The present invention relates generally to rotor wheels in turbine engines and specifically to the retention of blades within slots provided in the rotor wheel.
In certain turbine engine configurations, individual blades are loaded into substantially axially-oriented slots or grooves formed in the rotor wheel. The blades must be retained in the slots or grooves so as to prevent any radial or axial movement of the blades during operation of the turbine. Dovetail mountings on the blades and complimentary dovetail slots in the wheel serve to prevent radial movement. There have been devised various techniques for preventing blade movement in the axial direction, some of which involve “staking” of the ends of the blade dovetails after insertion into the complimentary slots. For the rotor wheel or disc in the last stage of certain compressors, however there is little or no access to the front or back of the blade dovetail, rendering the staking method unfeasible.
There remains a need, therefore, for a blade retention mechanism that is easy to install and remove, and that provides effective and reliable blade retention in the axial direction.
Accordingly, in a first exemplary but nonlimiting embodiment, a rotor blade and blade retention key comprising a radially outer airfoil, a shank and a radially inner attachment dovetail; the attachment dovetail having a radially innermost surface formed with a notch at one axial end thereof, a retention key received in the notch and rotatable from a retracted position wherein a retention key portion is substantially flush with the radially innermost surface, to an extended position wherein the retention key portion projects radially substantially inwardly from the radially innermost surface.
In another exemplary but nonlimiting embodiment, the invention provides a rotor wheel fitted with a plurality of rotor blades each rotor blade comprising a radially outer airfoil, a shank and a radially inner attachment dovetail; the attachment dovetail provided with a radially innermost bottom surface formed with a notch at one axial end thereof; retention key received in the notch; and aid rotor wheel formed with plural substantially axially extending slots, each receiving one of the radially inner attachment dovetails; a radially inner surface of one or more of the axially-extending slots formed with a recess; wherein the retention key is rotatable from a retracted position wherein a retention key portion is substantially flush with the radially innermost bottom surface, to an extended position wherein the retention key portion projects radially inwardly from the radially innermost bottom surface and is received in the recess to thereby prevent axial movement of the rotor blade within the slot.
In still another exemplary but nonlimiting aspect, the invention provides a rotor wheel and blade assembly comprising a wheel formed with plural substantially axially extending slots, a radially inner surface of each of the axially-extending slots formed with a recess; plurality of rotor blades each rotor blade comprising a radially outer airfoil, a shank and a radially inner attachment dovetail; the attachment dovetail provided with a radially innermost bottom surface formed with a notch at one axial end thereof; a retention key received in the notch, the retention key having a transversely-oriented, part-cylindrical key portion and a substantially axially-extending actuation portion; each of the plural substantially axially extending slots receiving one of the radially inner attachment dovetails; and wherein the retention key is rotatable from a retracted position wherein the transversely-oriented, part-cylindrical key portion is substantially flush with the bottom surface, to an extended position wherein the transversely-oriented, part-cylindrical key portion projects into the recess to thereby prevent axial movement of the rotor blade within the slot.
The invention will now be described in detail in connection with the drawings identified below,
For certain well-known turbine compressor rotor constructions, a plurality of blades or buckets are loaded into generally axially-oriented slots or grooves in the axially-spaced rotor wheels. With reference initially to
Accordingly, a rotatable axial retention key 20 as shown in
As best seen in
The retention key 20 fits within the notch 40 as best seen in
With reference again to
It is also noted that the flat end face 34 of the key actuating portion or shaft 22 is angled so that when the axial retention key 20 is in the extended position, the end face 34 will be substantially flush with the end surface 48 of the dovetail 12. Note that this is not the case when the axial retention key 20 is shown in the retracted position (
It is also to be noted that no separate means need be provided to hold the retention key 20 in the notch 40 prior to installation. The retention key and blade or airfoil are loaded manually into the wheel slot or groove 12, and the retention key 20 may be held in place while the airfoil is loaded into the slot or groove. After installation, the end face 34 may be staked as shown at 48, 50 to prevent rotation of the key to the retracted portion.
While the invention has been described in 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.
Number | Name | Date | Kind |
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5518369 | Modafferi | May 1996 | A |
20090252611 | Tipton et al. | Oct 2009 | A1 |
Number | Date | Country |
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797724 | Oct 1997 | EP |
Entry |
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U.S. Appl. No. 12/078,757, filed Apr. 4, 2008. (Pending). |
U.S. Appl. No. 12/007,509, filed Jan. 10, 2008. (Pending). |
U.S. Appl. No. 12/689,817, filed Jan. 19, 2010. (Pending). |
Number | Date | Country | |
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20120301308 A1 | Nov 2012 | US |