Composite stiffener
11898399 ยท 2024-02-13
Inventors
Cpc classification
B32B7/03
PERFORMING OPERATIONS; TRANSPORTING
E04C3/29
FIXED CONSTRUCTIONS
B32B21/14
PERFORMING OPERATIONS; TRANSPORTING
E06B2003/7051
FIXED CONSTRUCTIONS
E06B3/7003
FIXED CONSTRUCTIONS
B32B15/20
PERFORMING OPERATIONS; TRANSPORTING
E06B2003/7021
FIXED CONSTRUCTIONS
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/546
PERFORMING OPERATIONS; TRANSPORTING
B32B5/18
PERFORMING OPERATIONS; TRANSPORTING
B32B2250/40
PERFORMING OPERATIONS; TRANSPORTING
B32B3/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Embodiments of the disclosure are directed towards a composite stiffener that is incorporated into panelized products to create stronger bonding, greater adhesion between laminated layers and less warping sandwich panels. In addition, the resulting products incorporating composite stiffeners can be lightweight, yet stronger than other lightweight panels.
Claims
1. A composite stiffener comprising: a set of strengthening strips, each strengthening strip comprising an anti-warp composite material; a set of inner laminated layers; and a core having-torsion-box grid structure comprising a torsion box grid structure where voids are filled with foam with lengths of the voids extending along a length of the core, wherein at least one inner laminated layer of the set of inner laminated layers is bonded to at least one side of a a plurality of sides of the core, and each set of strengthening strips is bonded to an outer side of each of the inner laminated layers, and a thickness of the core is the same as a thickness of an adjacent core material in a structure in which the composite stiffener is inserted into.
2. The composite stiffener of claim 1, wherein each strengthening strip comprises a wood-based sheet and an aluminum sheet, plastic sheet, composite sheet, or plastic composite sheet.
3. The composite stiffener of claim 1, wherein each inner stabilizing laminated layer comprises a wood-based sheet.
4. A composite panel comprising a plurality of composite stiffeners of claim 1.
5. The composite panel of claim 4, further comprising a plurality of core sections wherein the plurality of composite stiffeners are dispersed alongside the plurality of core sections.
6. A composite beam comprising a plurality of composite stiffeners of claim 1.
7. The composite beam of claim 6, wherein the plurality of composite stiffeners are stacked uniformly in a same direction.
8. The composite beam of claim 6, wherein the plurality of composite stiffeners are stacked in perpendicular layers.
9. The composite panel of claim 4, wherein each composite stiffener comprises a torsion box structure core with vertical grain that is perpendicular to a surface skin of the composite panel.
10. The composite stiffener of claim 1, wherein each composite stiffener comprises plywood.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The foregoing aspects and many of the attendant advantages of this invention will become more readily appreciated as the same become better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
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DETAILED DESCRIPTION
(11) The following disclosure describes a composite stiffener for strengthening products.
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(13) The two strengthening strips 104, 106 include aluminum or any other metal.
(14) The outside laminate layer 114, 116 may include plywood or other material.
(15) One skilled in the art will appreciate that different configurations of layers and materials that may be used without departing from the scope of the present invention. For example, natural wood, wood veneer, plywood, plastic, fiberglass, or a composite material may be used for one or more layers of the composite stiffener in any of its varied designs. The stiffening strip may comprise aluminum or any other material stiffener that provides strength.
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(17) The composite laminate is formed in strips for use as core material or slicing for composite layup of stiffeners. Composite stiffeners are used inside a panel as core or alternating core material and run perpendicular to the surface material. Composite stiffeners and alternating other core material can be precision sanded prior to applying exterior skins. Plywood or other specified materials on the exterior can provide a sand-able surface for controlling precision core thickness. All components are either hot or cold pressed using an array of available adhesives. Adhesives can be matched to the properties of the composite materials being used in the elements of the core material. All components are pressed and allowed to cure prior to being cut into strengthening strips for use as core material inside the panel.
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(23) The individual building of a composite stiffener component layup is detailed (
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(26) The composite stiffener may be designed as flat strips, boxes, rectangles, or any other shape. The addition of the composite stiffener increases the strength which helps prevent movement of flat building materials (skins) that would normally be subject to movement due to stress, regular use or exposure to environmental conditions. The composite stiffener may function independently as a core material, or as an addition to other composite material or skins in any configuration to add toughness and rigidity. In embodiments in which the composite stiffener is configured as flat strips, the flat strips may be made of different combinations of foam core, honeycomb core, paper core, plastic core, SING core, or other sandwiched flat building material with aluminum or any type of sheet goods material on each side or in between two or more surfaces or laminated materials. The elongated strip may be used as core material, implanted or installed inside, alongside, or adhered to any sandwich core, honeycomb core, other lightweight core material or substrate.
(27) In some embodiments, the composite stiffener may be made of a combination of wood ply, plastic ply, metal, or other sheet goods bonded together to encase (either partially or completely) a lightweight core material which include EPS foam, patented SING core, torsion box, or other box-like core material in the center. The composite stiffeners (elongated inner panel support strips) may be glued as core material or combined with other core materials inside the sandwich panel. Exterior sheet goods (skins) are bonded to the top and bottom of the panels which completes the enclosed box structure (or composite torsion box) with grid strips made of another flat building material such as wood, wood veneer, plywood, or other material, running between the composite strips.
(28) These reinforced composite structure grids lock-in the two surface skins. The composite stiffener provides strength in sandwich panel walls that prevent buckling, a common problem associated with walls made of aluminum, plastic, metal, wood, and/or any combination thereof.
(29) In the past, solutions included adding, inserting, or embedding steel rods, steel frames, even steel pipes in an effort to reduce warping, but this adds considerable weight to the end product which introduces a whole new set of problems. Aluminum tubes or extrusions are a lighter weight alternative to steel but also comes with its own set of challenges, especially sanding and gluing.
(30) Neither steel or aluminum are as effective or strong as the composite stiffener as described in the present application. By alternating and implementing a composite box system, as that of the composite stiffener, including metal and wood materials, a better bonding surface is achieved for better adherence to the two surface skins, thus reducing delamination. In embodiments with composite stiffeners using aluminum as the metal component in the structure design as well as wood and/or plastic material(s) makes this unique composite material easy to saw, sand and glue.
(31) In accordance with the present application, base core material may include any specified core or substrate material including (but not limited to) any rigid foam material, SING Core, torsion box, or other box-like natural, synthetic or metal based core or substrate material. Composite strips to create the box mosaic may include at least two pieces of any sheet goods (flat building material) to include wood fiber-based sheet goods, metal (including aluminum) or building materials made of any other natural or synthetic material or combination thereof. In accordance with the present application, a sandwich panel is a panel that includes two or more stress skins made of any surface material attached to either side of a core material. The alternating core material used in combination with composite stiffeners could be any material including honeycomb core structure made of any material such as paper, cardboard, aluminum, plastic or any other conceivable material and/or design. Core material includes solid materials such as wood or wood products and may even include a hollow core.
(32) While the foregoing written description of the invention enables one of ordinary skill to make and use a product incorporating a composite stiffener as described above, those of ordinary skill will understand and appreciate the existence of variations, combinations, and equivalents of the described embodiments, methods, and examples herein. Thus, the invention as claimed should therefore not be limited by the above-described embodiments, methods, and examples, but by all embodiments and methods within the scope and spirit of the claimed invention.