Screening apparatus
09636688 ยท 2017-05-02
Assignee
Inventors
Cpc classification
B03B11/00
PERFORMING OPERATIONS; TRANSPORTING
B07B13/16
PERFORMING OPERATIONS; TRANSPORTING
International classification
B07B9/00
PERFORMING OPERATIONS; TRANSPORTING
B07B1/46
PERFORMING OPERATIONS; TRANSPORTING
B03B11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A screening apparatus (10) comprising a frame, a motor assembly (16) for vibrating the frame, at least one screen (20, 30) mounted on the frame for separating materials by size and at least one feed device (35A, 35B, 35C, 35D) provided for delivering a liquid onto said at least one screen (20, 30), said at least one feed device (35A, 35B, 35C, 35D) being adapted to deliver said liquid onto the at least one screen (20, 30) to define a laminar flow of liquid and entrained or suspended solid material over the at least one screen (20, 30).
Claims
1. A screening apparatus comprising: a frame; a motor assembly for vibrating said frame; at least one screen mounted on said frame for separating material by size, said at least one screen having an upper surface; and at least one feed device provided for delivering a liquid onto said at least one screen, said at least one feed device comprising a chamber provided with at least one inlet for receiving a liquid having particles of solid material entrained or suspended therein and at least one outlet for delivering said liquid and solid mixture onto said upper surface of said at least one screen; said at least one feed device comprising a hollow box-like structure defining said chamber, said box-like structure having a lower wall, an upper wall, a front wall, a rear wall and opposing end walls, wherein said at least one outlet is defined adjacent an upper end of said front wall; wherein said at least one outlet is positioned adjacent said upper surface of said at least one screen, said at least one outlet defining an elongate slot through which the liquid is constrained to pass, and wherein said at least one outlet is operable to deliver the liquid onto said upper surface of said at least one screen in a direction substantially parallel to said upper surface and to thereby establish a laminar flow of liquid and entrained or suspended solid material over said at least one screen; and wherein an upper lip of said elongate slot is defined by said upper wall with a distal edge portion of said upper lip being inclined downwardly towards said adjacent screen.
2. A screening apparatus as claimed in claim 1, wherein said at least one feed device extends across the width of said at least one screen.
3. A screening apparatus as claimed in claim 1, wherein said elongate slot is defined between said upper lip and a lower lip located at said upper end of said front wall, said upper and lower lips constraining the liquid to flow out of said slot in a direction substantially parallel to said upper surface of said adjacent screen.
4. A screening apparatus as claimed in claim 3, wherein at least respective portions of said upper and lower lips are arranged substantially parallel to one another.
5. A screening apparatus as claimed in claim 3, wherein said lower lip is defined by a portion of said front wall extending inwardly towards said rear wall of said feed device.
6. A screening apparatus as claimed in claim 5, wherein a distal edge portion of said lower lip is inclined downwardly.
7. A screening apparatus as claimed in claim 3, wherein said lower lip of said at least one outlet is substantially contiguous with an upper surface of said adjacent screen.
8. A screening apparatus as claimed in claim 1, wherein said at least one outlet is provided at or adjacent an upper region of said at least one feed device, said at least one inlet being provided at or adjacent a lower region of said feed device.
9. A screening apparatus as claimed in claim 8, wherein a plurality of baffles are provided within said at least one feed device between said at least one inlet and said at least one outlet to evenly mix and evenly distribute any solid material entrained or suspended in the liquid passing through said feed device.
10. A screening apparatus as claimed in claim 9, wherein said plurality of baffles are provided by one or more removable inserts to enable said baffles to be replaced in the event of wear.
11. A screening apparatus as claimed claim 1, comprising a first feed device for delivering a liquid onto a first or upstream screen section mounted on said frame, and at least one further feed device for delivering liquid onto at least one further screen section downstream of said first or upstream screen section.
12. A screening apparatus as claimed in claim 11, wherein said at least one further screen section is arranged to receive material to be screened from a downstream end of said first or upstream screen section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
(14) As illustrated in the drawings, a screening apparatus 10 in accordance with an embodiment of the present invention comprises a frame including a pair of side members 12,14 linked by a plurality transversely extending structural members. A motor assembly 16 is mounted between the side members 12,14 of the frame, the motor assembly 16 comprising a pair of eccentrically mounted motor driven rotors for vibrating the frame.
(15) A pair of screen assemblies 20,30 are mounted between the side members 12,14 of the frame at longitudinally spaced locations along the frame, as will be described in more detail below.
(16) Each screen assembly 20,30 comprising a pair of longitudinally spaced screen sections or decks 22, 24, 32, 34 mounted between the side members 12,14 of the frame, a respective feed box 35A, 35B, 35C, 35D being mounted immediately upstream of each screen section 22, 24, 32, 34 for feeding water onto the surface of the respective screen section to define a laminar flow of water over the surface of thereof. The upstream feed box 35A,35C of each screen assembly 20,30 may be supplied with a mixture of water and particles of solid material to be screened, comprising a mixture of undersize and oversize material, said material being entrained or suspended within said water, such that the mixture is supplied onto the upstream screen section 22,32 of each screen assembly 20,30.
(17) Each feed box 35A, 35B, 35C, 35D comprises a hollow box-like member having a front wall 101, a rear wall 102, a pair of opposing end walls 103, an upper wall 104 and a lower wall 105 (front and rear being defined in the sense of the normal direction of flow of material over each screen assembly 20,30). Each feed box 35A, 35B, 35C, 35D extends between the side members 12,14 of the frame such that the feed boxes define structural components of the frame.
(18) An inlet 36 is provided in one or both end walls 103 of each feed box adjacent the lower wall 105 thereof, whereby water, or a mixture of particles of solid material entrained or suspended in water in the case of each upstream feed box 35A,35C, may be fed into the respective feed box. Alternatively the at least one inlet may be provided in the lower wall 105 of the feed box, or where the at least one outlet is provided adjacent the lower wall 105, the at least one inlet may be provided in the upper wall 104 of the feed box.
(19) In the embodiment shown in
(20) As can be seen from
(21) At least one baffle may be defined within at least each upstream feed box 35A,35C to restrict the flow of water through the feed box, generating mixing and evenly distributing the solid material within the water in the feed box and ensuring that any particles of solid material entrained or suspended in the water are evenly spread across the width of the respective screen section as the mixture leaves the outlet slot 38 of the feed box.
(22) Each feed box may be associated with vibration generating means for maximising agitation of the material passing through the feed box to maintain any particles of solid material, such as sand, in suspension.
(23) Each feed box 35A, 35B, 35C, 35D may comprise a trough like body 50 defining a structural member of the frame and having end plates 52, at least one of which is provided with a water inlet 36. In the embodiment shown in
(24) In an alternative embodiment, shown in
(25) The baffle plates may not be required and a single insert member 72, as shown in
(26) As discussed above, each screen assembly 20,30 comprises an upstream screen section 22,32 and a respective downstream screen section 24,34, each screen section having a respective feed box 35A, 35B, 35C, 35D at an upstream side thereof for delivering a laminar flow of water onto the respective screen section. The upstream feed box 35A,35C of each screen assembly 20,30 may be supplied with a mixture of water and particles of solid material entrained or suspended therein, comprising a mixture of oversize and undersize material. Such mixture is delivered onto the upper surface of the upstream screen section 22,32, such that undersize material passes through the screen section 22,32 to be collected therebelow while oversize material flows over the screen section 22,32 and passes onto the respective adjacent downstream screen section 24,24. A flow of water is delivered from the downstream feed box 35B,35D of each screen assembly 20,30 onto the respective downstream screen section 24,34 to fluidize the particles of solid material passing onto the respective downstream screen section 24,34 from the respective upstream screen section 22,32 and to ensure that the mixture flows evenly across the surface of the respective downstream screen section 24,34 to ensure efficient separation of oversize and undersize material on the respective downstream screen section 24,34. Finally oversize material is delivered to a collection region at the downstream end of the respective downstream screen section 24,34 of each screen assembly 20,30, oversize material from the upstream screen assembly 20 passing through a gap 80 defined between the upstream 20 and downstream 30 screen assemblies.
(27) In an alternative embodiment, illustrated in
(28) As with the previous embodiments, inserts 154,156 are located within the body 150 of the feed box 135, the inserts 154,156 having apertures 169 to define a convoluted flow path through the feed box to ensure that solid material is evenly distributed within the water exiting the feed box.
(29) As shown in
(30) In the embodiment shown in
(31) Where it is desired to add further water to the material downstream of an upstream screen section, the screen box may be modified to receive material from the upstream screen section and mix such material with a flow of water, optionally with additional solid material entrained therein.
(32) An example of such modified embodiment is shown in
(33) A further embodiment is illustrated in
(34) The feed box of the screen apparatus in accordance with the present invention ensures thorough mixing of the solids material in the water flowing over the surface of the screen and maintains the fluidized state of the solid material, ensuring reliable and efficient operation of the screen apparatus while minimising water consumption. The provision of a laminar flow of water and entrained/suspended solids across the surface of the screen enhances the efficiency of the screening process.
(35) The invention is not limited to the embodiment(s) described herein but can be amended or modified without departing from the scope of the present invention. Changes and modifications in the specifically described embodiments can be carried out without departing from the principles of the present invention, which is intended to be limited only by the scope of the appended claims, as interpreted according the principles of patent law, including the doctrine of equivalents.