TWO-PART BAG SEAL
20230373171 · 2023-11-23
Assignee
Inventors
Cpc classification
B29C70/544
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C70/54
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A two-part bag seal and a method for sealing a vacuum bag to a mold for a molding process. The two-part bag seal includes an elongate first seal part having a cross-sectional portion enclosing an open channel therein, and an angled cross-sectional portion having an open receptacle channel therein, and an elongate second seal part having a flexible wing portion and a flexible prong distal from the flexible wing portion, wherein the flexible prong is engageable with the open receptacle channel of the elongate first seal part.
Claims
1. A two-part bag seal comprising: an elongate first seal part having a cross-sectional portion enclosing an open channel therein, and an angled cross-sectional portion having an open receptacle channel therein, and an elongate second seal part having a flexible wing portion and a flexible prong distal from the flexible wing portion, wherein the flexible prong is engageable with the open receptacle channel of the elongate first seal part.
2. The two-part bag seal of claim 1, wherein the cross-sectional portion comprises one or more chambers therein providing the open channel.
3. The two-part bag seal of claim 1, wherein the open receptacle channel comprises an arrowhead-shaped cross-sectional channel.
4. The two-part bag seal of claim 3, wherein the flexible prong comprises an arrowhead-shaped prong.
5. The two-part bag seal of claim 1, further comprising a flexible hook-shaped end adjacent to the flexible prong for engaging the angled cross-sectional portion of the elongate first seal part.
6. The two-part bag seal of claim 1, further comprising one or more flexible nubs on the flexible wing portion of the elongate second seal part for engaging the flange of a mold.
7. The two-part bag seal of claim 6, wherein the one or more flexible nubs are on a same side of the elongate second seal part as the flexible prong.
8. The two-part bag seal of claim 1, further comprising at least one pressure port for inflating the open channel of the elongate first seal part with a gas.
9. The two-part bag seal of claim 1, wherein the cross-sectional portion enclosing the open channel comprises a rectangular cross-sectional portion.
10. The two-part bag seal of claim 1, wherein the cross-sectional portion enclosing the open channel comprises a circular or oval cross-sectional portion.
11. The two-part bag seal of claim 1, wherein the cross-sectional portion enclosing the open channel comprises a triangular cross-sectional portion.
12. A method for sealing a vacuum bag to a mold for molding of a part, comprising: providing a two-part bag seal comprising: an elongate first seal part having a cross-sectional portion enclosing an open channel therein, and an angled cross-sectional portion having an open receptacle channel therein, and an elongate second seal part having a flexible wing portion and a flexible prong distal from the flexible wing portion, wherein the flexible prong is engageable with the open receptacle channel of the elongate first seal part; inserting the elongate first seal part and a vacuum bag in a groove in a mold flange around a perimeter of the mold; inserting the flexible prong of the elongate second seal part into the open receptacle channel of the first seal part; and optionally, inflating the open channel of the elongate first seal part with a gas to form an air-tight seal around the perimeter of the mold.
13. The method of claim 12, wherein the elongate second seal part comprises one or more flexible nubs on the flexible wing portion for engaging the flange of a mold.
14. The method of claim 13, wherein the one or more flexible nubs are on a same side of the elongate second seal part as the flexible prong.
15. The method of claim 14, wherein the mold flange comprises a first vacuum port therein disposed between one or more flexible nubs on the flexible wing portion of the elongate second seal part and the groove in the mold flange, further comprising applying a vacuum to the first vacuum port to seal the flexible wing portion to the mold flange.
16. The method of claim 14, wherein the groove in the mold flange comprises a second vacuum port therein, further comprising applying a vacuum to the second vacuum port to seal the vacuum bag to the mold.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF EMBODIMENTS OF THE DISCLOSURE
[0027] With reference to
[0028] The two-part bag mold 20 is made of an elastomeric material selected from natural and synthetic rubbers having a durometer ranging from about 40 to about 60 Shore A hardness according to ASTM D2240. The selected material for the two-part bag seal is preferably a material which has sufficient elasticity that when pressurized will stretch and form a seal about a substrate which does not necessarily meet exacting tolerance specifications and which may contain grooves and indentations. Furthermore, such a seal material must be of sufficient strength to withstand the pressures and temperatures used in the infusion molding process. Elastomeric materials well known to those skilled in the art which may meet the particular requirements for the seal include, but are not limited to, epichlorohydrin, fluoroelastomer, natural rubbers, ethylene and propylene, neoprene, butyl, nitrile-, silicone-based elastomers, ethylene/propylene diene monomer (EPDM) based elastomers, and the like. Any of the foregoing elastomers may be reinforced with a suitable reinforcing fabric, for example nylon fibers, polyester fibers, aramid fibers, or polyamide fibers. In some embodiments, the two-part bag seal 20 is made from a fiber-reinforced elastomer such as a nylon-reinforced silicone rubber.
[0029] Use of the two-part bag seal 20 is illustrated in
[0030] Once the first seal part 22 of the two-part bag seal 20 is in place, the vacuum bag 50 is trimmed around the periphery of the first seal part 22 as shown in
[0031] As shown in
[0032] During the infusion molding process, a vacuum is pulled on the vacuum bag 50 using a vacuum pump 62 (
[0033] In some embodiments, a third vacuum port 64 may be included in the groove 44 of the mold flange 46 to pull a vacuum on the plastic bag 50 in the groove 44 as shown in
[0034] For the purposes of this specification and appended claims, unless otherwise indicated, all numbers expressing quantities, percentages or proportions, and other numerical values used in the specification and claims, are to be understood as being modified in all instances by the term “about.” Accordingly, unless indicated to the contrary, the numerical parameters set forth in the following specification and attached claims are approximations that can vary depending upon the desired properties sought to be obtained by the present disclosure. At the very least, and not as an attempt to limit the application of the doctrine of equivalents to the scope of the claims, each numerical parameter should at least be construed in light of the number of reported significant digits and by applying ordinary rounding techniques.
[0035] While particular embodiments have been described, alternatives, modifications, variations, improvements, and substantial equivalents that are or can be presently unforeseen can arise to applicants or others skilled in the art. Accordingly, the appended claims as filed and as they can be amended are intended to embrace all such alternatives, modifications variations, improvements, and substantial equivalents.