MORTAR PROJECTILE INSPECTION APPARATUS AND METHOD
A structural member of a mortar projectile is inspected. The structural member is a composite structure having a thermoplastic matrix with a filler of steel balls. The composite structure has a central cavity into which is placed a strobe light. Surrounding the composite structure is a detection arrangement having a detection medium of photographic film. When the strobe light is activated the film is exposed and developed to obtain an image indicative of the distribution of the steel balls in the matrix. The image is analyzed to determine if the structural member is acceptable.
The invention described herein may be manufactured and used by or for the Government of the United States of America for government purposes without the payment of any royalties therefore.
BACKGROUND OF INVENTIONA mortar is an artillery piece having a relatively short smooth bore barrel which fires an explosive projectile in a high arched trajectory. The projectile is fin stabilized and a conventional projectile includes a relatively massive casing containing a propellant and an explosive charge which, upon detonation, causes fragmentation of the casing. In an improved design, the relatively massive casing is replaced by a light weight two-part configuration comprised of a composite structure surrounded by a shell of a light-weight metal such as aluminum.
The composite structure is a two phase structure having a filler of individual members, in the form of metal balls, contained in a matrix of thermoplastic. The composite structure has a longitudinal central cavity into which is placed an explosive charge. The arrangement provides for a greater lethality over the conventional projectile design.
The thin aluminum shell, however, is insufficient to withstand the acceleration forces when the projectile is launched and accordingly, the composite structure forms the structural element of the projectile. Since the metal balls are contained in a relatively weak thermoplastic matrix intended to fragment upon detonation, it is essential that the required amount of balls be placed in the matrix in a relatively homogeneous distribution. At the same time, areas where too many balls are packed tightly together might result in voids in other areas which can lead to structural failure causing the projectile to break apart after launch.
To date there has not been a relatively simple and accurate way to inspect the metal ball/thermoplastic composite structure prior to assembly. The present invention solves the problem.
SUMMARY OF INVENTIONThe present invention relates to an apparatus and a method for inspecting a composite structure having a matrix and a filler of individual members subject to uneven distribution in the matrix, with the composite structure having a central longitudinal cavity. The composite structure is placed into a hollow cylindrical detection arrangement and a source of radiation is positioned within the central longitudinal cavity. The source of radiation is operable to project radiation toward the detection arrangement through the composite structure from the central longitudinal cavity. A detection medium carried by the detection arrangement surrounds the composite structure and is responsive to the radiation provided by the source of radiation to obtain an image of the distribution of the individual members in the matrix. The image is analyzed to determine acceptability of the composite structure.
BRIEF DESCRIPTION OF DRAWINGSThe invention will be better understood, and further objects, features and advantages thereof will become more apparent from the following description of the preferred embodiment, taken in conjunction with the accompanying drawings, in which:
In the drawings, which are not necessarily to scale, like or corresponding parts are denoted by like or corresponding reference numerals.
Although the invention is applicable to the inspection of various composite structures, it will be described, by way of example, in conjunction with a mortar projectile of the type illustrated in
In
With additional reference to
If however, there is an uneven distribution of steel balls 26, this would result in voids appearing in the matrix 27 allowing greater transmission of radiation thereby fully exposing the film 36 in areas where the film is opposite those voids. Where there is a high concentration of steel balls 26, a reduced transmission of radiation would take place and the film 36 would be substantially unexposed. A typical developed film 39 under these conditions is illustrated in
A simple transparent grid 46, illustrated in
After setting up the inspection, as in
Some of the steps of
If a particular source of radiation provides highly directional radiation, as opposed to omnidirectional radiation, as in
One skilled in the art would recognize that the exposure of the composite structure 18 to a form of actinic radiation could serve an additional purpose. Many resin materials are photo polymerizable and the actinic radiation might serve as a final curative step, to cross-link a thermoset resin or the like, or to promote micro fracturing which will aid in the uniform fragmentation of the composite structure 18 when an explosive charge is detonated within the structure.
Further, such actinic radiation might cure a surface coating applied to the inside surface of the composite structure 18, such as a coating intended to prevent interaction of the plastic matrix with the explosive fill during storage, or the like.
It will be readily seen by one of ordinary skill in the art that the present invention fulfills all of the objects set forth herein. After reading the foregoing specification, one of ordinary skill in the art will be able to effect various changes, substitutions of equivalents and various other aspects of the present invention as broadly disclosed herein. It is therefore intended that the protection granted hereon be limited only by the definition contained in the appended claims and equivalents. Having thus shown and described what is at present considered to be the preferred embodiment of the present invention, it should be noted that the same has been made by way of illustration and not limitation. Accordingly, all modifications, alterations and changes coming within the spirit and scope of the present invention are herein meant to be included.
Claims
1. Apparatus for inspecting a composite structure having a matrix and a filler of individual members subject to uneven distribution in the matrix, said composite structure having a central longitudinal cavity, comprising:
- a hollow cylindrical detection arrangement into which said composite structure is placed for inspection;
- a source of radiation positioned within said central longitudinal cavity and operable to project radiation toward said detection arrangement through said composite structure from said central longitudinal cavity;
- a detection medium carried by said detection arrangement and surrounding said composite structure;
- said detection medium being responsive to said radiation provided by said source of radiation to obtain an image of the distribution of said individual members in said matrix.
2. Apparatus according to claim 1 wherein:
- said composite structure is a structural member of a mortar projectile;
- said individual members are steel balls;
- said matrix is a light transmissive thermoplastic;
- said source of radiation is visible light.
3. Apparatus according to claim 1 wherein;
- said detection medium is photographic film.
4. Apparatus according to claim 1 wherein:
- said composite structure is a structural member of a mortar projectile;
- said individual members are metal balls;
- said source of radiation is X-rays.
5. Apparatus according to claim 1 wherein;
- said detection medium is X-ray film.
6. Apparatus according to claim 1 which additionally includes:
- a solid state camera focused on said image of the distribution of said individual members to obtain a corresponding electronic image thereof;
- a computer;
- said electronic image being provided to said computer;
- said computer being operable to analyze said electronic image and provide an indication of said distribution of said members in said matrix.
7. Apparatus according to claim 1 wherein:
- said detection arrangement includes a multitude of individual sensors surrounding said composite structure;
- each said sensor being operable to provide a corresponding output signal in response to received radiation projected through said composite structure by said source of radiation; and which includes
- a computer;
- said output signals being provided to said computer;
- said computer being operable to analyze said output signals and provide an indication of said distribution of said members in said matrix.
8. Apparatus according to claim 1 wherein:
- said source of radiation provides said radiation omnidirectionaly.
9. Apparatus according to claim 8 wherein:
- said source of radiation is an elongated strobe light.
10. Apparatus according to claim 1 wherein:
- said source of radiation provides a directional beam of radiation; and which includes
- a motor connected to said source of radiation to rotate it while in said central longitudinal cavity.
11. A method of inspecting a composite structure having a matrix and a filler of individual members subject to uneven distribution in the matrix, and having a central longitudinal cavity, comprising the steps of:
- placing said composite structure into a detection arrangement having a detection medium surrounding said composite structure;
- placing a source of radiation into said central longitudinal cavity;
- activating said source of radiation to project said radiation outward through said composite structure to said detection medium, said detection medium being responsive to said radiation to provide an image of the distribution of said members in said matrix; and
- analyzing said image.
12. A method according to claim 11 wherein said composite structure is a structural member of a mortar projectile, and said matrix is a light transmissive material, said individual members are metal balls and which includes the steps of:
- placing photographic film in said detection arrangement as said detection medium;
- placing a strobe light in said central longitudinal cavity as said source of radiation.
13. A method according to claim 11 which includes the steps of:
- obtaining an electronic image corresponding to said image of the distribution of said members in said matrix; and
- providing said electronic image to a computer for said analysis.
14. A method according to claim 11 which includes the steps of:
- surrounding said composite structure with an array of sensors, each operable to provide an output signal in response to radiation received from said source of radiation; and
- providing said output signals to a computer for said analysis.
Type: Application
Filed: Feb 11, 2004
Publication Date: Jul 6, 2006
Inventors: Robert Beam (North Wales, PA), John Niles (Lake Hopatcong, NJ), Drew Diedalis (Oak Ridge, NJ)
Application Number: 10/708,148
International Classification: G01N 21/88 (20060101);