EP4133162A1 - Ensemble d'etancheite pour une turbomachine - Google Patents
Ensemble d'etancheite pour une turbomachineInfo
- Publication number
- EP4133162A1 EP4133162A1 EP21722278.5A EP21722278A EP4133162A1 EP 4133162 A1 EP4133162 A1 EP 4133162A1 EP 21722278 A EP21722278 A EP 21722278A EP 4133162 A1 EP4133162 A1 EP 4133162A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- wiper
- sealing assembly
- angular portions
- recess
- rotation
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01D—NON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
- F01D11/00—Preventing or minimising internal leakage of working-fluid, e.g. between stages
- F01D11/02—Preventing or minimising internal leakage of working-fluid, e.g. between stages by non-contact sealings, e.g. of labyrinth type
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01D—NON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
- F01D11/00—Preventing or minimising internal leakage of working-fluid, e.g. between stages
- F01D11/08—Preventing or minimising internal leakage of working-fluid, e.g. between stages for sealing space between rotor blade tips and stator
- F01D11/12—Preventing or minimising internal leakage of working-fluid, e.g. between stages for sealing space between rotor blade tips and stator using a rubstrip, e.g. erodible. deformable or resiliently-biased part
- F01D11/122—Preventing or minimising internal leakage of working-fluid, e.g. between stages for sealing space between rotor blade tips and stator using a rubstrip, e.g. erodible. deformable or resiliently-biased part with erodable or abradable material
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05D—INDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
- F05D2240/00—Components
- F05D2240/10—Stators
- F05D2240/11—Shroud seal segments
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05D—INDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
- F05D2240/00—Components
- F05D2240/55—Seals
Definitions
- TITLE SEALING KIT FOR A TURBOMACHINE
- the present invention relates to a sealing assembly for a turbomachine.
- a turbomachine comprises numerous dynamic sealing assemblies, and in other words sealing assemblies intended to provide a seal between two parts, at least one of which is movable.
- Such a sealing assembly comprises, for example, a first element (hereinafter called “rotor element”) movable in rotation and a second element (hereinafter called “stator element”) fixed in the reference mark of the turbomachine.
- the rotor element has at least one wiper and the stator element has an abradable member extending around the wiper.
- the wiper is configured to cooperate with the abradable member.
- the wiper is mounted with radial play relative to the abradable member.
- the wiper and the abradable member move (radially and axially) with respect to each other under the effect in particular of various external stresses (thermal, aerodynamic, mechanical, etc.).
- the radial clearance is thus reduced and even becomes zero during contact between the wiper and the abradable member.
- the main contacts take place when the turbomachine is running in.
- the wiper Upon contact, the wiper penetrates and cuts through the abradable member, thus generating material chips.
- the temperature reached is all the more important as the environment in which the sealing assembly is placed is hot.
- the objective of the present invention is therefore to provide a sealing assembly limiting the heating induced by the contact between the wiper and the abradable member, while maximizing its sealing.
- the prior art also includes documents FR-A1 -3072121, EP-A1 - 1785651, FR-A1 -3078740, FR-A1 -2974842, CN-B-108266236, SU-A1- 792014 and EP-A1 -3144568. Summary of the invention
- the invention thus proposes a sealing assembly for a turbomachine comprising a first element and a second element, the first and second elements being concentric and in relative rotational movement with respect to each other around an axis of rotation X, said sealing assembly comprising at least a first wiper and an abradable member, the first wiper being annular in shape and carried by the first member, the first wiper extending radially towards the abradable member and continuously around of the axis of rotation X, the abradable member being annular in shape and carried by the second element, the abradable member extending tangentially opposite the first wiper, the first wiper comprising primary angular portions each extending tangentially along a primary angular sector, said primary angular portions each having in cross section a first constant profile, characterized in that the first wiper comprises secondary angular portions each extending tangentially along a secondary angular sector, said secondary angular portions each having in cross section a second profile different from said first profile, the number of secondary ang
- the wiper according to the invention thus comprises an alternation (or an alternating succession) of primary angular portions and secondary angular portions, and in other words two successive primary angular portions are separated from one another by a secondary angular portion.
- the alternation of primary angular portions and secondary angular portions creates a discontinuity around the axis of rotation X, conducive to cutting the abradable member and to the evacuation of material chips abradable, so as to limit the heating induced by the contacts between the wiper and the abradable member.
- Such a discontinuity also makes it possible to avoid prolonged contact between the wiper and the abradable member, and thus also to limit the heating induced by the contacts.
- sealing assemblies Compared to the prior art, such sealing assemblies have an increased service life and can be installed in environments with a higher temperature, in particular to the benefit of the performance of the turbomachine.
- the structure of the abradable member of such sealing assemblies can be evolved.
- the decrease in temperature makes it possible to consider the replacement of honeycomb structures by structures in compact layers.
- honeycomb structures withstand higher temperatures but induce more pressure drop.
- Such sealing assemblies also make it possible to limit the release of heat, and therefore to limit the thermal expansion of the surrounding parts.
- the surrounding parts thus have an increased lifespan.
- the sealing assembly according to the invention may include one or more of the following characteristics and / or steps, taken in isolation from one another or in combination with one another:
- the second profile of at least one of the secondary angular portions varies from one angular position to another;
- each secondary portion comprises at least one sharp edge
- each secondary portion includes a first recess open radially outwards
- the first recess opens onto at least one side surface of the first wiper
- each secondary portion comprises a second recess symmetrical to the first recess with respect to a median plane M of the first wiper, the median plane M being perpendicular to the axis of rotation X of the sealing assembly; the second recess being distinct from the first recess
- the first recess has the shape of a circular segment
- Each of the first and second recesses is blind (or not opening);
- each secondary portion comprises a central ridge which is centered on a median plane M, the central ridge being delimited laterally by each of the first and second recesses, the median plane M being perpendicular to the axis of rotation X of the assembly of waterproofing;
- Each of the first and second recesses is defined by a sharp edge, the sharp edge having a closed curved contour
- Each of the first and second recesses comprises a bottom having a connecting fillet
- the first recess forms a flat on an outer surface of the first wiper
- each of the two sharp edges is substantially parallel to the axis of rotation X of the sealing assembly
- Each of the first and second recesses is partially or locally emerging (or passing through), so as to form a passage or a communication between the first and second recesses;
- each secondary portion includes a tapered portion (or ridge) and a pointed portion separated from each other by the passage and bordered by the first and second recesses;
- the tapered portion comprises a biconcave section and a biconvex section
- the biconcave section is adjacent to a primary portion and the biconvex section is tangentially disposed between the biconcave section and the passage;
- the passage is tangentially delimited by two sharp radial edges, at namely a first sharp edge of the pointed portion and a second sharp edge of the biconvex section of the tapered portion;
- Each of the first and second recesses is defined by a sharp edge, the sharp edge having an open curved contour;
- Each secondary portion comprises a plate attached to an outer surface of a body of the first wiper
- the plate comprises a base resting on the outer surface of the body and two facing wings each extending from the base, each of the wings resting on a lateral surface of the body;
- the base is tangentially bounded by two sharp edges each in the form of a sharp edge
- each of the two sharp edges is substantially parallel to the axis of rotation X of the sealing assembly
- Said sealing assembly comprises a second independent wiper and axially distant from the first wiper, the abradable member extending tangentially opposite the second wiper.
- the present invention also relates to a turbomachine comprising at least one sealing assembly as described above.
- Figure 1 is a schematic view in axial section of a turbomachine
- Figure 2 is a perspective view of a sealing assembly according to a first embodiment of the invention
- FIG.3 Figure 3 is a front view of the assembly of Figure 2;
- Figure 4 is a detail view according to the reference mark C of Figure 3;
- Figure 5 is a sectional view along the sectional plane AA of Figure 4;
- Figure 6 is a sectional view along the section plane B-B of Figure 3;
- Figure 7 is a perspective view of a sealing assembly according to a second embodiment of the invention.
- Figure 8 is a front view of the assembly of Figure 7;
- FIG. 9 is a detail view along the reference mark C of FIG. 8;
- Figure 10 is a sectional view along the sectional plane A-A of Figure 9;
- Figure 11 is a sectional view along the section plane B-B of Figure 8.
- Figure 12 is a perspective view of a wiper of a seal assembly according to a third embodiment of the invention.
- FIG.13 is a detail perspective view of the wiper of Figure 12;
- Figure 14 is a top detail view of the wiper of Figure 12;
- Figure 15 is a side detail view of the wiper of Figure 12;
- Figure 16 is a detail front view of the wiper of Figure 12;
- Figure 17 is a perspective view of a wiper of a seal assembly according to a fourth embodiment of the invention.
- FIG.18 Figure 18 is a detail perspective view of the wiper of Figure 17;
- Figure 19 is a top detail view of the wiper of Figure 17;
- FIG.20 Figure 20 is a side detail view of the wiper of Figure 17;
- Figure 21 is a detail front view of the wiper of Figure 17.
- a bypass turbomachine 32 which conventionally comprises from upstream to downstream, in the direction of gas flow, a ducted fan 33 and an engine comprising a low pressure compressor 34, a high pressure compressor 35, a combustion chamber 36, a high pressure turbine 37 and a low pressure turbine 38.
- the rotors of the low pressure compressor 34 and of the low pressure turbine 38 are connected by a low pressure shaft 39 and form with it a low pressure body.
- the rotors of the high pressure compressor 35 and of the high pressure turbine 37 are connected by a high pressure shaft 40 and form with it a high pressure body.
- the low pressure shaft 39 and the high pressure shaft 40 are coaxial and movable in rotation about an axis of rotation X '.
- the air flow generated by the fan is divided, by a fixed structure of the turbomachine 32, into a primary air flow F1 which enters a primary duct 41 of the engine and a secondary air flow F2 which flows in a secondary stream 42 disposed around the engine.
- a sealing assembly 1 for a turbomachine 32 comprising a first element 2 and a second element 3.
- the first and second elements 2, 3 are concentric and in relative rotational movement with respect to one another. to the other about an axis of rotation X.
- the sealing assembly 1 comprises at least one wiper 4a-4d and an abradable member 5.
- the wiper 4a-4d is annular in shape and carried by the first element 2
- the wiper 4a-4d extends radially towards the abradable member 5 and continuously around the axis of rotation X.
- the abradable member 5 is annular in shape and carried by the second element 3.
- the abradable member 5 extends tangentially opposite the wiper 4a-4d.
- axial or “axially” is meant any direction parallel to the axis of rotation X, and by “radial” or “radially” any direction perpendicular to the axis of rotation X.
- the first element 2 is movable in rotation about the axis of rotation X and the second element 3 is fixed.
- the second element 3 extends around the first element 2.
- the first element 2 of the sealing assembly is for example a flange disposed between two movable wheels of a turbine 37, 28 of the turbomachine 32. and the second element 3 is a distributor of the corresponding turbine.
- the axis of rotation X of the seal assembly is coaxial with the axis of rotation X ′ of the turbomachine 32.
- the first element is movable in rotation about the axis of rotation X and the second element is fixed.
- the first element extends around the second element.
- the first element is movable in rotation in a first direction of rotation and the second element is movable in rotation in a second direction of rotation which is opposite to the first direction of rotation, the first and second elements thus being counter-rotating.
- the embodiments illustrated in the figures correspond to the first configuration, namely the first element 2 is movable in rotation about the axis of rotation X and the second element 3 is fixed.
- the second element 3 extends around the first element 2.
- the sealing assembly 1 comprises a single wiper 4a-4d.
- the sealing assembly can of course include several wipers.
- the wicks are then carried by the first element.
- the abradable member extends tangentially opposite the different wipers.
- each wiper comprises the technical characteristics of the invention.
- the first element 2 and the wiper 4a-4d form the rotor part of the sealing assembly 1.
- the first element 2 which carries the wiper 4a-4d is in the form of a sole.
- the wiper 4a-4d is disposed outside the first element 2.
- the wiper 4a-4d extends radially outwards from the first element 2, and in other words towards the abradable member 5.
- the first element 2 is here of rectangular section and integral with the body of the wiper 4a-4d.
- the wiper 4a-4d comprises an annular body 7 extending continuously around the axis of rotation X.
- the body 7 comprises a base 8 contiguous to the first element 2 and an apex defined by an outer surface 9.
- the body 7 is delimited laterally by two lateral surfaces 10.
- the second element 3 and the abradable member 5 form the stator part of the sealing assembly 1.
- the second member 3 which carries the abradable member 5 is in the form of 'a ring.
- the abradable member 5 is disposed inside the second element 3.
- the abradable member 5 extends around the wiper 4a-4d.
- the second element 3 is here of rectangular section and distinct from the abradable member 5, the abradable member 5 thus being attached to the second member 3.
- the abradable member 5 is annular and is formed by the abradable material.
- the second element 3 and the abradable member 5 are not shown in Figures 12 to 21 for reasons of clarity, they are identical in all of Figures 2 to 21.
- the abradable member 5 may be in the form of a layer (a coating or a lining), homogeneous or heterogeneous, obtained by thermal spraying (in particular by plasma spraying).
- the layer is for example made from a CoNiCrAlY alloy.
- the abradable member 5 can also be in the form of an alveolar or honeycomb structure.
- honeycomb structures have the advantage of resisting higher temperatures than those supported by solid-layered structures.
- honeycomb structures generally induce an additional pressure drop due to the presence of the alveoli.
- the wiper 4a-4d comprises primary angular portions 11 (hereinafter referred to as "primary portions”) each extending tangentially along a primary angular sector 1 T.
- the primary portions 11 each have in cross section a first constant profile 12.
- the first constant profile 12 and common to all of the primary portions 11 is substantially triangular (see Figure 6).
- the body 7 of the wiper 4a-4d then gradually thins from the base 8 to the top (defined by an outer surface 9).
- first profile 12 constant and common to all of the primary portions 11 could of course have another shape in cross section, for example trapezoidal.
- the primary angular sector 1 T of each of the primary portions 11 is defined in particular by an angle at the center a.
- the primary angular sectors 1 T are shown in dotted lines in the figures.
- the wiper 4a-4d also comprises secondary angular portions 13 (hereinafter called “secondary portions”) each extending tangentially along a secondary angular sector 13 ′.
- the secondary portions 13 each have in cross section a second profile 14 different from the first profile 12.
- the number of secondary angular portions 13 is equal to the number of primary angular portions 11.
- the secondary angular portions 13 are interposed between the primary angular portions 11.
- the wiper 4a-4d according to the invention thus comprises an alternation (or an alternating succession) of primary portions 11 and of secondary portions 13, and in other words two successive primary portions 11 are separated from one another by a secondary portion 13.
- the alternation of primary portions 11 and secondary portions 13 creates a discontinuity around the axis of rotation X, conducive to the cutting of the abradable member 5 and to the removal of chips of abradable material. Such a discontinuity also makes it possible to avoid prolonged contact between the wiper 4a-4d and the abradable member 5, and thus to limit the heating induced by the contacts.
- each of the secondary portions 13 is defined in particular by an angle at the center b.
- the number of primary and secondary portions per wiper can vary and depends on several parameters, and in particular on the materials, of the second profile, of the speed of rotation of the first element.
- the secondary portions can have different geometric and dimensional characteristics.
- the secondary portions can be identical in groups (two, three, etc.) and evenly distributed around the axis of rotation X, so as to balance the first element, and in other words avoid unbalance.
- all of the secondary portions are identical to each other, so as to balance the first element.
- the secondary portions are distributed regularly around the axis of rotation X, so as to balance the first element.
- the wiper has a median plane of symmetry M perpendicular to the axis of rotation X, so as to balance the first element.
- the second profile 14 of a secondary portion 13 is different from the first profile 12 common to the primary portions 11.
- the second profile of a secondary portion can be constant of a position angular to another.
- each secondary portion comprises at least one sharp edge (cutting edge, cutting edge or projecting edge).
- cutting edge cutting edge or projecting edge
- the sharp edge can be parallel to the axis of rotation X or inclined at an acute angle to the axis of rotation X.
- the sharp edge can for example be obtained by adding or removing material to the level of the body of the wiper.
- the sharp edge can also be obtained by adding a plate to the body of the wiper.
- Each secondary portion may include a first recess open radially outwardly.
- the first recess of each secondary portion can lead to at least one side surface of the wiper.
- the first recess of each secondary portion may have the shape of a circular segment.
- the first recess of each secondary portion can form a flat on an outer surface of the wiper.
- Each secondary portion can include a second recess symmetrical to the first recess with respect to a median plane M of the wiper.
- the median plane M is perpendicular to the axis of rotation X of the seal assembly.
- the recess or recesses create one or more voids which facilitate the removal of the abradable material chips from the seal assembly, and therefore limit the heating induced by the contacts.
- Each secondary portion may include a plate attached to an exterior surface of the body of the wiper.
- the wafer may include a base and two opposing wings each extending from the base. The base is then supported on the outer surface of the body and each of the wings is supported on a lateral surface of the body.
- the wiper 4a of the sealing assembly 1 comprises three identical secondary portions 13 distributed regularly around the axis of rotation X.
- the secondary angular sector 13 'of each secondary portion 13 has an angle at the center b of about 12 °.
- each secondary portion 13 has in cross section a second T-shaped profile 14.
- each secondary portion 13 comprises two recesses 17a, 18a symmetrical with respect to the median plane M of the wiper 4a.
- Each secondary portion 13 (or secondary angular sector 13 ′) is angularly delimited by each of the tangential ends of the recesses 17a, 18a.
- Each recess 17a, 18a is open radially outwards and opens onto a side surface 10 of the body 7 of the wiper 4a.
- Each recess 17a, 18a is blind (or not opening), and in other words the two recesses 17a, 18a do not communicate with each other.
- Each recess 17a, 18a has the shape of a circular segment.
- the body 7 thus comprises a central ridge 21 (centered on the median plane M) delimited laterally by each of the recesses 17a, 18a.
- Each recess 17a, 18a is defined by a sharp edge 15a.
- the sharp edge 15a of each recess 17a, 18a has a closed curved contour.
- Each recess 17a, 18a comprises a bottom 22 here having a connecting fillet 23.
- the wiper 4b of the sealing assembly 1 comprises four identical secondary portions 13 distributed regularly. around the axis of rotation X.
- the secondary angular sector 13 'of each secondary portion 13 has an angle at the center b of about 25 °.
- each secondary portion 13 has in cross section a second trapezoidal profile 14.
- each secondary portion 13 comprises a recess 17b emerging or crossing.
- Each secondary portion 13 (or secondary angular sector 13 ') is angularly delimited by each of the tangential ends of the recess 17b.
- the recess 17b forms a flat 24 (or flat face) on the outer surface 9 of the wiper 4b.
- the flat 24 is tangentially delimited by two sharp edges 15b each in the form of a sharp edge.
- the sharp edges 15b are substantially parallel to the axis of rotation X.
- the second embodiment has the advantage of being simple to manufacture.
- the wiper 4c of the sealing assembly 1 comprises six identical secondary portions 13 distributed regularly around the axis of rotation X.
- the secondary angular sector 13 'of each secondary portion 13 has an angle at the center b of about 15 °.
- each secondary portion 13 has in cross section a second evolving complex profile 14.
- each secondary portion 13 comprises two recesses 17c, 18c symmetrical with respect to the median plane M of the wiper 4c.
- Each secondary portion 13 (or secondary angular sector 13 ') is angularly delimited by each of the tangential ends of the recesses 17c, 18c.
- Each recess 17c, 18c is open radially outwards and opens onto a lateral surface 10 of the body 7 of the wiper 4c.
- Each recess 17c, 18c is partially or locally opening out (or passing through), so as to form a passage 25 or a communication between the two recesses 17c, 18c.
- the body 7 thus comprises a tapered portion 26 (or ridge) and a pointed portion 27 separated from one another by the passage 25 and bordered by the recesses 17c, 18c.
- the tapered portion 26 comprises a biconcave section 28 and a biconvex section 29.
- the biconcave section 28 is adjacent to a primary portion 11 and the biconvex section 29 is tangentially disposed between the biconcave section 28 and the passage 25.
- the passage 25 is delimited tangentially by two radial sharp edges, namely a first sharp edge of the pointed portion 27 and a second sharp edge of the biconvex section 29 of the tapered portion 26.
- Each recess 17c, 18c is defined by a sharp edge 15c.
- the sharp edge 15c of each recess 17c, 18c has an open curved outline.
- Each recess 17c, 18c comprises a bottom 30 here having a connecting fillet 31.
- the recesses described in the first, second and third embodiments can be made by machining on machine tools (eg, a CNC machine) via various operations.
- machine tools eg, a CNC machine
- the recesses may be machined before or after the deposition of the protective coating.
- the wiper 4d of the sealing assembly 1 comprises eight identical secondary portions 13 distributed regularly around the axis of rotation X.
- the secondary angular sector 13 'of each secondary portion 13 has an angle at the center b of about 10 °.
- each secondary portion 13 has in cross section a second constant complex profile 14.
- each secondary portion 13 comprises a plate 16 attached to the outer surface 9 of the body 7 of the wiper 4d.
- Each secondary portion 13 (or secondary angular sector 13 ') is angularly delimited by each of the tangential ends of the wafer 16.
- the wafer 16 has a V-shaped profile in cross section.
- the wafer 16 overlaps the body 7 of the wiper 4d.
- the plate 16 comprises a base 19 and two opposite wings 20 each extending from the base 19.
- the base 19 is then supported on the outer surface 9 of the body 7 and each of the wings 20 is supported on a lateral surface 10. of the body 7.
- the plate 16 has a constant thickness but it could be scalable.
- the base 19 is tangentially delimited by two sharp edges 15d each in the form of a sharp edge.
- the sharp edges 15d are substantially parallel to the axis of rotation X.
- the elements of the sealing assembly are generally made of one or more heat resistant materials, for example a metallic material (high performance alloy or superalloy) or a ceramic material.
- the material or materials used depend in particular on the temperature of the environment in which the sealing assembly is placed.
- the wiper (s) may include one or more protective surface coatings.
- the protective coating (s) will generally protect the wiper from wear and temperature during contact.
- the protective coating comprises, for example, titanium dioxide.
- the body of the wiper can be in one piece (or in one piece).
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Sealing Using Fluids, Sealing Without Contact, And Removal Of Oil (AREA)
- Turbine Rotor Nozzle Sealing (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR2003636A FR3109182B1 (fr) | 2020-04-10 | 2020-04-10 | Ensemble d’etancheite pour une turbomachine |
| PCT/FR2021/050577 WO2021205099A1 (fr) | 2020-04-10 | 2021-04-01 | Ensemble d'etancheite pour une turbomachine |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4133162A1 true EP4133162A1 (fr) | 2023-02-15 |
Family
ID=72178659
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21722278.5A Pending EP4133162A1 (fr) | 2020-04-10 | 2021-04-01 | Ensemble d'etancheite pour une turbomachine |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US12031444B2 (fr) |
| EP (1) | EP4133162A1 (fr) |
| CN (1) | CN115516189B (fr) |
| FR (1) | FR3109182B1 (fr) |
| WO (1) | WO2021205099A1 (fr) |
Family Cites Families (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| SU792014A1 (ru) * | 1978-12-13 | 1980-12-30 | Предприятие П/Я М-5906 | Лабиринтное уплотнение |
| FR2893359A1 (fr) | 2005-11-15 | 2007-05-18 | Snecma Sa | Lechette annulaire destinee a un laryrinthe d'etancheite, et son procede de fabrication |
| EP2385215A1 (fr) * | 2010-05-05 | 2011-11-09 | Alstom Technology Ltd | Ailette de plateau légère pour pale de rotor |
| FR2974842B1 (fr) * | 2011-05-05 | 2015-07-03 | Snecma | Joint d'etancheite dans une turbomachine, comprenant des lechettes mobiles devant de l'abradable |
| US9163519B2 (en) * | 2011-07-28 | 2015-10-20 | General Electric Company | Cap for ceramic blade tip shroud |
| DE102015217670A1 (de) * | 2015-09-15 | 2017-03-16 | Rolls-Royce Deutschland Ltd & Co Kg | Dichtungselement, Dichtungssystem mit einem Dichtungselement, Turbomaschine mit einem Dichtungssystem und Verfahren zur Herstellung eines Dichtungselements |
| US10648346B2 (en) * | 2016-07-06 | 2020-05-12 | General Electric Company | Shroud configurations for turbine rotor blades |
| FR3071540B1 (fr) | 2017-09-26 | 2019-10-04 | Safran Aircraft Engines | Joint d'etancheite a labyrinthe pour une turbomachine d'aeronef |
| FR3072121B1 (fr) * | 2017-10-06 | 2021-07-30 | Safran Aircraft Engines | Dispositif d'etancheite entre rotor et stator de turbomachine |
| CN108266236B (zh) * | 2018-01-15 | 2019-12-31 | 南京航空航天大学 | 一种周向变截面篦齿封严结构 |
| FR3078740B1 (fr) * | 2018-03-12 | 2020-04-03 | Safran Aircraft Engines | Joint d'etancheite dynamique a lechette comprenant une partie active en saillie circonferentiellement limitee |
| US10995623B2 (en) * | 2018-04-23 | 2021-05-04 | Rolls-Royce Corporation | Ceramic matrix composite turbine blade with abrasive tip |
-
2020
- 2020-04-10 FR FR2003636A patent/FR3109182B1/fr active Active
-
2021
- 2021-04-01 US US17/995,818 patent/US12031444B2/en active Active
- 2021-04-01 CN CN202180033654.2A patent/CN115516189B/zh active Active
- 2021-04-01 EP EP21722278.5A patent/EP4133162A1/fr active Pending
- 2021-04-01 WO PCT/FR2021/050577 patent/WO2021205099A1/fr not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| CN115516189B (zh) | 2025-09-30 |
| CN115516189A (zh) | 2022-12-23 |
| US20230118871A1 (en) | 2023-04-20 |
| FR3109182A1 (fr) | 2021-10-15 |
| WO2021205099A1 (fr) | 2021-10-14 |
| FR3109182B1 (fr) | 2023-03-24 |
| US12031444B2 (en) | 2024-07-09 |
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