DIVIDING HOPPER AND TRANSPORTABLE SCREENING APPARATUS
20240198385 ยท 2024-06-20
Assignee
Inventors
Cpc classification
B02C23/08
PERFORMING OPERATIONS; TRANSPORTING
B07B1/005
PERFORMING OPERATIONS; TRANSPORTING
B07B13/16
PERFORMING OPERATIONS; TRANSPORTING
International classification
B07B13/16
PERFORMING OPERATIONS; TRANSPORTING
B07B1/00
PERFORMING OPERATIONS; TRANSPORTING
B02C23/08
PERFORMING OPERATIONS; TRANSPORTING
B02C21/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method and system adapting a mineral material crushing system between operating and transport configurations. A screen support frame receives and supports a multideck screen with a plurality of stacked screen decks outputting different size fractions at a discharge end. A dividing hopper receives different size fractions from the multideck screen. A chute guides the different size fractions to a chute output position. A platform frame movably supports the screen support frame allowing the screen support frame and the multideck screen move between an elevated operating position and to a lowered transport position. The chute output position laterally resides outside a lateral footprint bordered by the platform frame. The chute moves between chute transport and operating states so that at least a portion of its weight remains carried by the dividing hopper.
Claims
1-15. (canceled)
16. A transportable mineral material processing system, comprising: a screen support frame configured to receive and support a multideck screen that comprises a plurality of stacked screen decks configured to output different size fractions at a discharge end of the screen decks; a dividing hopper comprising a reception configured to receive from the multideck screen, when installed, the output different size fractions and further comprising a chute configured to guide at least one of the different size fractions to a chute output position; and a platform frame configured to movably support the screen support frame so that the screen support frame and the multideck screen are movable between an elevated operating position and to a lowered transport position; wherein the chute output position laterally resides outside a lateral footprint bordered by the platform frame; and wherein the chute is configured to be movable between a chute transport state and a chute operating state so that at least a portion of a weight of the chute is carried by the dividing hopper in and between these states.
17. The transportable mineral material processing system of claim 16, wherein the chute is further configured to be connected to the dividing hopper in both the chute transport state and the chute operating state.
18. The transportable mineral material processing system of claim 16, wherein the chute is telescopically movable.
19. The transportable mineral material processing system of claim 16, wherein the chute comprises two parts.
20. The transportable mineral material processing system of claim 19, wherein the chute comprises a fixed part attached to the dividing hopper and a movable part that is telescopically movable along the fixed part.
21. The transportable mineral material processing system of claim 16, wherein the chute is lockable to the operating state.
22. The transportable mineral material processing system of claim 16, further comprising a chute retraction mechanism configured to move the chute from the chute operating state to the chute transport state on moving the screen support frame to the lowered transport position.
23. The transportable mineral material processing system of claim 16, further comprising a chute extraction mechanism configured to move the chute from the chute transport state to the chute operating state on moving the screen support frame to the elevated operating position.
24. The transportable mineral material processing system of claim 16, further comprising two or more of the chutes.
25. The transportable mineral material processing system of claim 16, wherein the dividing hopper is supported by the screen support frame.
26. The transportable mineral material processing system of claim 16, further comprising a towing base for towable movement of the transportable screening system.
27. The transportable mineral material processing system of claim 16, further comprising a support leg base for fixed installation of the transportable screening system.
28. The transportable mineral material processing system of claim 16, further comprising a track base for self-propelling movement of the transportable screening system.
29. The transportable mineral material processing system of claim 16, further comprising a crusher.
30. A method for adapting a mineral material processing system between operating and transport configurations, comprising: receiving and supporting by a screen support frame a multideck screen that comprises a plurality of stacked screen decks configured to output different size fractions at a discharge end of the screen decks; receiving by a dividing hopper different size fractions from the multideck screen and guiding by a chute the different size fractions to a chute output position; movably supporting by a platform frame the screen support frame so that the screen support frame and the multideck screen are movable between an elevated operating position and a lowered transport position; wherein the chute output position laterally resides outside a lateral footprint bordered by the platform frame; providing movement of the chute between a chute transport state and a chute operating state so that at least a portion of a weight of the chute is carried by the dividing hopper in and between these states.
31. The method of claim 30, further comprising maintaining the chute connected to the dividing hopper in both the chute transport state and the chute operating state.
32. The transportable mineral material processing system of claim 17, wherein the chute is telescopically movable.
33. The transportable mineral material processing system of claim 17, further comprising a chute retraction mechanism configured to move the chute from the chute operating state to the chute transport state on moving the screen support frame to the lowered transport position.
34. The transportable mineral material processing system of claim 18, further comprising a chute extraction mechanism configured to move the chute from the chute transport state to the chute operating state on moving the screen support frame to the elevated operating position.
35. The transportable mineral material processing system of claim 16, further comprising two or more of the chutes.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0046] Some example embodiments will be described with reference to the accompanying figures, in which:
[0047]
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DETAILED DESCRIPTION
[0053] In the following description, like reference signs denote like elements or steps.
DETAILED DESCRIPTION
[0054] In the following description, like reference signs denote like elements or steps.
[0055]
[0056]
[0057] In an embodiment, lifting equipment is provided for moving the screen support frame 120 between the transport position and the operating position. The lifting equipment comprise, for example, at least one hydraulic ram 118. The at least one hydraulic ram can be telescopic such that the ram can achieve sufficient extension length while not extending obtrusively low in the transport position.
[0058] The upwards inclining angle of the screen support frame 120 can be, for example, greater than 10 degrees and/or less than 20 degrees.
[0059] In
[0060] The legs 112 can be made extendable, e.g., hydraulically or by manual action. The platform frame 110 can be equipped with wheel suspension for a plurality of wheels 119. The suspension can be made retractable and expandable by machine operation for transferring weight of the mobile screen body from the wheels 119 to the legs 112 and back to the wheels 119.
[0061] While
[0062] Various parts of the structures can be made of steel plate, including, for example, partially or entirely any one or more of the following: platform frame 110; the legs 112; the screen support frame 120; and the dividing hopper 150.
[0063] The screen 130 can be attached to the screen support frame 120 via a plurality of spring groups 132 each comprising one or more springs 1322.
[0064] In an embodiment, the mobile mineral material processing system 100 further comprises a crusher 140 attached to the platform frame 110, such as a cone crusher, an impact crusher, or a jaw crusher. The mobile mineral material processing system 100 further comprises in an embodiment a feed 134 such as a channel or conveyor for supplying an oversize fraction of the screen 130 or screening produced by the screen 130 to the crusher 140.
[0065] The mobile mineral processing system 100 is constructed in an embodiment to be transportable as a semi-trailer.
[0066] The chute 152 of an embodiment is connected to the dividing hopper in both the chute transport state and the chute operating state. Moreover, the chute 152 may remain connected to the dividing hopper 150 in both the chute transport state and the chute operating state while transitioning between these states.
[0067] As shown in
[0068] In an alternative embodiment (not shown), the chute 152 is pivotably movable in alternative or addition to the telescopic movement.
[0069] In an embodiment, the chute output position is adjustable. This may help aligning a subsequent conveyor with the chute output position, for example.
[0070] In an embodiment, the chute 152 is lockable to the operating state using, for example, a lock pin that, for example, passes through two mutually movable telescopic parts of the chute 152.
[0071] In an embodiment, the chute 152 is configured to move from the transport state to the chute operating state over the platform frame 110.
[0072] In an embodiment, the chute 152 is configured to move from the transport state to the chute operating state under the platform frame 110.
[0073] With more than one chutes 152, some of the chutes 152 may be different by structure and/or alignment with relation to the platform frame 110. Different ones of two or more chutes 152 may be configured to guide different ones of the different size fractions. Different ones of the two or more chutes 152 may have respective different chute output positions.
[0074] In an embodiment, the transportable mineral material processing system 100 comprises a chute retraction mechanism configured to move the chute 152 from the chute operating state to the chute transport state on moving the screen support frame to the lowered transport position. In an embodiment, the chute retraction mechanism comprises a resilient biasing element configured to create a retraction force for retracting the chute 152. The resilient biasing element may comprise a spring. The resilient biasing element may comprise a weight.
[0075] In an embodiment, the transportable mineral material processing system 100 comprises a chute extraction mechanism configured to move the chute 152 from the chute transport state to the chute operating state on moving the screen support frame to the elevated operating position.
[0076] In an embodiment, the transportable mineral material processing system 100 comprises a first pulling member configured to move the chute 152 from the operating position to the transport position on moving the screen support frame from the operating position to the transport position. In an embodiment, the first pulling member comprises a string. In an embodiment, the first pulling member comprises a chain. In an embodiment, the first pulling member may comprises flexible band.
[0077] In an embodiment, the transportable mineral material processing system 100 comprises a second pulling member configured to move the chute 152 from the operating position to the transport position on moving the screen support frame from the operating position to the transport position. The second pulling member may comprise a string. The second pulling member may comprise a chain. The second pulling member may comprise a flexible band.
[0078] In an embodiment, the dividing hopper 150 is supported by the screen support frame.
[0079] In an embodiment, the platform frame 110 is made of steel plate. The plurality of legs 112 may be made of steel plate.
[0080] In an embodiment, the screen support frame 120 may be made of steel plate.
[0081] In an embodiment, the transportable mineral material processing system 100 comprises a mobile mineral material processing plant.
[0082] There is also provided a method for adapting a mineral material crushing system between operating and transport configurations. The method comprises any one or more of: [0083] receiving and supporting by a screen support frame a multideck screen that comprises a plurality of stacked screen decks configured to output different size fractions at a discharge end of the screen decks; [0084] receiving by a dividing hopper different size fractions from the multideck screen and guiding by a chute the different size fractions and to a chute output position; [0085] movably supporting by a platform frame the screen support frame so that the screen support frame and the multideck screen are movable between an elevated operating position and to a lowered transport position; [0086] wherein the chute output position laterally resides outside a lateral footprint bordered by the platform frame; and/or [0087] providing movement of the chute between a chute transport state and a chute operating state so that at least a portion of a weight of the chute is carried by the dividing hopper in and between these states.
[0088] Various embodiments have been presented. It should be appreciated that in this document, words comprise, include, and contain are each used as open-ended expressions with no intended exclusivity.
[0089] The foregoing description has provided by way of non-limiting examples of particular implementations and embodiments a full and informative description of the best mode presently contemplated by the inventors for carrying out the invention. It is however clear to a person skilled in the art that the invention is not restricted to details of the embodiments presented in the foregoing, but that it can be implemented in other embodiments using equivalent means or in different combinations of embodiments without deviating from the characteristics of the invention.
[0090] Furthermore, some of the features of the afore-disclosed example embodiments may be used to advantage without the corresponding use of other features. As such, the foregoing description shall be considered as merely illustrative of the principles of the present invention, and not in limitation thereof. Hence, the scope of the invention is only restricted by the appended patent claims.