Claims
- 1. In a gas turbine engine including a rotatable rotor having a central axis an a row of blades with outer tips and a stationary casing with a shroud disposed in concentric relation with said rotor, an apparatus for controlling the clearance between said rotor blade tips and casing shroud, said apparatus comprising:
- (a) a shroud segment defining a circumferential portion of said casing shroud and being separate from and spaced radially inwardly of said casing;
- (b) at least one mounting structure on said stationary casing defining a passage between exterior and interior sides of said casing, said mounting structure being spaced radially outwardly from said shroud segment;
- (c) a shroud segment positioning mechanism supported by said stationary casing mounting structure, coupled to said shroud segment, and being actuatable for moving said shroud segment toward and away from said rotor blade tips to reach a position relative thereto at which a desired clearance is established between said shroud segment and rotor blade tips; and
- (d) an actuating member being rotatable for actuating said positioning mechanism;
- (e) said positioning mechanism including
- (i) a support member mounted through said passage defined by said mounting structure for radial movement relative to said mounting structure and toward and away from said rotor axis, said support member having a longitudinal axis and opposite inner and outer ends with said shroud segment being coupled to said inner end of said support member at said interior side of said casing,
- (ii) a first cam element attached to said outer end of said support member and located at said exterior side of said casing and spaced outwardly from said mounting structure, and
- (iii) a second cam element attached to an inner end of said actuating member being mounted to said mounting structure for rotational movement relative thereto and about said longitudinal axis of said support member upon rotation of said actuating member, said second cam element being located at said exterior side of said casing between said mounting structure and said first cam element and engaged with said first cam element such that rotation of said second cam element with rotation of said actuating member produces radial movement of said first cam element and said support member and said shroud segment therewith toward and away from said rotor blade tips.
- 2. The apparatus as recited in claim 1, wherein:
- said mounting structure is a cylindrical boss formed on said casing, defining said passage and projecting from said exterior side of said casing; and
- said support member is a cylindrical shaft extending through said passage of said boss.
- 3. The apparatus as recited in claim 2, wherein said positioning mechanism also includes a shroud holder connected to said inner end of said support member and having axially-spaced circumferentially-extending grooves for slidably receiving and holding said shroud segment at spaced longitudinal edge portions thereof.
- 4. The apparatus as recited in claim 1, further comprising:
- a bearing member fitted to said mounting structure and extending through said passage thereof, said bearing member including a tubular body defining an interior bearing surface slidably engaged by said support member and a circumferential flange attached to and projecting outwardly from said tubular body between outer and inner opposite ends thereof, said flange being seated on an outer end of said mounting structure such that said outer end of said body projects from said mounting structure and said flange and outer body end are exposed at said exterior side of said casing and define respective exterior bearing surfaces which are engaged by and rotatably support said inner end of said actuating member.
- 5. The apparatus as recited in claim 4, wherein said flange of said bearing member is attached to said tubular body thereof substantially nearer to said outer end than to said inner end of said body.
- 6. The apparatus as recited in claim 4, wherein said flange of said bearing member is attached to said tubular body thereof substantially equidistant from said outer and inner ends of said body.
- 7. The apparatus as recited in claim 4, wherein said positioning mechanism also includes a spring member attached to said mounting structure and engaged with said outer end of said support member so as to bias said first cam element toward said second cam element to maintain engagement therebetween.
- 8. The apparatus as recited in claim 4, wherein said positioning mechanism also includes a locking element releasably attached to said outer end of said support member for retaining said first cam element removably attached on said outer support member end.
- 9. The apparatus as recited in claim 1, wherein said first cam element is in the form of an annular washer removably attached on said outer support member end and having a helically-shaped camming surface defined on an inner side of said washer.
- 10. The apparatus as recited in claim 9, wherein said second cam element is a helically-shaped camming surface defined on an outer side of said inner end of said actuating member which mates with said camming surface on said washer.
- 11. In a gas turbine engine including a rotatable rotor having a central axis and a row of blades with outer tips and a stationary casing with a shroud disposed in concentric relation with said rotor, an apparatus for controlling the clearance between said rotor blade tips and casing shroud, said apparatus comprising:
- (a) a shroud segment defining a circumferential portion of said casing shroud and being separate from said spaced radially inwardly of said casing;
- (b) a pair of circumferentially-spaced mounting structures on said stationary casing defining passages between exterior and interior sides of said casing, said mounting structures being spaced radially outwardly from said shroud segment;
- (c) a shroud segment positioning mechanism supported by said stationary casing mounting structures, coupled to said shroud segment, and being actuatable for moving said shroud segment toward and away from said rotor blade tips to reach a position relative thereto at which a desired clearance is established between said shroud segment and rotor blade tips; and
- (d) a pair of actuating members each being rotatable for actuating said positioning mechanism;
- (e) each positioning mechanism including:
- (i) a pair of circumferentially-spaced support members each being mounted through a respective one of said passages defined by said pair of mounting structures for radial movement relative to said mounting structures and toward and away from said rotor axis, said support members each having a longitudinal axis and opposite inner and outer ends,
- (ii) a shroud holder extending between and pivotally connected at its opposite ends to said inner ends of said support members, said shroud holder removably holding said shroud segment at said interior side of said casing,
- (iii) a pair of first cam elements each attached to said outer ends of respective ones of said support members and located at said exterior side of said casing and spaced outwardly from respective ones of said mounting structures, and
- (iv) a pair of second cam elements attached to said inner ends of respective ones of said actuating members being mounted to said mounting structures for rotational movement relative thereto and about said longitudinal axes of said support meters upon rotation of said actuating members, said second cam elements being located at said exterior side of said casing between spaced mounting structures and first cam elements and engaged with said first cam elements such that rotation of said second cam elements with rotation of said actuating members produce radial movement of said first cam elements and said support members and said shroud segment therewith toward and away from said rotor blade tips.
- 12. The apparatus as recited in claim 11, wherein said shroud holder has a pair of axially-spaced circumferentially-extending grooves facing toward one another for slidably receiving and holding said shroud segment at spaced longitudinal edge portions thereof.
- 13. The apparatus as recited in claim 11, wherein said positioning mechanism also includes a pair of elongated pins each pivotally connecting one of said opposite ends of said shroud holder to a respective one of said support members.
- 14. The apparatus as recited in claim 11, wherein:
- each of said mounting structures is a cylindrical boss formed on said casing, defining said passage, and projecting from said exterior side of said casing; and
- each of said support members is a cylindrical shaft extending through said passage of a respective one of said bosses.
- 15. The apparatus as recited in claim 11, further comprising:
- a pair of bearing members each fitted to a respective one of said mounting structures and extending through said passage thereof, said each bearing member including a tubular body defining an interior bearing surface slidably engaged by a respective one of said support members and a circumferential flange attached to and projecting outwardly from said tubular body between outer and inner opposite ends thereof, said flange being seated on an outer end of said one mounting structure such that said outer end of said body projects from said one mounting structure and said flange and outer body end are exposed at said exterior side of said casing and define respective exterior bearing surfaces which are engaged by and rotatably support said inner end of a respective one of said actuating members.
- 16. The apparatus as recited in claim 15, wherein said flange of said each bearing member is attached to said tubular body thereof substantially nearer to said outer end than to said inner end of said body.
- 17. The apparatus as recited in claim 15, wherein said flange of said each bearing member is attached to said tubular body thereof substantially equidistant from said outer and inner ends of said body.
- 18. The apparatus as recited in claim 11, wherein said positioning mechanism also includes a pair of spring members each attached to respective ones of said mounting structures and engaged with said outer ends of respective ones of said support members so as to bias said first cam elements toward said second cam elements to maintain engagement therebetween.
- 19. The apparatus as recited in claim 11, wherein said positioning mechanism also includes a pair of locking elements each releasably attached to said outer ends of respective ones of said support members for retaining said first cam elements removably attached on said outer support member ends.
- 20. The apparatus as recited in claim 11, wherein each of said first cam elements is in the form of an annular washer removably attached on said respective outer support member end and having a helically-shaped camming surface defined on an inner side of said washer.
- 21. The apparatus as recited in claim 20, wherein each of said second cam elements is a helically-shaped camming surface defined on an outer side of said inner end of said respective actuating member which mates with said camming surface on said washer.
RIGHTS OF THE GOVERNMENT
The United States Government has rights in this invention pursuant to Contract No. F33615-87-C-2764 awarded by the Department of the Air Force.
US Referenced Citations (21)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0153904 |
Sep 1982 |
JPX |
2068470 |
Aug 1981 |
GBX |
2199664 |
Jul 1988 |
GBX |