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EP 0 123 501 B1 |
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EUROPEAN PATENT SPECIFICATION |
(45) |
Mention of the grant of the patent: |
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15.07.1987 Bulletin 1987/29 |
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Date of filing: 17.04.1984 |
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International Patent Classification (IPC)4: B03B 5/62 |
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Spiral separator incorporating a fluid deflector
Wendelscheider mit einer Flüssigkeitsablenkvorrichtung
Séparateur hélicoidal comportant un déflecteur de fluide
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Designated Contracting States: |
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DE FR GB NL SE |
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Priority: |
18.04.1983 AU 8936/83
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Date of publication of application: |
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31.10.1984 Bulletin 1984/44 |
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Applicant: MINERAL DEPOSITS LIMITED |
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Southport
Queensland 4215
New South Wales (AU) |
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Inventor: |
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- Giffard, Philip John
Nerang 4211
Queensland (AU)
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(74) |
Representative: Topps, Ronald et al |
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D. YOUNG & CO
10 Staple Inn London WC1V 7RD London WC1V 7RD (GB) |
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Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] This invention relates to an improved spiral separator and to a method of spiral
separation which is of particular use in the separation of minerals.
[0002] Spiral separators are extensively used for the wet gravity separation of solids according
to their specific gravity, for example for separating various kinds of mineral sands
from silica sands.
[0003] Separators of the kind under discussion are shown, for example, in our Australian
Patent Application 82717/82. Such separators commonly comprise a vertical column about
which there are supported one or more helical troughs. In operation, a "pulp" or slurry
of the materials to be separated and water is introduced to the upper end of a trough
and as the pulp descends the helix, centrifugal forces act on the less dense particles
in a radially outwards direction while the more dense particles segregate to the bottom
of the flow and after slowing through close approach to the working surface of the
trough gravitate towards the vertical column.
[0004] During operation of a spiral separator there is a general migration of water from
the inner portion of smaller radius of the flow to the outer portion of the flow.
However, particularly when there are high proportions of high specific gravity particles
present in the pulp, the total water supply at the inner portion can be used up before
segregation is completed. As this takes place there is an accumulation of particles
at the inner portion which, while it does not prevent the stream from continuing to
move, changes the effective shape of the volute cross section and separation proceeds
no further.
[0005] CA-A-961005 discloses a spiral separator in which fresh water from a separate channel
of the trough is fed into the main channel of the trough to replace water which has
been lost in extracting particulate material from the separator.
[0006] According to the present invention in one aspect there is provided a spiral separator
including at least one helical trough having a trough floor extending between an inner
periphery and an outer periphery, said trough being arranged to receive a pulp stream
of water and particles at its upper end and to separate particles of different densities
as the stream moves downwardly along said trough, said separator being characterised
by the inclusion of at least one deflector located adjacent said outer periphery and
having at least one surface contoured for deflecting a portion of the low solids high
velocity stream component in a fan-like spray from the outer periphery of the pulp
stream back across said stream towards said inner periphery.
[0007] According to another aspect of the invention there is provided a method for rediluting
a pulp stream flowing downwardly along the helical trough of a spiral separator comprising
the deflection of a portion of the low solids high velocity stream component in a
fan-like spray from the outer periphery of said pulp stream back across said stream
towards its inner periphery.
[0008] Preferably, an adjustable deflector is located on an outer wall of the helical trough
to deflect the stream component in said fan-like spray. This is not the same mechanism
as a normal wash water supply which is deliberately applied as small radial outflow
across the segregated stream.
[0009] Some embodiments of the invention will now be described, by way of examples, with
reference to the accompanying drawings, in which:-
Figure 1 is a sectional perspective view of part of a spiral separator looking upstream
and showing one embodiment of the rediluting method and apparatus in use, 0
Figure 2 is a radial section view taken on line 2-2 of Figure 1,
Figure 3 is an incomplete section through a helical trough looking downstream in a
tangential direction and showing another embodiment of the invention,
Figure 4 is a plan view taken on line 4-4 of Figure 3,
Figure 5 is a radial sectional view taken on line 5-5 of Figure 3, and
Figure 6 is a section taken on line 6-6 of Figure 5,
[0010] As shown in Figure 1 the spiral separator 1 includes helical trough 2 supported from
a vertical column 3.
[0011] The helical trough 2 in cross-section comprises an upright inner wall 4, a support
web 5 whereby the lip of the inner wall 4 is connected with the column 1, an upright
outer wall 6 terminating in a lip 7 and a trough floor 8 extending between the inner
wall 4 and the outer wall 6. The trough working surface comprises an inner portion
9 and an outer portion 10 inclined at a greater angle to the helix radial direction
and thus slopes more steeply upwardly and outwardly.
[0012] The profile of the bottom of the trough is such that the mass of water in the slurry
moves radially outward and upward. This causes thinning of the water layer at the
inner portion 11 of the flow and a water build-up at the low solids, high velocity
stream at the flow periphery 12.
[0013] In accordance with the invention, a deflector 13 is attached to the outer wall 6
to deflect a portion of the water from the flow periphery 12 into the inner portion
11 to reinstate the water quantities necessary to permit the designed separation mechanism
to proceed.
[0014] As shown in Figure 2 the deflector 13 is adjustable by rotation about a radial axis
14 and has an under-surface 15 suitably contoured to deflect the water in a fan-like
spray 16 across the trough. The undersurface 15 is arcuate in contour when viewed
in both radial and tangential directions with respect to the trough. The deflector
13 preferably permits the stream to be rediluted to a considerable depth and across
a broad band at the inner portion 9 of the trough floor. The sharpened leading end
17 of the deflector 13 points upstream and the degree of redilution may be controlled
by rotation of the deflector 13 about the axis 14. The outer surface 18 of the deflector
13 is contoured generally to conform to the trough wall 6 and to permit rotation of
the deflector 13 over the range required. The axis 14 may be spaced at any desired
distance from the leading end 17 of the deflector 13 depending upon the amount of
deflection required.
[0015] A second embodiment of the invention is shown in Figures 3 to 6 where corresponding
features have been given corresponding reference numerals for ease of description.
In this embodiment the helical trough descends in a lefthand spiral rather than the
right-hand spiral of the first embodiment.
[0016] In this embodiment the flow is deflected predominantly from the inwardly directed
concave surface 15 which extends from the leading end 17 where it is tangential to
the stream to a trailing end 18 where it is directed radially inwardly. However, in
this embodiment the flow can also be deflected from the upper surface 19 in a fan-like
spray from its trailing end 20. In other embodimemts the flow can be deflected entirely
from the upper surface.
[0017] The deflector of the second embodiment may also be adjustable as previously described
but is illustrated in a fixed position on the trough wall, just beneath a flexible
edge cover 21 with its lower surface 22 spaced above the trough floor to allow solids
to pass under the deflector. The tapered configuration of the deflector with its sharpened
leading end provides no abrupt edge which would otherwise tend to collect rubbish.
[0018] Although the invention has been described with reference to specific examples, it
will be appreciated by those skilled in the art that the invention may be embodied
in many other forms without departing from the scope of the present invention as defined
in the appended claims.
1. A spiral separator (1) including at least one helical trough (2) having a trough
floor (8) extending between an inner periphery (4) and an outer periphery (6), said
trough (2) being arranged to receive a pulp stream of water and particles at its upper
end and to separate particles of different densities the stream moves downwardly along
said trough (2), said separator (1) being characterised by the inclusion of at least
one deflector (13) located adjacent said outer periphery (6) and having at least one
surface contoured for deflecting a portion of the low solids high velocity stream
component in a fan-like spray (16) from the outer periphery of the pulp stream back
across said stream towards said inner periphery.
2. A spiral separator according to claim 1, wherein said outer periphery is defined
by an outer wall (6) and said deflector (13) is located on said wall (6).
3. A spiral separator according to claim 2, wherein said deflector (13) has an outer
surface (18) contoured to conform to said outer wall (6).
4. A spiral separator according to any preceding claim, wherein said deflector (13)
is adjustable to vary the amount of stream deflected.
5. A spiral separator according to claim 4, wherein said deflector (13) is mounted
for rotation about an axis (14) extending radially with respect to said trough (2),
thereby to vary the amount of stream deflected.
6. A spiral separator according to any preceding claim, wherein said deflector (13)
has a contoured undersurface (15) for deflecting said stream in said fan-like spray
(16).
7. A spiral separator according to claim 6, wherein said undersurface (15) is arcuate
in contour when viewed in both radial and tangential directions with respect to said
trough (2).
8. A spiral separator according to claim 7, wherein said deflector (13) has a sharpened
leading end (17) pointing upstream.
9. A spiral separator according to any preceding claim, wherein said trough floor
(8) has a portion (10) which slopes more steeply closer to said outer periphery.
10. A spiral separator according to claim 9, wherein said trough floor (8) includes
an inner portion (9) adjacent said inner periphery and a more steeply inclined outer
portion (10) between said inner portion and said outer periphery.
11. A spiral separator according to claim 10, wherein said deflector (13) is able
to deflect said stream component substantially to said inner portion (9) to redilute
the pulp stream to a substantial depth across said inner portion (9).
12. A spiral separator according to any preceding claim, wherein said deflector (13)
has a contoured upper surface (19) for deflecting said stream in a fan-like spray.
13. A spiral separator according to claim 12, wherein said deflector (13) also includes
an inwardly directed contoured surface (18) for deflecting said stream in a fan-like
spray.
14. A spiral separator according to claim 13, wherein said inwardly directed surface
(18) . extends from a leading end (17) where it is tangential to the stream to a trailing
edge (20) where it is directed radially inwards.
15. A spiral separator according to claim 14, wherein said inwardly directed surface
(18) is concave.
16. A spiral separator according to claim 12, wherein said deflector (13) has a sharpened
leading end pointing upstream.
17. A spiral separator according to claim 6, wherein said undersurface (15) is concave.
18. A spiral separator according to claim 17 wherein said undersurface (15) extends
from a leading end where it is tangential to the stream to a trailing edge where it
is directed radially inwards.
19. A method for rediluting a pulp stream flowing downwardly along the helical trough
(2) of a spiral separator (1) characterized by deflecting a portion of the low solids
high velocity stream component in a fan-like spray from the outer periphery of the
pulp stream back across said stream towards its inner periphery.
20. A method according to claim 19 wherein a substantial portion of said stream component
is deflected towards said inner periphery in a fan-like spray to redilute said pulp
stream to a substantial depth.
1. Wendelscheider (1) mit mindestens einer schraubenförmigen Rinne (2), deren Rinnenboden
(8) sich zwischen einem Innenrand (4) und einem Außenrand (6) erstreckt, wobei diese
Rinne (2) zur Aufnahme eines Pulpenstroms von Wasser und Partikeln an ihrem oberen
Ende und zur Abtrennung von Partikeln verschiedener Dichte, während der Strom abwärts
entlang der Rinne (2) fließt, eingerichtet ist, dadurch gekennzeichnet, daß der Wendelscheider
(1) zumindest eine Ablenkvorrichtung (13) anliegend an dem Außenrand (6) mit einer
Oberfläche enthält, die so gestaltet ist, daß ein Teil der Niedrigfestkörper-Hochgeschwindigkeitsstromkomponente in ein fächerförmiges Strahlenbündel (16) von dem Außenrand des Pulpenstromes
zurück über den Strom hinweg zu dem Innenrand hin gelenkt wird.
2. Wendelscheider nach Anspruch 1, dadurch gekennzeichnet, daß der Außenrand durch
eine Außenwand (6) gebildet wird und die Ablenkvorrichtung (13) sich an der Wand (6)
befindet.
3. Wendelscheider nach Anspruch 2, dadurch gekennzeichnet, daß die Ablenkvorrichtung
(13) eine äußere Oberfläche (18) hat, die so geformt ist, daß sie sich der Außenwand
(6) anpaßt.
4. Wendelscheider nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, daß die
Ablenkvorrichtung (13) verstellbar ist, um die Menge des abgelenkten Stroms zu verändern.
5. Wendelscheider nach Anspruch 4, dadurch gekennzeichnet, daß die Ablenkvorrichtung
(13) zur Rotation um eine Achse (14), die sich radial zur Rinne (2) erstreckt, angeordnet
ist, um dadurch die Merrge des abgelenkten Stroms zu verändern.
6. Wendelscheider nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, daß die
Ablenkvorrichtung (13) eine geformte Unterseite (15) hat, um den Strom als das fächerförmige
Strahlenbündel (16) abzulenken.
7. Wendelscheider nach Anspruch 6, dadurch gekennzeichnet, daß die Unterseite (15)
eine gekrümmte Kontur hat, und zwar sowohl radial als auch tangential in Bezug auf
die Rinne (2) betrachtet.
8. Wendelscheider nach Anspruch 7, dadurch gekennzeichnet, daß die Ablenkvorrichtung
(13) ein scharf zulaufendes Ende (17) hat, das stromaufwärts zweigt.
9. Wendelscheider nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, daß der
Rinnenboden (8) einen Bereich (10) hat, der nahe am Außenrand steiler abfällt.
10. Wendelscheider nach Anspruch 9, dadurch gekennzeichnet, daß der Rinnenboden (8)
einen inneren Bereich (9) angrenzend an den Innenrand und einen steiler geneigten
äußeren Bereich (10) zwischen dem inneren Bereich und dem Außenrand einschließt.
11. Wendelscheider nach Anspruch 10, dadurch gekennzeichnet, daß die Ablenkvorrichtung
(13) die genannte Strom-Komponente im wesentlichlen zum inneren Bereich (9) hin ablenken
kann, um den Pulpenstrom auf eine nennenswerte Tiefe über den inneren Bereich (9)
hinweg zurückzuverdünnen.
12. Wendelscheider nach einem der Ansprüche 1 bis 11, dadurch gekennzeichnet, daß
die Ablenkvorrichtung (13) eine geformte obere Fläche (19) hat, um den Strom in ein
fächerförmiges Strahlenbündel abzulenken.
13. Wendelscheider nach Anspruch 12, dadurch gekennzeichnet, daß die Ablenkvorrichtung
(13) auch eine nach innen gerichtete geformte Fläche (18) hat, um den Strom in einen
fächerförmigen Strahlenbündel abzulenken.
14. Wendelscheider nach Anspruch 13, dadurch gekennzeichnet, daß die nach innen gerichtete
Fläche (18) sich von einem Führungsende (17) aus, wo sie tangential zum Strom ist,
zu einer hinteren Kante hin fortsetzt, wo sie radial nach innen gerichtet ist.
15. Wendelscheider nach Anspruch 14, dadurch gekennzeichnet, daß die nach innen gerichtete
Fläche (18) konkav ist.
16. Wendelscheider nach Anspruch 12, dadurch gekennzeichnet, daß die Ablenkvorrichtung
(13) eine scharfe Führungskante hat, die stromaufwärts zeigt.
17. Wendelscheider nach Anspruch 6, dadurch gekennzeichnet, daß die Unterseite (15)
konkav ist.
18. Wendelscheider nach Anspruch 17, dadurch gekennzeichnet, daß die Unterseite (15)
sich von einem Führungsende aus, wo sie tangential zum Strom ist, hin zu einer hinteren
Kante, wo sie radial nach innen gerichtet ist, fortsetzt.
19. Verfahren zur Rückverdünnung eines Pulpenstromes, der abwärts entlang einer schraubenförmigen
Rinne (2) eines Wendel scheiders (1) fließt, dadurch gekennzeichnet, daß ein Teil
der Niedrigfestkörper-Hochgeschwindigkeitsstromkomponenten in ein fächerartiges Strahlenbündel
von dem Außenrand des Pulpenstroms zurück über den Strom hinweg zum Innenrand hin
abgelenkt wird.
20. Verfahren nach Anspruch 19, dadurch gekennzeichnet, daß ein wesentlicher Teil
der Strom-Komponente zu dem Innenrand hin in ein fächerförmiges Strahlenbündel abgelenkt
wird, um den Pulpenstrom auf einen stetigen Pegel zurückzuverdünnen.
1. Séparateur toboggan (1) comportant au moins une goulotte hélicoïdale (2) ayant
un fond de goulotte (8) s'étendant entre une périphérie intérieure (4) et une périphérie
extérieure (6), cette goulotte (2) étant agencée pour recevoir au niveau de son extrémité
supérieure un courant d'une suspension d'eau et de particules et pour séparer des
particules de densités différentes lorsque le courant descend le long de cette goulotte
(2), caractérisé en ce qu'il comporte au moins un déflecteur (13) adjacent à la périphérie
extérieure (6) ayant au moins une surface profilée pour dévier une portion de la composante
rapide et pauvre en solides dudit courant sous forme d'une gerbe en éventail (16)
depuis la périphérie extérieure du courant pour la ramener en travers du courant en
direction de la périphérie intérieure.
2. Séparateur toboggan selon la revendication 1, dans lequel la périphérie extérieure
est délimitée par une paroi extérieure (6) et le déflecteur (13) est monté sur cette
paroi (6).
3. Séparateur toboggan selon la revendication 2, dans lequel le déflecteur (13) a
une surface extérieure (18) profilée pour se conformer à la paroi extérieure (6).
4. Séparateur toboggan selon l'une des revendications précédentes, dans lequel on
peut régler le déflecteur (13) pour faire varier la quantité du courant qui est déviée.
5. Séparateur toboggan selon la revendication 4, dans lequel le déflecteur (13) est
monté de façon à pouvoir tourner autour d'un axe (14) s'étendant radialement par rapport
à la goulotte (2), permettant ainsi de faire varier la quantité du courant qui est
déviée.
6. Séparateur toboggan selon l'une des revendications précédentes, dans lequel le
déflecteur (13) a une surface inférieure (15) profilée pour dévier le courant sous
forme d'une gerbe en éventail (16).
7. Séparateur toboggan selon la revendication 6, dans lequel cette surface inférieure
(15) a un profil incurvé lorsqu'on la regarde à la fois dans une direction radiale
et dans une direction tangentielle par rapport à la goulotte (2).
8. Séparateur toboggan selon la revendication 7, dans lequel le déflecteur (13) a
une extrémité antérieure pointue (17) orientée vers l'amont.
9. Séparateur toboggan selon l'une des revendications précédentes, dans lequel le
fond (8) de la goulotte comporte une portion (10) qui est plus fortement inclinée
au voisinage de la périphérie extérieure.
10. Séparateur toboggan selon la revendication 9, dans lequel le fond (8) de la goulotte
comporte une portion intérieure (9) adjacente à la périphérie intérieure et une portion
extérieure (10) plus fortement inclinée entre cette portion intérieure et la périphérie
extérieure.
11. Séparateur toboggan selon la revendication 10, dans lequel le déflecteur (13)
peut dévier cette composante de courant pratiquement jusqu'à la portion intérieure
(9) pour rediluer le courant de suspension jusqu'à une profondeur notable en travers
de cette portion intérieure (9).
12. Séparateur toboggan selon l'une des revendications précédentes, dans lequel le
déflecteur (13) a une surface supérieure (19) profilée pour dévier le courant sous
forme d'une gerbe en éventail.
13. Séparateur toboggan selon la revendication 12, dans lequel le déflecteur (13)
comporté également une surface profilée (18) orientée vers l'intérieur pour dévier
le courant sous forme de gerbe en éventail.
14. Séparateur toboggan selon la revendication 13, dans lequel cette surface (18)
orientée vers l'intérieur s'étend depuis une extrémité antérieure (17), où elle est
tangente au courant, jusqu'à une extrémité postérieure (20) où elle est dirigée radialement
vers l'intérieur.
15. Séparateur toboggan selon la revendication 14, dans lequel cette surface (18)
orientée vers l'intérieur est concave.
16. Séparateur toboggan selon la revendication 12, dans lequel le déflecteur (13)
a une extrémité antérieure pointue orientée vers l'amont.
17. Séparateur toboggan selon la revendication 6, dans lequel la surface inférieure
(15) est concave.
18. Séparateur toboggan selon la revendication 17, dans lequel cette surface inférieure
(15) s'étend depuis une extrémité antérieure, où elle est tangente au courant, jusqu'à
un bord postérieur, où elle est dirigée radialement vers l'intérieur.
19. Procédé pour rediluer un courant de suspension coulant vers le bas le long de
la goulotte hélicoïdale (2) d'un séparateur toboggan (1), caractérisé en ce qu'on
dévie une portion de la composante rapide et pauvre en solides du courant sous forme
d'une gerbe en éventail depuis la périphérie extérieure du courant pour la ramener
en travers du courant en direction de sa périphérie intérieure.
20. Procédé selon la revendication 19, dans lequel une portion notable de cette composante
du courant est déviée en direction de la périphérie intérieure sous forme d'une gerbe
en éventail pour rediluer le courant de suspension jusqu'à une profondeur notable.