EP1165940A1 - Means for securing a bucket to a turbine wheel and methods of installation - Google Patents

Means for securing a bucket to a turbine wheel and methods of installation

Info

Publication number
EP1165940A1
EP1165940A1 EP00907136A EP00907136A EP1165940A1 EP 1165940 A1 EP1165940 A1 EP 1165940A1 EP 00907136 A EP00907136 A EP 00907136A EP 00907136 A EP00907136 A EP 00907136A EP 1165940 A1 EP1165940 A1 EP 1165940A1
Authority
EP
European Patent Office
Prior art keywords
wheel
bucket
buckets
dovetails
dovetail
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.)
Granted
Application number
EP00907136A
Other languages
German (de)
French (fr)
Other versions
EP1165940B1 (en
Inventor
David Alan Caruso
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
General Electric Co
Original Assignee
General Electric Co
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by General Electric Co filed Critical General Electric Co
Priority claimed from PCT/US2000/002835 external-priority patent/WO2001057365A1/en
Publication of EP1165940A1 publication Critical patent/EP1165940A1/en
Application granted granted Critical
Publication of EP1165940B1 publication Critical patent/EP1165940B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01DNON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
    • F01D5/00Blades; Blade-carrying members; Heating, heat-insulating, cooling or antivibration means on the blades or the members
    • F01D5/30Fixing blades to rotors; Blade roots ; Blade spacers

Definitions

  • the present invention relates to axial entry dovetail attachments between buckets and the wheel of a turbine rotor and particularlv relates to an axially inserted dovetail segment for securing the final or closure bucket of a series of axially inserted buckets on a turbine rotor wheel.
  • Axial entry buckets i.e., rotor blades
  • the turbine buckets have male radially inwardly projecting dovetails for mating engagement with radially inwardly directed female dovetails on the turbine wheel.
  • the wheel dovetails are circumferentially spaced from one another about the wheel.
  • shrouds typically have overlapping protrusions that nest with shrouds of adjacent buckets
  • shrouds may have a generally Z-shaped configuration when v-ewed m a radially inward direction.
  • an axial entry dovetail segment which facilitates securement of the final or closure bucket to the rotor wheel after all of the buckets except the final closure bucket have been secured to the rotor wheel by the axial entry method.
  • the present invention is particularly useful to secure the final bucket to the rotor wheel m an axial entry system wherein the shrouds on the bucket tips preclude axial entry and securement of the final bucket.
  • an axial entry dovetail segment having generalh radially opposite male dovetails extending generally m the axial direction.
  • the rotor wheel is provided with conventional female dovetails at circumferentially spaced positions about the wheel including at a circumferential position which receives the final bucket.
  • the rotor wheel at the final bucket location about the wheel is provided with a female dovetail.
  • the radially inner male dovetail on the dovetail segment is identical to the geometry of the male dovetails on the buckets with the exception of the final bucket.
  • the opposite or radially outer male dovetail of the segment has a configuration generally complementary to the female dovetail of the final bucket.
  • the buckets with the conventional male dovetails are inserted m an axial direction into the female dovetails of the rotor wheel. This is accomplished serially about the rotor wheel.
  • this final bucket may now be inserted between adjacent buckets in a radial direction and positioned essentially between the first bucket assembled and the next to the last bucket assembled onto the wheel
  • the axial entry dovetail segment is inserted axially to engage the female dovetails of the final bucket and the rotor wheel, respectively
  • the shroud on the final bucket is able to nest m a radial direction with the covers of the adjacent buckets to form a continuous circumferential coupling of the covers maintaining the integrity of the integral cover design
  • a turbine having a rotor wheel with at least one axial entry female wheel dovetail and a bucket having a female bucket dovetail adjacent a radial inner end thereof, an axial entry dovetail segment for securing the bucket to the one wheel dovetail, comprising a segment body extending in a generalh axial direction and having generally radially opposite male dovetails extending generally m the axial direction for respective axial reception m the bucket dovetail and the wheel dovetail.
  • a turbine having a rotor wheel with axial entr ⁇ female wheel dovetails spaced one from the other circumferentiallv about the rotor wheel and a plurality of buckets for the wheel at each circumferential location of the wheel dovetails, a method of installing one of the buckets onto the wheel comprising the steps of providing a female dovetail on a radial inner end of the one bucket and inserting in an axial direction and into the bucket dovetail and one of the wheel dovetails a segment having generalh radialh opposite male dovetails to secure the one bucket and wheel to one another
  • a turbine having a rotor wheel with axial entry female wheel dovetails spaced from one another circumferentiallv about the rotor wheel and a predetermined number of buckets for securement to the wheel
  • a method of installing the buckets comprising the steps of inserting male dovetails provided on a plurality of buckets, at least one less m number than the predetermined number of buckets, in an axial direction into a corresponding number of female wheel dovetails to secure the plurality of buckets to the wheel and inserting generally radially opposite male dovetails on a dovetail segment into a female dovetail on the wheel and a female dovetail on the one bucket respectively to secure the one bucket to the wheel.
  • FIGURE 1 is a fragmentary perspective view illustrating the connections between the buckets and a rotor wheel as well as the axial entry dovetail segment of the present invention used to secure the final bucket;
  • FIGURE 2 is a perspective view of the axial entry dovetail segment
  • FIGURE 3 is an end elevational view thereof.
  • Rotor wheel 10 is rotatable about an axis and has a series of female dovetails 12 spaced circumferentially one from the other about the periphery of the wheel.
  • the female dovetails 12 extend axially, i.e , parallel to the axis of the rotor wheel and receive mating male dovetails 14 formed on the inner ends of buckets 16.
  • the buckets 16 constitute a series of blades or vanes which are acted upon by the hot gases in the flowpath of the turbine to rotate the rotor wheel
  • the radial inner ends of the buckets 16 are each provided with the male dovetails 14 which enable axial entry of the buckets to the female dovetails upon assembly of the buckets onto the rotor wheel
  • Buckets 16 also include shrouds or covers 18 at their radialh outer ends which m final assembly contact one another maintaining a continuous circumferential shroud assembly about the bucket tips Covers 18 of course rotate with the buckets 16 and rotor wheel 10
  • the covers 18 as illustrated have a generally Z-shaped configuration as viewed m a radial direction and thus interlock or nest with adjacent covers While the Z-shaped cover configuration is preferred, there are configurations of covers other than
  • the covers may have linear angled edges
  • the particular configuration of the covers is dictated to large extent by the twist and curvature of the buckets 16 which circumferentially offsets the leading and trailing edges of the bucket
  • buckets 16 are assembled serially around the wheel.
  • a first bucket 16a is assembled to the rotor wheel 10 b ⁇ axialh displacing the male dovetail 14a into the female dovetail 12a
  • the next bucket 16b is similarly assembled to the rotor wheel 10 bv axially displacing the male dovetail 14b into the female dovetail 12b ot the rotor wheel
  • the covers 18a and 18b on the bucket 16a and 16b respectively nest with one another upon such axial entry.
  • the final bucket 16y is provided with an axially extending female dovetail 20 along its radial inner end.
  • an axial entry dovetail segment 22 is provided for j oining the final bucket 16y to the rotor wheel 10 at the female dovetail connection 12v
  • the dovetail connection 12y is identical to the dovetail connections 14 spaced circumferentially about the rotor wheel 10
  • the axial entry dovetail segment 22 includes male pro j ecting dovetails 24 and 26 along radially opposite sides of the segment, the segment extending axially a distance corresponding to the axial length of the male dovetails on the buckets 16.
  • the radial innermost male dovetail 24 on segment 22 has a generally complementary shape to the female dovetail 14y, whereas the radially outer male dovetail 26 on segment 22 is generally complementary m shape to the female dovetail 20 of the final bucket 16y
  • the final bucket 16y can be assembled from a radial direction and positioned between the first bucket 16a assembled to rotor wheel 10 and the next to the last bucket 16x assembled to rotor wheel 10
  • the radially inner base of the bucket is readily disposed between the radial inner bases of the adjacent buckets 16a and 16x
  • the cover 18v of tmal bucket 16y nests between the covers 18a and l ⁇ x of the adjacent buckets
  • the axial entry dovetail segment 22 is driven axially such that the male dovetails of the segment respectively engage in the female dovetails of the final bucket 16y
  • the geometry of the radially inner male do ⁇ etail 24 of the segment 22 is the same as the female dovetails 12 on the rotor wheel That is, the hooks 25 of the dovetails are substantially complementary to one another
  • the radially outer male dovetail 26 of segment 22 is complementary m shape to the female dovetail on the final or closure buckets 16y. That is, the hooks 27 of the male dovetail are substantially complementary to the hooks of the female dovetail
  • the protrusions or tangs 28 on the segment 22 These tangs 28 provide tangential restraint in the mating final or closure bucket female dovetail. Hooks 25 and 27, of course, engage corresponding hooks in the wheel dovetail and the final bucket female dovetail m final assembly.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Turbine Rotor Nozzle Sealing (AREA)

Abstract

In a turbine having a rotor wheel (10) with axially extending female dovetails (12) spaced circumferentially one from the other about the circumference of the wheel, buckets having male dovetails (14) at their radially inner ends are axially inserted relative to the rotor wheel to secure the buckets to the wheel. Where the buckets have shrouds (18) at their radial outer ends prohibiting axial entry and assembly of the final or closure bucket onto the wheel, an axial entry dovetail segment (22) having radially opposite male dovetails is employed to secure the final or closure bucket to the wheel. The final bucket includes a female dovetail at its radial inner end while the axial entry dovetail segment (22) has radial inner and outer male dovetails. By radially inserting the final bucket between adjacent buckets nesting its cover with the covers of adjacent blade covers, axial insertion of the segment with the male dovetails engaging the female dovetails of the final bucket and rotor wheel finally secures the final bucket to the rotor wheel.

Description

MEANS FOR SECURING A BUCKET TO A TURBINE WHEEL AND METHODS OF INSTALLATION
TECHNICAL FIELD
The present invention relates to axial entry dovetail attachments between buckets and the wheel of a turbine rotor and particularlv relates to an axially inserted dovetail segment for securing the final or closure bucket of a series of axially inserted buckets on a turbine rotor wheel.
BACKGROUND OF THE INVENTION
Axial entry buckets, i.e., rotor blades, are assembled onto a turbine wheel by sliding the buckets along the rotor axis into mating dovetails on the turbine wheels. In prior assemblies, the turbine buckets have male radially inwardly projecting dovetails for mating engagement with radially inwardly directed female dovetails on the turbine wheel. The wheel dovetails are circumferentially spaced from one another about the wheel. Axial entry buckets on turbine wheels have proven quite satisfactory m assembly and use
Certain turbine designs, however, require integral covers or shrouds at the bucket tips. Typically the shrouds have overlapping protrusions that nest with shrouds of adjacent buckets For example, certain shrouds may have a generally Z-shaped configuration when v-ewed m a radially inward direction.
Should the buckets be assembled seπallv around the wheel using the axial entry dovetail system, the protrusions of adjacent shrouds, tvpicallv the first assembled and next to the last assembled buckets, prevent assembly of the last axial entry bucket from either the upstream or downstream sides of the wheel. The blocking shroud protrusions cannot be removed because the shrouds must be m contact with one another to maintain continuous circumferential coupling of the buckets at their tips m use. Consequently, securing the final or closure bucket with its shroud to the otherwise completed wheel assembly by the axial entry assembly method presents a problem..
BRIEF SUMMARY OF THE INVENTION
In accordance with the present invention, there is provided an axial entry dovetail segment which facilitates securement of the final or closure bucket to the rotor wheel after all of the buckets except the final closure bucket have been secured to the rotor wheel by the axial entry method. The present invention is particularly useful to secure the final bucket to the rotor wheel m an axial entry system wherein the shrouds on the bucket tips preclude axial entry and securement of the final bucket. To accomplish the foregoing, there is provided an axial entry dovetail segment having generalh radially opposite male dovetails extending generally m the axial direction. The rotor wheel is provided with conventional female dovetails at circumferentially spaced positions about the wheel including at a circumferential position which receives the final bucket. The final bucket, however, instead of having a male projecting dovetail for complementary engagement with the female dovetail m the rotor wheel at the final bucket location about the wheel is provided with a female dovetail. The radially inner male dovetail on the dovetail segment is identical to the geometry of the male dovetails on the buckets with the exception of the final bucket. The opposite or radially outer male dovetail of the segment has a configuration generally complementary to the female dovetail of the final bucket.
To assemble the buckets to the rotor wheel, the buckets with the conventional male dovetails are inserted m an axial direction into the female dovetails of the rotor wheel. This is accomplished serially about the rotor wheel. When all of the buckets have been secured to the rotor wheel except for the last bucket, this final bucket may now be inserted between adjacent buckets in a radial direction and positioned essentially between the first bucket assembled and the next to the last bucket assembled onto the wheel Once the final bucket has been properly located, the axial entry dovetail segment is inserted axially to engage the female dovetails of the final bucket and the rotor wheel, respectively By enabling the radial insertion of the final bucket, the shroud on the final bucket is able to nest m a radial direction with the covers of the adjacent buckets to form a continuous circumferential coupling of the covers maintaining the integrity of the integral cover design
In a preferred embodiment according to the present invention, there m provided m a turbine having a rotor wheel with at least one axial entry female wheel dovetail and a bucket having a female bucket dovetail adjacent a radial inner end thereof, an axial entry dovetail segment for securing the bucket to the one wheel dovetail, comprising a segment body extending in a generalh axial direction and having generally radially opposite male dovetails extending generally m the axial direction for respective axial reception m the bucket dovetail and the wheel dovetail.
In a further preferred embodiment according to the present invention, there is provided m a turbine having a rotor wheel with axial entr\ female wheel dovetails spaced one from the other circumferentiallv about the rotor wheel and a plurality of buckets for the wheel at each circumferential location of the wheel dovetails, a method of installing one of the buckets onto the wheel comprising the steps of providing a female dovetail on a radial inner end of the one bucket and inserting in an axial direction and into the bucket dovetail and one of the wheel dovetails a segment having generalh radialh opposite male dovetails to secure the one bucket and wheel to one another
In a still further preferred embodiment according to the present invention, there is provided m a turbine having a rotor wheel with axial entry female wheel dovetails spaced from one another circumferentiallv about the rotor wheel and a predetermined number of buckets for securement to the wheel, a method of installing the buckets comprising the steps of inserting male dovetails provided on a plurality of buckets, at least one less m number than the predetermined number of buckets, in an axial direction into a corresponding number of female wheel dovetails to secure the plurality of buckets to the wheel and inserting generally radially opposite male dovetails on a dovetail segment into a female dovetail on the wheel and a female dovetail on the one bucket respectively to secure the one bucket to the wheel.
Accordingly, it is a primary object of the present invention to provide a bucket to wheel dovetail design for integral shroud covered buckets using axial entry dovetails such that the integrity of the shrouds can be preserved while simultaneously affording radially assembly of the final bucket with its cover completing the circumferentially extending covers about the rotor wheel.
BRIEF DESCRIPTION OF THE DRAWINGS
FIGURE 1 is a fragmentary perspective view illustrating the connections between the buckets and a rotor wheel as well as the axial entry dovetail segment of the present invention used to secure the final bucket;
FIGURE 2 is a perspective view of the axial entry dovetail segment; and
FIGURE 3 is an end elevational view thereof.
DETAILED DESCRIPTION OF THE INVENTION
Referring now to the drawings, particularly to Figure 1, there is illustrated a portion of a rotor wheel 10 and which rotor wheel 10 forms part of a turbine. Rotor wheel 10 is rotatable about an axis and has a series of female dovetails 12 spaced circumferentially one from the other about the periphery of the wheel. The female dovetails 12 extend axially, i.e , parallel to the axis of the rotor wheel and receive mating male dovetails 14 formed on the inner ends of buckets 16. The buckets 16 constitute a series of blades or vanes which are acted upon by the hot gases in the flowpath of the turbine to rotate the rotor wheel The radial inner ends of the buckets 16 are each provided with the male dovetails 14 which enable axial entry of the buckets to the female dovetails upon assembly of the buckets onto the rotor wheel
Buckets 16 also include shrouds or covers 18 at their radialh outer ends which m final assembly contact one another maintaining a continuous circumferential shroud assembly about the bucket tips Covers 18 of course rotate with the buckets 16 and rotor wheel 10 The covers 18 as illustrated have a generally Z-shaped configuration as viewed m a radial direction and thus interlock or nest with adjacent covers While the Z-shaped cover configuration is preferred, there are configurations of covers other than
Z-shaped. For example, the covers may have linear angled edges The particular configuration of the covers is dictated to large extent by the twist and curvature of the buckets 16 which circumferentially offsets the leading and trailing edges of the bucket
As indicated previously, the male dovetails 14 of the buckets lb are inserted axially into the female dovetails 12 during assembly of the buckets to the rotor wheel Thus, buckets 16 are assembled serially around the wheel. For example, a first bucket 16a is assembled to the rotor wheel 10 b\ axialh displacing the male dovetail 14a into the female dovetail 12a The next bucket 16b is similarly assembled to the rotor wheel 10 bv axially displacing the male dovetail 14b into the female dovetail 12b ot the rotor wheel It w ill be appreciated that the covers 18a and 18b on the bucket 16a and 16b respectively nest with one another upon such axial entry. Additional buckets are secured to the rotor wheel in like fashion serially about wheel 10 and eventually the next to the last bucket 16x is installed on the rotor wheel 10 bv inserting the male dovetail 14x into the female dovetail 12x Thus it w ll be appreciated that the buckets, save for one final bucket, are axially inserted into and completely installed about the rotor wheel with the covers 18 in nesting relation relative to one another However, from a review of Figure 1 it will be appreciated that the final or closure bucket 16y cannot be inserted relative to the rotor wheel from either axial direction because the cover 18v cannot pass through the openings defined by the adjacent covers 18a and 18x Consequently, a different type of connection and assembh piocedure is required to install the final bucket 16y onto the rotor wheel 10
To accomplish this, instead of providing the final bucket 16v with a male dovetail similar to the male dovetails 14 at radial inner ends of the other buckets 16, the final bucket 16y is provided with an axially extending female dovetail 20 along its radial inner end. Additionally, as best illustrated in Figure 2, an axial entry dovetail segment 22 is provided for joining the final bucket 16y to the rotor wheel 10 at the female dovetail connection 12v It will be appreciated that the dovetail connection 12y is identical to the dovetail connections 14 spaced circumferentially about the rotor wheel 10 The axial entry dovetail segment 22 includes male projecting dovetails 24 and 26 along radially opposite sides of the segment, the segment extending axially a distance corresponding to the axial length of the male dovetails on the buckets 16. The radial innermost male dovetail 24 on segment 22 has a generally complementary shape to the female dovetail 14y, whereas the radially outer male dovetail 26 on segment 22 is generally complementary m shape to the female dovetail 20 of the final bucket 16y By employing the axial entry dovetail segment 22 the final bucket 16y can be assembled from a radial direction and positioned between the first bucket 16a assembled to rotor wheel 10 and the next to the last bucket 16x assembled to rotor wheel 10 It will be appreciated that b\ radially inserting the bucket 16y, the radially inner base of the bucket is readily disposed between the radial inner bases of the adjacent buckets 16a and 16x Additionally the cover 18v of tmal bucket 16y nests between the covers 18a and lδx of the adjacent buckets To secure the final or closure bucket 16y to the rotor wheel 10, the axial entry dovetail segment 22 is driven axially such that the male dovetails of the segment respectively engage in the female dovetails of the final bucket 16y and the rotor wheel 10
Referring to Figure 2, the geometry of the radially inner male do\ etail 24 of the segment 22 is the same as the female dovetails 12 on the rotor wheel That is, the hooks 25 of the dovetails are substantially complementary to one another Similarly, the radially outer male dovetail 26 of segment 22 is complementary m shape to the female dovetail on the final or closure buckets 16y. That is, the hooks 27 of the male dovetail are substantially complementary to the hooks of the female dovetail Note also that the protrusions or tangs 28 on the segment 22 These tangs 28 provide tangential restraint in the mating final or closure bucket female dovetail. Hooks 25 and 27, of course, engage corresponding hooks in the wheel dovetail and the final bucket female dovetail m final assembly.
While the invention has been described m connection with what is presently considered to be the most practical and preferred embodiment, it is to be understood that the invention is not to be limited to the disclosed embodiment, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.

Claims

WHAT IS CLAIMED IS:
1. In a turbine having a rotor wheel with at least one axial entry female wheel dovetail and a bucket having a female bucket dovetail adjacent a radial inner end thereof, an axial entrv dovetail segment for securing said bucket to said one wheel dovetail comprising:
a segment body extending in a generally axial direction and having generally radially opposite male dovetails extending generally in said axial direction for respective axial reception in said bucket dovetail and said wheel dovetail.
2. A turbine according to claim 1, wherein each of said radially opposite male dovetails includes at least two hooks projecting to each side of said segment.
3. A turbine according to claim 1 including a plurality of axial entry female wheel dovetails spaced circumferentially about said wheel and a plurality of buckets having generally complementary male bucket dovetails for axial reception in the plurality of female wheel dovetails.
4. A turbine according to claim 3 wherein each of said buckets has a shroud with overlapping protrusions for nesting in a circumferential direction with adjacent shrouds.
5. In a turbine having a rotor wheel with axial entry female wheel dovetails spaced one from the other circumferentially about the rotor wheel and a plurality of buckets for said wheel at each circumferential location of said wheel dovetails, a method of installing one of said buckets onto the wheel comprising the steps of:
providing a female dovetail on a radial inner end of said one bucket; and inserting m an axial direction and into said bucket dovetail and one of said wheel dovetails a segment having generally radially opposite male dovetails to secure the one bucket and wheel to one another
6 In a turbine mg a rotor w heel with axial entr\ female wheel dovetails spaced from one another circumferentially about the rotor wheel and a predetermined number of buckets for securement to the wheel, a method of installing the buckets comprising the steps of
inserting male dovetails provided on a plurality of buckets, at least one less in number than said predetermined number of buckets, in an axial direction into a corresponding number of female wheel dovetails to secure said plurality of buckets to said wheel, and
inserting generally radially opposite male dovetails on a dovetail segment into a female dovetail on said wheel and a female dovetail on said one bucket respectively to secure said one bucket to said wheel
7 A method according to claim 6, including inserting said one bucket in a generally radial direction between adjacent buckets prior to inserting said segment
8 A method according to claim 6, wherein said buckets e covers adjacent radial outer ends thereof and including inserting said plurality ol buckets axially onto said wheel to nest the covers with one another and inserting said one bucket radially between adjacent buckets to nest the cover of said one bucket with the covers of said adjacent segments
EP00907136A 2000-02-03 2000-02-03 Axial dovetail segment for securing a bucket to a turbine wheel and methods of installation Expired - Lifetime EP1165940B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/US2000/002835 WO2001057365A1 (en) 1998-09-14 2000-02-03 Means for securing a bucket to a turbine wheel and methods of installation

Publications (2)

Publication Number Publication Date
EP1165940A1 true EP1165940A1 (en) 2002-01-02
EP1165940B1 EP1165940B1 (en) 2007-04-18

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP00907136A Expired - Lifetime EP1165940B1 (en) 2000-02-03 2000-02-03 Axial dovetail segment for securing a bucket to a turbine wheel and methods of installation

Country Status (4)

Country Link
EP (1) EP1165940B1 (en)
JP (1) JP4572399B2 (en)
KR (1) KR100785544B1 (en)
DE (1) DE60034440T2 (en)

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KR100642466B1 (en) * 2005-10-07 2006-11-02 두산중공업 주식회사 Integrated Bucket Jig for Turbine Rotor
JP5238631B2 (en) * 2009-07-10 2013-07-17 株式会社東芝 Turbine blade cascade assembly and steam turbine
KR101628613B1 (en) * 2015-04-01 2016-06-08 두산중공업 주식회사 Axial locking device of bucket
KR101999445B1 (en) 2017-10-30 2019-07-11 두산중공업 주식회사 Mounting structure of bucket and steam turbine having the same
KR102040958B1 (en) 2017-10-30 2019-11-05 두산중공업 주식회사 Sealing structure of rotor and steam turbine having the same
KR102040960B1 (en) 2017-10-30 2019-11-05 두산중공업 주식회사 Mounting structure of bucket and steam turbine having the same
KR20190052481A (en) 2017-11-08 2019-05-16 두산중공업 주식회사 Mounting structure for bucket and steam turbine having the same
KR102011578B1 (en) 2017-11-09 2019-10-21 두산중공업 주식회사 Cover structure of bucket and rotor and steamturbine having the same
KR102005637B1 (en) 2017-11-21 2019-07-30 두산중공업 주식회사 Mounting structure of bucket and steamturbine having the same
KR101999447B1 (en) 2017-11-21 2019-07-11 두산중공업 주식회사 Fastening structure of a bucket and steam turbine including the same

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Also Published As

Publication number Publication date
KR20020005646A (en) 2002-01-17
DE60034440D1 (en) 2007-05-31
DE60034440T2 (en) 2008-01-03
JP4572399B2 (en) 2010-11-04
JP2003521622A (en) 2003-07-15
KR100785544B1 (en) 2007-12-12
EP1165940B1 (en) 2007-04-18

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