TILTABLE EXCHANGEABLE METALLURGICAL VESSEL AND METHOD FOR FIXING AND RELEASING A TILTABLE METALLURGICAL VESSEL
20200385828 ยท 2020-12-10
Assignee
Inventors
Cpc classification
F27B3/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27D19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27D21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27B3/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27B3/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention relates to the subject area of metallurgical systems, in particular a metallurgical vessel which is fixed on a support ring. The object of the invention is to provide a metallurgical vessel having a support ring and a method for fixing and releasing, which prevents constraint forces. The tiltable metallurgical vessel having a round cross-section is at least partially surrounded by a support ring. The support ring is at a distance from the metallurgical vessel in the radial direction. The metallurgical vessel has at least three brackets, each having a respective pin. The support ring has at least three receiving openings which receive the pins. These receiving openings permit a shifting of the pin in the radial direction. The pins are secured against falling out of the receiving opening and the bracket by at least three locking devices floatingly mounted and arranged inside the support ring.
Claims
1-14. (canceled)
15. A tiltable metallurgical vessel comprising: a round cross section; and at least three brackets, each having a respective pin; wherein the metallurgical vessel is at least partially surrounded by a support ring, and the support ring is at a distance from the metallurgical vessel in the radial direction, the support ring having at least three receiving openings suitable for receiving the pins; and wherein the receiving openings permit shifting of the pin in the radial direction, and there are at least three locking devices floatingly mounted and arranged inside the support ring, which secure the pins against falling out of the receiving opening and the bracket.
16. The tiltable metallurgical vessel as claimed in claim 15, wherein: the pin has a wedge pressure surface; the floatingly mounted locking devices have a wedge; and the floatingly mounted locking device is suitable for bringing the wedge into connection with the wedge pressure surface to secure the pin against falling out of the receiving opening and the bracket.
17. The tiltable metallurgical vessel as claimed in claim 16, wherein the wedge pressure surface is one of a lateral passage opening or at least one lateral groove.
18. The tiltable metallurgical vessel as claimed in claim 16, wherein the floatingly mounted locking device comprises: a main body with a main body opening, through which the pin can penetrate; and a cylinder mounted on the main body, the cylinder being connected directly to the wedge.
19. The tiltable metallurgical vessel as claimed in claim 15, wherein the receiving openings of the support ring are elongate holes.
20. The tiltable metallurgical vessel as claimed in claim 15, wherein the pin has a dimension in the radial direction of the metallurgical vessel, and the receiving opening is at least twice as large in the radial direction as the dimension of the pin in the radial direction.
21. The tiltable metallurgical vessel as claimed in claim 15, wherein a distance sleeve, through which the pin projects, is mounted on the bracket.
22. The tiltable metallurgical vessel as claimed in claim 15, wherein the floatingly mounted locking device has a position monitoring device.
23. The tiltable metallurgical vessel as claimed in claim 22, wherein the position monitoring device is implemented by means of a pressure measuring device and of a further position monitoring device of the cylinder.
24. The tiltable metallurgical vessel as claimed in claim 15, wherein the metallurgical vessel has four brackets with pins, the support ring has four receiving openings, and there are four floatingly mounted locking devices inside the support ring.
25. The tiltable metallurgical vessel as claimed in claim 15, wherein the metallurgical vessel is an argon oxygen converter and has a holding capacity of up to 180 t.
26. A method for fixing a tiltable metallurgical vessel on a support ring as claimed in claim 15, comprising: connecting the metallurgical vessel to the support ring in such a way that the pins penetrate into the receiving openings as soon as the metallurgical vessel is resting on the support ring; and securing the metallurgical vessel against falling out of the bracket and of the receiving opening by floatingly mounted locking devices of each pin.
27. The method for fixing a tiltable metallurgical vessel on a support ring as claimed in claim 26, further comprising continuously monitoring the floatingly mounted locking device by means of a position monitoring device.
28. The method for fixing a tiltable metallurgical vessel on a support ring as claimed in claim 27, wherein the floatingly mounted locking device has a wedge for securing the pin, and the wedge is pressed in with a maximum of 75% of the available maximum force that is possible for removing the wedge.
29. The method for fixing a tiltable metallurgical vessel on a support ring as claimed in claim 26, further comprising: releasing the fixing of pins by floatingly mounted locking devices; and lifting the metallurgical vessel off the support ring.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Further advantages and features of the present invention will become apparent from the following description of non-limitative illustrative embodiments, wherein reference is made to the following figures, which show the following:
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DETAILED DESCRIPTION
[0041]
[0042] A further embodiment of the connection of a metallurgical vessel 1 to a support ring 2 is shown in
[0043] In
[0044]
[0045] Possible embodiments of the pin 10 and of the wedge pressure surface 11 are illustrated in
[0046] One embodiment of a metallurgical vessel 1 with a support ring 2 and four brackets 12 is illustrated in
[0047]
[0048] The shape of the open support ring 2 also changes due to heat radiation from the hot metallurgical vessel 3from a U shape to a V shape.
[0049] Although the invention has been illustrated and described more specifically in detail by means of the preferred illustrative embodiments, the invention is not restricted by the examples disclosed, and other variations can be derived therefrom by a person skilled in the art without exceeding the scope of protection of the invention.
LIST OF REFERENCE SIGNS
[0050] 1 metallurgical vessel [0051] 2 support ring [0052] 3 hot metallurgical vessel [0053] 4 hot support ring [0054] 10 pin [0055] 11 wedge pressure surface [0056] 12 bracket [0057] 13 distance sleeve [0058] 14 receiving opening [0059] 15 insertion chamfer [0060] 16 lateral passage opening [0061] 17 groove [0062] 20 floatingly mounted locking device [0063] 21 wedge [0064] 22 cylinder [0065] 23 main body [0066] 24 main body opening [0067] 25 end position limit [0068] 26 holding device [0069] 27 insertion chamfer [0070] 28 position monitoring unit [0071] 29 end position limit for release