Alternative moisture and temperature resistant forming tubes
The invention is a collapsible tube having excellent moisture and temperature-resistance. The collapsible tube, such as a spirally wound or convolute paperboard forming tube, includes moisture-resistant and temperature-resistant layers at its inside and outside surfaces. These moisture-resistant and temperature-resistant layers may be polymeric, parchment, or metallic materials, particularly metal foil layers. The collapsible tube is especially useful as a reusable forming tube in the manufacture of glass fibers.
1 . A collapsible and expandable forming tube having excellent moisture and temperature resistance for use in the manufacture of glass fibers, said tube comprising:
a paperboard structure defining an inside surface and an outside surface;
a first moisture-resistant and temperature-resistant layer positioned on said inside surface of said paperboard structure;
a second moisture-resistant and temperature-resistant layer positioned on said outside surface of said paperboard structure;
wherein said first and second moisture-resistant and temperature-resistant layers include different material than said paperboard structure.
2 . A collapsible and expandable forming tube according to claim 1 , wherein said paperboard structure is substantially cylindrical.
3 . A collapsible and expandable forming tube according to claim 1 , wherein said paperboard structure comprises one or more spirally wound paperboard plies.
4 . A collapsible and expandable forming tube according to claim 3 , wherein said one or more spirally wound paperboard plies form overlap joints.
5 . A collapsible and expandable forming tube according to claim 3 , wherein said one or more spirally wound paperboard plies form butt joints.
6 . A collapsible and expandable forming tube according to claim 3 , wherein said one or more spirally wound paperboard plies form seam gap joints.
7 . A collapsible and expandable forming tube according to claim 1 , wherein said paperboard structure comprises a convolute tube.
8 . A collapsible and expandable forming tube according to claim 1 , further comprising an adhesive layer positioned between said first moisture-resistant and temperature-resistant layer and said second moisture-resistant and temperature-resistant layer.
9 . A collapsible and expandable forming tube according to claim 1 , wherein said first moisture-resistant and temperature-resistant layer is different than said second moisture-resistant and temperature-resistant layer.
10 . A collapsible and expandable forming tube according to claim 1 , wherein said tube is perforated.
11 . A method of using the collapsible and expandable forming tube of claim 1 , the method comprising:
(i) rotating the collapsible forming tube;
(ii) wrapping extruded fiberglass filaments around an outside surface of the forming tube to form a fiberglass spool;
(iii) thereafter drying the fiberglass spool at a temperature of at least about 250° F.;
(iv) thereafter deforming the tube and removing it from the fiberglass spool; and
(v) thereupon repeating steps (i)-(v).
12 . A reusable forming tube having excellent moisture and temperature resistance, said tube comprising:
a substantially cylindrical structure defining an inside surface and an outside surface, said substantially cylindrical paperboard structure being collapsible to permit reuse;
an inner metal layer that is positioned on the inside surface of said substantially cylindrical paperboard structure; and
an outer metal layer that is positioned on the outside surface of said substantially cylindrical paperboard structure.
13 . A reusable forming tube according to claim 12 , wherein said inner metal layer and said outer metal layer are independently selected from one or more of metallic spray, metallic deposition material, and combinations thereof.
14 . A reusable forming tube according to claim 5 , wherein at least one of said inner metal layer and said outer metal layer comprise a metal foil layer.
15 . A reusable forming tube according to claim 14 , wherein at least one of said inner metal layer and said outer metal layer comprises a metal foil layer selected from the group consisting of aluminum foil, tin foil, stainless steel foil, titanium foil, and combinations thereof.
16 . A reusable forming tube according to claim 14 , wherein at least one of said inner metal layer and said outer metal layer comprise a paperboard laminate including a metal foil layer.
17 . A reusable forming tube according to claim 12 wherein at least one of said inner metal layer and said outer metal layer is spirally wound.
18 . A reusable forming tube according to claim 12 , further comprising a bead positioned between said inner metal layer and said outer metal layer.
19 . A method of using the reusable forming tube of claim 12 , the method comprising:
(i) rotating the paperboard tube;
(ii) wrapping extruded fiberglass filaments around an outside surface of the forming tube to form a fiberglass spool;
(iii) thereafter heating the fiberglass spool at a temperature of at least about 250° F. for a time sufficient for the fiberglass filaments to dry;
(iv) thereafter deforming the tube and removing it from the fiberglass spool; and
(v) thereupon repeating steps (i)-(v).
20 . A substantially cylindrical forming tube having excellent moisture and temperature resistance, said tube comprising:
an inner parchment paper layer; and
an outer parchment paper layer; and
wherein said forming tube is collapsible and expandable to permit reuse.
21 . A substantially cylindrical forming tube according to claim 20 , further comprising a fibrous structure between said inner parchment paper layer and said outer parchment paper layer.
22 . A substantially cylindrical forming tube according to claim 20 , wherein at least one of said inner parchment paper layer and said outer parchment paper layer are spirally wound.
23 . A substantially cylindrical forming tube according to claim 20 , wherein said forming tube is a convolute tube.
24 . A substantially cylindrical forming tube according to claim 20 , further comprising a bead between said inner parchment paper layer and said outer parchment paper layer.
25 . A substantially cylindrical forming tube according to claim 20 , further comprising a release coating on said outer parchment paper layer.
26 . A method of using the substantially cylindrical forming tube of claim 20 , the method comprising:
(i) rotating the substantially cylindrical, collapsible tube;
(ii) wrapping extruded fiberglass filaments around an outside surface of the forming tube to form a fiberglass spool;
(iii) thereafter heating the fiberglass spool at a temperature of at least about 250° F. for a time sufficient for the fiberglass filaments to dry;
(iv) thereafter deforming the tube and removing it from the fiberglass spool; and
(v) thereupon repeating steps (i)-(v).
27 . A substantially cylindrical forming tube having excellent moisture and temperature resistance, said tube comprising:
an inner polymer layer; and
an outer polymer layer; and
wherein said forming tube is collapsible and expandable to permit reuse.
28 . A substantially cylindrical, collapsible forming tube according to claim 27 , wherein said forming tube is an extruded forming tube.
29 . A substantially cylindrical, collapsible forming tube according to claim 27 , further comprising a fibrous structure between said inner polymer layer and said outer polymer layer.
30 . A substantially cylindrical, collapsible forming tube according to claim 29 , wherein at least one of said inner polymer layer and said outer polymer layer is spirally wound.
31 . A substantially cylindrical, collapsible forming tube according to claim 27 , further comprising a bead between said inner polymer layer and said outer layer.
32 . A substantially cylindrical, collapsible forming tube according to claim 27 , wherein said inner polymer layer and said outer polymer layer are independently selected from one or more of polyolefins, polyamides, fluoropolymers, and combinations thereof.
33 . A substantially cylindrical, collapsible forming tube according to claim 27 , further comprising at least one adhesive layer between said inner polymer layer and said outer polymer layer.
34 . A method of using the substantially cylindrical, collapsible forming tube of claim 27 , the method comprising:
(i) rotating the substantially cylindrical, collapsible tube;
(ii) wrapping extruded fiberglass filaments around an outside surface of the forming tube to form a fiberglass spool;
(iii) thereafter heating the fiberglass spool at a temperature of at least about 250° F. for a time sufficient for the fiberglass filaments to dry;
(iv) thereafter deforming the tube and removing it from the fiberglass spool; and
(v) thereupon repeating steps (i)-(v).