ARMOR AND METHOD OF MANUFACTURE
20210341262 · 2021-11-04
Inventors
Cpc classification
B32B2571/02
PERFORMING OPERATIONS; TRANSPORTING
B32B3/04
PERFORMING OPERATIONS; TRANSPORTING
F41H5/0421
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B15/20
PERFORMING OPERATIONS; TRANSPORTING
B32B15/14
PERFORMING OPERATIONS; TRANSPORTING
F41H5/0492
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B2260/021
PERFORMING OPERATIONS; TRANSPORTING
B32B9/005
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An element using armor plating including a tile and a metal cover bonded to the tile by an adhesive in a manner so that the metal cover is arranged around a central face and a plurality of sides of the tile, and a non-adjacent face of the tile, thereby enclosing and confining the tile.
Claims
1. An element for armor plating comprising a ceramic tile and a metal cover bonded to the ceramic tile by an adhesive; the ceramic tile comprising a plate having an in-plane shape that is quadrilateral or hexagonal comprising two faces and four or six sides therearound, and the metal cover comprising a central face and a plurality of side pieces extending from non-adjacent edges of the central face, and folded substantially perpendicularly to the face to fit over a face and selected sides of the tile to thereby individually confine said tile.
2. (canceled)
3. The element of claim 1, wherein the in-plane shape is substantially rectangular, wherein adjacent tiles have a central face and either long or short sides, so that an array of the tiles may be formed wherein the central faces are covered, and there is one layer of metal cover interposed between each pair adjacent edges.
4. The element of claim 1, wherein the in-plane shape of the tile is substantially square, wherein each tile has a metal cover comprising a central face and a pair of side panels on opposite sides attached to opposite edges of the central face and folded to lie perpendicular thereto, so that an array may be formed comprising a layer of tiles covered with a continuous metal layer on one side, and further comprising a layer of metal interposed between all adjacent edges.
5. The element of claim 1, wherein the in-plane shape of the tile is substantially hexagonal, wherein each tile has a metal cover comprising a central face and three side panels extending from three non-adjacent edges of the central face and folded to lie perpendicular thereto, so that an array may be formed comprising a layer of tiles covered with a continuous metal layer on one side, and further comprising a layer of metal interposed between all adjacent edges.
6. The element of claim 1, wherein the face of the ceramic tile and the central face of the metal cover are curved.
7. The element of claim 4, wherein the face of the ceramic tile and the central face of the metal cover are domed.
8. The element of claim 1 wherein the metal cover is attached to the strike face of the tile.
9. The element of claim 1 wherein the metal cover is attached to the back face of the tile.
10. The element of claim 1, wherein two covers are attached to the ceramic tile, one covering the back face and alternate sides and the other covering the front face and alternate sides, such that all faces and sides of the ceramic tile are covered.
11. The element of claim 1, wherein the in-plane shape of the tile is substantially square, wherein each tile has a metal cover comprising a central face and a pair of side panels on opposite sides attached to opposite edges of the central face and folded to lie perpendicular thereto, so that an array may be formed comprising a layer of tiles covered with a continuous metal layer on one side, and further comprising a layer of metal interposed between all adjacent edges.
12. The element of claim 5, wherein said adhesive is a polymer adhesive selected from the group comprising thermoplastics, thermosets and elastomers.
13. The element of claim 1, wherein the face of the tile is protected with a metal, a polymer or fiber-in-polymer intermediary layer below the cover.
14. The element of claim 1, wherein the tile comprises a ceramic selected from the group comprising AI.sub.20.sub.3, ALN, SiC, TiB.sub.2 B.sub.4C, TiC, Si.sub.3N.sub.4 and BN.
15. The element of claim 14, wherein the tile further comprises a metallic phase.
16. The element of claim 1, wherein the cover comprises at least one metal selected from the group of iron, magnesium, titanium and aluminum.
17. The element of claim 1, wherein the cover is stamped out of a sheet of metal and is then folded.
18. A piece of armor plating comprising an array of tiles, each tile being covered with a metal cover such that the sides of adjacent tiles are separated by at least one metal side piece of at least one cover.
19. A piece of armor plating comprising an array of tiles having substantially oblong in-plane shapes with long edges and short edges, each tile covered with a metal cover comprising a face and two side pieces on parallel sides, such that tiles with covers having long sides pieces attached to long edges of the face by folds, alternate with tiles having covers having central faces and a pair of short side pieces attached to short edges of the central face by a fold, such that each pair of adjacent tiles is separated by a metal side piece.
20. A metal cover for covering an individual ceramic tile of an array of ceramic tiles that comprises a piece of armor plating, the metal cover comprising a central face corresponding to the face of the tile, and side pieces extending from non-adjacent edges of the central face, folded to extend substantially perpendicular thereto for covering sides of the tile to separate said tile from an adjacent tile.
21. The metal cover of claim 20, wherein the central face is a polygon having 4 or 6 sides and the side pieces extend from alternate faces.
22. The metal cover of claim 20, being fabricated by deep drawing from a metal sheet.
23. The metal cover of claim 20, being fabricated by stamping from a metal sheet.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0035] The invention will now be described in connection with certain preferred embodiments with reference to the following illustrative figures so that it may be more fully understood.
[0036] With specific reference now to the figures in detail, it is stressed that the particulars shown are by way of example and for purposes of illustrative discussion of the preferred embodiments of the present invention only and are presented in, the cause of providing what is believed to be the most useful and readily understood description of the principles and conceptual aspects of the invention. In this regard, no attempt is made to show structural details of the invention in more detail than is necessary for a fundamental understanding of the invention, the description taken with the drawings making apparent to those skilled in the art how the several forms of the invention may be embodied in practice.
[0037] In the drawings:
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
DESCRIPTION OF EMBODIMENTS
[0044] To prevent cracks propagating from comers of elements of ceramic armor, ideally the armor scales or tiles are disc shaped. However, the coverage provided by an array of close-packed disks is only about 73% and to provide continuous protection, such discs need to be laid in two layers. Instead, scale armor typically comprises ceramic tiles whose in-plane shape is either hexagonal or quadrilateral, typically rectangular or square, since these tessellate to cover surfaces without leaving gaps. Usefully, the comers of the hexagon or oblong (rectangle or square) are rounded to prevent crack propagation so it will be appreciated that the term “substantially” is used to refer to a shape having rounded comers. Furthermore, the term “in-plane shape” refers to the projection of the tile, or the corresponding flat shape that is tessellated. However, in practice, ballistic tiles may be concave or convex to better follow topography of the surface being protected. Furthermore, sometimes the outer surface of the strike face is domed, which has been found to be useful in providing improved impact resistance.
[0045] Further, to protect corners of such tiles and to prevent cracks propagating from one tile to an adjacent tile, the tiles may be covered with metal.
[0046] WO2009045584 titled “Method for Producing Armor Through Metallic Encapsulation of a Ceramic Core” describes scales for armor comprising ceramic tiles that are encapsulated in metal which is bonded thereto by diffusion bonding. It will be appreciated that this manufacturing technique is very expensive.
[0047] It has surprisingly been found that merely covering the strike face or the back face of the tiles with a metal cover bonded thereto with a simply adhesive, typically a polymer, and folding flaps or side pieces extending from the central face of the metal cover around the edges of the tiles, so that each tile is individually confined, helps absorb the energy of ballistic impact and prevents cracks in one tile spreading to its neighbors, making it possible to locally replace damaged tiles to provide armor plating, particular for vehicles and ships.
[0048] It will be appreciated that coating only one side of the ceramic tiles, requires only half as much metal as would be required to coat both sides. This is more economical and much easier than full encapsulation. This also simplifies production and provides favorable acoustic transmission to the structure.
[0049] Additionally, the proposed technique uses only half as much metal between adjacent tiles which are separated by only one and not two layers of metal.
[0050] It is proposed to stamp out a metal half net consisting of a central face surrounded by tabs on alternate edges. The tabs may then be folded up, substantially perpendicular to the central face to from a cover into which the tile may be fixed. In one embodiment, the metal cover is adhered to the tile with a polymer adhesive which may be thermoplastic or thermoset or an elastomer. The cover may be fit over the front surface or the back surface of the tile.
[0051] Optionally an intermediary layer is disposed between the face of the tile and the metal cover.
[0052] The intermediary layer may be selected from the group comprising polymer adhesives, metals and glass reinforced polymers.
[0053] With reference to
[0054] An array consisting of a tessellation of tiles 10 may be covered with alternating first covers 20 and second covers 30, having short sides W′WX′X (Z′ZY′Y) or long sides W′W′Z′Z (X′XY′Y) attached to central faces WXYZ. In this way, a continuous metal cover is formed which could be positioned as a backing for the array of tiles 20 or alternatively, on the strike face thereof. A metal side piece extending from the edge W′WX′X (Z′ZY′Y) (W′W′Z′Z) (X′XY′Y) attached to central faces WXYZ of a cover is folded down and separates adjacent tiles ABCD. As shown in
[0055] With reference to
[0056] The metal covers 20, 30, 50, 60 may be fabricated from steel, or, to obtain similar strength and corrosion resistance at reduced weight, from titanium. For light weight protection, aluminum could be used. Indeed, such covers could be stamped out of substantially any sheet metal or alloy, including, for example, iron, aluminum, titanium, cobalt, magnesium, tantalum, and their alloys.
[0057] The ceramic tiles 10, 40 could be fabricated from super hard material such as zirconia or tungsten carbide. However, permanent installations may be protected with thick layers of concrete. Amor plating is mostly used for protecting vehicles or boats, and a low-density ballistic ceramic, such as Al.sub.20.sub.3, ALN, SiC, TiB.sub.2 B.sub.4C, TiC, Si.sub.3N.sub.4 or BN is preferred. It will be noted that so-called ceramic tiles need not be pure ceramic, and may include a metal binder phase, or ceramic fibers in an appropriate matrix. Furthermore, the ceramic tile may include a glassy phase. Additionally, the ceramic tile may be wrapped in fabric, such as Kevlar, or with a woven glass fiber mat impregnated with resin (prepreg), or with an intermediary metal layer prior to insertion into the cover.
[0058] With reference to
[0059] As shown in
[0060] Indeed, armor plating may be used to cover topographies of various shapes and not just flat surfaces.
[0061] It will be appreciated that while the in-plane shape of the tile is typically substantially quadrilateral or hexagonal, the tile need not be flat. In fact, typically the tile is domed, having a convex outer surface on the strike face. This is shown in
[0062] The covers of the invention 20, 30, 50, 60, 80 placed over and around the edges of the ceramic tiles 10, 40, 70 prevent cracks propagating from one tile to an adjacent tile. They are easily produced and provide favorable acoustic transmission to the armor plating.
[0063] It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.
[0064] In the claims, the word “comprise”, and variations thereof such as “comprises”, “comprising” and the like indicate that the components listed are included, but not generally to the exclusion of other components.