Assembly comprising a fixed surface and a moving surface of an aircraft.
The assembly with a locking device ensures correct positioning of the connecting device between the grid structure and the movable cowl of an aircraft propulsion unit, addressing parasitic force issues and enabling precise adjustment, thus enhancing the assembly process.
Patent Information
- Application Number
- FR2023014524
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-12-19
- Publication Date
- 2025-06-20
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
Title of the invention: Assembly comprising a fixed surface and a mobile surface of an aircraft. Technical field
[0001] The present invention relates to an assembly comprising a fixed surface, a surface movable relative to the fixed surface and a connecting system configured to connect the fixed surface and the movable surface and to accommodate movement of the movable surface relative to the fixed surface.
[0002] The present invention also relates to a thrust reverser and an aircraft propulsion assembly comprising such an assembly. Prior art
[0003] An aircraft propulsion unit generally comprises a turbomachine housed inside a nacelle.
[0004] The nacelle generally has a tubular structure comprising an air inlet upstream of the turbomachine, a middle section intended to surround a fan of the turbomachine and its casing, a downstream section intended to surround the combustion chamber of the turbomachine. It can be terminated by an ejection nozzle whose outlet is located downstream of the turbomachine.
[0005] Modern nacelles are intended to house a dual-flow turbomachine capable of generating, via the rotating fan blades, a hot air flow (also called primary flow) from the combustion chamber of the turbomachine, and a cold air flow (secondary flow) which circulates outside the turbomachine through an annular passage, also called a vein, formed between a fairing of the turbomachine and an internal wall of the nacelle. The two air flows are ejected from the turbomachine through the rear of the nacelle.
[0006] The propulsion unit may, if necessary, comprise a thrust reverser. The role of a thrust reverser is, when an aircraft is landing, to improve its braking capacity by redirecting at least part of the thrust generated by the turbomachine forward. In this phase, the reverser obstructs the cold flow stream and directs the latter towards the front of the nacelle, thereby generating counter-thrust which adds to the braking of the aircraft's wheels.
[0007] The means implemented to achieve this reorientation of the cold flow vary depending on the type of inverter.
[0008] When the thrust reverser is a grid thrust reverser also known as a cascade reverser, the reorientation of the air flow is carried out by deflection grids. For example, the thrust reverser may be a sliding grid thrust reverser. In this configuration, a grid structure, for example sliding, can be housed on the fan casing of the turbomachine. The downstream section of the nacelle can be produced in the form of two covers movable in translation so as to be able to uncover the grids. These covers are also mounted so as to be able to be opened "butterfly-style", then closed, by pivoting around a substantially longitudinal hinge line located near a pylon connecting to an aircraft, in particular for maintenance operations.
[0009] In order to guarantee tangential positioning between the grid structure housed on the fan casing and the cowls of the downstream section of the nacelle, a connecting device can be arranged between these two structures.
[0010] During the first assembly of the propulsion unit, poor positioning of the connecting device between these two structures can lead to the introduction of parasitic forces. To date, the adjustment of the position of the connecting device, for example during the first assembly, could only be done once the covers are closed on the turbomachine, but in this configuration, access to the connecting device would not be possible. Statement of the invention
[0011] The invention aims in particular to overcome at least in part one of these drawbacks and relates, according to a first aspect, to an assembly, for example for a propulsion assembly, for example of an aircraft, comprising:
[0012] a fixed surface, such as a grid structure for example connected to a fan casing of a turbomachine of the propulsion unit,
[0013] a surface movable relative to the fixed surface, such as a movable cowl of a nacelle intended to surround the turbomachine, the surface may be movable at least according to one degree of freedom in rotation,
[0014] a connecting system configured to connect the fixed surface and the movable surface and to accommodate movement, for example rotational movement of the movable surface relative to the fixed surface, the connecting system comprising:
[0015] a connecting device connected to the fixed surface and allowing movement, for example rotation of the moving surface relative to the fixed surface, and
[0016] a locking device, for example forming a device for adjusting a position of the movable surface relative to the fixed surface, connecting the connecting device to the movable surface, the locking device comprising a connecting element on which the connecting device is mounted,
[0017] the locking device is configured so as to
[0018] in an unlocked position, allow the movement of the connecting element relative to the movable surface, for example during a movement, by example a rotational movement of the moving surface relative to the fixed surface, and
[0019] in a locking position, preventing movement of the connecting element relative to the movable surface.
[0020] The locking device is configured to adjust the position of the movable surface relative to the fixed surface. The locking device is configured to allow fine adjustment of the position of the movable surface in the closed / locked state relative to the fixed surface in order to eliminate forces in the fixed surface in the closed / locked state.
[0021] Thanks to such a locking device, it is possible to ensure the correct positioning of the connecting device between the fixed surface and the movable surface, in particular during the first assembly of the movable surface relative to the fixed surface, when the locking device is in the unlocked position, for example during a rotational movement of the movable surface relative to the fixed surface. This makes it possible to avoid the introduction of parasitic forces.
[0022] The locking device, forming for example a device for adjusting a position of the movable surface relative to the fixed surface, makes it possible to finely adjust the position of the movable surface in the closed / locked state relative to the fixed surface, to eliminate the forces in the fixed surface in the locked state.
[0023] The entire invention comprises one or more of the following optional features.
[0024] The connecting device is mounted on the movable surface by means of the locking device.
[0025] The locking device forms an interface between the connecting device, for example a compass, and the moving surface.
[0026] The locking device comprises clamping means connecting the connecting element to the movable surface, the clamping means being configured so as to
[0027] in the unlocked position, allowing the connecting element to be disengaged from the movable surface so as to allow movement of the connecting element relative to the movable surface during a movement, for example a rotational movement of the movable surface relative to the fixed surface, and
[0028] in the locking position, maintaining the connecting element engaged with the movable surface so as to prevent movement of the connecting element relative to the movable surface.
[0029] The locking device comprises elastic means configured so as to, in the unlocked position, exert a force on the connecting element so as to disengage the connecting element from the movable surface, so as to allow the connecting element to move relative to the moving surface during a movement, for example a rotational movement, of the moving surface relative to the fixed surface.
[0030] The elastic means comprise a spring blade or at least one compression spring and are arranged at least partly between the connecting element and the movable surface.
[0031] The elastic means comprise at least one torsion spring and are arranged on the connecting device.
[0032] The locking device is configured so as to, in the unlocked position, allow the displacement of the connecting element by translation relative to the movable surface during a movement, for example a rotational movement, of the movable surface relative to the fixed surface.
[0033] The connecting element comprises at least one recess, said at least one recess being configured to receive the clamping means and to allow movement of the connecting element relative to the clamping means during a rotational movement of the movable surface relative to the fixed surface, when the locking device is in the unlocking position, the clamping means being fixed relative to the movable surface when the locking device is in the unlocking position.
[0034] The clamping means comprise at least one cage nut and retaining means configured to maintain said at least one cage nut connected to the connecting element when the locking device is in the unlocked position.
[0035] The connecting element comprises first engagement means and the movable surface comprises second engagement means configured to cooperate with each other when the locking device is in the locking position, the first means and the second means comprising ridges.
[0036] The connecting element may be a fitting.
[0037] The connecting device may be a compass.
[0038] The movable surface is a movable hood of a nacelle. The assembly further comprises a hinge arranged in a first portion, for example an upper portion, of the movable hood, the hinge being configured to allow opening of the movable hood, for example for maintenance operations, the assembly further comprising a lock arranged in a second portion, for example a lower portion, of the movable hood, the lock being configured to keep the hood closed, for example selectively. The second portion is different from the first portion.
[0039] The term "upper part" and "lower part" means the upper and lower part of the hood during normal use of the hood, for example during normal use of a propulsion unit comprising the hood.
[0040] For example, the hinge is circumferentially opposite the lock, for example relative to the hood. The lock is distinct from the locking device. For example, the locking device is proximal to the hinge.
[0041] According to one aspect, the invention relates to a thrust reverser of an aircraft propulsion assembly, for example a thrust reverser with grids, for example with sliding grids, comprising the assembly as previously described. For example, the fixed surface may be a grid structure, for example sliding grids, which may be connected to a fan casing of a turbomachine and the movable surface may be a movable cowl of a nacelle, for example a movable cowl of a downstream section of a nacelle, intended to surround the turbomachine.
[0042] For example, in the thrust reverser, the grilles may be housed between the fan casing and a cowl of a middle section of the nacelle of the propulsion unit (for example a fan cowl), for example during maintenance operations or direct jet operation in which the grilles are fixed. The grilles may slide, for example translate with the movable cowl of the downstream section of the nacelle during reverse jet operation.
[0043] The present invention applies particularly to maintenance operations during which the grid structure is fixed and the cover of the downstream section of the nacelle is movable in rotation, so that it can be pivoted, for example relative to the grid structure, during maintenance operations.
[0044] According to one aspect, the invention relates to a propulsion assembly comprising an assembly as previously described. The fixed surface may be a fan casing of a turbomachine of the propulsion assembly and the movable surface may be a movable cowl of a nacelle intended to surround the turbomachine, for example a cowl of a middle section of the nacelle such as a fan cowl or of a downstream section of the nacelle such as a thrust reverser cowl. In a variant, the fixed surface may be an air inlet of the nacelle and the surface movable relative to the fixed surface may be a movable cowl of the nacelle, for example of a middle section of the nacelle, for example a fan cowl of the nacelle.
[0045] In a variant, the fixed surface may be a cowl of a middle section of the nacelle, for example a fan cowl and the surface movable relative to the fixed surface may be a movable cowl of a downstream section of the nacelle, for example a thrust reverser cowl.
[0046] For example, the propulsion assembly may comprise a nacelle, the nacelle comprising a movable cowl and the assembly as previously described, the movable cowl forming the movable surface relative to the fixed surface. The fixed surface may be a fixed surface of the propulsion assembly. Brief description of the drawings
[0047] [Fig.l] [Fig.l] illustrates an assembly according to the invention in which a locking device is in the unlocked position and a movable surface is in the open position.
[0048] [Fig.2] [Fig.2] illustrates an assembly according to the invention in which a device of lock is in the unlocked position and the moving surface is in the closed position.
[0049] [Fig.3] [Fig.3] illustrates an assembly according to the invention in which a device of lock is in the locked position and the moving surface is in the closed position.
[0050] [Fig.4] [Fig.4] illustrates the assembly according to an alternative embodiment.
[0051] [Fig.5] [Fig.5] illustrates the assembly according to an alternative embodiment.
[0052] [Fig.6] [Fig.6] illustrates the assembly according to an alternative embodiment.
[0053] [Fig.7] [Fig.7] illustrates a propulsion assembly comprising an assembly according to the invention.
[0054] [Fig.8] [Fig.8] illustrates a thrust reverser comprising an assembly according to the invention.
[0055] [Fig.9] [Fig.9] illustrates a thrust reverser comprising the assembly according to the invention.
[0056] [Fig. 10] [Fig. 10] is a cross-sectional view of a propulsion assembly according to the invention. Description of the embodiments
[0057] In the description and the claims, the expressions "upper", "above", and "lower", "below", and their derivatives will be used without limitation in reference to the upper part, and to the lower part, respectively, of figures 1 to 10.
[0058] In the remainder of the description of the assembly according to the invention, the same numerical references designate the same elements.
[0059] Figures 1 to 6 illustrate an assembly 1 according to the invention. An orthonormal reference frame XYZ is also shown in [Fig.2], the Z axis being perpendicular to the plane of [Fig.2],
[0060] The assembly 1 comprises a fixed surface 2, a movable surface 4 relative to the fixed surface 2, for example at least according to one degree of freedom in rotation, for example in rotation, and a connecting system 3 connecting the fixed surface 2 and the movable surface 4 and configured to allow accommodating a movement, for example of rotation, of the movable surface 4 relative to the fixed surface 2.
[0061] The movable surface 4 can be pivotally mounted relative to the fixed surface 2. By for example, the movable surface 4 may be movable in rotation, for example by pivoting, relative to the fixed surface 2.
[0062] The movable surface 4 can be movable in rotation, for example by pivoting, relative to the fixed surface 2 between a so-called open or maintenance position ([Fig.l] and 8) in which the movable surface 4 is distal to the fixed surface 2, and a closed or operating position (figures 2, 3 and 6 and 9) in which the movable surface 4 is proximal to the fixed surface 2.
[0063] The fixed surface 2 and the mobile surface 4 may respectively be a fixed surface and a mobile surface of an aircraft, for example a fixed surface and a mobile surface of an aircraft propulsion unit 8 ([Fig.7]) comprising for example a turbomachine 10 and a nacelle 12, for example a fixed surface and a mobile surface of a thrust reverser ([Fig.8]) of a propulsion unit.
[0064] In the example illustrated in [Fig.8], the fixed surface 2 and the mobile surface 4 may be respectively a fixed surface and a mobile surface of a thrust reverser 6 of the aircraft propulsion unit.
[0065] The thrust reverser 6 which may be a grid reverser, for example with sliding grids, may comprise thrust reversing means such as a grid structure, for example with sliding grids, connected to a fan casing 100 of a turbomachine 10 and a movable cowl, for example movable relative to the grid structure, such as a cowl of a downstream section 74 of the nacelle 12 ([Fig.7]). In the present example, the thrust reverser 6 may comprise the assembly as previously described in which the fixed surface 2 may be the grid structure, for example sliding 2' which may be connected to the fan casing 100 of the turbomachine 10 and the movable surface 4 may be the movable cowl 4' of the nacelle, for example of the downstream section 74 of the nacelle.
[0066] The movable surface 4, for example the pivoting cover 4', can be movable in rotation, for example in pivoting relative to the fixed surface 2, between the open position ([Fig.l], 8) in which the movable surface 4 can extend for example in a butterfly shape relative to the fixed surface 2, so as to allow access to the part of the turbomachine surrounded by said cover, for example to an operator, and the closed position (Figures 2, 3 and 6) in which the movable surface 4 prevents access to the operator.
[0067] The movable surface 4, for example the pivoting cover 4', can be pivoted between the closed position and the open position to allow access to the turbomachine for maintenance operations for example.
[0068] Thus according to a first aspect, the invention relates to a thrust reverser 6, for example a thrust reverser with grids, for example with sliding grids comprising an assembly as previously described in which the moving surface may be a pivoting cowl 4' of the thrust reverser, for example a pivoting cowl of a mid-section of a nacelle intended to surround a turbomachine and the fixed surface may be a grid structure, for example sliding, which may be connected to a fan casing 2' of the turbomachine.
[0069] The assembly according to the invention is not limited to the example which has just been described and can find other applications, for example for a propulsion assembly comprising a fixed surface and a surface which is mobile relative to the fixed surface and which will be described subsequently.
[0070] Furthermore, other movements of the moving surface relative to the fixed surface can be envisaged, such as a translational movement for example, or even a movement combining a rotation and a translation.
[0071] The connecting system 3 comprises a connecting device 14 adapted to allow relative movement between the two surfaces 2, 4.
[0072] The connecting device 14 further allows rotation, for example pivoting of the movable surface 4 relative to the fixed surface 2. The connecting device 14 may be, for example, an extendable or deployable device such as a jack, for example a ball-jointed jack or a compass. In the embodiments illustrated, but in a non-limiting manner, the connecting device 14, which may be a compass 16, may comprise a first part, for example a first connecting rod 18, a first end of which is connected to the movable surface 4, and a second part, for example a second connecting rod 20, a first end of which is connected to the fixed surface 2. The first connecting rod 18 and the second connecting rod 20 may be articulated together so as to allow relative movement between the movable surface 4 and the fixed surface 2. For example, the second ends of the connecting rods may be connected together by a pivot connection.
[0073] The connecting device 14, for example the second connecting rod 20 of the connecting device 14, is connected to the fixed surface 2, for example directly connected to the fixed surface 2, for example by means of a pivot connection 210 for example with an axis and yokes. Other connection means can be envisaged such as a sliding pivot connection or a ball joint.
[0074] The connecting system 3 may comprise a locking device 24 connecting the connecting device 14 to the movable surface 4. The locking device 24 may comprise a connecting element such as a fitting 26 on which the connecting device 14 is mounted, for example the end of the first connecting rod 18 of the connecting device 14. In this configuration, the locking device 24 may be configured so as to connect the connecting device 14, for example the end of the first connecting rod 18 to the movable surface 4, via the fitting 26.
[0075] The fitting 26 may comprise a base 28 ([Fig.5]) having a first face intended to be arranged facing a first face of the movable surface and a second face opposite the first face. The fitting 26 may comprise two lateral flanks 30, 32, for example triangular, which may extend from the base 28 and be substantially orthogonal to the base. The fitting 26 may for example comprise an arm 34 on which the end of the first connecting rod 18 may be mounted, for example in rotation, the arm being configured so as to allow rotation of the end of the first connecting rod 18 of the connecting device 14 relative to the arm 34. The arm 34 may extend into openings provided in the end of the first connecting rod 18 and in the lateral flanks 30, 32 of the fitting 26 ([Fig.5]).
[0076] In this configuration, when the movable surface 4 is in the closed position (figures 2, 3, 6), the connecting device 14 is intended to guarantee a tangential positioning between the fixed surface 2 and the movable surface 4. When the movable surface 4 is driven, for example by pivoting relative to the fixed surface 2, towards the open position ([Fig.l]), for example for maintenance operations, the connecting device 14 allows a relative movement between the two surfaces 2, 4.
[0077] The locking device 24 can be configured so as to, in an unlocked position (FIGS. 1, 2, and 4 to 6), allow the movement of the fitting 26 relative to the movable surface 4, for example during a rotational movement of the movable surface 4 relative to the fixed surface 2, and in a locked position ([Fig. 3]), prevent the movement of the fitting 26 relative to the movable surface 4.
[0078] In such a configuration, in the unlocked position, the rotational movement of the movable surface 4 relative to the fixed surface 2 causes the fitting 26 to move relative to the movable surface 4.
[0079] Thanks to such a locking device, it is possible to ensure the correct positioning of the connecting device 14 between the fixed surface 2 and the movable surface 4, in particular during the first assembly of the movable surface 4 relative to the fixed surface 4, when the locking device is in the unlocked position, for example during a rotational movement of the movable surface 4 relative to the fixed surface 2, for example from the open position to the closed position of the movable surface 4. This makes it possible to avoid the introduction of parasitic forces.
[0080] The locking system 3 allows automatic adjustment of the positioning of the fitting 26 relative to the movable surface 4 and thus of the connecting device 14 relative to the movable surface 4 and to the fixed surface 2. In the closed position of the movable surface, once the fitting 26 has been positioned adequately relative to the movable surface 4, it is possible to lock the locking device 24 ( [Fig. 3]) so as to prevent subsequent movement of the fitting 26 relative to the movable surface 4 and thus lock the positioning of the fitting 26 relative to the movable surface 4 and consequently, the position of the connecting device 14 between the movable surface 4 and the fixed surface 2.
[0081] Once the locking device is in the locking position, the movable surface 4 can subsequently be moved to the open position ([Fig.l]), for example for maintenance operations, while keeping the locking device in the locking position so as to maintain the correct positioning of the connecting device 14.
[0082] The locking device 24 may be configured so that in the unlocked position (Figures 1, 2 and 4 to 6), the fitting 26 may be disengaged from the movable surface 4 and may be kept disengaged from the movable surface 4 so as to allow movement of the fitting 26 relative to the movable surface, for example during a rotational movement of the movable surface 4 relative to the fixed surface 2.
[0083] By disengaged from the moving surface, it is meant that the fitting 26 is not in contact with the moving surface 4.
[0084] The locking device 24 may be configured such that in the locking position ([Fig.3]), the fitting 26 is engaged with the movable surface 4 and may be held engaged with the movable surface 4 so as to prevent movement of the fitting 26 relative to the movable surface 4.
[0085] By engaged with the moving surface, we mean that the fitting is in contact with the moving surface.
[0086] In this locking position ([Fig.3]), in particular when the moving surface is in the closed position, the engagement of the fitting 26 and the moving surface 4 allows a transmission of force.
[0087] For this purpose, the fitting 26 may comprise first engagement means 36 and the movable surface 4 may comprise second engagement means 38 ([Fig.4]) configured to cooperate with each other when the locking device 24 is in the locking position and the fitting 26 is engaged with the movable surface 4 ([Fig.3]). The first and second engagement means 36, 38 may comprise grooves 360, 380 configured to cooperate with each other when the locking device 24 is in the locking position. For example, the first engagement means 36 may be arranged on the first face of the base 28 of the fitting 26 and the second engagement means 38 may be arranged on a portion of a first face of the movable surface 4 intended to engage with the fitting 26.This configuration allows significant force transmission when in the locking position, the fitting 26 is engaged with the moving surface 4.
[0088] According to an alternative embodiment, for example in the case of transmission of low forces, the first means and the second engagement means 36, 38 may comprise a smooth surface, the fitting 26 and the movable surface 4 then being able to be engaged by adhesion or friction or via bonding means such as the glue or an adhesive film, for example double-sided, placed on the fitting 26 or the movable surface 4.
[0089] The first engagement means and the second engagement means 36, 38 may be formed in one piece, respectively with the fitting 26 and the movable surface 4.
[0090] The locking device 24 may comprise clamping means 40 connecting the fitting 26 to the movable surface 4.
[0091] The clamping means 40 may be configured so as, in the unlocked position (Figures 1, 2 and 5 to 6), to allow the fitting 26 to be disengaged from the movable surface so as to allow the movement of the fitting 26 relative to the movable surface 4, for example during a rotational movement of the movable surface relative to the fixed surface, and in the locked position ([Fig. 3]), to engage the fitting 26 with the movable surface 4 and to keep the fitting 26 engaged with the movable surface 4 so as to prevent the movement of the fitting 26 relative to the movable surface 4.
[0092] For example, the clamping means 40 may be configured so as to, in the unlocked position (figures 1, 2 and 5 to 6), disengage the fitting 26 from the movable surface 4 so as to allow the movement of the fitting 26 relative to the movable surface 4.
[0093] The clamping means 40 may be movable, for example in rotation, between a first position corresponding to the unlocking position of the locking device and a second position corresponding to the locking position of the locking device.
[0094] The clamping means 40 may be configured so as to be driven from the unlocking position to the locking position so as to bring the fitting closer to the moving surface and to engage the fitting 26 with the moving surface 4, for example by pressing the fitting 26 and the moving surface 4 and to be driven from the locking position to the unlocking position so as to allow the fitting 26 to be disengaged from the moving surface 4, for example so as to disengage the fitting 26 from the moving surface 4.
[0095] The clamping means 40 may be configured to be driven between the locking position and the unlocking position by screwing / unscrewing. For example, the clamping means 40 may be screwed so as to be driven into the locking position and may be unscrewed so as to be driven into the unlocking position.
[0096] The clamping means 40 may be configured so as to be driven between the locking and unlocking position, for example by an operator, for example from the external face of the movable surface 4, i.e. the face opposite the face intended to be engaged with the fitting 26 in the locking position.
[0097] This configuration makes it possible to lock the locking device when the locking device is only accessible from one side. In the examples illustrated, the clamping means 40 may comprise at least one cage nut 42, 44, for example two cage nuts 42, 44.
[0098] The clamping means 40 may comprise a portion extending through the movable surface 4, for example in a through housing formed in the movable surface, for example in a through hole formed in the movable surface 4 and opening onto the external surface of the movable surface to allow their access (particularly visible in [Fig.5]).
[0099] When the clamping means are driven between the locking position and the unlocking position, the fitting 26 is configured to move relative to the clamping means 40, for example relative to a second portion of the clamping means, by translation, for example along an axis parallel to an axis 42', 44' of the clamping means, for example the rotation axis 42', 44' of the clamping means. The fitting 26 is configured to move relative to the clamping means, for example along the Y axis of the orthonormal reference frame ([Fig.2]) when the clamping means 40 are driven between the locking position and the unlocking position.
[0100] For this purpose, the fitting 26 may have at least one recess 46, said at least one recess 46 being configured to receive the clamping means and to allow movement of the fitting 26 relative to the clamping means, for example by translation along the Y axis when the clamping means are driven between the locking position and the unlocking position. In the examples illustrated, two recesses 46, 46' ([Fig.4]) are formed in the fitting so as to each receive a clamping means 42, 44, for example a cage nut.
[0101] The locking device 24 may comprise retaining means 48 configured to hold the clamping means 40 and the connected fitting when the locking device is in the unlocked position and for example the clamping means 40 are unscrewed. In the examples illustrated, this configuration makes it possible to maintain the connection between the fitting 26 and the clamping means 40 and to prevent the fitting 26 from becoming detached from the clamping means 40, while allowing the fitting 26 to move relative to the movable surface 4.
[0102] In the illustrated examples, the retaining means 48 may comprise a plate 50 which may extend under the second face of the base 28 of the fitting 26 ([Fig.5]) and which may have two openings (not visible) in which the clamping means 40 are engaged, for example each cage nut 42, 44. The retaining means 48 may comprise fixing means 52, 54 configured to fix the clamping means 40 to the plate 50, for example two screens respectively fixing each cage nut 42, 44 to plate 50.
[0103] In the unlocked position, the fitting 26 and the movable surface 4 can be kept disengaged from each other manually, for example by pressing on the nuts 42, 44.
[0104] In an alternative embodiment, the locking device 24 may comprise elastic means 56 configured so as to, in the unlocked position ([Fig.l], 2 and 4 to 6), exert a force on the fitting 26 so as to disengage the fitting 26 from the movable surface 4 and to keep the fitting 26 disengaged from the movable surface 4.
[0105] This configuration is particularly advantageous, to ensure disengagement of the fitting 26 and the movable surface 4 when the locking device 24 is in the unlocked position, for example when the fitting 26 and the movable surface 4 comprise grooves 360, 380.
[0106] Furthermore, these elastic means 56 may be configured so as to allow the fitting 26 to be engaged with the movable surface 4, when the locking device is in the locking position. For example, the elastic means 56 may be configured so that the force that they apply to the fitting 26 is less than the tensile force applied by the clamping means 40 to the fitting 26 when the locking device is in the locking position.
[0107] In a first embodiment illustrated in Figures 1 to 3, the elastic means 56 may comprise a spring blade 58 which may extend at least partly between the fitting 26 and the movable surface 4.
[0108] In a second embodiment illustrated in Figures 4 and 5, the elastic means 56 may comprise at least one compression spring 60, for example two compression springs 60, 60'.
[0109] In a first variant embodiment illustrated in [Fig. 4], each compression spring 60, 60' may be arranged around one of the clamping means 40, for example around one of the cage nuts 42, 44 and may comprise a portion connected to the fitting 26 and a portion connected to the movable surface 4. In a second variant embodiment illustrated in [Fig. 5], the fitting 26 may comprise pins 62, for example two pins 62 extending from the first face of the base 28 of the fitting 26 and configured to each engage, for example in the locking position, in a groove 64, for example one of the two grooves formed in the movable surface 4. Each compression spring 60, 60' may be arranged around one of the pins 62 of the fitting 26 and may comprise a portion connected to the fitting 26 and a portion connected to the moving surface. Alternatively, the moving surface 4 may comprise the pins, and the fitting 26 may have the grooves.
[0110] In a third embodiment illustrated in [Fig.6], the elastic means 56 may comprise at least one torsion spring 66 and may be arranged on the connecting device 14 for example on the second connecting rod 20 of the connecting device 14. In the example illustrated in [Fig.5], the elastic means 56 comprise two torsion springs 66, 66', arranged on the second connecting rod 20 of the connecting device 14, on each of the ends of the second connecting rod 20 of the connecting device 14. The first torsion spring 66 may comprise one end connected to a first end of the second connecting rod 20 and one end connected to the fixed surface 2, and the second torsion spring 66' may comprise one end connected to the second end of the second connecting rod 20 and one end connected to the first connecting rod 18.
[0111] The elastic means 56 can be configured so that they can be dismantled, for example once the position of the fitting 26 relative to the movable surface 4 has been adjusted. This allows a weight saving.
[0112] The locking device 24 is configured so as to, in the unlocked position, allow the movement of the fitting 26 by translation relative to the movable surface 4, for example during a rotational movement of the movable surface relative to the fixed surface. For example, the locking device 24 is configured so as to, in the unlocked position, allow the movement of the fitting 26 by translation along the X axis of the orthonormal reference frame ([Fig.2]) relative to the movable surface 4, for example during a rotational movement of the movable surface relative to the fixed surface.
[0113] For example, each recess 46, 46' of the fitting 26, which is configured to receive the clamping means, can be configured so as to allow movement of the fitting 26 relative to the clamping means, and therefore relative to the movable surface, the clamping means being fixed relative to the movable surface in the unlocked position.
[0114] In the illustrated examples, when the locking device is in the unlocked position, the clamping means 40 as well as the retaining means comprising the plate 50 and the fixing means 52, 54 are fixed relative to the movable surface 4, for example during a rotational movement of the movable surface relative to the fixed surface.
[0115] The recesses 46, 46' provided in the fitting 26 are dimensioned, for example form a space allowing, for example allowing a movement of the fitting 26 relative to the clamping means 40 and to the movable surface 4, for example by translation along an axis orthogonal to the axis of the clamping means, for example along the X axis of the orthonormal reference frame ([Fig.2]), when the locking device is in the unlocked position.
[0116] This configuration can be advantageous when the connecting device 14 comprises two connecting rods 18, 20 articulated as in the examples illustrated. locking device 24 could be configured so as to, in the unlocked position, allow the movement of the fitting by translation along two axes, for example along the X axis and the Z axis of the orthonormal reference frame ([Fig.2]).
[0117] The locking device 24 can be configured so as to, in the unlocked position, allow the movement of the fitting 26 relative to the movable surface 4 according to one or two degrees of freedom in translation, for example according to axes distinct from the axes of the clamping means 40.
[0118] The movement of the fitting 26 may be limited by the distance between the walls delimiting each of the recesses 46, 46' of the fitting 26. The fitting 26 may for example be moved, for example by translation relative to the moving surface, until the clamping means come into abutment against one of the walls delimiting the recesses 46, 46'.
[0119] The operation of the assembly 1 is described and may correspond for example to the first assembly of the assembly 1 for example to the first assembly of the mobile surface 4.
[0120] As illustrated in [Fig.l], the movable surface 4 may be in the open position, i.e. a position in which the movable surface 4 is distal to the fixed surface 2. The locking device is in the unlocked position so as to allow the fitting 26 to be able to move relative to the movable surface 4, for example during a rotation of the movable surface relative to the fixed surface from the open position ([Fig.l]) to the closed position ([Fig.2]).
[0121] In the unlocked position, the clamping means 40, 42, 44 are unscrewed and the fitting 26 is disengaged and kept disengaged from the movable surface 4, for example via the elastic means 56.
[0122] The movable surface 4 can be rotated relative to the fixed surface 2 between the open position ([Fig.l]) and the closed position ([Fig.2]). During this movement, the fitting 26 moves by itself relative to the fixed surface, so that once the movable surface is in the closed position, the fitting 26 is correctly positioned relative to the movable surface. This ensures the correct positioning of the connecting device between the movable surface and the fixed surface.
[0123] Once the movable surface 4 is in the closed position ([Fig.2]), the locking device can be driven into the locking position ([Fig.3]), for example by screwing the clamping means 40 so as to engage the fitting 26 with the movable surface 4 and keep the fitting engaged with the movable surface. In the locking position, the fitting can no longer move relative to the movable surface, the locking position allows the fitting to be locked in the appropriate position. The locking device is configured so as to allow locking from an external surface of the movable surface, the only face accessible by an operator when the surface mobile is in the closed position.
[0124] Once the locking device is locked with the fitting 26 and therefore the connecting device 14 is adjusted in the correct position, the movable surface 4 which can be an example the hood can then be fixed to another movable surface, for example to another hood, for example by means of bolts. In this configuration, the engagement of the fitting and the movable surface allows a transmission of force.
[0125] In subsequent operations, the movable surface 4 may, for example once detached from the other movable surface, be driven again into the open position, for example for maintenance operations, the locking device being kept locked to guarantee that the correct position of the connecting device is maintained.
[0126] The connection system according to the invention makes it possible to customize the adjustment of the position of the connection device; in fact, the positioning of the cowls relative to the fan casing supporting the grid structure may differ from one cowl and from one turbomachine to another.
[0127] The present invention can be applied to any assembly, for example any propulsion assembly, comprising a fixed surface, a surface movable relative to the fixed surface, for example by pivoting, and a connecting device between the two surfaces, requiring the guarantee of good positioning of the connecting device during assembly of the movable surface relative to the fixed surface, the relative positioning of which would be hazardous. Thanks to the invention, the positioning can be done blindly.
[0128] According to one aspect, the invention relates to a propulsion assembly comprising an assembly as previously described. The propulsion assembly may comprise the thrust reverser 6 as previously described.
[0129] The propulsion assembly is illustrated in [Fig.7] and comprises a turbomachine 10 ([Fig.8]) and a nacelle 12 surrounding the turbomachine 10 and the assembly 1 as previously described (not visible). The turbomachine 10 may comprise an upstream section comprising a fan casing 2' surrounding blades of a fan and a downstream section comprising a combustion chamber.
[0130] The nacelle 12 may comprise an upstream section 70 corresponding to an air inlet of the nacelle, a middle section 72 intended to surround the fan of the turbomachine and comprising a fan cowl, a downstream section 74 housing thrust reverser means and intended to surround the combustion chamber of the turbomachine, the upstream and downstream of the nacelle being defined by reference to the direction of flow of the air flow F in the nacelle, the upstream corresponding to a part of the nacelle through which the air flow enters and the downstream corresponding to an ejection zone of said air flow. The nacelle may be terminated by an ejection nozzle whose outlet is located downstream of the turbomachine.
[0131] The nacelle may be a D-duct type nacelle, i.e. the downstream section of which is made in the form of two cowls, movable in translation so as to uncover the deflection grids. These cowls 4' are also mounted so as to be able to be opened "butterfly-style", i.e. pivotally mounted, in particular during maintenance operations, then closed, by pivoting around a substantially longitudinal hinge line located near a pylon connecting to an aircraft. According to one example, the movable surface may be a movable cowl of the downstream section of the nacelle and the fixed surface may be a fixed surface of the propulsion assembly, for example the grid structure of the thrust reverser. The assembly may comprise a hinge 80, arranged for example in the upper part of the movable cowl and configured to allow the cowl to be opened, for example for maintenance operations ([Fig. 10]).The covers may be movable in rotation along an axis substantially colinear with the longitudinal axis 21 of the propulsion assembly. The assembly may also comprise a lock 90, arranged for example in the lower part of the movable cover and providing for example a tangential clamping between the cover 4 and a beam 100 of the assembly 1 or of the propulsion assembly 7 in order to keep the cover closed / locked.
[0132] In another example, the fixed surface may be the grid structure of the thrust reverser and the movable surface may be a pivoting cowl of the midsection of the nacelle such as a fan cowl.
[0133] In another example, the fixed surface may be the fan casing of the turbomachine and the surface movable relative to the fixed surface may be a movable cowl of a middle section 72 of the nacelle, for example a fan cowl, or a movable cowl of a downstream section 74 of the nacelle, for example a thrust reverser cowl.
[0134] In another example, the fixed surface 2 may be, for example, the air inlet 70 of the nacelle and the movable surface 4 relative to the fixed surface may be a movable mid-section cowl 72 of the nacelle, for example the fan cowl.
[0135] In another example, the fixed surface 2 may be, for example, a movable cowl of a middle section 72 of the nacelle, for example a fan cowl, and the movable surface 4 relative to the fixed surface may be a cowl of a downstream section 74 of the nacelle, for example a cowl of a thrust reverser. In this example, the thrust reverser cowl may be movable, for example in rotation, for example in pivoting relative to the fan cowl, so as to be able to open the thrust reverser cowl for maintenance operations. The nacelle of the propulsion assembly may comprise the assembly as previously described.
[0136] As illustrated in [Fig.10], the assembly may further comprise the hinge 80 arranged for example in a first part, for example an upper part, of the movable cover, forming for example the movable surface of the assembly 1, the hinge 80 being configured to allow the opening of the movable cover, for example for maintenance operations. For example, the hinge is arranged at a first circumferential end of the movable cover. The movable cover 4 may be movable relative to a fixed structure of the propulsion assembly forming for example the fixed surface of the assembly 1. The assembly 1 further comprises the lock 90 arranged in a second part, for example a lower part, of the movable cover, the lock 90 being configured to keep the cover closed, for example selectively. For example, the lock is arranged at the other circumferential end of the movable cover.
[0137] The upper part and lower part are understood to mean the upper and lower part of the hood during normal use of the hood, for example during normal use of a propulsion unit comprising the hood. The second part is different from the first part.
[0138] For example, the hinge 80 is circumferentially opposite the lock 90, for example relative to the cover 4. The lock 90 is distinct from the locking device 24 of the connection system. For example, the connection system 3 is proximal to the hinge 80.
[0139] For example, the locking device of the connection system 3 is proximal to the hinge 80. Such a configuration can, for example, also be applied to the second cover illustrated in [Fig. 10].
Claims
1.
2.
3. Claims Assembly (1) for aircraft propulsion assembly comprising: - a fixed surface (2) - a movable surface (4) relative to the fixed surface (2), such as a movable cowl (4') of a nacelle (12) intended to surround a turbomachine (10) of the propulsion unit, - a connecting system (3) configured to connect the fixed surface and the movable surface and to accommodate movement of the movable surface relative to the fixed surface, comprising: • a connecting device (14) connected to the fixed surface (2) and allowing the movement of the movable surface (4) relative to the fixed surface (2), and • a locking device (24), for example forming a device for adjusting a position of the movable surface relative to the fixed surface, connecting the connecting device (14) to the movable surface (4), the locking device (24) comprising a connecting element (26) on which the connecting device (14) is mounted, wherein the locking device (24) is configured to - in an unlocked position, allow the movement of the connecting element (26) relative to the movable surface (4) during a movement of the movable surface (4) relative to the fixed surface (2), and - in a locking position, prevent the movement of the connecting element (26) relative to the movable surface (4). Assembly (1) according to claim 1 in which the movable surface (4) is movable at least according to one degree of freedom in rotation relative to the fixed surface (2). Assembly (1) according to claim 1 or 2 wherein the locking device (24) comprises clamping means (40) connecting the connecting element (26) to the movable surface (4), the clamping means clamping (40) being configured so as to: - in the unlocked position, allow the connecting element (26) to be disengaged from the movable surface (4) so as to allow movement of the connecting element relative to the movable surface during movement of the movable surface relative to the fixed surface, and - in the locked position, keep the connecting element (26) engaged with the movable surface so as to prevent movement of the connecting element relative to the movable surface.
4. An assembly (1) according to any preceding claim wherein the locking device (24) comprises elastic means (56) configured so as to, in the unlocked position, exert a force on the connecting element (26) so as to disengage the connecting element (26) from the movable surface (4), so as to allow movement of the connecting element relative to the movable surface during movement of the movable surface relative to the fixed surface.
5. Assembly (1) according to any one of the preceding claims in which the connecting device (14) is a compass (16).
6. Assembly (1) according to any one of the preceding claims in which the locking device (24) is configured so as to, in the unlocked position, allow the displacement of the connecting element (26) by translation relative to the movable surface (4) during a movement of the movable surface relative to the fixed surface.
7. Assembly (1) according to any one of claims 2 to 6 wherein the locking device (24) comprises retaining means (48) configured to keep the clamping means (40) and the connecting element (26) connected when the locking device is in the unlocked position.
8. An assembly (1) according to any one of the preceding claims wherein the connecting element (26) comprises first engagement means (36) and the movable surface (4) comprises second engagement means (38) configured to cooperate between them when the locking device is in the locking position, the first engagement means and the second engagement means comprising ridges (360, 380).
9. An assembly (1) according to any preceding claim wherein the movable surface (4) is a movable cowl of a nacelle, the assembly (1) further comprising a hinge (80) arranged in a first portion, for example an upper portion, of the movable cowl, the hinge (80) being configured to allow the movable cowl to be opened, for example for maintenance operations, the assembly (1) further comprising a lock (90) arranged in a second portion, for example a lower portion, of the movable cowl, the lock (90) being configured to selectively keep the cowl closed.
10. A propulsion assembly (8) comprising a nacelle, and an assembly (1) according to any one of the preceding claims, in which the nacelle comprises a movable cowl, the movable cowl forming the movable surface relative to the fixed surface.
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