Arrangement for feeding fine-grained matter to a concentrate or matte burner of a suspension smelting furnace
10151535 · 2018-12-11
Assignee
Inventors
Cpc classification
F27B3/205
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65G33/14
PERFORMING OPERATIONS; TRANSPORTING
B65G37/00
PERFORMING OPERATIONS; TRANSPORTING
F27D3/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27D99/0033
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02P10/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F27D99/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65G37/00
PERFORMING OPERATIONS; TRANSPORTING
F27D3/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to an arrangement for feeding fine-grained matter to a concentrate or matte burner (1) of a suspension smelting furnace (2). The arrangement includes a screw conveyor (3) comprising a tube means (4) having an inlet opening (6), an downward-facing outlet opening (7), and a helical screw (8) for moving fine-grained matter from the inlet opening (6) to the downward-facing outlet opening (7). The downward-facing outlet opening (7) is provided with a distribution means (10). The distribution means (10) has a free end (11) configured for feeding fine-grained matter into the downward-facing outlet opening (7). The helical screw (8) of the screw conveyor (3) extends from the direction of the inlet opening (6) at least partly over the downward-facing outlet opening (7).
Claims
1. An arrangement for feeding fine-grained matter to a concentrate or matte burner of a suspension smelting furnace, wherein the arrangement includes a screw conveyor comprising a tube means having a circumferential inner surface, an inlet opening for feeding fine-grained matter into the tube means, a downward-facing outlet opening in the circumferential inner surface of the tube means for discharging fine-grained matter from the tube means, and a helical screw arranged around a shaft for moving fine-grained matter in the tube means from the inlet opening to the downward-facing outlet opening by rotating the helical screw, characterized by the downward-facing outlet opening of the tube means of the screw conveyor being provided with a distribution means where the distribution means (a) has free end configured for feeding fine-grained matter into the downward-facing outlet opening, (b) extends from a direction of the inlet opening into the downward-facing outlet opening in at least one of a slanted and curved configuration; (c) is forward open and is cross-section curved so that the distribution means has in cross-section a radius of curvature essentially corresponding to a radius of a circumferential inner surface of the tube means; and (d) forms an extension of the circumferential inner surface of the tube means of the screw conveyor, and further characterized by the helical screw of the screw conveyor extending from the direction of the inlet opening at least partly over the downward-facing outlet opening.
2. The arrangement according to claim 1, characterized by the downward-facing outlet opening of the tube means of the screw conveyor comprising an outlet tube section, which is attached to the tube means of the screw conveyor and which has a circular cross section and a first central axis C, by the tube means of the screw conveyor having a circular-cross section and second central axis D that cuts the first central axis C of the tube means of the screw conveyor, and by the helical screw of the screw conveyor extending from the direction of the inlet opening of tube means over the downward-facing outlet opening of the tube means a distance corresponding to between 10 and 40% of the diameter of the outlet tube section.
3. The arrangement according to claim 1, characterized by the inlet opening of the tube means of the screw conveyor being in communication with a dosing bin, and by a loss-in-weight controller being arranged between the dosing bin and the inlet opening of the tube means of the screw conveyor for controlling the feeding of fine-grained matter from the dosing bin to the screw conveyor.
4. The arrangement according to claim 3, characterized by the dosing bin being arranged in communication with a fluidization means for fluidizing fine-grained matter, and by a filling valve being provided between the fluidization means and the dosing bin for opening and closing the communication between the fluidization means and the dosing bin.
5. The arrangement according to claim 1, characterized by the downward-facing outlet opening being in communication with a conveyor means that is in communication with the concentrate or matte burner of the suspension smelting furnace.
6. The arrangement according to claim 1, characterized by the distribution means being in the downward-facing outlet opening fastened between the tube means of the screw conveyor and a conveyor means that is in communication with the concentrate or matte burner of the suspension smelting furnace.
7. The arrangement according to claim 1, characterized by the distribution means being in the downward-facing outlet opening fastened to a flange means, and by the flange means being fastened between the tube means of the screw conveyor and a conveyor means that is in communication with the concentrate or matte burner of the suspension smelting furnace.
8. The arrangement according to claim 1, characterized by the distribution means being in the downward-facing outlet opening fastened to a flange means, and by the flange means being fastened between an outlet tube section of the downward-facing outlet opening of the tube means of the screw conveyor and a conveyor means that is in communication with the concentrate or matte burner of the suspension smelting furnace.
9. The arrangement according to claim 1, characterized by the distribution means being in the downward-facing outlet opening fastened by means of external fastening means such as screw means.
10. The arrangement according to claim 5, characterized by the conveyor means being a slide chute, air slide or drag chain conveyor or a combination of these leading to the concentrate or matte burner of the suspension smelting furnace.
11. The arrangement according to claim 1, characterized by the distribution means being forward open and in cross-section at least partly V-shaped or curved.
12. The arrangement according to claim 1, characterized by the free end of the distribution means being at least partly curved.
13. The arrangement according to claim 1, characterized by the free end of the distribution means having a straight section that is essentially perpendicular to at least one flight of the helical screw.
14. The arrangement according to claim 1, characterized by the free end of the distribution means has a straight section, and by the helical screw comprises at least one flight that is essentially perpendicular to the straight section of the distribution means.
15. The arrangement according to claim 1, characterized by the free end of the distribution means being formed of two straight sections, and by the helical screw comprises at least one flight that is essentially perpendicular to one of said two straight sections of the distribution means.
16. The arrangement according to claim 1, characterized by the distribution means being symmetrical with respect to a vertical plane B that cuts a common rotation axis of the shaft and the helical screw.
17. The arrangement according to claim 1, characterized by the distribution means being asymmetrical with respect to a vertical plane B that cuts a common rotation axis of the shaft and the helical screw so that the distribution means is arranged essentially completely on one side of said vertical plane B.
18. The arrangement according to claim 1, characterized by the distribution means being arranged in the downward-facing outlet opening of the tube means of the screw conveyor so that fine-grained matter is prevented from flowing between the downward-facing outlet opening of the tube means of the screw conveyor and the distribution means.
19. The arrangement according to claim 1, characterized by the inlet opening of the screw conveyor for feeding fine-grained matter into the tube means being in the form of an forward facing inlet opening in the circumferential inner surface of the tube means for feeding fine-grained matter into the tube means.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) In the following the invention will described in more detail by referring to the figures of which
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DETAILED DESCRIPTION OF THE INVENTION
(14) The invention relates to an arrangement for feeding fine-grained matter to a concentrate or matte burner 1 of a suspension smelting furnace 2 such as a flash smelting furnace or a direct-to-blister smelting furnace.
(15) The fine-grained matter may for example comprise copper matte and/or copper sulfide concentrate or matte or flue dust or coolant or pulverized fuel or possible flux.
(16) The arrangement includes a screw conveyor 3 comprising a tube means 4 having a circumferential inner surface 5, an inlet opening 6 for feeding fine-grained matter into the tube means 4, a downward-facing outlet opening 7 in the circumferential inner surface 5 of the tube means 4 for discharging fine-grained matter from the tube means 4, and a helical screw 8 arranged around a shaft 9 for moving fine-grained matter in the tube means 4 from the inlet opening 6 to the downward-facing outlet opening 7 by rotating the helical screw 8.
(17) In a preferred embodiment of the arrangement, the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 comprises an outlet tube section 21, which is attached to the tube means 4 of the screw conveyor 3. In this preferred embodiment the outlet tube section 21 has a circular cross section and a first central axis C. In this preferred embodiment the tube means 4 of the screw conveyor 3 has a circular-cross section and second central axis D that cuts the first central axis C of the outlet tube section 21.
(18) The downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 is provided with a distribution means 10.
(19) In the figures the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 has a circular or round form, but alternatively the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 could for example have the shape of a polygon, such as triangle, quadrilateral, quadrant, pentagon, or hexagon.
(20) The distribution means 10 may be in the form of a plate such as a metal plate.
(21) The distribution means 10 may be forward open and in horizontal cross-section at least partly V-shaped or curved.
(22) The distribution means 10 has a free end 11 configured for feeding fine-grained matter into the downward-facing outlet opening 7.
(23) The helical screw 8 of the screw conveyor 3 extends from the direction of the inlet opening 6 at least partly over the downward-facing outlet opening 7.
(24) In other words, the screw conveyor 3 defines a conveying direction (marked with A in
(25) In a preferred embodiment of the arrangement, the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 comprises an outlet tube section 21, which is attached to the tube means 4 of the screw conveyor 3. This preferred embodiment the outlet tube section 21 has a circular cross section and a first central axis C. In this preferred embodiment the tube means 4 of the screw conveyor 3 has a circular-cross section and second central axis D that cuts the first central axis C of the outlet tube section 21. In this preferred embodiment the helical screw 8 of the screw conveyor 3 extends from the direction of the inlet opening 6 over the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 a distance corresponding to between 10 and 40%, preferably corresponding to between 20 and 30%, more preferably corresponding to about 25%, of the diameter of the outlet tube section 21.
(26) In the arrangement, the inlet opening 6 of the tube means 4 of the screw conveyor 3 can be in communication with a dosing bin 13, and a loss-in-weight controller 12 can be arranged between the dosing bin 13 and the forward-facing inlet opening 6 of the tube means 4 of the screw conveyor 3 for controlling the feeding of fine-grained matter from the dosing bin 13 to the screw conveyor 3.
(27) The dosing bin 13 may in turn be arranged in communication with a fluidization means 14 for fluidizing fine-grained matter so that a filling valve 15 is provided between the fluidization means 14 and the dosing bin 13 for opening and closing the communication between the fluidization means 14 and the dosing bin.
(28) The downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 may be in communication with a conveyor means 16 that is in communication with the concentrate or matte burner 1 of the suspension smelting furnace 2. The conveyor means 16 may, as shown in
(29) The distribution means 10 may in the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 be fastened between the tube means 4 of the screw conveyor 3 and a conveyor means 16 that is in communication with the concentrate or matte burner 1 of the suspension smelting furnace 2. The conveyor means 16 may, as shown in
(30) The distribution means 10 may in the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 be fastened to a flange means 20, which is fastened between the tube means 4 of the screw conveyor 3 and a conveyor means 16 that is in communication with the concentrate or matte burner 1 of the suspension smelting furnace 2. The conveyor means 16 may, as shown in
(31) The distribution means 10 may in the downward-facing outlet opening 7 of the tube means 4 of the screw conveyor 3 be fastened to a flange means 20, which is fastened between an outlet tube section 21 of the downward-facing outlet 7 of the tube means 4 of the screw conveyor 3 and a conveyor means 16 that is in communication with the concentrate or matte burner 1 of the suspension smelting furnace 2. The conveyor means 16 may, as shown in
(32) The distribution means 10 may also be fastened by means of external fastening means such as screw means (not shown in the drawings) in the downward-facing outlet opening 7.
(33) The distribution means 10 may extend from the direction of the inlet opening 6 into the downward-facing outlet opening 7. In other words, the screw conveyor 3 defines a conveying direction (marked with A in
(34) In the arrangement the distribution means 10 may be forward open and be in cross-section curved so that the distribution means 10 has in cross-section a radius of curvature essentially corresponding to the radius of the circumferential inner surface 5 of the tube means 4. In such case the distribution means 10 is preferably, but not necessarily, arranged in the downward-facing outlet opening 7 so that the distribution means 10 forms an extension of the circumferential inner surface 5 of the tube means 4. In such case the free end 11 of the distribution means 10 is preferably, but not necessarily, at least partly curved. In such case the free end 11 of the distribution means 10 has preferably, but not necessarily, a straight section 19 that is essentially perpendicular to at least one flight 18 of the helical screw 8.
(35) The free end 11 of the distribution means 10 may have a straight section 19, and the helical screw 8 may comprise at least one flight 18 that is essentially perpendicular to said straight section 19 of the distribution means 10 as shown in
(36) The free end 11 of the distribution means 10 may consist of two straight sections 19, and the helical screw 8 may comprise at least one flight 18 that is essentially perpendicular to one of said two straight sections 19 of the distribution means 10.
(37) The distribution means 10 may, as shown in
(38) In an embodiment of the arrangement, such as in the embodiment shown in
(39) The inlet opening 6 of the screw conveyor 3 for feeding fine-grained matter into the tube means 4 may, as shown in the figures, be in the form of an forward facing inlet opening 6 in the circumferential inner surface 5 of the tube means 4 for feeding fine-grained matter into the tube means 4.
(40) It is apparent to a person skilled in the art that as technology advanced, the basic idea of the invention can be implemented in various ways. The invention and its embodiments are therefore not restricted to the above examples, but they may vary within the scope of the claims.