CATERPILLAR CASTING MACHINE AND METHOD FOR PRODUCING A CAST MATERIAL FROM LIQUID METAL
20190381560 · 2019-12-19
Assignee
Inventors
Cpc classification
B22D11/181
PERFORMING OPERATIONS; TRANSPORTING
B22D11/0685
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A caterpillar casting machine for producing a cast material from liquid metal, including two guide rails, which are used to form two endless horizontal circulating tracks arranged opposite each other, and a plurality of support elements, which are each guided on the guide rails with cooling blocks attached thereto such that a continuous chain of support elements is formed. The support elements are moved in a transport direction along the circulating tracks. Between the cooling blocks, which arrive at the opposite position in straight sections of the circulating tracks of the guide rails, a moving casting mold for the cast material is formed. A cooling device is also provided, which has separate cooling zones each with at least one cooling nozzle, wherein the cooling zones can be individually controlled along the transport direction and/or transverse to the transport direction to adjust an opening or closing of the cooling nozzles.
Claims
1-13. (canceled)
14. A caterpillar casting machine for producing a cast material from liquid metal, comprising: two guide rails arranged to form two endless horizontal circulation tracks that are disposed so as to be opposite one another; a plurality of support elements which are in each case guided on the guide rails so as to form a continuous chain of support elements which in a transporting direction are moved along the circulation tracks; cooling blocks attached to the support elements to form a moving casting mold for the cast material between the cooling blocks which in straight portions of the circulation tracks of the guide rails are positioned so as to be mutually opposite; and a cooling installation, wherein the cooling installation has separate cooling zones having in each case at least one cooling nozzle, wherein the cooling zones are individually actuatable along the transporting direction and/or transversely to the transporting direction for setting opening or closing of the cooling nozzles, wherein cooling for the cooling blocks is adaptable to a predetermined casting width in that the cooling zones with the cooling nozzles thereof in a peripheral region transversely to the transporting direction are actuated and/or wherein cooling for the cooling blocks is adaptable to at least one predetermined process parameter made up of a type of metal, a predetermined metal alloy, the casting width, casting speed, or the casting profile, in that the cooling zones by way of the cooling nozzles thereof in the transporting direction are actuated.
15. The caterpillar casting machine according to claim 14, wherein the cooling zones of the cooling installation are disposed so that a cooling medium dispersed by the cooling nozzles acts on the cooling blocks.
16. The caterpillar casting machine according to claim 15, wherein the cooling nozzles of the separate cooling zones are directed toward the cooling blocks of an upper caterpillar.
17. The caterpillar casting machine according to claim 16, wherein the cooling installation is disposed above an upper span of the upper caterpillar, wherein the cooling medium is dispersible from above onto the cooling blocks by way of the cooling nozzles.
18. The caterpillar casting machine according to claim 15, wherein the cooling nozzles are directed toward the cooling blocks of a lower caterpillar.
19. The caterpillar casting machine according to claim 18, wherein the cooling installation is disposed below a lower span of the lower caterpillar, wherein the cooling medium is dispersible from below onto the cooling blocks by way of the cooling nozzles.
20. The caterpillar casting machine according to claim 14, further comprising a control installation for actuating individual cooling nozzles in the respective cooling zones, wherein the control installation has a memory in which a predetermined cooling model is stored, wherein an actuation of the cooling nozzles is carried out based on said cooling model.
21. A method for producing a cast material from liquid metal, comprising the steps of: casting the liquid metal in a moving casting mold that is formed between cooling blocks that are attached to support elements that in a transporting direction move along in each case two endless circulation tracks that are disposed so as to be opposite one another; providing a cooling installation, having separate cooling zones with in each case at least one cooling nozzle therein, along the transporting direction and/or transversely to the transporting direction, said cooling zones being in each case individually actuated in order for the at least one cooling nozzle to be opened or to be closed; and actuating the cooling zones in a peripheral region transversely to the transporting direction so as to adapt cooling for the cooling blocks to a predetermined casting width and/or actuating the cooling zones with their cooling nozzles along the transporting direction so as to adapt cooling to a predetermined process parameter based on a type of metal, a predetermined metal alloy, casting width, casting speed, or casting profile.
22. The caterpillar casting machine according to claim 21, further comprising providing a control installation for actuating the individual cooling nozzles in the respective cooling zones, wherein the control installation has a memory in which a predetermined cooling model is stored, wherein the cooling nozzles are actuated based on the cooling model to thereby influence a temperature management of the cast material in the casting mold.
Description
[0016] Preferred embodiments of the invention are described in detail hereunder by means of a schematically simplified drawing.
[0017] In the drawing:
[0018]
[0019]
[0020]
[0021]
[0022] Preferred embodiments of a caterpillar casting machine 10 according to the invention and the components thereof are explained hereunder with reference to
[0023] The caterpillar casting machine 10 has at least one cooling installation 20 which comprises separate cooling zones 22 having in each case a plurality of cooling nozzles 23. A schematically simplified plan view of such a cooling installation 20 is illustrated in
[0024]
[0025]
[0026]
[0027] The caterpillar casting machine 10 comprises at least one cooling installation 20 by means of which, for example, the cooling blocks 16 can be cooled, said cooling blocks 16 being fastened to the support elements 14 and, in a manner adjacent to the casting mold 18, circulating in the transporting direction T along the circulation tracks U that are configured by the guide rails 14. Cooling installations 20, by means of suitable mountings (not shown), are disposed above the upper span of the upper caterpillar 10.1 as well as below the lower span of the lower caterpillar 10.2 (cf.
[0028] The cooling installations 20 in the illustration of
[0029] The caterpillar casting machine 10 comprises a control installation 26 (cf.
[0030] In terms of the embodiment of
[0031] The cooling installation 20 shown in
[0032] The cooling zones 22 of the cooling installation 20 are disposed in the form of a matrix. In detail, a total of four cooling zones 22 (having in each case three cooling nozzles 23 that are disposed beside one another) are provided when viewed in the transporting direction T. A total of eight cooling zones 22 are provided across the width of the casting mold 18, that is to say in a direction transverse to the transporting direction T, in the case of the embodiment of
[0033] As has already been explained elsewhere above, it can be provided for the invention that, for example, pressurized water is sprayed onto the cooling blocks 16 from the cooling nozzles 23.
[0034] A cooling installation 20 is shown in an initial operating position in
[0035] The Illustration of
[0036] On account of associated cooling nozzles 23 in peripheral regions R of the casting mold 18 being able to be opened or closed in a targeted manner as explained, the cooling for the cast material 11 can be adapted to different casting widths, wherein a saving in terms of energy is achieved by way of regulating a pump in a corresponding manner. For example, less water is required across the width of the casting mold 18 for narrower casting widths, when cooling nozzles 23z in the peripheral regions R of the casting mold 18 are closed, as explained. It is also possible herein for an influencing of the casting profile to be achieved by a targeted switching of individual cooling zones (that is to say opening or closing associated cooling nozzles 23). However, in order for the casting profile to be influenced, it may also be necessary for peripheral zones of the casting mold 18 to be cooled to a lesser extent or not at all, so as to avoid in a targeted manner so-called cold shoulders.
[0037]
[0038] The operating position illustrated in
[0039] On account of the actuation of the cooling zones 22 which has been explained above and by way of which selected cooling nozzles can be opened (23a) or closed (23z), a targeted cooling output can be set in the assigned regions of the casting mold 18 along the transporting direction T and/or transversely to the latter.
[0040] An advantageous automation of the production process can be achieved in that a cooling model is stored in a memory of the control installation 26. The temperature management and the profile of the cast material 11 generated can be influenced based on said model.
LIST OF REFERENCE SIGNS
[0041] 10 Caterpillar casting machine [0042] 10.1 Upper caterpillar [0043] 10.2 Lower caterpillar [0044] 11 Cast material [0045] 12 Guide rails [0046] 13 Drive wheel [0047] 14 Support element [0048] 16 Cooling block [0049] 18 Casting mold [0050] 19 Casting nozzle [0051] 20 Cooling installation [0052] 22 Cooling zone [0053] 23 Cooling nozzles [0054] 23a Opened cooling nozzles [0055] 23z Closed cooling nozzles [0056] 24 Intermediate space [0057] 25 Intermediate space [0058] 26 Control Installation [0059] R Peripheral region [0060] T Transporting direction/Casting direction [0061] U Circulation track