Mid-frame for a gas turbine and gas turbine
09759231 · 2017-09-12
Assignee
Inventors
Cpc classification
F01D25/265
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/545
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/246
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T50/60
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F04D29/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a mid-frame (10) for a gas turbine, having at least one outer casing element (12) and having a plurality of duct segments (16), which are arranged in succession in the radial direction on the inside of the outer casing element (12) and in the peripheral direction of the casing element (12) and by which segments, in each case, at least one duct (18) through which a gas can flow is delimited at least in the radial direction at least partially, wherein a ring element (22) that is common to the duct segments (16) and is formed in one piece is provided, by means of which the duct segments (16) are held at the outer casing element (12).
Claims
1. A mid-frame (10) for a gas turbine, having at least one outer casing element (12) and having a plurality of duct segments (16), which are arranged in succession in the radial direction on the inside of the outer casing element (12) and in the peripheral direction of the outer casing element (12) and by which segments, in each case, at least one duct (18) through which a first gas can flow is delimited at least in the radial direction at least partially, comprising a ring element (22) that is common to the duct segments (16) and is formed in one piece and the duct segments (16) are held at the outer casing element (12); the ring element (22) having a ring body (24), from which tabs (26) protrude in the radial direction inwardly, where the duct segments (16) are retained at the ring element (22) by the tabs (26), with passage openings (28) defined between the tabs (26) in the peripheral direction, openings between the tabs (26) are spaced apart from one another in the peripheral direction.
2. The mid-frame (10) according to claim 1, wherein the passage openings (28) are closed by means of a sealing device (30).
3. The mid-frame (10) according to claim 2, wherein the sealing device (30) has at least two layers (32, 34) that have respective sealing elements (36, 38) and are arranged one behind the other in the axial direction, with the sealing elements (36) of a first of the layers (32, 34) and the sealing elements (38) of a second of the layers (32, 34) being arranged offset with respect to each other in the peripheral direction and mutually overlapping partially in the axial direction.
4. The mid-frame (10) according to claim 1, further comprising: a chamber (20) that at least partially surrounds the duct (18) is delimited by the outer casing element (12) and the duct segments (16) and another gas, which has a higher pressure in comparison to the first gas, is admitted to the chamber.
5. The mid-frame (10) according to claim 3, wherein the sealing elements (36, 38) are arranged on a side (44) of the ring element (22), which faces the chamber (20).
6. The mid-frame (10) according to claim 1, wherein the duct segments (16) are each fastened to the ring element (22) by at least one screw bolt connection (50).
7. The mid-frame (10) according to claim 1, wherein the ring element (22) is retained at the outer casing element (10) by at least one screw bolt connection (50).
8. The mid-frame (10) according to claim 1, wherein the ring element (22) is arranged in the axial direction partially between the outer casing element (12) and at least one other casing element (14) of the gas turbine and is clamped between the casing elements (12, 14).
9. The mid-frame (10) according to claim 1, wherein the ring element (22) is formed in one piece.
10. The mid-frame (10) according to claim 1, wherein at least one mid-frame is a component of a gas turbine.
11. A mid-frame (10) for a gas turbine, having at least one outer casing element (12) and having a plurality of duct segments (16), which are arranged in succession in the radial direction on the inside of the outer casing element (12) and in the peripheral direction of the outer casing element (12) and by which segments, in each case, at least one duct (18) through which a first gas can flow is delimited at least in the radial direction at least partially, comprising a ring element (22) that is common to the duct segments (16) and is formed in one piece and the duct segments (16) are held at the outer casing element (12); wherein the ring element (22) has a ring body (24), from which tabs (26) protrude in the radial direction inwardly, where the duct segments (16) are retained at the ring element (22), with passage openings (28) defined between the tabs (26) in the peripheral direction, openings between the tabs (26) are spaced apart from one another in the peripheral direction; wherein the passage openings (28) are closed by means of a sealing device (30); wherein the sealing device (30) has at least two layers (32, 34) that have respective sealing elements (36, 38) and are arranged one behind the other in the axial direction, with the sealing elements (36) of a first of the layers (32, 34) and the sealing elements (38) of a second of the layers (32, 34) being arranged offset with respect to each other in the peripheral direction and mutually overlapping partially in the axial direction.
12. The mid-frame (10) according to claim 11, wherein the sealing elements (36, 38) are arranged on a side (44) of the ring element (22), which faces the chamber (20).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages, features, and details of the invention ensue from the following description of a preferred exemplary embodiment as well as on the basis of the drawings. The features and combinations of features mentioned above in the description as well as features and combinations of features mentioned below in the descriptions of the figures and/or only shown in the figures can be used not only in the respectively presented combination, but also in other combinations or by themselves, without departing from the scope of the invention.
(2) Shown are:
(3)
(4)
(5)
(6)
(7) In the figures, identical or functionally identical elements are furnished with the same reference numbers.
DETAILED DESCRIPTION OF THE INVENTION
(8)
(9) The mid-frame 10 can further comprise at least one hub element, not visible in
(10) The gas turbine, in particular an aircraft engine, comprises, for example, at least two turbine regions. A first of the turbine regions is designed as a low-pressure turbine region or low-pressure turbine, while a second of the turbine regions is designed as a high-pressure turbine region or high-pressure turbine of the gas turbine. The low-pressure turbine comprises at least one rotor, which can rotate around an axis of rotation or an engine axis relative to the outer casing element 12. The high-pressure turbine, too, comprises at least one rotor, which can rotate around the axis of rotation relative to the outer casing element 12. At least one of the rotors is mounted, for example, at the hub element so as to rotate around the axis of rotation relative to the hub element and the outer casing element 12. For this purpose, the at least one rotor is arranged, for example, at least partially in the hub element or in a hub chamber or bearing chamber that is delimited at least partially by the hub element. Shown in
(11) The mid-frame 10 comprises a plurality of duct segments, one of which, a duct segment identified by 16, can be seen in
(12) Moreover, the duct segments are arranged in succession, that is, one behind the other, in the peripheral direction of the outer casing element 12. In each case, at least one duct through which a first gas can flow is delimited at least partially by the duct segments 16 at least in the radial direction. The duct that is delimited by the duct segment 16 at least partially in the radial direction of the outer casing element 12 is identified in
(13) The gas flowing through the duct 18 exhibits a high temperature and is thus a hot gas, which is conducted from the high-pressure turbine to the low-pressure turbine by means of the duct 18. Accordingly, the duct 18 is arranged between the high-pressure turbine and the low-pressure turbine in the direction of flow of the hot gas through the duct 18, while the low-pressure turbine is arranged downstream of the high-pressure turbine and downstream of the mid-frame 10.
(14) It can further be seen in
(15) Another gas in the form of a sealing air can be admitted to the annulus (chamber 20). This means that sealing air can be fed into the chamber 20. This sealing air can flow around the respective duct segments 16 on the outer peripheral side and around the outer casing element 12 on the inner peripheral side and has a higher pressure in comparison to the hot gas, but a lower temperature. Accordingly, the sealing air acts as cooling air, by means of which the duct segments 16 and the outer casing element 12 can be cooled. The sealing air is blown into the chamber 20, for example.
(16) Now, in order to realize an especially simple mounting and manufacture of the mid-frame 10, a ring element 22, which is common to the duct segments and is formed in one piece, is provided, by means of which the duct segments 16 are held at the outer casing element 12. The ring element can be designed, in particular, in one piece. The ring element 22 can also be seen in
(17) It is especially well seen from
(18) Provided in the finished manufactured state of the mid-frame 20 is a sealing device 30, which can be seen especially well in
(19) It can be seen especially well in
(20) This means that, in each case, a sub-region 40 of a first of the sealing elements 36 and a sub-region 42 of a second of the sealing elements 36 are overlapped in the axial direction by one of the sealing elements 38 that is common to the sub-regions 40, 42. In other words, in each case, one of the sealing elements 38 overlaps respective sub-regions of two of the sealing elements 36 in the axial direction. In this way, it is possible to realize an especially advantageous sealing effect. In relation to the axial direction, the sealing elements 38 are arranged on a side of the sealing elements 36 that faces the chamber 20.
(21) Moreover, it can be seen from
(22) It can be further seen from
(23) Created by the sealing elements 36, 38 is a packet of sheet metal seals, which, for example, is accommodated at least partially in a corresponding groove 48 of the respective duct segment. In this way, on the one hand, the packet of sheet metal seals is guided. On the other hand, a guiding and positioning of the packet of sheet metal seals is brought about by a pretensioning, which is effected by means of a screw bolt connection 50 that can be seen in
(24) The screw bolt connection 50 comprises a screw element in the form of a screw bolt 52, which passes through respective passage openings 54 (
(25) The nut 56 is designed as a riveting nut, for example. Alternatively or additionally to the fastening of the duct segment 16 to the ring element 22 brought about by means of the screw bolt connection 50, a different fastening of the duct segment 16 to the ring element 22 can be provided. For example, the duct segment 16 is held at the ring element 22 in a form-fitting manner. For this purpose, for example, the duct segment 16 or the ring element 22 has a hook, which engages in a corresponding groove of the ring element 22 or of the duct segment 16. In this way, a connection between the duct segment 16 and the ring element 22 is realized by a groove-hook concept (not depicted).
(26) For the radial holding of the ring element 22 at the outer casing element 12, the outer casing element 12 has a flange 58. Moreover, the casing element 14 has a flange 60. The flange 60 is overlapped in the axial direction at least partially by the flange 58 and vice versa. The casing elements 12, 14 are joined to each other via the flanges 58, 60. Moreover, a flange of the ring element 22, which is formed by the ring body 24, for example, is arranged in the axial direction between the flanges 58, 60 and clamped between the flanges 58, 60. As a result, the duct segment 16 is retained in the radial direction at the outer casing element 12.
(27) Alternatively or additionally, another retaining of the ring element 22 at the outer casing element 12 can be provided. In this case, it is conceivable to fasten the ring element 22 by means of at least one separate screw connection, that is, a screw bolt connection, at the outer casing element 12. The ring element 22, together with its structural components, can additionally be manufactured in one piece by means of an additive manufacturing method.