Claims
- 1. In a flow starting tube for initiating the discharge flow of molten material in a vessel through a bottom discharge opening thereof, said flow starting tube extending upwardly from a lower end to be fitted to the discharge opening to thereby block access of the molten material to the discharge opening, wherein when the level of molten material in the vessel reaches a suitable level at least an upper portion of the flow starting tube is removed, whereupon the molten material then has access to and flows downwardly through the discharge opening, the improvement comprising:
- means for enabling the buoyancy in the molten material of a portion of said flow starting tube above a predetermined breaking position, extending around the circumference of said flow starting tube at a level to be below the upper level of molten material in the vessel, to cause a breaking away of said portion of said flow starting tube above said predetermined breaking position.
- 2. The improvement claimed in claim 1, wherein aid means comprises an annular recess formed in said flow starting tube and extending inwardly from the outer surface thereof, said annular recess defining said predetermined breaking position.
- 3. The improvement claimed in claim 2, wherein said annular recess includes an inner cylindrical surface.
- 4. The improvement claimed in claim 2, wherein said portion of said flow starting tube above said predetermined breaking position is enlarged outwardly, and said means further comprises an annular outwardly extending lower surface of said enlarged portion at a position to be below the upper level of the molten material, such that the molten material exerts an upward buoyancy force on said lower surface, thereby imparting to said flow starting tube a tensile force concentrated at said predetermined breaking position.
- 5. The improvement claimed in claim 4, wherein said enlarged portion has a cylindrical configuration, and said lower surface extends substantially horizontally.
- 6. The improvement claimed in claim 4, wherein said lower surface has a configuration to enable an increasing area thereof to be acted on by the molten material as the level of molten material in the vessel increases, thereby imparting to said flow starting tube an increasing tensile force.
- 7. The improvement claimed in claim 6, wherein said lower surface extends conically outwardly and upwardly.
- 8. The improvement claimed in claim 4, wherein said lower surface has a sawtooth configuration including plural surfaces inclined to the horizontal, such that the upward buoyancy force acting on said inclined plural surfaces additionally imparts to said enlarged portion of said flow starting tube a rotational force.
- 9. The improvement claimed in claim 1, wherein said portion of said flow starting tube above said predetermined breaking position is enlarged outwardly, and said means comprises an annular, outwardly extending lower surface of said enlarged portion at a position to be below the upper level of the molten material, such that the molten material exerts an upward buoyancy force on said lower surface, thereby imparting to said flow starting tube a tensile force concentrated at said predetermined breaking position.
- 10. The improvement claimed in claim 9, wherein said enlarged portion has a cylindrical configuration, and said lower surface extends substantially horizontally.
- 11. The improvement claimed in claim 9, wherein said lower surface has a configuration to enable an increasing area thereof to be acted on by the molten material as the level of molten material in the vessel increases, thereby imparting to said flow starting tube an increasing tensile force.
- 12. The improvement claimed in claim 11, wherein said lower surface extends conically outwardly and upwardly.
- 13. The improvement claimed in claim 12, wherein said flow starting tube below said predetermined breaking position comprises a cylindrical member, and said enlarged portion comprises a conical member formed separately from said cylindrical member and joined thereto at a joint forming said predetermined breaking position.
- 14. The improvement claimed in claim 9, wherein said lower surface has a sawtooth configuration including plural surfaces inclined to the horizontal, such that the upward buoyancy force acting on said inclined plural surfaces additionally imparts to said enlarged portion of said flow starting tube a rotational force.
- 15. The improvement claimed in claim 1, wherein said predetermined breaking position is located adjacent said lower end of said flow starting tube.
- 16. In a flow starting tube for initiating the discharge flow of molten material in a vessel through a bottom discharge opening thereof, said flow starting tube extending upwardly from a lower end to be fitted to the discharge opening to thereby block access of the molten material to the discharge opening, wherein when the level of molten material in the vessel reaches a suitable level at least an upper portion of the flow starting tube is removed, whereupon the molten material then has access to and flows downwardly through the discharge opening, the improvement comprising:
- means for cuasing breaking away of said at least upper portion of said flow starting tube at a predetermined breaking position, extending around the circumference of said flow starting tube at a level to be below the upper level of molten material in the vessel, under the influence of the buoyancy in the molten material of a portion of said flow startint tube above said predetermined breaking position, wherein said means comprising an annular recess formed in said flow starting tube and extending inwardly from the outer surface thereof, said annular recess defining said predetermined breaking position, said portion of said flow starting tube above said predetermined brekaing position being enlarged outwardly, and said means further comprising an annular outwardly extending lower surface of said enlarged portion at a position to be below the upper level of the molten material, such that the molten material exerts an upward buoyancy force on said lower surface, thereby imparting to said flow starting tube a tensile force concentrated at said predetermined breaking position.
- 17. The improvement claimed in claim 16, wherein said annular recess includes an inner cylindrical surface.
- 18. The improvement claimed in claim 16, wherein said enlarged portion has a cylindrical configuration, and said lower surface extends substantially horizontally.
- 19. The improvement claimed in claim 16, wherein said lower surface has a configuration to enable an increasing area thereof to be acted on by the molten material as the level of molten material in the vessel increases, thereby imparting to said flow starting tube an increasing tensile force.
- 20. The improvement claimed in claim 19, wherein said lower surface extends conically outwardly and upwardly.
- 21. The improvement claimed in claim 16, wherein said lower surface has a sawtooth configuration including plural surfaces inclined to a horizontal, such that the upward buoyancy force acting on said inclined plural surfaces additionally imparts to said enlarged portion of said flow starting tube a rotational force.
- 22. The improvement claimed in claim 16, wherein said predetermined breaking position is located adjacent said lower end of said flow starting tube.
- 23. In a flow starting tube for initiating the discharge flow of molten material in a vessel through a bottom discharge opening thereof, said flow starting tube extending upwardly from a lower end to be fitted to the discharge opening to thereby block access of the molten material to the discharge opening, wherein when the level of molten material in the vessel reaches a suitable level at least an upper portion of the flow starting tube is removed, whereupon the molten material then has access to and flows downwardly through the discharge opening, the improvement comprising:
- means for cuasing breaking away of said at least upper portion of said flow starting tube at a predetermined breaking position, extending around the circumference of said flow starting tube at a level to be below the upper level of molten material in the vessel, under the influence of the buoyancy in the molten material of a portion of said flow startint tube above said predetermined breaking position, said portion of said flow starting tube above said predetermined breaking position being enlarged outwardly, and said means comprising an annular, outwardly extending lower surface of said enlarged portion at a position to be below the upper level of the molten material, such that the molten material exerts an upward buoyancy force on said lower surface, thereby imparting to said flow starting tube a tensile force concentrated at said predetermined breaking position.
- 24. The improvement claimed in claim 23, wherein said enlarged portion has a cylindrical configuration, and said lower surface extends substantially horizontally.
- 25. The improvement claimed in claim 23, wherein said lower surface has a configuration to enable an increasing area thereof to be acted on by the molten material as the level of molten material in the vessel increases, thereby imparting to said flow starting tube an increasing tensile force.
- 26. The improvement claimed in claim 25, wherein said lower surface extends conically outwardly and upwardly.
- 27. The improvement claimed in claim 26, wherein said flow starting tube below said predetermined breaking position comprises a cylindrical member, sand said enlarged portion comprises a conical member formed separately from said cylindrical member and joined thereto at a joint forming said predetermined breaking position.
- 28. The improvement claimed in claim 23, wherein said lower surface has a sawtooth configuration including plural surfaces inclined to the horizontal, such that the upward buoyancy force acting on said inclined plural surfaces additionally imparts to said enlarged portion of said flow starting tube a rotational force.
- 29. The improvement claimed in claim 23, wherein said predetermined breaking position is located adjacent said lower end of said flow starting tube.
- 30. The improvement claimed in claim 23, wherein said means comprises an annular recess formed in said flow starting tube and extending inwardly from said outer surface thereof, said annular recess defining said predetermined breaking position.
- 31. The improvement claimed in claim 29, wherein said annular recess includes an inner cylindrical surface.
Priority Claims (1)
Number |
Date |
Country |
Kind |
3701701 |
Jan 1987 |
DEX |
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Parent Case Info
This application is a continuation of now abandoned application, Ser. No. 07/143,053, filed Jan. 12, 1988.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4479594 |
Altland |
Oct 1984 |
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Foreign Referenced Citations (1)
Number |
Date |
Country |
57-51172 |
Mar 1982 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
143053 |
Jan 1988 |
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