Claims
- 1. An axial support arrangement (50) for a turret (22) which is rotatably supported on a vessel (12) comprising,a support ring (16) mounted on said vessel (12); a load applying ring (36) positioned outwardly of said turret (22) and rotatably coupled to said turret (22) at a position above said support ring (16); a retaining plate (66) coupled to said support ring (16) at a position above said load applying ring (36); an upper elastomeric pad (54) sandwiched between said load applying ring (36) and said retaining plate (66), said upper elastomeric pad (54) being coupled, arranged and dimensioned in cooperation with said retaining plate (66) and said load applying ring (36) to be put in compression with relative upward motion of said turret (22) with respect to said vessel (12) but not be put in tension with relative downward motion of said turret (22) with respect to said vessel (12).
- 2. The arrangement (50) of claim 1 wherein,said retaining plate (66) is coupled to said support ring (16) by a tie rod (70) which extends through a hole (17) in said support ring (16), said upper elastomeric pad (54) is fixed to said retainer plate (66) and to said load applying ring (36), whereby with relative upward motion of said turret (22) with respect to said vessel (12), said upper elastomeric pad (54) is squeezed between said retaining plate (66) and said load applying ring (36), but with relative downward motion of said turret (22) with respect to said vessel (12), said upper elastomeric pad (54) is prevented from being placed in tension by sliding of said tie rod (70) through said hole (17) in said support ring (16) as said load support ring (36) moves downward with respect to support ring (16).
- 3. The arrangement of claim 1 wherein,said retaining plate (66) is coupled to said support ring (16) by a tie rod (70) which extends through aligned holes in said retaining plate (66), said upper elastomeric pad (54), said load applying ring (36), and said support ring (16) and by nuts (72), (74) secured over said stud (70) above said retaining plate (66) and below said support ring (16).
- 4. The arrangement of claim 1, further comprising,a lower elastomeric pad (52) sandwiched between said load applying ring (36) and said support ring (16), said lower elastomeric pad (52) being coupled, arranged and dimensioned in cooperation with said load applying ring (36) and said retaining plate (66) to be put in compression with relative downward motion of said turret (22) with respect to said vessel (12) but not be put in tension with relative upward movement of said turret (22) with respect to said vessel (12).
- 5. The arrangement of claim 4 wherein,said lower elastomeric pad (52) is fixed axially relative to said load applying ring (36) but not to said support ring (16), whereby with relative downward motion of said turret (22) with respect to said vessel (12) said lower elastomeric pad (52) is squeezed between said support ring and said load applying ring (36), but with relative upward motion of said turret (22) with respect to said vessel (12), said lower elastomeric pad (54) stays fixed relative to said load applying ring (36) thereby preventing tension in said lower elastomeric pad (52).
- 6. The arrangement of claim 5 wherein,said mounting plate (16) includes an annular ring (56) extending upwardly from an upper side thereof, and said lower elastomeric pad (52) is arranged and designed to slide within said annular ring (56) whereby with relative downward motion of said turret (22) with respect to said vessel (12), said lower elastomeric pad (52) is squeezed between said load applying ring (36) and said retaining ring (16), but with relative upward motion of said turret (22) with said respect to said vessel (12), said lower elastomeric pad (52) is free to slide upwardly with respect to said annular ring (56).
- 7. An axial support arrangement (50) for a turret (22) which is rotatably supported on a vessel (12) comprising,a support ring (16) mounted on said vessel (12); a load applying ring (36) positioned about the outer periphery of said turret (22) and rotatably coupled to said turret (22) at a position above said support ring (16); a lower elastomeric pad (52) sandwiched between said load applying ring (36) and said support ring (16), said lower elastomeric pad (52) being coupled, arranged and dimensioned in cooperation with said load applying ring (36) and said retaining plate (66) to be put in compression with relative downward motion of said turret (22) with respect to said vessel (12) but not be put in tension with relative upward movement of said turret (22) with respect to said vessel (12).
- 8. The arrangement of claim 7 wherein,said lower elastomeric pad (52) is fixed axially relative to said load applying ring (36) but not to said support ring (16), whereby with relative downward motion of said turret (22) with respect to said vessel (12) said lower elastomeric pad (52) is squeezed between said support ring and said load applying ring (36), but with relative upward motion of said turret (22) with respect to said vessel (12), said lower elastomeric pad (54) stays fixed relative to said load applying ring (36) thereby preventing tension in said lower elastomeric pad (52).
- 9. The arrangement of claim 8 wherein,said mounting plate (16) includes an annular ring (56) extending upwardly from an upper side thereof, and said lower elastomeric pad (52) is arranged and designed to slide within said annular ring (56) whereby with relative downward motion of said turret (22) with respect to said vessel (12), said lower elastomeric pad (52) is squeezed between said load applying ring (36) and said retaining ring (16), but with relative upward motion of said turret (22) with said respect to said vessel (12), said lower elastomeric pad (52) is free to slide upwardly with respect to said annular ring (56).
- 10. The arrangement of claim 7 further comprising,a retaining plate (66) coupled to said support ring (16) at a position above said load applying ring (36); an upper elastomeric pad (54) is sandwiched between said retaining plate (66) and said load applying ring (36), said retaining plate (66) is coupled to said support ring (16) by a tie rod (70) which extends through aligned holes in said retaining plate (66), said upper elastomeric pad (54), said load applying ring (36), said lower elastomeric pad (52), and said supporting (16) and by nuts (72), (74) secured over said stud (70) above said retaining plate (66) and below said support ring (16).
- 11. The arrangement of claim 10 wherein,said upper elastomeric pad (54) is coupled, arranged and dimensioned in cooperation with said retaining plate (66) and said load applying ring (36) to be put in compression with relative upward motion of said turret (22) with respect to said vessel (12) but not be put in tension with relative downward motion of said turret (22) with respect to said vessel (12).
- 12. The arrangement of claim 10 wherein,said upper elastomeric pad (54) is fixed to said retainer plate (66) and to said load applying ring (36), and said retaining plate (66) is secured to said tie rod (70), whereby with relative upward motion of said turret (22) with respect to said vessel (12), said upper elastomeric pad (54) is squeezed between said retaining plate (66) and said load applying ring (36), but with relative downward motion of said turret (22) and said load applying ring (36) with respect to said vessel (12) and said mounting plate (16), said upper elastomeric pad (54) is prevented from being placed in tension because said tie rod (70) is free to slide with respect to said mounting plate (16).
CROSS REFERENCE TO RELATED APPLICATION
This application claims priority from U.S. Provisional Application 60/158,001 filed Oct. 6, 1999.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
9627522 |
Sep 1996 |
WO |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/158001 |
Oct 1999 |
US |