Positioning element with recesses for a guide vane arrangement
11156127 ยท 2021-10-26
Assignee
Inventors
Cpc classification
F05D2230/644
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2250/141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/941
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/246
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D9/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D9/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01D25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a positioning element for a guide vane arrangement of a guide vane stage of a gas turbine, with at least one base section curved in the peripheral direction; a plurality of uptake openings arranged next to each other in the peripheral direction on the base section, whose aperture axis runs substantially in the radial direction and which are designed to take up a respective radially inner guide vane section; a coupling section provided on the base section, which is or can be coupled to a seal carrier of a seal arrangement. According to the invention, it is proposed that at least one recess is provided in the base section, which is arranged between two neighboring uptake openings and runs from inside to outside at least in the radial direction.
Claims
1. A positioning element for a guide vane arrangement of a guide vane stage of a gas turbine, comprising: at least one base section curved in a peripheral direction; a plurality of uptake openings arranged next to each other in the peripheral direction on the base section, whose aperture axes run substantially in a radial direction and which are designed to take up a respective radially inner guide vane section; a coupling section provided on the base section, the coupling section is configured to be coupled to a seal carrier of a seal arrangement; wherein a plurality of recesses are provided in the base section, each recess of the plurality of recesses being formed as a slot having a rectangular prism shape, and a respective one of the plurality of recesses is arranged between two respective neighboring uptake openings and runs through a radially inner face of the base section towards an outside of the base section at least in the radial direction, such that the plurality of recesses do not cut through the entirety of the base section.
2. The positioning element according to claim 1, wherein the positioning element is ring-shaped and comprises two semicircular base sections.
3. The positioning element according to claim 1, wherein the coupling section includes at least one axially front groove and one axially rear groove, which run on the base section along the peripheral direction.
4. The positioning element according to claim 3, wherein the axially front groove and the axially rear groove have substantially the same distance in the radial direction from a radially inner side of the base section.
5. The positioning element according to claim 3, wherein the axially front groove and the axially rear groove have a different distance from a radial inner side of the base section.
6. The positioning element according to claim 1, wherein each respective one of the plurality of recesses run in an axial direction between two respective uptake openings of the plurality of uptake openings.
7. The positioning element according to claim 6, wherein the plurality of recesses have a varying radial height along the axial direction, or has a uniform height.
8. The positioning element according to claim 6, wherein the plurality of recesses have a varying width along the axial direction in the peripheral direction, or has a uniform width.
9. The positioning element according to claim 1, wherein the plurality of recesses run in a peripheral direction in an axially rear region of the base section, so that from an axially rear view, substantially cylindrically shaped outer walls of the uptake openings are visible.
10. The positioning element according to claim 1, wherein the plurality of recesses are bounded in the axial direction by an axially front wall section.
11. The positioning element according to claim 1, wherein the positioning element is configured in a guide vane carrier arrangement.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
(1) The invention shall be described by way of an example and not in limiting fashion with reference to the appended figures.
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DESCRIPTION OF THE INVENTION
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(13) Whereas a recess 18 is arranged between every two neighboring uptake openings 14 in
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(15) It becomes clear from the variants of
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(17) In the base section 12 of
(18) It is evident from
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(20) The base section likewise has a coupling section 118, comprising an axially front groove 122 and an axially rear groove 124. Contrary to the first embodiment, the axially rear groove 124 is arranged radially outside on the base section 112. This altered arrangement of the axially rear groove 124 is due to the larger recesses 116 and lack of material radially inside where an axially rear groove could be formed as in the first embodiment. The axially rear groove 124 is located further radially outward in regard to the machine axis of the gas turbine than the axially front groove 122. The recesses 116 are bounded at the axial front side by an axially front wall section 117. The axially front wall section 117 here also forms the rear side or facing away side of a bottom of the axially front groove 122.
(21) The configuration shown here for the base section 112 with the recesses 116 and the coupling section 118 with the two grooves 122, 124 is optimized in that the base section 112 can be produced by an additive manufacturing process, especially by selective laser melting. The semicircular base section 112 for example can be constructed layer by layer from axial front to axial rear.
(22) Due to the altered design of the base section 112,
(23) The seal carrier 130 in the assembled state comprises the bottom section 138 arranged opposite (radially on the inside) the uptake openings 114. This bottom section passes into or surrounds an inclined cover section 140. The cover section 140 serves in particular to enable a manufacturing by selective laser melting. In the inclined cover section 140, a plurality of openings 142 are provided. These openings 142 likewise serve to enable a manufacturing by selective laser melting. Hence, the seal carrier 130 is designed such in terms of its configuration that it can be produced by an additive manufacturing process, especially by selective laser melting.
(24) What is common to both embodiments is that recesses 16, 116 are provided in the base section 12, 112, which serve to reduce the cording effect at the positioning element 10, 110. In particular, the recesses act to provide interruptions so that a radial temperature gradient cannot display its full effect along the entire circumference of the positioning element 10, 110. Moreover, the recesses serve to lessen the bending stiffness of the positioning element, which likewise reduces the cording effect.
(25) It would be appreciated by those skilled in the art that various changes and modifications can be made to the illustrated embodiments without departing from the spirit of the present invention. All such modifications and changes are intended to be covered by the appended claims.