Winglet systems and methods for aircraft

The winglet system with an integrally formed cover plate addresses the vulnerability of lower blades by ensuring the cover plate remains attached, allowing the aircraft to fly without additional cover structures post-detachment, thus reducing maintenance time and costs.

JP2025128039APending Publication Date: 2025-09-02THE BOEING CO
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
JP2025022115
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-02-16
Filing Date
2025-02-14
Publication Date
2025-09-02

AI Technical Summary

Technical Problem

Existing winglets are vulnerable to accidental impacts, leading to detachment of the lower blade, which requires time-consuming and costly installation of a separate cover structure.

Method used

A winglet system with an integrally formed cover plate that remains attached to the upper blade even when the lower blade is detached, featuring couplers and frangible fasteners to secure the lower blade, eliminating the need for a separate cover structure.

Benefits of technology

Enables the aircraft to continue flying without the need for a separate cover installation, reducing downtime and costs associated with replacing the lower blade.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 2025128039000001_ABST
    Figure 2025128039000001_ABST
Patent Text Reader

Abstract

To provide a system and a method for effectively and efficiently compensating for a removed lower blade of a winglet.SOLUTION: A winglet system 130 is configured to be secured to a wing of an aircraft. The winglet system 130 includes an upper blade 134, a lower blade, and a cover plate 140 integrally formed with the upper blade 134 and the lower blade. The cover plate 140 covers an opening 190 within a transition joint 138 between the upper blade 134 and the lower blade. The cover plate 140 remains coupled to the upper blade 134 if the lower blade is separated from the winglet system 130.SELECTED DRAWING: Figure 5
Need to check novelty before this filing date? Find Prior Art

Description

[Technical Field]

[0001]

[0001] Embodiments of the present disclosure generally relate to winglet systems and methods for aircraft, such as those located at the ends of main wings. [Background technology]

[0002]

[0002] Certain aircraft include winglets extending from the distal end of the wing structure. The winglets are configured to reduce drag, including by partially recovering tip vortex energy. Various winglets are configured to increase lift generated at the wingtip (by smoothing the airflow across the upper wing near the tip) and reduce lift-induced drag caused by wingtip vortices, thereby improving the lift-to-drag ratio.

[0003]

[0003] Known winglets include an upper blade and a lower blade. The lower blade extends downward relative to the wing tip, thereby reducing ground clearance relative to the wing tip. Therefore, the lower blade may be vulnerable to accidental impacts, such as from airport ground service vehicles. In such a situation, the lower blade can be detached. The aircraft can temporarily fly without the lower blade after a separate, separate structure is placed over the opening created by the detached lower blade.

[0004]

[0004] As can be appreciated, the process of obtaining and installing a separate, separate structure over an opening can be time consuming, laborious and expensive. Summary of the Invention

[0005] What is needed is an improved winglet, and what is further needed is a system and method for effectively and efficiently compensating for a detached lower blade of a winglet.

[0006] With these needs in mind, certain embodiments of the present disclosure provide a winglet system configured to be secured to a wing of an aircraft. The winglet system includes an upper blade, a lower blade, and a cover plate integrally formed with the upper and lower blades. The cover plate covers an opening in a transition joint between the upper and lower blades. The cover plate remains coupled to the upper blade even when the lower blade is separated from the winglet system.

[0007] In at least one embodiment, the cover plate includes a cover panel disposed within the opening and one or more couplers extending from the cover panel. In one embodiment, the one or more couplers include a first coupler (e.g., a rear or front coupler) and a second coupler (e.g., a front or rear coupler). In at least one embodiment, the one or more couplers include legs separated by a gap.

[0008] In at least one embodiment, the lower blade includes one or more fittings secured to the one or more couplers. In a further embodiment, the cover panel includes one or more channels. The one or more fittings extend through the one or more channels. In at least one embodiment, the one or more fittings are secured to the one or more couplers via one or more frangible fasteners.

[0009] In at least one embodiment, the upper blade includes one or more attachments secured to one or more couplers. In a further embodiment, the one or more couplers are secured to one or more first attachments of the upper blade via one or more first fasteners. The one or more couplers are secured to one or more second attachments of the lower blade via one or more second fasteners. The one or more first fasteners are different from the one or more second fasteners. In at least one embodiment, the one or more first attachments do not extend to or contact the one or more second attachments.

[0010] In at least one embodiment, at least one fastener secures the one or more couplers to the one or more first fittings of the upper blade and the one or more second fittings of the lower blade. In a further embodiment, one or more retention fasteners secure the one or more couplers to the one or more first fittings of the upper blade. The one or more retention fasteners do not connect to the one or more second fittings of the lower blade.

[0011] Certain embodiments of the present disclosure provide a method for a winglet system configured to be secured to a wing of an aircraft, the method including integrally forming a cover plate with an upper blade and a lower blade.

[0012]

[0012] Certain embodiments of the present disclosure provide a fuselage, a main wing extending from the fuselage, and a winglet system secured to each of the main wing, as described herein. [Brief explanation of the drawings]

[0013] [Figure 1]

[0013] A perspective front view of an aircraft is shown according to one embodiment of the present disclosure. [Figure 2]

[0014] FIG. 1 illustrates a perspective side view of a winglet system according to one embodiment of the present disclosure. [Figure 3]

[0015] FIG. 1 illustrates a perspective top view of a winglet system at a transition joint, according to one embodiment of the present disclosure. [Figure 4]

[0016] 1 illustrates a cross-sectional view of a coupler according to one embodiment of the present disclosure. [Figure 5]

[0017] FIG. 1 illustrates a perspective side view of a winglet system with a lower blade removed, according to one embodiment of the present disclosure. [Figure 6]

[0018] FIG. 1 illustrates a perspective top view of a winglet system at a transition joint, according to one embodiment of the present disclosure. [Figure 7]

[0019] 1 illustrates a top view of a rear coupler of a cover plate according to one embodiment of the present disclosure. [Figure 8]

[0020] 1 illustrates a top view of a front coupler of a cover plate according to one embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION

[0014]

[0021] The foregoing summary, as well as the following detailed description of certain embodiments, will be better understood when read in conjunction with the accompanying drawings. As used herein, it should be understood that the use of the singular form of an element or step following "a" or "an" does not necessarily exclude a plurality of such elements or steps. Furthermore, references to "one embodiment" are not intended to be interpreted as excluding the existence of additional embodiments, such additional embodiments also incorporating the described features. Furthermore, unless expressly stated to the contrary, embodiments "comprising" or "having" one or more elements having particular conditions may include additional elements that do not have such conditions.

[0015]

[0022] As described herein, several embodiments of the present disclosure provide a winglet system including an integral cover plate disposed between an upper blade and a lower blade. The integral cover plate is not separate and distinct from the winglet system. Instead, the cover plate is integrally formed with the winglet system. The winglet system enables an aircraft to fly without a lower blade and without the installation of a separate and distinct cover structure. The winglet system, incorporating the cover plate, further includes a frangible attachment point for the lower blade.

[0016]

[0023] 1 illustrates a perspective front view of an aircraft 100 according to one embodiment of the present disclosure. The aircraft 100 includes a propulsion system, which may include, for example, two engines 112. Optionally, the propulsion system may include more engines 112 than are shown. The engines 112 are supported by wings 116 of the aircraft 100. In other embodiments, the engines 112 may be supported by a fuselage 118 and / or a tail section 120. The tail section 120 may also support a horizontal stabilizer 122 and a vertical stabilizer 124.

[0017]

[0024] A winglet system 130 is secured to the distal end 131 of each wing 116. Each winglet system 130 includes an upper blade 134 and a lower blade 136. The upper blade 134 extends upwardly above the plane of the upper surface of the wing 116. The lower blade 136 extends downwardly below the plane of the upper surface of the wing 116.

[0018]

[0025] The aircraft 100 shown in Figure 1 is merely an example. The aircraft 100 may be sized and shaped differently than that shown in Figure 1.

[0019]

[0026] 2 illustrates a perspective side view of a winglet system 130 according to one embodiment of the present disclosure. The winglet system 130 includes an upper blade 134 coupled to a lower blade 136 at a transition joint 138. The transition joint 138 may include an upper cover fairing 139.

[0020]

[0027] 3 illustrates a perspective top view of winglet system 130 at transition joint 138, according to one embodiment of the present disclosure. Upper cover fairing 139 (shown in FIG. 2) is not shown in FIG.

[0021]

[0028] The winglet system 130 includes a cover plate 140. The cover plate 140 is integrally formed with the winglet system 130. That is, the cover plate 140 is an integral part of the winglet system 130 and is not separately installed on the winglet system 130, such as when the lower blade 136 is removed.

[0022]

[0029] The cover plate 140 includes a cover panel 142 disposed within an opening 143 of the transition joint 138. A first coupler 144 extends inward from an inboard face 145 of the cover panel 142. The first coupler 144 may be an aft coupler. A second coupler 146 also extends inward from the inboard face 145 of the cover panel 142. The second coupler 146 may be a forward coupler. Optionally, the first coupler 144 may be a forward coupler and the second coupler 146 may be an aft coupler. The inboard face 145 is opposite the outboard face 147. The first coupler 144 and the second coupler 146 are spaced apart by a distance 148. The first coupler 144 and the second coupler 146 each include coupling legs 150 and 152 separated by a gap 154. The cover plate 140 may include fewer or more couplers than shown. For example, the cover plate 140 may include a single coupler. As another example, the cover plate 140 may include three couplers.

[0023]

[0030] A proximal end 160 of the lower blade 136 is adjacent to (e.g., abuts) the outboard face 147 of the cover panel 142. The lower blade 136 includes fittings 164. The fittings 164 extend through channels formed through the cover panel 142. Each fitting 164 extends between the coupling legs 150 and 152 of one of the first coupler 144 or the second coupler 146. One or more fasteners 166, such as bolts, secure the fittings 164 to the first coupler 144 and the second coupler 146. The fasteners 166 are not frangible.

[0024]

[0031] The upper blade 134 also includes attachments 170. Each attachment 170 extends between the coupling legs 150 and 152 of one of the first coupler 144 or the second coupler 146. One or more fasteners 172, such as bolts, secure the attachments 170 to the first coupler 144 and the second coupler 146. In at least one embodiment, the fasteners 172 are frangible fasteners (e.g., frangible bolts). The frangible fasteners are configured to break at a predetermined force to allow the lower blade 136 to separate from the winglet system 130. The frangible fasteners are configured to withstand flight loads but break in response to a predetermined excess load, such as from an impact of a certain magnitude. The fasteners 166 are configured to withstand a greater load than the fasteners 172. In this manner, fastener 166 ensures that lower blade 136 remains secured to winglet system 130 even if frangible fastener 172 breaks to allow lower blade 136 to separate from winglet system 130. Optionally, fastener 172 may be a detachable fastener instead of a frangible fastener.

[0025]

[0032] As an example, if ground support equipment impacts lower blade 136 with sufficient force, lower blade 136 may need to be removed and repaired. For removal, fasteners 166 may be removed so that lower blade 136 can be removed, but cover plate 140 remains in place.

[0026]

[0033] 4 shows a cross-sectional view of a coupler according to one embodiment of the present disclosure. The coupler can be a first coupler 144. A second coupler 146 can be similarly configured. A fitting 164 extends between legs 150 and 152 of the coupler at a first end 180, while a fitting 170 extends between legs 150 and 152 at an opposite second end 182. Fitting 164 does not extend to or contact fitting 170. In this manner, in at least one embodiment, fastener 166 securing the coupler to fitting 164 does not contact fitting 170. Similarly, fastener 172 securing the coupler to fitting 170 does not contact fitting 164.

[0027]

[0034] 4, one or more couplers (first coupler 144 and / or second coupler 146) are secured to one or more mounts 170 on upper blade 134 via one or more fasteners 172. The coupler(s) are further secured to one or more mounts 164 on lower blade 136 via one or more fasteners 166 (such as frangible bolts). Fasteners 172 are different from fasteners 166.

[0028]

[0035] FIG. 5 illustrates a perspective side view of the winglet system 130 with the lower blade removed, according to one embodiment of the present disclosure. Referring to FIGS. 2-5, in the event that the lower blade 136 is removed, the cover plate 140 remains within the opening 190 of the transition joint 138 of the winglet system 130. The cover panel 142 is configured to fit the size and shape of the opening 190. As shown, the cover panel 142 has a contour shaped like an airfoil. As mentioned, the cover panel 142 includes a channel 192 configured to allow the attachment 164 to pass through.

[0029]

[0036] In the event that the lower blade 136 is removed from the winglet system 130, a cover plate 140 integrally formed with the winglet system 130 provides a cover panel 142 that covers the opening 190. Thus, a separate and distinct cover structure does not need to be separately attached to the winglet system 130.

[0030]

[0037] Figure 6 shows a perspective top view of winglet system 130 at transition joint 138 according to one embodiment of the present disclosure. Figure 7 shows a top view of second coupler 146 of cover plate 140 according to one embodiment of the present disclosure. Figure 8 shows a top view of first coupler 144 of cover plate 140 according to one embodiment of the present disclosure.

[0031]

[0038] 6-8 , in this embodiment, attachment 170 of upper blade 134 includes opposing fins 200 and 202 separated by gap 204. Attachment 170 extends between legs 150 and 152. Attachment 164 of lower blade 136 extends between fins 200 and 202. Fasteners 206, such as bolts, secure couplers 144 and 146 to attachments 164 and 170, respectively. That is, each fastener 206 is secured to attachments 164 and 170, respectively. In at least one embodiment, fasteners 206 are frangible and configured to break at a predetermined force, thereby allowing lower blade 136 to separate from winglet system 130.

[0032]

[0039] One or more retention fasteners 220, such as bolts, secure one or both of couplers 144 and / or 146 to mounting fixture 170. In at least one embodiment, retention fasteners 220 are not connected to or secured to mounting fixture 164. Retention fasteners 220 are configured to ensure that cover plate 140 remains secured to upper blade 134 in the event that lower blade 136 becomes detached from winglet system 130 (such as when lower blade 136 is removed for repair or maintenance).

[0033]

[0040] As shown, first coupler 144 may include retention fastener 220. Retention fastener 220 provides a secondary connection with attachment 170 of upper blade 134. Second coupler 146 may not include retention fastener 220. Optionally and / or additionally, second coupler 146 may include retention fastener 220. In at least one embodiment, both first coupler 144 and second coupler 146 may include retention fasteners, such as retention fastener 220.

[0034]

[0041] 1-8 , several embodiments of the present disclosure provide a winglet system 130 having an integrally formed cover plate 140. The cover plate 140 is configured to remain secured to the winglet system 130 when the lower blade 136 separates from the winglet system 130. When the lower blade 136 separates from the winglet system 130, the cover plate 140 remains secured to the winglet system 130, such as within the opening 190 of the transition joint 138. Thus, when the lower blade 136 separates from the winglet system 130, the aircraft 100 can still fly, eliminating the need to install a separate, distinct cover structure on the winglet system 130. When the lower blade 136 separates from the winglet system 130, thereby exposing the cover panel 142 within the opening 190, the exposed channel 192 of the cover panel 142 can be covered with a covering material, such as speed tape.

[0035]

[0042] As described herein, the winglet system 130 includes a cover plate 140. The cover plate 140 provides an integrated split-blade wingtip cover. The cover plate 140 is installed and integrally formed with the winglet system 130 when the winglet system 130 is manufactured. If a problem exists that requires removal of the lower blade 136, the cover plate 140 is already in place, and the aircraft operator does not need to retrieve a separate, distinct cover structure to fly the aircraft. In at least one embodiment, the cover plate 140 is secured to one or more attachments (individually or both) of the lower blade 136 with frangible fasteners 206, such as frangible bolts, while being secured to one or more additional attachment points (such as portions of the attachment 170 of the upper blade 134) with additional fasteners.

[0036]

[0043] As described herein, with reference to Figures 1-8, a winglet system 130 is configured to be secured to the wing 116 of the aircraft 100. The winglet system 130 includes an upper blade 134, a lower blade 136, and a cover plate 140 integrally formed with the upper blade 134 and the lower blade 136. That is, the winglet system 130 is manufactured with the cover plate 140 coupled to the upper blade 134 and the lower blade 136. The cover plate 140 is not separately secured to the winglet system 130 after the winglet system 130 is manufactured. The cover plate 140 covers an opening 190 in a transition joint 138 between the upper blade 134 and the lower blade 136. The cover plate 140 remains coupled to the upper blade 134 even when the lower blade 136 is separated from the winglet system 130.

[0037]

[0044] Furthermore, the present disclosure includes embodiments according to the following clauses:

[0038]

[0045] Article 1. 1. A winglet system configured to be secured to a wing of an aircraft, comprising: Upper blade, Lower blade, and a cover plate integrally formed with the upper blade and the lower blade; 1. A winglet system, wherein the cover plate covers an opening in a transition joint between the upper blade and the lower blade, the cover plate remaining coupled to the upper blade when the lower blade is separated from the winglet system.

[0039]

[0046] Article 2. The cover plate is a cover panel disposed within the opening; and 10. The winglet system of claim 1, comprising one or more couplers extending from the cover panel.

[0040]

[0047] Article 3. The one or more couplers a first coupler; and 3. The winglet system of clause 2, including a second coupler.

[0041]

[0048] Article 4. 4. The winglet system of clause 2 or 3, wherein the one or more couplers comprise legs separated by a gap.

[0042]

[0049] Article 5. 5. A winglet system as described in any one of clauses 2 to 4, wherein the lower blade comprises one or more attachments fixed to the one or more couplers.

[0043]

[0050] Article 6. 6. The winglet system of clause 5, wherein the cover panel includes one or more channels, and the one or more mounting fixtures extend through the one or more channels.

[0044]

[0051] Article 7. 7. The winglet system of clause 5 or 6, wherein the one or more attachments are secured to the one or more couplers via one or more frangible fasteners.

[0045]

[0052] Article 8. 8. A winglet system as described in any one of clauses 2 to 7, wherein the upper blade comprises one or more attachments fixed to the one or more couplers.

[0046]

[0053] Article 9. 8. A winglet system as described in any one of clauses 2 to 7, wherein the one or more couplers are secured to one or more first attachments of the upper blade via one or more first fasteners, and the one or more couplers are secured to one or more second attachments of the lower blade via one or more second fasteners, the one or more first fasteners being different from the one or more second fasteners.

[0047]

[0054] Article 10. 10. A winglet system as described in clause 9, wherein the one or more first fittings do not extend to or contact the one or more second fittings.

[0048]

[0055] Article 11. 10. A winglet system as described in any one of clauses 2 to 9, wherein at least one fastener secures the one or more couplers to one or more first attachments on the upper blade and one or more second attachments on the lower blade.

[0049]

[0056] Article 12. 12. The winglet system of clause 11, wherein one or more retention fasteners secure the one or more couplers to the one or more first fittings of the upper blade, and the one or more retention fasteners do not connect to the one or more second fittings of the lower blade.

[0050]

[0057] Article 13. 1. A method for a winglet system configured to be secured to a wing of an aircraft, comprising: forming the cover plate integrally with the upper blade and the lower blade; the cover plate covers an opening in a transition joint between the upper blade and the lower blade, and the cover plate remains coupled to the upper blade when the lower blade is separated from the winglet system.

[0051]

[0058] Article 14. An aircraft, body, a main wing extending from the fuselage; and a winglet system fixed to each of the main wings, the winglet system comprising: Upper blade, Lower blade, and a cover plate integrally formed with the upper blade and the lower blade; the cover plate covers an opening in a transition joint between the upper blade and the lower blade, the cover plate remaining coupled to the upper blade when the lower blade is separated from the winglet system.

[0052]

[0059] Article 15. The cover plate is a cover panel disposed within the opening; and 15. The aircraft of clause 14, comprising one or more couplers extending from the cover panel.

[0053]

[0060] Article 16. The one or more couplers a first coupler; and An aircraft as described in clause 15 including a second coupler.

[0054]

[0061] Article 17. 17. The aircraft of clause 15 or 16, wherein the one or more couplers comprise legs separated by a gap.

[0055]

[0062] Article 18. 18. The aircraft of any one of clauses 15 to 17, wherein the lower blade comprises one or more first fittings secured to the one or more couplers, and the cover panel comprises one or more channels, the one or more first fittings extending through the one or more channels, and the one or more first fittings secured to the one or more couplers via one or more frangible fasteners.

[0056]

[0063] Article 19. 19. The aircraft of clause 18, wherein the upper blade comprises one or more second attachments secured to the one or more couplers.

[0057]

[0064] Article 20. 20. The aircraft of clause 19, wherein the one or more couplers are secured to the one or more second attachments of the upper blade via one or more fasteners.

[0058]

[0065] As described herein, embodiments of the present disclosure provide an improved winglet system. Additionally, embodiments of the present disclosure provide a system and method for effectively and efficiently compensating for a detached lower blade of a winglet.

[0059]

[0066] For purposes of describing the embodiments of the present disclosure, various spatial and directional terms may be used, such as top, bottom, lower, center, lateral, horizontal, vertical, front, etc., but it should be understood that such terms are used solely with reference to the orientations shown in the drawings. These orientations may be flipped, rotated, or otherwise changed so that top becomes bottom, rear becomes front or vice versa, horizontal becomes vertical, etc.

[0060]

[0067] As used herein, a structure, limitation, or element that is "configured to" perform an task or operation is structurally shaped, configured, or adapted specifically to correspond to the task or operation. For clarity and to avoid doubt, an object that can merely be modified to perform a task or operation is not "configured / set up to" perform a task or operation as used herein.

[0061]

[0068] It should be understood that the above description is intended to be illustrative, not limiting. For example, the above-described embodiments (and / or aspects thereof) can be used in combination with each other. In addition, many modifications can be made to the teachings of various embodiments of the present disclosure to adapt to particular situations or materials without departing from the scope of such embodiments. While the dimensions and types of materials set forth herein are intended to define the parameters of various embodiments of the present disclosure, these embodiments are in no way limiting, but rather exemplary. Many other embodiments will be apparent to those skilled in the art upon reviewing the above description. The scope of the various embodiments of the present disclosure should, therefore, be determined with reference to the appended claims, along with the full scope of equivalents to which such claims are entitled. In the appended claims and this Detailed Description, the words "including" and "in which" are used as the plain English equivalents of the words "comprising" and "wherein," respectively. Furthermore, terms such as "first," "second," and "third" are used merely as labels and are not intended to impose numerical requirements on their objects. Moreover, the limitations of the following claims are not written in means-plus-function form, and are not intended to be construed under 35 U.S.C. §112(f) unless such claim limitations expressly use the phrase "means for," followed by a statement of function lacking further structure.

[0062]

[0069] This specification uses examples to disclose various embodiments of the present disclosure, including the best mode, and also enables those skilled in the art to practice various embodiments of the present disclosure, including making and using any device or system, and performing any integrated method. The patentable scope of various embodiments of the present disclosure is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements that have only insignificant differences from the literal language of the claims.

Claims

1. 1. A winglet system (130) configured to be secured to a wing of an aircraft (100), comprising: Upper blade (134), a lower blade (136), and a cover plate (140) integrally formed with said upper blade (134) and said lower blade (136); A winglet system (130) wherein the cover plate (140) covers an opening (143, 190) in a transition joint (138) between the upper blade (134) and the lower blade (136), and the cover plate (140) remains coupled to the upper blade (134) even when the lower blade (136) is separated from the winglet system (130).

2. The cover plate (140) a cover panel (142) disposed within the opening (143, 190); and The winglet system (130) of claim 1, comprising one or more couplers extending from the cover panel (142).

3. The one or more couplers a first coupler (144), and The winglet system (130) of claim 2 including a second coupler (146).

4. The winglet system (130) of claim 2, wherein the one or more couplers comprise legs separated by a gap (154).

5. The winglet system (130) of claim 2, wherein the lower blade (136) comprises one or more attachments (170) secured to the one or more couplers.

6. 6. The winglet system of claim 5, wherein the cover panel includes one or more channels, and the one or more attachments extend through the one or more channels.

7. 6. The winglet system (130) of claim 5, wherein the one or more attachments (170) are secured to the one or more couplers via one or more frangible fasteners (172).

8. The winglet system (130) of claim 2, wherein the upper blade (134) comprises one or more attachments (170) secured to the one or more couplers.

9. 3. The winglet system of claim 2, wherein the one or more couplers are secured to one or more first attachments of the upper blade via one or more first fasteners, and the one or more couplers are secured to one or more second attachments of the lower blade via one or more second fasteners, the one or more first fasteners being different from the one or more second fasteners.

10. 10. The winglet system (130) of claim 9, wherein the one or more first fittings (170) do not extend to or contact the one or more second fittings (170).

11. 3. The winglet system of claim 2, wherein at least one fastener secures the one or more couplers to the one or more first attachments of the upper blade and the one or more second attachments of the lower blade.

12. 12. The winglet system of claim 11, wherein one or more retention fasteners secure the one or more couplers to the one or more first attachments of the upper blade, and the one or more retention fasteners do not connect to the one or more second attachments of the lower blade.

13. 1. A method for a winglet system (130) configured to be secured to a wing of an aircraft (100), comprising: forming a cover plate (140) integrally with the upper blade (134) and the lower blade (136); the cover plate (140) covers an opening (143, 190) in a transition joint (138) between the upper blade (134) and the lower blade (136), and the cover plate (140) remains coupled to the upper blade (134) even when the lower blade (136) is separated from the winglet system (130).

14. An aircraft (100), Torso (118), a wing (116) extending from the fuselage (118); and a winglet system (130) fixed to each of the main wings (116), the winglet system (130) comprising: Upper blade (134), a lower blade (136), and a cover plate (140) integrally formed with said upper blade (134) and said lower blade (136); The cover plate (140) covers an opening (143, 190) in a transition joint (138) between the upper blade (134) and the lower blade (136), and the cover plate (140) remains coupled to the upper blade (134) even when the lower blade (136) is separated from the winglet system (130).

15. The cover plate (140) a cover panel (142) disposed within the opening (143, 190); and The aircraft (100) of claim 14, comprising one or more couplers extending from the cover panel (142).

16. The one or more couplers a first coupler (144), and The aircraft (100) of claim 15, including a second coupler (146).

17. The aircraft (100) of claim 15, wherein the one or more couplers comprise legs separated by a gap (154).

18. 16. The aircraft (100) of claim 15, wherein the lower blade (136) comprises one or more first fittings (170) secured to the one or more couplers, the cover panel (142) comprises one or more channels, the one or more first fittings (170) extending through the one or more channels, and the one or more first fittings (170) secured to the one or more couplers via one or more frangible fasteners (172).

19. 20. The aircraft (100) of claim 18, wherein the upper blade (134) comprises one or more second attachments (170) secured to the one or more couplers.

20. 20. The aircraft (100) of claim 19, wherein the one or more couplers are secured to the one or more second attachments (170) of the upper blade (134) via one or more fasteners (172).