Thrust reverser cowl rack
11199110 · 2021-12-14
Assignee
Inventors
- Lloyd Gregory Jacobs (Oologah, OK, US)
- Bill Monroe Brown, Jr. (Sapulpa, OK, US)
- Mark Greenhaw (Tulsa, OK, US)
Cpc classification
F02K1/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64F5/50
PERFORMING OPERATIONS; TRANSPORTING
F01D25/285
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T29/49998
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F01D25/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02K1/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A rack for holding a portion of a thrust reverser. The rack may include a base and a supporting frame disposed perpendicularly with the base. The base and the supporting frame may include a hinge at each location where the base and the supporting frame are coupled together. The rack may also include two supporting poles parallel to the supporting frame. The two supporting poles may be designed such that the portion of the thrust reverser may be mounted onto the two supporting poles.
Claims
1. A system, comprising: a thrust reverser; and a rack, comprising: a base; a supporting frame coupled to and perpendicular to the base; and supporting poles configured to receive a core cowl of the thrust reverser for mounting thereon, the supporting poles being: coupled to the base and parallel to the supporting frame; and configured to be inserted into the core cowl.
2. The system of claim 1, further comprising: one or more hinges, wherein the base and the supporting frame are coupled to each other via the one or more hinges.
3. The system of claim 2, wherein the supporting frame and the base are configured to rotate together as one unit around an axis of the one or more hinges.
4. The system of claim 2, further comprising a hydraulic pump disposed proximate a hinge of the one or more hinges to facilitate rotation of the rack about the axis of the one or more hinges.
5. The system of claim 1, further comprising: a cross bar connecting two ends of the supporting frame; and one or more stabilizers coupled to the cross bar and configured to assist the supporting poles in supporting a weight of a portion of the thrust reverser.
6. The system of claim 5, wherein the one or more stabilizers are adjustable in distance from a respective supporting device.
7. The system of claim 6, wherein the one or more stabilizers and the respective supporting device are configured to fix the thrust reverser cowl relative to the rack.
8. The system of claim 1, further comprising a hoist coupled to the supporting frame, wherein the hoist facilitates a crane to lift the supporting frame.
9. The system of claim 1, further comprising a hoist coupled to the base, wherein the hoist facilitates a crane to lift the base.
10. The system of claim 9, further comprising a second hoist coupled to the supporting frame, wherein the hoist facilitates a crane to lift the supporting frame.
11. A rack for a thrust reverser, comprising: a base; a supporting frame coupled to and perpendicular to the base; and supporting poles configured to receive a core cowl of the thrust reverser for mounting thereon, the supporting poles being: coupled to the base and parallel to the supporting frame; and configured to be inserted into the core cowl.
12. The rack of claim 11, further comprising: one or more hinges, wherein the base and the supporting frame are coupled to each other via the one or more hinges.
13. The rack of claim 12, wherein the supporting frame and the base are configured to rotate together as one unit around an axis of the one or more hinges.
14. The rack of claim 12, further comprising a hydraulic pump disposed proximate a hinge of the one or more hinges to facilitate rotation of the rack about the axis of the one or more hinges.
15. The rack of claim 11, further comprising: a cross bar connecting two ends of the supporting frame; and one or more stabilizers coupled to the cross bar and configured to assist the supporting poles in supporting a weight of a portion of the thrust reverser.
16. The rack of claim 15, wherein the one or more stabilizers are adjustable in distance from a respective supporting device.
17. The rack of claim 16, wherein the one or more stabilizers and the respective supporting device are configured to fix the thrust reverser cowl relative to the rack.
18. The rack of claim 11, further comprising a hoist coupled to the supporting frame, wherein the hoist facilitates a crane to lift the supporting frame.
19. The rack of claim 11, further comprising a hoist coupled to the base, wherein the hoist facilitates a crane to lift the base.
20. The rack of claim 19, further comprising a second hoist coupled to the supporting frame, wherein the hoist facilitates a crane to lift the supporting frame.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Implementations of various techniques will hereafter be described with reference to the accompanying drawings. It should be understood, however, that the accompanying drawings illustrate only the various implementations described herein and are not meant to limit the scope of various techniques described herein.
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DETAILED DESCRIPTION
(9) The discussion below is directed to certain specific implementations. It is to be understood that the discussion below is only for the purpose of enabling a person with ordinary skill in the art to make and use any subject matter defined now or later by the patent “claims” found in any issued patent herein.
(10) The following paragraphs provide a brief description or summary of various technologies and techniques directed at a thrust reverser core cowl rack and for using same to hold a thrust reverser core cowl in a vertical position.
(11) The thrust reverser core cowl rack includes a pair of supporting devices (or poles), a pair of hinges, a supporting frame, a base, a balance hoist, a lift hoist and stabilizers. The hinges are used to couple the supporting frame to the base. The supporting frame and the base are positioned at ninety degrees to each other. The hinges allow the supporting frame and the base to rotate around the hinges' axis, while keeping the ninety degree angle between each other. The pair of supporting devices is positioned above and parallel to the supporting frame. The pair of supporting devices is also horizontally separated by a predetermined distance that is equal to the horizontal distance between two receptacles on the thrust reverser core cowl. The receptacles on the thrust reverser are typically used to couple an outer cowl of the thrust reverser to the core cowl of the thrust reverser. As such, the pair of supporting devices is designed to use the receptacles that are already on the core cowl of the thrust reverser.
(12) In one implementation, the supporting frame may include a lifting hoist such that a crane may be coupled to the supporting frame via the lifting hoist. Similarly, the base may include a balance hoist such that another crane may be coupled to the base via the balance hoist. In another implementation, the hinges may include a hydraulic pump that may be used to push the supporting frame or the base off of the ground and rotate the thrust reverser core cowl rack ninety degrees.
(13) In operation, the thrust reverser core cowl rack may be initially positioned such that its supporting devices are parallel to the floor. The thrust reverser core cowl may then be coupled to the supporting devices by mounting the receptacles of the thrust reverser core cowl onto the supporting devices. In one implementation, the thrust reverser core cowl may be coupled to the supporting devices by lifting the thrust reverser core cowl and sliding the receptacles of the thrust reverser core cowl onto the supporting devices using a crane.
(14) After the thrust reverser core cowl is coupled to the supporting devices, one or more stabilizers and fasteners may be used to secure the thrust reverser core cowl to the thrust reverser core cowl rack. After securing the thrust reverser core cowl to the thrust reverser core cowl rack, a first crane may be coupled to the lifting hoist on the thrust reverser core cowl rack, and a second crane may be coupled to the balancing hoist on the opposite end of the thrust reverser core cowl rack. The first crane may lift the lifting hoist such that the horizontal portion of the thrust reverser core cowl rack may be rotated ninety degrees from a horizontal position to a vertical position. While the first crane is lifting the lifting hoist, the second crane may be used to balance the weight of the thrust reverser core cowl. After rotating the thrust reverser core cowl rack ninety degrees, the thrust reverser core cowl may be hanging vertically on the supporting devices. Although the thrust reverser core cowl rack has been described as being rotated using two cranes, it should be noted that in other implementations the thrust reverser core cowl rack may be rotated using the hydraulic pump instead.
(15) Various implementations of the thrust reverser core cowl rack and various techniques for using same to hold a thrust reverser core cowl in a vertical position will now be described in more detail with reference to
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(18) The supporting frame 150 may include a lifting hoist 180 such that a crane or other lifting device may couple to the lifting hoist 180 and lift the supporting frame 150. The base 160 may include a balance hoist 170 such that a crane or other lifting mechanism may provide support to the base 160 while the supporting frame 150 is being lifted. The balance crane 175 illustrates how a crane may be coupled to the balance hoist 170.
(19) As mentioned above, the rack 100 may include a hydraulic pump 145. In lieu of or in combination with using the balance crane 175, the hydraulic pump 145 may be used to push the supporting frame 150 off of the ground and rotate the rack 100 along the rotating axis 130 until the base 160 is lying on the floor and the supporting frame 150 is in a vertical position.
(20) In the initial position of the rack 100, the supporting devices 120 are positioned above the supporting frame 150 parallel with the supporting frame 150. The supporting devices 120 are coupled to the base 160 such that they may be located above the supporting frame 150 and at a predetermined horizontal distance apart from each other. The predetermined horizontal distance is equal to the horizontal distance between two receptacles on the cowl 110. In one implementation, the supporting devices may be shaped as cylindrical poles such that they may fit into the receptacles on the cowl 110.
(21) Each side of the cowl 110 includes a receptacle such that the supporting devices 120 may slide into the receptacles of the cowl 110. The receptacles on the cowl 110 may be commonly referred to as a T-track. Typically, the receptacles on the cowl 110 are used to couple the outer cowl of the thrust reverser to the core cowl (e.g., cowl 110) of the thrust reverser. When used together, the outer cowl may slide across the receptacles such that the exhaust air coming from the engine is redirected to the front of an aircraft in order to reverse the thrust of the aircraft. The receptacles may be cylindrical in shape. The receptacles are more clearly shown in
(22) The supporting frame 150 may include stabilizers 190 to provide support between the supporting frame 150 and the cowl 110. In one implementation, after the cowl 110 is fixed onto the supporting devices 120, the stabilizers 190 may be used to support the weight of the cowl 110 on the supporting frame 150. The stabilizers 190 may be adjustable in height such that the cowl 110 may be locked into position against the supporting frame 150. The stabilizers 190 may be coupled to a cross bar that connects the two parallel ends of the supporting frame 150. The stabilizers 190 may be adjustable such that they may move across the crossbar and may be fixed at any position along the crossbar.
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(24) In one implementation, the cross bar 220 may be parallel to the outer bar 210.sub.2. However, it should be noted that in other implementations, the cross bar 220 does not need to be parallel to the outer bar 210.sub.2. The supporting frame 150 may also include one or more additional bars that may be coupled to any of the outer bars 210 or the cross bar 220 in order to provide structural support for the rack 100. The additional bars may also provide additional support for the rack 100 such that when the cowl 110 is coupled to the rack 100, the structural integrity of the rack 100 may not be compromised due to the weight of the cowl 110.
(25) The lift hoist 180, the stabilizers 190, the hinges 140 and the rotating axis 130 illustrated in
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(27) In addition to the outer bars 310, the base 160 may include inner angled bars 320. The inner angled bars 320 may couple two adjacent outer bars 310 together. For instance, angled bar 320.sub.1 is coupled to outer bar 310.sub.1 and outer bar 310.sub.2. Located along each angled bar 320 is a supporting device position 330. The supporting device positions 330 indicate points on the angled bars 320 where the supporting devices 120 may be attached. The distance D between the two supporting device positions 330 may correspond to the predetermined distance between the supporting devices 120 described above with reference to
(28) Like the supporting frame 150, the base 160 may also include one or more additional bars that may be coupled to any of the outer bars 310 or the angled bars 320 to provide structural support for the rack 100. The additional bars may also provide additional support for the supporting devices 120 and the rack 100 such that when the cowl 110 is coupled to the supporting devices 120, the structural integrity of the supporting devices 120 or the rack 100 may not be compromised due to the weight of the cowl 110.
(29) The balance hoist 170, the stabilizers 190, the hinges 140 and the rotating axis 130 illustrated in
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(31) The side view 400 of the rack 100 illustrates a base support bar 410 and supporting device support bars 420. The base support bar 410 may be coupled to outer bar 210.sub.1 of the supporting frame 150 and to outer bar 310.sub.1 of the base 160 to provide structural support for the rack 100 when the cowl 110 is coupled to the supporting devices 120. Similarly, a second base support bar may be coupled to outer bar 210.sub.3 of the supporting frame 150 and to outer bar 310.sub.3 of the base 160 to also provide structural support for the rack 100 when the cowl 110 is coupled to the supporting devices 120.
(32) The thrust reverser core cowl rack 100 may also include supporting device support bars 420, such as supporting device support bar 420.sub.1, supporting device support bar 420.sub.2 and supporting device support bar 420.sub.3. Supporting device support bar 420.sub.1 may be positioned between angled bar 320.sub.1 and one of the supporting devices 120. Supporting device bar 420.sub.2 may be positioned between outer bar 310.sub.1 and one of the supporting devices 120. Supporting device bar 420.sub.3 may be positioned between outer bar 210.sub.1 and one of the supporting devices 120. The supporting device support bars 420 may be used to provide structural support to the supporting devices 120 such that the supporting devices 120 may support the weight of the cowl 110 when the cowl 110 is coupled to the supporting devices 120. Although only three supporting device support bars 420 are illustrated in
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(35) At step 610, the rack 100 may be positioned such that the supporting devices 120 are parallel with the floor. As such, the supporting frame 150 may be positioned against the floor.
(36) At step 620, the cowl 110 may be coupled to the rack 100 via the supporting devices 120. In one implementation, in order to couple the cowl 110 to the rack 100, the cowl 110 may first be lifted using a crane and positioned in front of the supporting devices 120 such that the front of the cowl 110 is facing the supporting devices 120. The receptacles 510 on each side of the cowl 110 may then be mounted onto the supporting devices 120. After the cowl 110 is mounted on the supporting devices 120 via the receptacles 510, the stabilizers 190 may be positioned to keep the cowl 110 stable. The height of the stabilizers 190 may be adjusted. In one implementation, fasteners may also be coupled between the supporting frame 150 and the inside of the cowl 110 to provide additional support to stabilize the cowl 110.
(37) At step 630, the rack 100 may be rotated ninety degrees such that the supporting frame 150 moves from a horizontal position to a vertical position. In one implementation, in order to rotate the rack 100, a first crane (e.g., lifting crane 185 in
(38) Although the rack 100 has been described herein as being rotated using cranes, it should be noted that in other implementations the rack 100 may be rotated using the hydraulic pump 145. The hydraulic pump 145 may be configured to push the supporting frame 150 off of the ground and rotate the rack 100 ninety degrees. The hydraulic pump 145 may also be configured to provide support on the base 160 while rotating the supporting frame 150.
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(41) While the foregoing is directed to implementations of various techniques described herein, other and further implementations may be devised without departing from the basic scope thereof, which may be determined by the claims that follow. Although the subject matter has been described in language specific to structural features and/or methodological acts, it is to be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or acts described above. Rather, the specific features and acts described above are disclosed as example forms of implementing the claims.