Adapter and turbomachine

09829130 · 2017-11-28

Assignee

Inventors

Cpc classification

International classification

Abstract

An adapter for connecting a fluid line to a housing section of a turbomachine is disclosed. A lower and an upper pair of flanges are arranged offset from each other about a channel axis of a fluid channel and are arranged without a space between each other in a direction of the channel axis, where the feed-throughs of the upper pair of flanges are open circumferentially.

Claims

1. An adapter for connecting a fluid line to a housing section of a turbomachine, comprising: a core housing with a fluid channel for establishing a fluid communication between the fluid line and a housing inlet; a plurality of flanges extending from the core housing, wherein each of the plurality of flanges has a feed-through for passage of a fastener; wherein a first two of the plurality of flanges form an only single lower pair of flanges for attachment of the adapter to the housing section and wherein a second two of the plurality of flanges form an only single upper pair of flanges for connecting a connecting element of the fluid line to the adapter; wherein the lower and the upper pairs of flanges are arranged offset from each other around a channel axis of the fluid channel by 90° and are arranged without a space between each other in a direction of the channel axis; and wherein the feed-throughs of the upper pair of flanges are formed as circumferentially open slots.

2. The adapter according to claim 1, wherein the lower and upper pairs of flanges extend radially to the channel axis.

3. The adapter according to claim 1, wherein each of the upper pair of flanges in a region of the respective feed-throughs has bottom lateral stops for forming a form-fit connection with a respective fastener part that is widened relative to a respective fastener shaft.

4. The adapter according to claim 3, wherein the bottom lateral stops are wall sections respectively extending from the upper pair of flanges.

5. The adapter according to claim 1, wherein the lower pair of flanges protrudes over an underside of the core housing in the direction of the channel axis.

6. The adapter according to claim 1, wherein the feed-throughs are slots extending radially to the channel axis.

7. The adapter according to claim 1, wherein the fluid channel has a channel wall extending in the direction of the channel axis over a contact surface of the lower pair of flanges.

8. The adapter according to claim 1, wherein the core housing, relative to the channel axis, has an upper annular recess and/or a lower annular recess.

9. An adapter for connecting a fluid line to a housing section of a turbomachine, comprising: a core housing with a fluid channel; an only single lower pair of flanges and an only single upper pair of flanges extending from the core housing, wherein each of the flanges of the lower pair of flanges and the upper pair of flanges has a feed-through; wherein the lower and the upper pairs of flanges are arranged offset from each other around a channel axis of the fluid channel by 90° and are arranged without a space between each other in a direction of the channel axis; and wherein the feed-throughs of the upper pair of flanges are formed as circumferentially open slots.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

(1) FIG. 1 is a perspective top view of an adapter according to an embodiment of the invention, which is connected to a housing section of a turbomachine and provided with a connecting element of a fluid line;

(2) FIG. 2 shows a detail view of the adapter from the bird's-eye perspective;

(3) FIG. 3 is a detail view of the adapter from a low angle;

(4) FIG. 4 shows a side view of the adapter;

(5) FIG. 5 shows a side view of the adapter with a mounted fluid line connecting element; and

(6) FIG. 6 is a bottom view of the adapter with a mounted fluid line connecting element.

DETAILED DESCRIPTION OF THE DRAWINGS

(7) FIG. 1 shows an embodiment of an adapter 1 of the invention, for connecting a fluid line (not shown) to a housing section 2 of a turbomachine. The fluid line is connected to the adapter 1 via a connecting element 4 arranged to the fluid line. The housing section is, for example, a section of a low-pressure compressor housing and the fluid line is a coolant line for supplying a coolant to the low-pressure compressor. The turbomachine itself is, for example, a gas turbine and in particular an aircraft engine.

(8) The adapter 1 has a cuboid core housing 6, which is traversed by a fluid channel designated in the following figures with reference numeral 8, for establishing fluid communication between the fluid line and a housing inlet of the housing section 2. For reasons of clarity, in FIG. 1 only one longitudinally disposed channel axis K of the fluid channel 8 is shown in FIG. 1. Moreover, the adapter 1 has a lower pair of flanges 10, by means of which it and the core housing 8 are attached to the housing section 2, and an upper pair of flanges 12 to which the lead connection element 4 is connected.

(9) As shown in FIGS. 2 and 3, the fluid channel 8 traverses the core housing 6 from a top side 14 toward an underside 16. The top side 14, with the upper pair of flanges 12, forms a connecting surface 18 for a contact surface 20, numbered in FIG. 5, of piping connection element 4. If the piping connection element 4 has a central body section projecting beyond its contact face 20 or if the core housing 6 has, for example, an annular gasket, not shown, arranged between the connecting surface 18 and the contact surface 20, a corresponding upper annular recess 22 may be introduced into the top side 14. In addition, a lower annular recess 24 can be introduced in the underside 16 for exemplary weight reduction of the adapter 1. In order to reduce leakage in the region between the housing section 2 and the adapter 1, the fluid channel 8 has a channel wall 26, which is led out beyond a contact surface 28 formed by the lower pair of flanges 10 and which in the mounted state is immersed in the housing inlet (see FIG. 4 also).

(10) The pairs of flanges 10, 12 are each arranged offset from each other about the channel axis K by 90°. They have a pair of flanges aligned in the radial direction 30, 32 and 34, 36 which respectively extend from two oppositely facing side surfaces 38, 40 and 42, 44 of the core housing 6, respectively. In the direction of the channel axis K, the pair of flanges 10, 12 is arranged without any distance between each another. As will be explained further in the following, receiving spaces or free spaces 46 for receiving a fastener 48 for connecting the fluid connection element 4 are provided laterally to the lower pair of flanges, whereby the adapter 1 may be formed flat and with a low overall height.

(11) The upper flanges 12 and the upper flanges 34, 36 are flush with the top surface 14 of the core housing 6 and, with this, the shared connecting surface 18 for attaching the piping connection element 4. The connecting surface 18 is geometrically adapted to the contact surface 20 of the piping connection element 4. In the embodiment shown, the connecting surface 18 is formed flat.

(12) As shown in FIG. 4, the lower pair of flanges 10 forms, and the lower flanges 30, 32 form, a common contact surface 28, and 28a, 28b, for engagement with the housing section 2. Preferably, the contact surface 28 is geometrically adapted to the housing section in order to improve the contact to the housing section 2. In the illustrated embodiment, the contact surface 28 has a concave curvature that corresponds to a convex curvature of the housing section 2.

(13) In addition to improving the contact of the adapter 1 to the housing section 2, in the embodiment shown, the lower pair of flanges 10 protrudes on the underside 16 of the core housing 6 in the direction of the channel axis K. In this way, the core housing 6 is, in the mounted state, positioned with its underside 16 at a distance “a” from the housing section 2 shown in dashed lines, so that laying of the core housing 6 on the housing section 2 is prevented. In addition, as can be recognized from FIGS. 5 and 6, this spacing makes for easier positioning of the fastener 48.

(14) In accordance with FIGS. 2 and 3, in each flange 30, 32 and 34, 36, one feed-through 50, 52 is formed for receiving one of the fasteners 48. As shown by way of example in FIG. 5, the fastener 48 is preferably in each case a screw, which acts together with corresponding nut 54. For reasons of clarity, the feed-throughs 50, 52 as shown in FIGS. 2 and 3 are only numbered in the left lower flange 30 and the front upper flange 36.

(15) The feed-throughs 50 of the lower pair of flanges 10 are formed as slots extending radially to the channel axis K and thus formed centrally to the flanges 30, 32.

(16) The feed-throughs 52 of the upper pair of flanges 12 are formed as circumferentially open slots, which also extend radially to the channel axis K and thus are formed centrally to the upper flanges 34, 36. Thus, as are the pairs of flanges 10, 12, the upper and lower feed-throughs 50, 52 are also offset by 90° to each other. In the embodiment shown, the upper feed-throughs 52 are, in particular with respect to their front sides, open in the radial direction with respect to the channel axis K.

(17) As numbered in FIGS. 5 and 6, the upper flanges 34, 36 each have two wall sections 56, 58 oriented in the direction of the lower pair of flanges 10, which are arranged on both sides of the feed-throughs 52 and have two opposing form-fit surfaces 60, 62. The wall sections 56, 58, with their form-fit surfaces 60, 62, laterally limit the receiving spaces 46. The spacing of the form-fit surfaces 60, 62 is such that between them a fastener head 66 widened relative to a fastener shaft 64 can be arranged almost without clearance.

(18) As shown in FIG. 6, the receiving spaces 46 extend from the side surface 42 or 44 and are open at the end face and at the bottom. They are used to accommodate the fastener head 66, wherein the fastener 48 can be used for the piping connection element 4, after the adapter 1 has been attached to the housing section 2, so that the fluid line can be easily connected to the adapter 1. In the connected state of the piping connection element 4, the fasteners 48 lie with heads 66 laterally flat on the form-fit surfaces 60, 62 and are led upward with their shafts 64 in the direction of the channel axis K. One nut 54 is screwed to each of the free shaft end sections which pass through the feed-throughs 52.

(19) The wall sections 56, 58, and in particular their form-fit surfaces 60, 62, thus act as stops, and in particular as an anti-rotation fixing means for the respective fasteners 48. Preferably, the wall sections 56, 58 do not protrude over the underside 16 of the core housing 6, but extend at most up to it or close flush with it. In this way, the wall sections 56, 58 in the mounted state are also spaced from the housing section 2 by a distance “a” (see FIG. 4). The fastener heads 66, in the embodiment shown, have such a height that they also close flush with the underside 16.

(20) Disclosed is an adapter for connecting a fluid line to a housing section of a turbomachine, in which an upper and a lower pair of flanges are arranged offset to each other about a channel axis and in the direction of the channel axis, the upper flanges being arranged without spacing to the bottom flanges, wherein the feed-throughs of the upper pair of flanges are open circumferentially.

LIST OF REFERENCE CHARACTERS

(21) 1 adapter

(22) 2 housing section

(23) 4 connection element/piping connection element

(24) 6 core housing

(25) 8 fluid channel

(26) 10 lower flange pair

(27) 12 upper flange pair

(28) 14 top

(29) 16 bottom

(30) 18 connecting surface

(31) 20 contact surface

(32) 22 upper annular recess

(33) 24 lower annular recess

(34) 26 channel wall

(35) 28 contact surface

(36) 30 flange

(37) 32 flange

(38) 34 flange

(39) 36 flange

(40) 38 side surface

(41) 40 side surface

(42) 42 side surface

(43) 44 side surface

(44) 46 receiving space

(45) 48 fastener

(46) 50 feed-through

(47) 52 feed-through

(48) 54 nut

(49) 56 wall section/stop

(50) 58 wall section/stop

(51) 60 form-fit surface

(52) 62 form-fit surface

(53) 64 fastener shaft

(54) 66 fastener head

(55) a distance

(56) K channel axis

(57) The foregoing disclosure has been set forth merely to illustrate the invention and is not intended to be limiting. Since modifications of the disclosed embodiments incorporating the spirit and substance of the invention may occur to persons skilled in the art, the invention should be construed to include everything within the scope of the appended claims and equivalents thereof.