diverter located at an end of the housing and having an outer diameter greater than an outer diameter of the annular wall and being configured to divert radially outward the matrix-coated fiber passing through the fiber guide; and
a light source mounted at least partially inside a mouth of the diverter,
wherein the housing has an internal cavity configured to hold a supply of matrix for coating fibers as the fibers enter the fiber guide.
2. The head of claim 1 , wherein the diverter is disposed at least partially inside the open end of the fiber guide.
3. The head of claim 2 , wherein the diverter is generally bell-shaped, having a domed end at least partially inside the open end of the fiber guide.
4. The head of claim 1 , wherein the at least one axially oriented passage includes a plurality of axially oriented passages spaced apart from each other within the annular wall.
5. The head of claim 4 , wherein:
the fiber guide includes a dome coupled to an end of the annular wall at the generally closed end of the fiber guide; and
the plurality of axially oriented passages are generally straight and extend through the dome.
6. The head of claim 5 , further including a central shaft opening formed in the dome.
7. The head of claim 1 , wherein:
the fiber guide is a first fiber guide; and
the head further includes a second fiber guide also rotatably disposed at least partially inside the housing.
8. The head of claim 7 , wherein the first and second fiber guides are configured to counter rotate relative to each other.
9. The head of claim 8 , wherein the second fiber guide is disposed at least partially inside the first fiber guide.
10. The head of claim 8 , wherein the second fiber guide is disposed completely within the first fiber guide.
11. A head for a continuous manufacturing system, comprising:
a housing;
a first fiber guide rotatably disposed at least partially inside the housing and having an annular wall with at least one axially oriented passage formed in the annular wall and being configured to receive a matrix-coated fiber;
a second fiber guide rotatably disposed at least partially inside the first fiber guide;
a diverter located at an end of the housing and having an outer diameter greater than an outer diameter of the annular wall configured to divert radially outward matrix-coated fibers passing through the first and second fiber guides, wherein the diverter is further configured to press matrix-coated fibers from the second fiber guide against matrix-coated fibers from the first fiber guide to form a hollow structure; and
a light source mounted at least partially inside a mouth of the diverter,
wherein the housing has an internal cavity configured to hold a supply of matrix for coating fibers as the fibers enter the first fiber guide.
12. The head of claim 11 , wherein the diverter is selectively movable relative to the housing to adjust a wall thickness of the hollow structure.
13. The head of claim 11 , wherein the light source is configured to facilitate hardening of the hollow structure from inside the hollow structure.
14. A head for a continuous manufacturing system, comprising:
a housing;
a fiber guide rotatably disposed at least partially inside the housing and having an annular wall and at least one axially oriented passage formed in the annular wall and being configured to receive a matrix-coated fiber;
a diverter located at an end of the housing and having an outer diameter greater than an outer diameter of the annular wall configured to divert radially outward the matrix-coated fiber passing through the fiber guide; and
a light source mounted at least partially inside a mouth of the diverter,
wherein the housing has an internal cavity configured to hold a supply of matrix for coating fibers as the fibers enter the fiber guide.
15. The head of claim 1 , wherein the light source is configured to facilitate hardening of the matrix-coated fiber as it emerges from the fiber guide and passes a distal end of the diverter.
16. The head of claim 15 , wherein the light source is a UV light source.
17. The head of claim 1 , further including a cutoff configured to selectively move toward the diverter to cut the matrix-coated fiber.
18. The head of claim 17 , wherein the cutoff is annularly disposed around the housing and slidable in an axial direction relative to the housing and the diverter.
19. The head of claim 18 , wherein the cutoff includes a sharpened edge oriented toward the diverter.
20. A head for a continuous manufacturing system, comprising:
a housing;
a fiber guide rotatably disposed at least partially inside the housing, the fiber guide having a generally closed end and an open end, an annular wall extending between the generally closed and open ends, and at least one axially oriented passage formed in the annular wall and being configured to receive a matrix-coated fiber;
a diverter located at an end of the housing and having an outer diameter greater than an outer diameter of the annular wall and configured to divert radially outward the matrix-coated fiber passing through the fiber guide, wherein the housing has an internal cavity configured to hold a supply of matrix for coating fibers as the fibers enter the fiber guide; and
a light source mounted at least partially inside a mouth of the diverter.