Claims
- 1. The method of closing up gaps between blocks of the edge dams of a continuous metal casting machine wherein a pair of moving edge dams each comprises many blocks slidably strung upon a high strength flexible carrying member extending in a closed loop and wherein said pair of moving edge dams are moved along spaced generally parallel paths between upper and lower revolving casting belts for defining a moving mold having an entrance and an exit and said moving edge dams and said upper and lower casting belts travel in a downstream direction along said moving mold from said entrance to said exit for carrying molten metal downsteam from said entrance to become solidified and wherein said lower casting belt travelling downstream along the moving mold generally defines a plane, said method closing up gaps between blocks of the edge dams entering said entrance of the moving mold and comprising the steps of:
- providing, in operative association with at least one moving edge dam upsteam from said entrance of the casting region of said twin-belt casting machine, a first undriven edge dam guide roller disposed upstream from the entrance and being positioned for intruding above said plane,
- said first undriven guide roller being situated below and in supporting contact with said moving edge dam for elevating a lower surface of said moving edge dam above said plane as said moving edge dam travels over said first guide roller,
- providing a second undriven edge dam guide roller positioned above and thrusting downwardly against said moving edge dam in a zone downstream from said first guide roller and upstream from said entrance of the moving mold of said casting machine for directing a force downwardly against said moving edge dam for forcing said moving edge dam downwardly in said zone with said lower surface of said moving edge dam coming down against the lower casting belt near the mold entrance at a point downstream from said second guide roller for bending said moving edge dam convex downwardly in said zone for causing the dam blocks to press against each other in said zone for sliding blocks in said zone along said high strength flexible carrying member for closing gaps between blocks of said edge dam entering said entrance of the moving mold for sealing the entrance to the mold against the outward leakage of molten metal between blocks.
- 2. The method as claimed in claim 1, including the further steps of:
- sensing the force of said second guide roller downwardly against said moving edge dam for indicating the tension in said high strength flexible carrying member.
- 3. The method of claim 1, including the further steps of:
- mounting said second undriven edge dam guide roller on a downstream extending first arm of a lever having an upstream extending second arm,
- providing a pivot mounting for said lever positioned between said first and second arms, and
- sensing a force exerted by said second arm as a result of said second edge dam guide roller thrusting downwardly against said moving edge dam for indicating the tension in said high strength flexible carrying member.
- 4. Apparatus for controlling the tension in an edge dam loop in a continuous metal casting machine wherein a pair of opposed moving edge dams comprising many blocks slidably strung upon a pair of closed flexible loops of high strength material travel along opposite edges of a casting region from its entrance to its outlet between lower and upper revolving casting belts to define a moving mold, wherein said casting belts travel downstream along the moving mold for carrying molten metal downstream from said entrance to become solidified for discharging cast product from the outlet and wherein the edge dams return from the outlet to the entrance along respective sagging reaches below the moving mold, and wherein the lower belt travelling downstream along the moving mold generally defines a plane, said apparatus for controlling the tension in an edge dam loop comprising:
- adjustable back-breaker apparatus including at least one lifting roller for engaging beneath the sagging reach of an edge dam,
- remotely controllable lift means for elevating the back-breaker apparatus for causing said lifting roller to lift the sagging reach of the edge dam for increasing the tension in the edge dam loop and for lowering the back-breaker apparatus for causing said lifting roller to lower the sagging reach of the edge dam for decreasing the tension in the edge dam loop,
- remote control means for said lift means for controlling the tension in the edge dam loop,
- edge dam guide apparatus located in front of the entrance to the moving mold for guiding the returning edge dam up into a crest above said plane as the edge dam is moving toward the entrance,
- a downward-thrusting roller positioned between said edge dam guide apparatus and the entrance and pressing down upon the moving edge dam for deflecting the edge dam downwardly from said crest toward the lower casting belt in front of the entrance for bending the deflected edge dam convex downwardly toward the lower casting belt for pressing the edge dam blocks against each other in front of the entrance, and
- sensing means for sensing the magnitude of said downward thrust of said downward-thrusting roller for indicating the amount of tension in said edge dam loop produced in operating said remote control means.
- 5. Apparatus as claimed in claim 4, in which:
- a pivoted lever has a pivot supported by said edge dam guide apparatus,
- said pivoted lever has first and second arms, with said first arm extending generally toward said entrance, and said second arm extending generally away from said entrance,
- said downward-thrusting roller is carried by said first arm, and
- said sensing means is responsive to the force of said second arm as a result of the force on said first arm produced by said downward-thrusting roller.
- 6. In a continuous metal casting machine wherein a pair of opposing moving edge dams comprising many blocks slidably strung upon a pair of closed flexible unifying loops of high strength material travel along opposite edges of a casting region from its entrance to its outlet between a pair of revolving casting belts to define a moving mold, wherein said casting belts travel downstream in the machine for carrying molten metal downstream from said entrance to become solidified for discharging cast product from the outlet and wherein the edge dams return from the outlet to the entrance and wherein one of the casting belts is a lower belt and said lower casting belt extends in front of the entrance and slopes downwardly toward the entrance for defining an open pool region for receiving molten metal, apparatus for enhancing the sealing action of an edge dam in said open pool region in front of the entrance comprising:
- edge dam guide apparatus engaging the returning edge dam in front of the open pool for guiding the moving edge dam upwardly into a crest in front of the open region, said crest being above the level of said open pool region, and
- a downward-thrusting roller pressing down upon the moving edge dam between said guide apparatus and the open pool region, for bending the moving edge dam convex downwardly downstream from said crest and in front of the open pool region for increasing the downward pressure of the edge dam against the lower belt in the open pool region and also for sliding blocks along said unifying loop in said convex downwardly bending for keeping the blocks firmly together along the unifying loop in the open pool region, for enhancing the sealing action of the edge dam with respect to molten metal received into said open pool region.
- 7. Apparatus as claimed in claim 6, further comprising:
- load sensing means for sensing the force of said downward-thrusting roller for determining the tension in the unifying loop of the edge dam.
- 8. Apparatus for enhancing the sealing action as claimed in claim 7, in which:
- a pivoted lever has a pivot supported by said edge dam guide apparatus,
- said pivoted lever has first and second arms, with said first arm extending generally toward said entrance, and said second arm extending generally away from said entrance,
- said downward-thrusting roller is carried by said first arm, and
- said load sensing means is responsive to the force of said second arm as a result of the force on said first arm produced by said downward-thrusting roller.
RELATED APPLICATION
The present application is a division of copending application Ser. No. 06/937,319, filed Dec. 3, 1986, which issued as Pat. No. 4,694,899, on Sept. 22, 1987.
US Referenced Citations (7)
Foreign Referenced Citations (1)
Number |
Date |
Country |
59-189043 |
Oct 1984 |
JPX |
Divisions (1)
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Number |
Date |
Country |
Parent |
937319 |
Dec 1986 |
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