FOREIGN OBJECT DAMAGE ELIMINATION SYSTEM
20190315493 ยท 2019-10-17
Inventors
- David W. Caywood (Avon, CT, US)
- Pellumb Ameti (Oxford, CT, US)
- Michael Tabone (Wilton, NH, US)
- Kneil Northrop (Hamden, CT, US)
Cpc classification
B64C2027/4733
PERFORMING OPERATIONS; TRANSPORTING
B64F5/40
PERFORMING OPERATIONS; TRANSPORTING
B24C3/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B64F5/40
PERFORMING OPERATIONS; TRANSPORTING
B24C3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An assembly configured to prevent damage to an object during manufacture thereof is provided including a first housing having a substantially hollow interior. An exposed first planar surface of the first housing includes an inlet port and a plurality of small openings formed about the periphery. The inlet port, the hollow interior, and the plurality of small openings form a fluid flow path through the assembly. A second housing similar in size and shape to the first housing, has an exposed second planar surface. An intermediate layer is arranged between the first housing and the second housing. A cross-section of the intermediate layer is configured to change shape in response to a compression force applied thereto by the first housing and the second housing to form a seal separating an exterior portion of the objection exposed to the plurality of small openings from an interior surface of the object.
Claims
1. An assembly configured to prevent damage to an object during manufacture of the object, comprising: a first housing having a substantially hollow interior and an exposed first planar surface, an inlet port being formed in the first planar surface, and a plurality of small openings being formed about a periphery of the first planar surface, such that the inlet port, the hollow interior, and the plurality of small openings form a flow path for a fluid through the assembly; a second housing substantially similar in shape and size to the first housing, the second housing having an exposed second planar surface; an intermediate layer arranged between the first housing and the second housing, a cross-section of the intermediate layer being configured to change shape in response to a compression force applied thereto by the first housing and the second housing to form a seal separating an exterior portion of the object exposed to the plurality of small openings from an interior surface of the object.
2. The assembly according to claim 1, wherein the flow path is configured to counter a flow of debris into the interior surface of the object.
3. The assembly according to claim 1, wherein the inlet port is connected to a pump operably coupled to a fluid supply.
4. The assembly according to claim 3, wherein the fluid supply includes one of air or coolant.
5. The assembly according to claim 1, wherein the plurality of small openings are equidistantly spaced about the periphery of the first planar surface.
6. The assembly according to claim 1, wherein a portion of the plurality of small openings have a diameter larger than a remainder of the plurality of small openings.
7. The assembly according to claim 6, wherein the portion of small openings adjacent the inlet portion have a diameter larger than the remainder of the plurality of small openings.
8. The assembly according to claim 1, further comprising at least one fastener extending through and being configured to affix the first housing, the intermediate layer, and the second housing to one another.
9. The assembly according to claim 1, further comprising a compression fastener extending through the first housing, the intermediate layer, and the second housing, a first nut coupled to the compression fastener being arranged adjacent the first planar surface, and a second nut connected to the compression fastener being arranged near the second planar surface.
10. The assembly according to claim 9, wherein the compression force applied to the intermediate layer by the first housing and the second housing is controlled by adjusting one or the first nut and second nut.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The subject matter, which is regarded as the invention, is particularly pointed out and distinctly claimed in the claims at the conclusion of the specification. The foregoing and other features, and advantages of the invention are apparent from the following detailed description taken in conjunction with the accompanying drawings in which:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028] The detailed description explains embodiments of the invention, together with advantages and features, by way of example with reference to the drawings.
DETAILED DESCRIPTION OF THE INVENTION
[0029]
[0030] Referring now to the exemplary rotor blade assembly 22 illustrated in
[0031] During manufacturing of a rotor blade assembly 22 having a blade spar 30 with a closed outboard end 34, foreign objects can become deposited inside the spar 30. By way of example, during drilling or machining of one or more holes in the blade spar 30, metallic pieces of the spar 30 could be deposited inside the spar 30 and need to be removed. An assembly 40 configured to prevent foreign object damage is positioned within the blade spar 30 to remove such foreign objects according to aspects of the invention. The shown assembly 40 is removable with respect to the spar 30 and is removed from the spar 30 after manufacture is completed, although the invention is not limited thereto.
[0032] Referring now to
[0033] An inlet port 48 is formed in a first planar surface 50 of the first housing 42, and extends through the first portion 44 to a second, opposite planar surface (not shown) of the first portion 44 so as to be open to the cavity 47. A plurality of small openings 52 is also formed about the periphery of the first surface 50 of the housing 42. The openings 52 may be equidistantly or variably spaced and may be substantially identical or variable in size. In one embodiment, a portion of the small openings 52, such as near the inlet port 48 for example, has a larger diameter than the remainder of the plurality of small openings 52.
[0034] Arranged in contact with the second planar surface (not shown) of the first housing 42 is an intermediate layer 54 formed from a sponge-like material, such as rubber or foam for example. As illustrated, the intermediate layer 54 has a shape similar to the first housing 42. However, the intermediate layer 54 is configured to expand when compressed, as shown in
[0035] At least one fastener 60 extends through a through hole 62 formed in the first housing 42, intermediate layer 54, and second housing 56 to affix the components 42, 54, 56 to one another. In the illustrated non-limiting embodiment, a first fastener 60 is arranged near a first side 41 of the assembly and a second, substantially identical fastener 60 is arranged adjacent a second, opposite side 43 of the assembly 40. A compression fastener 64 similarly extends through a through hole 66 arranged near the middle of the assembly 40. The compression fastener 64 may be substantially equal in length and/or diameter to the other fasteners 60, or alternatively, may have a larger diameter and or length as shown. While three fasteners are shown by way of example, other numbers of fasteners can be used in other aspects of the invention.
[0036] A first nut 70 is coupled to fasteners 60, 64 adjacent the first planar surface 50 of the first housing 42. Similarly, a second nut 72 is coupled to the fasteners 60, 64 adjacent the exposed planar surface 58 of the second housing 56. In the illustrated, non-limiting embodiment, a plurality of recesses 74 are formed in the exposed planar surface 58 adjacent each of the through holes 62, 66. The recesses 74 are configured to receive the second nut 72 connected to each fastener 60, 64 such that the nuts 72 are substantially flush with the planar surface 58 of the second housing 56. In another embodiment, the second nuts 72 may be integrally formed with the second housing 56, such as by forming threads in the portion of the through holes 62, 66 extending there through. The first nut 70 and second nut 72 coupled to the compression fastener 64 are used to increase and decrease the compression force applied by the first and second housings 42, 56 on the intermediate layer 54. When the compression force is increased, the intermediate layer 54 expands so that a cross-section of the intermediate layer 54 is larger than a cross-section of the adjacent housings 42, 56.
[0037] Referring now to
[0038] The reverse flow from the assembly 40 towards the open, inboard end 32 of the spar 30 counters the flow of debris and particles into the spar 30 without injecting fluid in the space between the closed, outboard end 34 of the spar 30 and the assembly 40. By positioning the assembly 40 between the closed end 34 and any interior surfaces 36 that are critical to flight safety, the fluid is injected via the inlet port 48 to pass through the first portion 44 of the housing 42 into the cavity 47. The fluid is stored within the cavity 47, and when sufficient pressure has built up, the fluid exits the assembly 40 from the cavity 47 via the openings 52 in the first housing 42 back towards the open, inboard end 32 of the spar 30. Since the assembly 40 is disposed between the closed end 34 and the surface to be protected 36, the fluid passes over the surface 36 such that surface characteristics of such critical surfaces 36 are protected from possible damage during the manufacturing process. In addition, use of the assembly 40 during manufacture of the rotor blade assemblies 22 greatly reduces work costs and improves the manufacturing process. Although the assembly 40 is illustrated and described herein within a blade spar 30, the assembly 40 may be positioned within any object having a hollow interior, an open end, and a closed end, to prevent damage during manufacture thereof, such as for cleaning gas and/or water pipelines, perform plumbing maintenance, or the like.
[0039] While the invention has been described in detail in connection with only a limited number of embodiments, it should be readily understood that the invention is not limited to such disclosed embodiments. By way of example, the first housing 42 may be a single piece as opposed to separate first and second portions 44, 46 as shown. Rather, the invention can be modified to incorporate any number of variations, alterations, substitutions or equivalent arrangements not heretofore described, but which are commensurate with the spirit and scope of the invention. Additionally, while various embodiments of the invention have been described, it is to be understood that aspects of the invention may include only some of the described embodiments. Accordingly, the invention is not to be seen as limited by the foregoing description, but is only limited by the scope of the appended claims.