1. Field
The present invention relates to composite parts used in aircrafts and other applications. More particularly, the present invention relates to a reusable sealing device for use in vacuum assisted resin transfer molding.
2. Related Art
Vacuum assisted resin transfer molding (VARTM) is a composite manufacturing process for making composite parts. Using the VARTM process, dry fibers of a composite material may first be laid on a tool beneath a nylon vacuum bag, and the nylon vacuum bag may be sealed to the tool around the composite material using chromate vacuum bag tape. Then the air between the vacuum bag and the tool may be removed, compressing the vacuum bag against the composite material, while liquid resin is also simultaneously drawn through the composite material using a vacuum pump. Once the liquid resin is distributed throughout the composite material and the vacuum bag is compressed against the composite material by vacuum force, the vacuum pump may be removed, and the part may then be cured by heat to harden the composite part.
Chromate vacuum bag tape is an adhesive material that creates an airtight seal between the vacuum bag and the tool, but like most adhesive materials, can not be reused.
Therefore an improved sealing device for forming an airtight seal between a vacuum bag and a tool for vacuum assisted resin transfer molding is desired.
The present invention provides an elongated sealing device for forming an airtight seal between a first body and a second body without the use of adhesives. The sealing device may be made of a substantially flexible, durable material such as rubber, silicone, or rubber-like materials. The sealing device may form a continuous boundary around an area of any size or shape.
The sealing device may comprise an outer surface, an inner surface, a first cusp, and a second cusp. The distance between the first cusp and the second cusp may define the width of the sealing device. The sealing device may be substantially crescent-shaped in cross-section.
The sealing device may further comprise a tab portion protruding from the inner surface of the sealing device approximately centered between the first cusp and the second cusp. In one embodiment of the sealing device, the tab portion may be configured to substantially match the shape of a groove in the first body and may be located therein when compressed against the first body. In another embodiment of the sealing device, the tab portion may comprise a secondary seal having a substantially crescent-shaped cross-section and a linking portion connecting the secondary seal with the inner surface of the sealing device. The secondary seal may be located inward of the first and second cusps.
These and other important aspects of the present invention are described more fully in the detailed description below.
Embodiments of the present invention are described in detail below with reference to the attached drawing figures, wherein:
The drawing figure does not limit the present invention to the specific embodiments disclosed and described herein. The drawing is not necessarily to scale, emphasis instead being placed upon clearly illustrating the principles of the invention.
The following detailed description of the invention references the accompanying drawings that illustrate specific embodiments in which the invention can be practiced. The embodiments are intended to describe aspects of the invention in sufficient detail to enable those skilled in the art to practice the invention. Other embodiments can be utilized and changes can be made without departing from the scope of the present invention. The following detailed description is, therefore, not to be taken in a limiting sense. The scope of the present invention is defined only by the appended claims, along with the full scope of equivalents to which such claims are entitled.
As illustrated in
The sealing device 10 may be made out of a substantially durable and flexible material such as rubber, silicone, and/or a rubber-like material. As best illustrated in
The sealing device 10 may be substantially elongated so that its length is greater than its width. The sealing device 10 may be substantially crescent-shaped in cross-section with both the outer surface 16 and the inner surface 18 having a curved C-shape. The outer and inner surfaces 16,18 converge to form the first and second cusps 20,22, which may physically contact the first body 12. The distance from the first cusp 20 to the second cusp 22 may define the width of the sealing device 10.
The sealing device 10 may be formed in any length and may follow a linear, curvilinear, and/or continuous path. If the sealing device 10 follows a continuous path, it may form a boundary around an area of any size or shape. For example, the sealing device 10 may be used to vacuum bag a composite material by forming an airtight seal between a vacuum bag and a tool around an entire peripheral edge of the composite material. More specifically, the sealing device 10 may replace traditional vacuum bag tape in a Vacuum Assisted Resin Transfer Molding (VARTM) process.
In various embodiments of the invention, as illustrated in
As illustrated in
The tab portion 28 provides a greater amount of surface area to seal against the first body 12. Additionally, the tab portion 28 provides positive location of the second body 14 to be sealed to the first body 12, reducing any risk of the sealing device 10 rotating, which can be a source of vacuum leaks or air leaks in prior art seal designs.
A sealing device 10a constructed in accordance with another embodiment of the invention is illustrated in
The tab portion 28a may also comprise a linking portion 44, having a width narrower than a width of the secondary seal 32. The linking portion 44 may extend from the inner surface 18a of the sealing device 10a to attach to the outer portion 36 of the secondary seal 32. The linking portion 44 may provide distance between the outer portion 36 of the secondary seal 32 and the inner surface 18a of the sealing device 10a, as well as between the first cusp 20a and the third cusp 40 and between the second cusp 22a and the fourth cusp 42. Alternatively, the linking portion 44 may be omitted, and the outer portion 36 of the secondary seal 32 may directly attach to or be integral with the inner surface 18a of the sealing device 10. The first cusp 20a, second cusp 22a, third cusp 40, and the fourth cusp 42 may simultaneously physically contact the first body 12a.
A method of using the sealing device 10 may comprise compressing the inner surface 18,18a of the sealing device 10,10a against the first body 12,12a. Positive pressure on the outer surface 16,16a of the sealing device 10,10a and/or vacuum suction exerted on the second body 14,14a may force the sealing device 10, 10a downward toward the first body 12,12a. In the embodiment illustrated in
Once the positive pressure and/or vacuum suction pressing the sealing device 10,10a against the first body 12,12a is removed, the sealing device 10,10a may retain an airtight seal against the first body 12,12a. In this way, the sealing device 10,10a may act in a manner similar to a suction cup. Upon pressing the sealing device 10,10a against the first body 12,12a, air pressure between the sealing device 10,10a and the first body 12,12a is greatly reduced. The relatively higher atmospheric pressure outside of the sealing device 10,10a, combined with the friction between the sealing device 10,10a and the first body 12,12a, prevents the sealing device 10,10a from lifting away from the first body 12,12a. To remove the sealing device 10,10a from the first body 12,12a, it may be physically pried off, pulled off, or peeled off of the first body 12,12a. Because the sealing device 10,10a is not chemically bonded or otherwise bonded to the first body 12,12a and may be removed from the first body 12,12a without damaging either the sealing device 10,10a or the first body 12,12a, the sealing device 10,10a is reusable.
Although the invention has been described with reference to the embodiments illustrated in the attached drawings, it is noted that equivalents may be employed and substitutions made herein without departing from the scope of the invention as recited in the claims.
Number | Name | Date | Kind |
---|---|---|---|
3666600 | Yoshino | May 1972 | A |
3667177 | Biela | Jun 1972 | A |
3760544 | Hawes et al. | Sep 1973 | A |
4067155 | Ruff et al. | Jan 1978 | A |
4167092 | Medwed | Sep 1979 | A |
4822651 | Newsom | Apr 1989 | A |
5665301 | Alanko | Sep 1997 | A |
5678380 | Azzar | Oct 1997 | A |
5716488 | Bryant | Feb 1998 | A |
5939013 | Han et al. | Aug 1999 | A |
6851945 | Potter et al. | Feb 2005 | B2 |
7029267 | Caron | Apr 2006 | B2 |
20040089984 | Crane et al. | May 2004 | A1 |
20060034967 | Habisreitinger et al. | Feb 2006 | A1 |
20070296126 | Audette | Dec 2007 | A1 |
20080083493 | Ridges et al. | Apr 2008 | A1 |
20080220112 | Waldrop et al. | Sep 2008 | A1 |
20090278319 | Hanson et al. | Nov 2009 | A1 |
20100112117 | Ross et al. | May 2010 | A1 |
Number | Date | Country |
---|---|---|
WO 2007037702 | Apr 2007 | WO |
WO 2007037702 | Apr 2007 | WO |
Number | Date | Country | |
---|---|---|---|
20100112118 A1 | May 2010 | US |