AU2006326938B2 - Feed box - Google Patents

Feed box Download PDF

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Publication number
AU2006326938B2
AU2006326938B2 AU2006326938A AU2006326938A AU2006326938B2 AU 2006326938 B2 AU2006326938 B2 AU 2006326938B2 AU 2006326938 A AU2006326938 A AU 2006326938A AU 2006326938 A AU2006326938 A AU 2006326938A AU 2006326938 B2 AU2006326938 B2 AU 2006326938B2
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AU
Australia
Prior art keywords
feed box
receptacle
box according
receptacles
mineral processing
Prior art date
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Application number
AU2006326938A
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AU2006326938A1 (en
Inventor
Wayne Steven Mckeag
Peter Michael Nicolay
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Technological Resources Pty Ltd
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Technological Resources Pty Ltd
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Filing date
Publication date
Priority claimed from AU2005907139A external-priority patent/AU2005907139A0/en
Application filed by Technological Resources Pty Ltd filed Critical Technological Resources Pty Ltd
Priority to AU2006326938A priority Critical patent/AU2006326938B2/en
Publication of AU2006326938A1 publication Critical patent/AU2006326938A1/en
Application granted granted Critical
Publication of AU2006326938B2 publication Critical patent/AU2006326938B2/en
Ceased legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03BSEPARATING SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS
    • B03B11/00Feed or discharge devices integral with washing or wet-separating equipment
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G11/00Chutes
    • B65G11/08Chutes with discontinuous guiding surfaces, e.g. arranged in zigzag or cascade formation
    • B65G11/083Chutes with discontinuous guiding surfaces, e.g. arranged in zigzag or cascade formation for bulk
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G69/00Auxiliary measures taken, or devices used, in connection with loading or unloading
    • B65G69/04Spreading out the materials conveyed over the whole surface to be loaded; Trimming heaps of loose materials
    • B65G69/0441Spreading out the materials conveyed over the whole surface to be loaded; Trimming heaps of loose materials with chutes, deflector means or channels

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Filling Or Emptying Of Bunkers, Hoppers, And Tanks (AREA)
  • Feeding, Discharge, Calcimining, Fusing, And Gas-Generation Devices (AREA)

Abstract

A feed box (10) comprises an inlet (12), an outlet (14), and a fluid flow path (16) internal of the feed box (10) along which slurry entering the inlet (12) flows by action of gravity to the outlet (14). The feed box 10 includes a plurality of receptacles (18) which extend across the fluid flow path (16). Substantially all of the material flowing along the fluid flow path (16) that reaches the outlet (14) overflows at least one of the receptacles (18). The fluid flow path (16) comprises a first length 16A that extends from the inlets (12) to a first receptacle 18A, and a second length 16B that extends from the first receptacle 18A to the outlet (14). The lengths 16A and 16B extend in generally opposite directions.

Description

WO 2007/070949 PCT/AU2006/001941 FEED BOX Field of the Invention 5 The present invention relates to a feed box of a type that may be used in a mineral processing or separation plant. Background of the Invention 10 In one type of ore concentration plant slurry is gravity fed from a heavy medium separation drum to a separation screen via a feed box. The feed box is in the general form of a chute having an inlet at an upper end and an outlet at a lower end. -The outlet may be provided with a 15 plate lying in a plane perpendicular to the direction of flow of slurry and acts to protect an underlying separation screen from the substantive impact of the falling slurry. To this end the slurry initially impacts the plate and then flows to an edge of the plate to fall 20 onto the underlying separation screen. Summary of the Invention According to one aspect of the present invention there is 25 provided a feed box comprising: an inlet; an outlet; a fluid flow path internal of the feed box along which material entering the inlet of the feed box flows by 30 action of gravity to the outlet; and, one or a plurality of receptacles each of which extends across the fluid flow path wherein substantially all of the material flowing along the fluid flow path that reaches the outlet overflows at least one of the 35 receptacles.
WO 2007/070949 PCT/AU2006/001941 -2 In one embodiment a first of the receptacles is positioned relative to the inlet so that material entering the feed box from the inlet falls directly onto the first receptacle. 5 Each receptacle may comprise an open top container having a leading edge over which material flows when a corresponding receptacle is overflowed. 10 At least one receptacle may also comprise a panel extending in an.upstream direction from its corresponding open top container. In one embodiment at least one receptacle may be formed of 15 a plurality of separate units arranged in a side by side manner across the fluid flow path. Each unit may comprise a portion of the panel and a portion of the container. Alternately or in addition, at least one receptacle may comprise at least one webbing portion extending 20 substantially parallel to a downstream direction of material flow to divide its corresponding container into a plurality of container portions. When the feed box comprises a plurality of receptacles, 25 the receptacles are juxtaposed in a manner so that material sequentially overflows successive downstream receptacles. The successive downstream receptacles may be juxtaposed so that material overflowing the edge of one receptacle flows along the panel of an adjacent downstream 30 receptacle or falls directly into the container of an adjacent downstream receptacle. At least one receptacle may be demountably supported in the feed box to enable replacement thereof. Further, when 35 at least one receptacle is formed as a plurality of individual units, each individual unit may be demountably supported in the feed box.
WO 2007/070949 PCT/AU2006/001941 -3 The feed box may comprise: a wall on which the receptacles are supported; and, a retention system to facilitate the demountable support of the receptacles, the retention 5 system comprising at least one first component attached to the or each receptacle that engages the wall. The wall may further comprise, for each of the first components an aperture through which a respective first component passes. The first components may be formed on the panel 10 of each receptacle or panel portion of each unit. The retention system comprises a second component that engages a respective first component to prevent the first component from being withdrawn from its respective aperture. 15 The fluid flow path in one embodiment comprises a first length from the inlet to the first receptacle and a second length from the first receptacle to the outlet wherein the first and second lengths extend in different directions. 20 The inlet is located on a front wall of the feed box and the receptacles are located on a rear wall of the feed box, the rear wall positioned generally opposite the front wall. 25 The outlet is located in a lower portion of the feed box, substantially beneath the inlet or extending beyond the inlet in the direction of flow of feed material at said outlet. 30 The inlet may comprise a diffuser having a feed end that receives the material to be passed through the feed box and a discharge end from which the material falls en route to the first receptacle, wherein the feed end and the 35 discharge end have different widths. More particularly the discharge end may have a greater width than the feed end.
WO 2007/070949 PCT/AU2006/001941 -4 The diffuser may further comprise a flow influencing element configured and/or positioned to provide a pre determined distribution of material across the discharge 5 end. In one embodiment the flow influencing element is configured and/or positioned to provide a substantially uniform flow of material across the discharge end. When one of the receptacles comprises a plurality of container portions the flow influencing element provides 10 substantially uniform flow of material into each of the container portions. A further aspect of the present invention provides a mineral processing plant comprising: 15 a feed box, a mineral processing apparatus, and a support system that supports the feed box in a position relative to the mineral processing apparatus so that a material entering the feed box is directed by the feed box to the mineral processing apparatus; 20 the support system supporting the feed box in a manner so that the feed box can be lifted vertically off the support system. The support system comprises two or more columns each 25 provided with a land, and the feed box comprises two or more pads positioned to sit on the respective lands. Each column comprises a cantilever arm extending along a side of the mineral processing apparatus and on which a 30 respective land is formed. The mineral processing plant may further comprise a plurality of support beams which provide common support to both the mineral processing apparatus and the support 35 system.
- 5 In one embodiment the mineral processing apparatus comprises a separation screen. A further aspect of the present invention provides a 5 method of feeding an ore slurry from a supply of slurry to a processing station, the method comprising: constraining the slurry to flow through a channel having a feed end of a first width and a downstream discharge end of a second width greater than the first 10 width; and causing the slurry to be distributed across the discharge end. 15 Brief Description of the Drawings An embodiment of the present invention will now be described by way of example only with reference to the accompanying drawings in which: 20 Figure 1 is a section view from the side of a feed box in accordance with an embodiment of the present invention; Figure 2 is a perspective view of the feed box with a 25 side panel removed, view from a first angle; Figure 3 is a perspective view of the feed box shown in Figure 2 but from an alternate angle; Figure 4 is a perspective view of the feed box from an opposite side to that shown in Figure 3; 30 Figure 5 is a perspective view from the rear of the feed box; Figure 6 is a partial view of the feed box illustrating the features of an inlet of the feed box; Figure 7 is a view of the inlet from a discharge end 35 of the inlet; Figure 8 is a perspective view from a feed end of the inlet; 2713088_1 (GHMatters) P59133.AUA -6 THIS PAGE IS LEFT INTENTIONALLY BLANK 2713088_1 (GHMatters) P59133 AU.1 WO 2007/070949 PCT/AU2006/001941 -7 Figure 9 is a schematic representation of part of a mineral processing plant incorporating a support system for the feed box; Figure 10 is a representation of the support 5 system shown in Figure 9 from an alternative viewing angle; Figure 11 is a schematic representation of the mineral processing plant depicted in Figures 9 and 10 but with the feed box supported by the support system; and 10 Figure 12 is a schematic representation of the mineral processing of Figure 11 but with a separation screen also supported by the support system; and Figure 13 is a section view of a part of the mineral processing plant shown in Figure 12. 15 Detailed Description of Preferred Embodiment With reference to the accompanying drawings a feed box 10 in accordance with an embodiment of the present invention 20 comprises an inlet 12, an outlet 14, and a fluid flow path 16 internal of the feed box 10 along which material, such as slurry, entering the inlet 12 of the feed box flows by action of gravity to the outlet 14. The depicted feed box 10 also includes a plurality of receptacles 18A, 18B and 25 18C (herein after referred to in general as "receptacles 18") each of which extends across the fluid flow path 16. Substantially all of the material flowing along the fluid flow path 16 that reaches the outlet 14 overflows at least one of the receptacles 18. Typically, most of the 30 material flowing along the fluid flow path 16 that reaches the outlet 14 will overflow each of the receptacles 18A, 18B and 18C. With particular reference to Figure 1, it can be seen that 35 the fluid flow path 16 comprises a first length 16A and a second length 16B. The first length 16A extends from the inlet 12 to the first receptacle 18A, mounted on rear wall WO 2007/070949 PCT/AU2006/001941 -8 24. The second length 1GB extends from the first receptacle 18A to the outlet 14. The lengths 16A and 16B extend in generally opposite directions. Thus again with reference to Figure 1, the length 16A is directed 5 generally to the left while the length 16B is in a general sense directed to the right. Preferably, the change in direction between lengths 16A and 16B is sufficient to cause a reduction in momentum of feed material, thereby reducing wear on processing equipment that receives the 10 feed material from outlet 14. Typically, such wear arises due to the velocity of the feed material upon impact with the processing equipment. Outlet 14 is located in a lower portion of the feed box 10 15 and is typically positioned substantially beneath inlet 12 or beyond the inlet when viewed in the direction of flow of feed material at the outlet. This positioning of the outlet 14 relative to the inlet 12 helps to ensure that the flow path of material entering the feed box 10 20 includes at least one receptacle 18. As shown most clearly in Figures 2 and 3, each receptacle 18 comprises a panel 20 and a downstream open top container 22. The panel 20 forms a planar liner for a 25 rear wall 24 of the feed box 10. The container 22 is in the form of a bucket or scoop having a leading edge 26 over which material flows when flowing from the inlet 12 to the outlet 14. 30 A first of the receptacles 18A is positioned relative to the inlet 12 so that material entering the feed box 10 from the inlet 12 falls directly onto the first receptacle 18A. Thus the material entering the feed box 10 will either impinge on the panel 20 and subsequently flow into 35 the container 22 of receptacle 18A, or directly fall into the container 22 of the receptacle 18A.
WO 2007/070949 PCT/AU2006/001941 -9 The receptacles 18 are further juxtaposed in a manner so that material sequentially overflows successive downstream receptacles 18 en route to the outlet 14. Thus material entering the inlet 12 will first overflow the receptacle 5 18A, then overflow the receptacle 18B, and finally overflow the receptacle 18C prior to exiting from the outlet 14. Moreover, the leading edge 22 of receptacle 18 is positioned relative to an adjacent downstream receptacle 18 so that material overflowing a leading edge 10 26 of an upstream receptacle 18 will either fall on to the panel 20 of an adjacent downstream receptacle 18 and subsequently flow into the corresponding receptacle 22 or the material overflowing the leading edge 26 of an upstream receptacle 18 will fall directly into the 15 container 22 of an adjacent downstream receptacle 18. For example, consider material overflowing the leading edge 26 of receptacle 18A. Depending on the momentum and flow rate of the material this material will either fall onto the panel 20 of the receptacle 18B and subsequently flow 20 into the corresponding receptacle 22; or, will fall directly into the receptacle 22 of the underlying receptacle 18B. As seen most clearly in Figures 2 and 3, each receptacle 25 18 comprises of a plurality (in this case three) separate units 28. In particular the receptacle 18A comprises three units 28A1, 28A2 and 28A3; receptacle 18B comprises units 28B1, 28B2 and 28B3; and, receptacle 18C comprises units 28C1, 28C2 and 28C3. For ease of reference, each 30 unit is referred to in general as "unit 28". Each unit 28 comprises a panel portion 20P and a container portion 22P. Each of the units 28 for any particular receptacle 18 is of the same shape and configuration. 35 Although this may not necessarily be the case.
WO 2007/070949 PCT/AU2006/001941 - 10 The receptacles 18 are demountably supported in the feed box 10 and more particularly demountably supported on the rear wall 24. The method of support can vary widely, and its specific form is not critical to the performance of 5 the embodiments of the invention. In this particular embodiment the demountable support is achieved by a retention system comprising a first component in the form of loops 30 (see in particular Figure 5) formed integrally with and extending rearwardly from the panels 20 of the 10 receptacles 18; and second component in the form of a plurality of wedges 32 received within the loops 30. The loops 30 extend through corresponding holes formed in the rear wall 24. Three loops 30 are provided in each of the panel portions 20P of each unit 28. Two of the loops 30 15 are provided near an upstream end of each panel portion 20P. These two loops are spaced apart but in horizontal alignment with each other. A third loop 30 is provided near a downstream end of each panel portion 20P midway between the other two loops 30. 20 The relative configuration of the panel 20 and container 22 of a receptacle 18 is by and large dictated by the configuration of the rear wall 24 of the feed box 10. In this particular embodiment the rear wall 24 includes a 25 vertical portion 24V and a downstream contiguous inclined portion 241. The panel 20 and container 22 of the receptacle 18A are relatively configured to seat on an angle formed by the junction of the wall portions 24V and 241, with the panel 20 extending in the downstream 30 direction and meeting the corresponding container 22 at the junction of the wall portions 24V and 241. A portion of the base of the container 22 is flat to sit on the wall portion 241. The container portion of the receptacle 18B also includes a planar portion that sits on the wall 241. 35 In contrast, the container 22 of the receptacle 18C is suspended in the outlet 14.
WO 2007/070949 PCT/AU2006/001941 - 11 With particular reference to Figures 6 - 8, it can be seen that the inlet 12 comprises a diffuser 34 having a feed end 36 that receives the material to be passed through the feed box 10, and a discharge end 38 from which the 5 material falls en route to the first receptacle 18A. The feed end 36 and discharge end 38 are of different width. In particular the discharge end 38 is wider than the feed end 36. This change in width between the inlet end 36 and outlet end 38 assists in distributing the material evenly 10 across the flow path 16 so that each container portion 22P receives substantially the same volume of material. The control of the distribution of the feed over the discharge end 38 is further assisted by the provision of a 15 flow influencing element 40 formed on a tray portion 42 of the diffuser 34. The element 40 extends from the feed end 36 to the discharge end 38 and is in the general configuration of a semi elliptoid bulge having a longitudinal axis aligned with a direction of flow of 20 material from the feed end 36 to the outlet end 38. The inlet 12 also includes opposite side walls 44 extending from the feed end 36 to the discharge end 38 to channel the material to flow over the discharge end 38. A downstream portion 46 of the tray 42 is inclined 25 downwardly relative to an upstream portion 48. As shown in Figures 1 - 3 the feed box 10 also comprises a replaceable wear liner 50 supported on a front wall 52 of the feed box 10. The wear liner 50 is disposed toward a 30 lower end of the wall 52 and includes a tail portion 54 that defines, in part, the outlet 14. The liner 50 is demountably attached to the wall 52 by use of loops 30 and wedges 32 of identical configuration to those used for demountably coupling the receptacles 18 to the feed box 35 10. A cowling 56 is also attached to the wall 52 and forms an enclosed channel in which the inlet 12 is disposed.
WO 2007/070949 PCT/AU2006/001941 - 12 A plurality of inspection hatches 58 is provided on an upper wall 60 of the feed box 10, and a further inspection hatch 62 is provided on the wall 52. 5 In broad terms the feed box 10 may be considered to be a six sided box having a front wall 52, rear wall 24, upper wall 60, two opposing side walls 80 and an open bottom which forms the outlet 14, (although the bottom could be 10 constituted by a physical wall with an opening to form the outlet, i.e. not all of the bottom of the box is necessarily left open to form the outlet 14). Both the front wall 52 and rear wall 24 are, or include substantive portions that are, inclined to the vertical and generally 15 parallel to each other. The front and rear walls 52, 24 also extend generally downwardly and their respective lower edges form front and rear edges of the outlet 14, or in the event of an embodiment where the feed box 10 includes a bottom wall with an opening that forms the 20 outlet, the lower edges of the walls 52, and 24 would form front and rear edges of the bottom wall. The fluid flow path 16 is defined between the front and rear walls 52 and 24 and the outlet 14 is typically in, or in advance of, a vertical line or plane from the inlet 12 in the direction 25 of flow of material to the outlet 14. It may also be seen from the drawings and in particular Figures 1 - 3 that the leading edges 22 of the receptacles 18 face the inlet 12. A further aspect of the invention is depicted in Figures 9 30 - 13. These figures depict, in part, a mineral processing plant 70. The mineral processing plant 70 comprises a mineral processing apparatus such as a separation screen 71 (Figures 12 and 13) together with the feed box 10 and a support system 72 that supports the feed box 10 in a 35 position relative to the separation screen 71 so that material entering the feed box 10 is directed by the feed box 10 to the separation screen 71. The support system 72 WO 2007/070949 PCT/AU2006/001941 - 13 supports the feed box 10 in a manner so that the feed box 10 can be lifted vertically off the support system 72. To this end the support system 72 comprises: two columns 74 each provided with a lands 76; and, respective pads 78 5 attached to opposite side walls 80 of the feed box 10, where the pads 78 are positioned to sit on respective lands 76. A plurality of through holes is formed in the lands 76 and pads 78 for receiving bolts (not shown) to releasably attach or fix the feed box 10 to the columns 10 74. It will be appreciated that by simply undoing the bolts, an overhead crane can engage the feed box 10 and lift it vertically off the columns 74. This enables the relatively rapid exchange of feed boxes 10 for maintenance purposes. 15 The columns 74 comprise respective cantilevered arms 81 that run on opposite sides of the mineral processing apparatus (e.g. a separation screen) and on which a respective land 76 is formed. 20 In a further aspect of the support system 72 a plurality of beams 82 is provided that form a common support for both the mineral processing apparatus and the columns 74. Each column 74 is located on a beam 82 adjacent the 25 mineral processing apparatus. The column extends upwardly from the base portion and its corresponding cantilevered arm 81 extends generally parallel with the beam 82 in the direction of the mineral processing apparatus. The cantilevered arms 81 typically extend adjacent the mineral 30 processing apparatus whereby outlet 14 of the feed box can be positioned so as to discharge feed material to the mineral processing apparatus. This use of cantilevered arms allows the feed box to be supported on the same structural beams as the mineral processing equipment, 35 simplifying plant structural requirements. The columns 74 may be formed as generally hollow or box like structures.
WO 2007/070949 PCT/AU2006/001941 - 14 Figure 13 depicts the relative juxtaposition of the feed box 10 and the separation screen 71. The separation screen 71 comprises a screen portion 84 and an adjacent wear plate 86. Respective upper surfaces of the screen 84 5 and wear plate 86 lie on a common horizontal plane. The separation screen 71 reciprocates so as to cause a net bulk flow of slurry in a direction D from the wear plate 86 to the screen portion 84. The reciprocating motion is of a stroke to ensure that the wear plate 86 is always 10 located below the outlet 16. The slurry is discharged from the feed box 10 to flow in a direction that is different, and more particularly a substantially opposite, to the direction D, The slurry initially falls onto the wear plate 86 and then, by action of the separation screen 15 71 is caused to flow in the direction D over the screen 84. Now that embodiments of the invention have been described in detail it will be apparent to those skilled in the 20 relevant arts that numerous modifications and variations may be made without departing from the basic inventive concepts. For example, the feed box 10 may be provided with any number of receptacles 18 that extend across the fluid flow path 16. While the present embodiment depicts 25 three receptacles, the feed box 10 may be made with one, two or more than three receptacles. In addition it is not critical that each receptacle comprises a panel 20. The panel in effect acts as a wear liner for the rear wall 24. Thus the form of the receptacles 18 may be changed so as 30 to comprise solely a container or open top box like portion that is attached to the rear wall 24, with separate wear liners protecting the wall 24 from wear. In addition while the use of loops 30 and wedges 32 is depicted for demountably attaching the receptacles 18 and 35 the liner 54 to the feed box 10, other mechanical couplers may be used.

Claims (31)

1. A feed box comprising: an inlet; 5 an outlet; a fluid flow path internal of the feed box along which material entering the inlet of the feed box flows by action of gravity to the outlet, the flow path comprising a single substantive change in direction from the inlet to 10 the outlet; and, one or a plurality of receptacles each of which extends across the fluid flow path wherein substantially all of the material flowing along the fluid flow path that reaches the outlet overflows at least one of the 15 receptacles.
2. The feed box according to claim 1 wherein the fluid flow path comprises a first substantially linear length from the inlet to the first receptacle and a contiguous 20 second substantially linear length from the first receptacle to the outlet wherein the first and second lengths extend in different directions and constitute the single substantive change in direction. 25
3. The feed box according to claim 1 wherein a first of the receptacles is positioned relative to the inlet so that material entering the feed box from the inlet falls directly onto the first receptacle. 30
4. The feed box according to claim 1 or 2 wherein each receptacle comprises an open top container having a leading edge over which material flows when a corresponding receptacle is overflowed. .35
5. The feed box according to claim 3 wherein at least one receptacle comprises a panel extending in an upstream direction from its corresponding open top container. 27130W81 (GHMatters) P59133.AU.1 - 16
6. The feed box according to any one of claims 1-3 wherein at least one receptacle comprises a plurality of separate units arranged in a side by side manner across 5 the fluid flow path.
7. The feed box according to claim 5 wherein each unit comprises a portion of the panel and a portion of the container. 10
8. The feed box according to claim 4 wherein the at least one receptacle comprises at least one webbing portion extending substantially parallel to a downstream direction of material flow to divide its corresponding 15 container into a plurality of container portions.
9. The feed box according to any one of claims 1 - 7 wherein the feed box comprises a plurality of receptacles juxtaposed in a manner so that material sequentially 20 overflows successive downstream receptacles.
10. The feed box according to claim 8 wherein the successive downstream receptacles are juxtaposed so that material overflowing the edge of one receptacle flows 25 along the panel of an adjacent downstream receptacle or falls directly into the container of an adjacent downstream receptacle.
11. The feed box according to any one of claims 1 - 9 30 wherein at least one of the receptacles is demountably supported in the feed box to enable replacement thereof.
12. The feed box according to claim 10,wherein when at least one receptacle is formed as a plurality of 35 individual units, each individual unit may be demountably supported in the feed box. 2713058_1 (GHMatters) P59133.AU.1 - 17
13. The feed box according to claim 10 or 11 comprising a wall on which the receptacles are supported; and, a retention system to facilitate the demountable support of the receptacles, the retention system comprising at least 5 one first component attached to the or each receptacle that engages the wall.
14. The feed box according to claim 12 wherein the wall comprises for each of the first components an aperture 10 through which a respective first component passes.
15. The feed box according to claim 13 wherein the first component is formed on the panel of each receptacle or panel portion of each unit. 15
16. The feed box according to any one of claims 12 - 14 wherein the retention system comprises a second component that engages a respective first component to prevent the first component from being withdrawn from its respective 20 aperture.
17. The feed box according to claim 16 wherein the different directions are generally opposite to each other. 25
18. The feed box according to claim 16 or 17 wherein the inlet is located on a front wall of the feed box and the receptacles are located on a rear wall of the feed box, the rear wall positioned generally opposite the front wall. 30
19. The feed box according to claim 18 wherein the outlet is located in a lower portion of the feed box, substantially beneath the inlet or extending beyond the inlet in the direction of flow of feed material at said 35 outlet. 2713088_1 (GHMatters) P59133AU.1 - 18
20. The feed box according to any one of claims 1 - 19 wherein the inlet comprises a diffuser having a feed end that receives the material to be passed through the feed box and a discharge end from which the material falls en 5 route to the first receptacle, wherein the feed end and the discharge end have different widths.
21. The feed box according to claim 20 wherein the discharge end has a greater width than the feed end. 10
22. The feed box according to claim 20 or 21 wherein the diffuser comprises a flow influencing element configured and/or positioned to provide a pre-determined distribution of material across the discharge end. 15
23. The feed box according to claim 22 wherein the flow influencing element is configured and/or positioned to provide a substantially uniform flow of material across the discharge end. 20
24. The feed box according to claim 22 or 23 wherein when one of the receptacles comprises a plurality of container portions the flow influencing element provides substantially uniform flow of material into each of the 25 container portions.
25. A mineral processing plant comprising: a feed box according to any one of claims 1 to 24, a mineral processing apparatus, and a support system that 30 supports the feed box in a position relative to the mineral processing apparatus so that a material entering the feed box is directed by the feed box to the mineral processing apparatus; the support system supporting the feed box in a 35 manner so that the feed box can be lifted vertically off the support system. 27130 _1 (GHMaftrs) P59133.AU.1 - 19
26. The mineral processing plant according to claim 25 wherein the feed box is in accordance with any one of claims 1 - 24. 5
27. The mineral processing plant according to claim 25 or 26 wherein the support system comprises two or more columns each provided with a land, and the feed box comprises two or more pads positioned to sit on the respective lands. 10
28. The mineral processing plant according to claim 27 wherein each column comprises a cantilevered arm extending along a side of the mineral processing apparatus and on which a respective land is formed. 15
29. The mineral processing plant according to any one of claims 25 - 28 further comprising a plurality of support beams which provide common support to both the mineral processing apparatus and the support system. 20
30. The mineral processing plant according to claim 29 wherein the columns are supported on the support beams adjacent the mineral processing apparatus, the cantilevered arms extending generally parallel with the 25 support beams adjacent the mineral processing apparatus.
31. The mineral processing plant according to any one of claims 25 - 30 wherein the mineral processing apparatus comprises a separation screen. 30 271308_1 (GHMatters) P59133.AU.1
AU2006326938A 2005-12-20 2006-12-20 Feed box Ceased AU2006326938B2 (en)

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AU2005907139 2005-12-20
AU2005907139A AU2005907139A0 (en) 2005-12-20 Feed box
PCT/AU2006/001941 WO2007070949A1 (en) 2005-12-20 2006-12-20 Feed box
AU2006326938A AU2006326938B2 (en) 2005-12-20 2006-12-20 Feed box

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AU2006326938B2 true AU2006326938B2 (en) 2011-08-11

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Citations (9)

* Cited by examiner, † Cited by third party
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CA1053951A (en) * 1977-02-03 1979-05-08 Robert L. Somerville Feed box for liquid-solid mixtures
SU1262000A1 (en) * 1984-12-21 1986-10-07 Всесоюзный Государственный Ордена Трудового Красного Знамени Головной Проектно-Изыскательский И Научно-Исследовательский Институт По Переброске И Распределению Вод Северных И Сибирских Рек Им.Е.Е.Алексеевского "Союзгипроводхоз" Arrangement for damping the energy of stream in water spillway structure
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