Claims
- 1. A method of continuous horizontal casting wherein a pair of pinch rolls engages the continuously cast strand to incrementally withdraw the continuously cast strand from a stationary mold in discrete withdrawal steps in a withdrawal direction, comprising the steps of:
- directly driving one of the pinch rolls of the pinch roll pair free of slip by means of a DC-motor;
- sensing an angle of rotation of said DC-motor;
- transmitting signal pulse information corresponding to said sensed angle of rotation to a microprocessor;
- comparing by means of said microprocessor said signal pulse information to predetermined information stored in a memory register; and
- regulating as a function of said comparison step a pulse-width modulation of driving current for said DC-motor.
- 2. In a method of continuous horizontal casting wherein a pair of pinch rolls intermittently operated by a DC-motor engages the continuously cast strand to incrementally withdraw the continuously cast strand from a stationary mold in discrete withdrawal steps in a withdrawal direction, the improvement which comprises:
- directly driving one of the pinch rolls of the pinch roll pair free of slip by means of a transmission-less DC-motor;
- regulating the transmission-less DC-motor so as to perform a first portion of each said discrete withdrawal step by driving said one pinch roll of said pair of pinch rolls so as to impart a gradually increasing withdrawal speed to said strand in said direction of withdrawal;
- regulating the transmission-less DC-motor to perform a second portion of each said discrete withdrawal step by driving said one pinch roll of said pair of pinch rolls so as to impart a gradually decreasing withdrawal speed to said cast strand in said withdrawal direction; and
- regulating the transmission-less DC-motor to perform a third portion of each said discrete withdrawal step by driving said one pinch roll of said pair of pinch rolls to briefly impart a direction of motion to said cast strand which is opposite to said withdrawal direction.
- 3. The method as defined in claim 2, wherein:
- said gradually increasing withdrawal speed is a linearly increasing withdrawal speed.
- 4. The method as defined in claim 2, wherein:
- said gradually decreasing withdrawal speed is a linearly decreasing withdrawal speed.
- 5. The method as defined in claim 2, wherein:
- said method steps of performing a first portion of each said discrete withdrawal step, a second portion of each said discrete withdrawal step and a third portion of each said discrete withdrawal step each include transmitting control signals of programmable duration and sequence for regulating said transmission-less DC-motor.
- 6. The method as defined in claim 2, wherein:
- said step of performing said first portion of each said discrete withdrawal step is performed in a plurality of short partial steps.
- 7. The method as defined in claim 2, wherein:
- said step of performing said second portion of each said discrete withdrawal step is performed in a plurality of short partial steps.
- 8. The method as defined in claim 2, wherein:
- said step of performing said third portion of each said discrete withdrawal step is performed in a plurality of short partial steps.
- 9. The method as defined in claim 2, furthering including the step of:
- engaging at least the one directly driven pinch roll with the cast strand at a location where it still contains a liquid metal pools.
- 10. An apparatus for horizontal continuous casting, comprising:
- a stationary mold for forming a casting emerging from the stationary mold;
- at least one pair of gripper rolls for directly engaging said emerging casting;
- a stepwise operating DC-motor directly driving at least one of the gripper rolls of said at least one pair of gripper rolls for stepwise withdrawal of said casting from the stationary mold;
- said DC-motor and said at least one gripper roll of said at least one gripper roll pair being directly coupled to one another to effect movement of said casting in direct relationship to rotation of said DC-motor;
- control means provided for said stepwise operating DC-motor;
- said control means transmitting control signals of programmable duration and sequence to said DC-motor, such that each operating step of said DC-motor comprises a first portion in which the speed of withdrawal of the casting is gradually increased from zero to a maximum, a second portion in which the speed of withdrawal is gradually decreased from the maximum to zero, and a third portion in which the direction of movement of the casting is reversed; and
- the increase and decrease in speed of withdrawal of the casting each being carried out in a plurality of short partial steps.
- 11. The apparatus as defined in claim 10, wherein:
- said at least one gripper roll and the DC-motor have a common shaft.
- 12. The apparatus as defined in claim 10, wherein:
- said at least one gripper roll engages the casting at a location where it emerges from the stationary mold while still internally containing therein a liquid metal core.
- 13. The apparatus as defined in claim 10, wherein:
- said control means comprises:
- an angular encoder means for generating digital pulse information related to the angular position of the DC-motor;
- a forward/backward counter means for receiving and counting the digital pulse information from the encoder means;
- a read-only memory that stores preset digital pulse information for partial steps of a certain preset speed pattern for each step of the DC-motor;
- a microprocessor receiving the digital pulse information from the counter and said read-only memory;
- said microprocessor generating output signals corresponding to the difference between the digital pulse information stored in the counter and said read-only memory; and
- a pulse generator means for driving the DC-motor in response to the microprocessor output signals so as to move the casting according to said preset speed pattern.
- 14. The apparatus as defined in claim 13, wherein:
- said pulse generator means comprises:
- a digital-analog converter for receiving digital output signals from the microprocessor and converting them into an analog signal; and
- a pulse-width modulating DC-current amplifier controlled by said analog signal so as to supply current pulses to said DC-motor.
- 15. The apparatus as defined in claim 13, further including:
- a time-signal generator means and a time-interval selector means operatively connected with the microprocessor for presetting a withdrawal time for the casting.
- 16. The apparatus as defined in claim 13, further including:
- an additional read-only memory connected with the microprocessor and in which there is stored a step sequence for start-up of the casting process.
- 17. The apparatus as defined in claim 16, further including:
- a time-signal generator means and a time-interval selector means operatively connected with the microprocessor for presetting a withdrawal time for the casting.
- 18. An apparatus for horizontal continuous casting, comprising:
- a mold for forming a casting emerging from the mold;
- at least one pair of gripper rolls for directly engaging said casting at a region of said emerging casting where said casting still internally contains a liquid core;
- an incrementally operating transmission-less DC-motor directly driving at least one of the gripper rolls of said at least one pair of gripper rolls for incremental withdrawal of said casting from the stationary mold;
- said DC-motor and said at least one gripper roll of said at least one gripper roll pair being directly coupled to one another to effect movement of said casting in direct relationship to rotation of said DC-motor;
- control means provided for said incrementally operating DC-motor;
- said control means transmitting control signals of programmable duration and sequence to said DC-motor, such that each operating increment of said DC-motor comprises a first portion in which the speed of withdrawal of the casting is gradually increased from zero to a maximum, a second portion in which the speed of withdrawal is gradually decreased from the maximum to zero, and a third portion in which the direction of movement of the casting is reversed; and
- the increase and decrease in speed of withdrawal of the casting each being carried out in a plurality of short partial increments.
- 19. The apparatus as defined in claim 18, wherein:
- said at least one gripper roll and the DC-motor have a common shaft.
- 20. The apparatus as defined in claim 18, wherein:
- said control means comprises:
- an angular encoder means for generating digital pulse information related to the angular position of the DC-motor;
- a forward/backward counter means for receiving and counting the digital pulse information from the encoder means;
- a read-only memory that stores preset digital pulse information for partial increments of a certain preset speed pattern for each withdrawal increment of the DC-motor;
- a microprocessor receiving the digital pulse information from the counter and said read-only memory;
- said microprocessor generating output signals corresponding to the difference between the digital pulse information stored in the counter and said read-only memory; and
- a pulse generator means for driving the DC-motor in response to the microprocessor output signals so as to move the casting according to said preset speed pattern.
- 21. The apparatus as defined in claim 20, wherein:
- said pulse generator means comprises:
- a digital-analog converter for receiving digital output signals from the microprocessor and converting them into an analog signal; and
- a pulse-width modulating DC-current amplifier controlled by said analog signal so as to supply current pulses to said DC-motor.
- 22. The apparatus as defined in claim 20, further including:
- a time-signal generator means and a time-interval selector means operatively connected with the microprocessor for presetting a withdrawal time for the casting.
- 23. The apparatus as defined in claim 20, further including:
- an additional read-only memory connected with the microprocessor and in which there is stored an increment sequence for start-up of the casting process.
- 24. The apparatus as defined in claim 23, further including:
- a time-signal generator means and a time-interval selector means operatively connected with the microprocessor for presetting a withdrawal time for the casting.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5651/80 |
Nov 1980 |
ATX |
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CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part application of our copending U.S. application Ser. No. 319,917, filed Nov. 10, 1981, and entitled "Apparatus For Horizontal Continuous Casting," now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2340636 |
Feb 1975 |
DEX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
319917 |
Nov 1981 |
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