SCREENING BUCKET
20200291604 ยท 2020-09-17
Inventors
Cpc classification
E02F7/06
FIXED CONSTRUCTIONS
E02F3/401
FIXED CONSTRUCTIONS
B07B1/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
E02F7/06
FIXED CONSTRUCTIONS
B07B1/26
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Screening bucket (100) provided of a screening basket (1) comprising a first cylindrical body (30) having a central axis (51) and a plurality of first holes (32); an actuating unit (50) being provided to rotate the first cylindrical body (30) around the central axis (51); a second cylindrical body (60) being coupled to the first cylindrical body (30) in a longitudinally free and angularly fixed manner; the second cylindrical body (60) having a plurality of second holes (62) facing the first holes (32); an actuating unit (50) being arranged between the first and the second cylindrical bodies (30) (60) to move them longitudinally relative to each other.
Claims
1-16. (canceled)
17. Screening basket (1) for a screening bucket (100); said basket (1) comprising a first cylindrical body (30) having a central axis (51) and a plurality of first holes (32) arranged longitudinally at a first given pitch (P2); a fluid-dynamic actuating unit (50) being provided to rotate said first cylindrical body (30) around said central axis (51); said basket (1) comprising a second cylindrical body (60) arranged inside said first cylindrical body (30) and coupled to said first cylindrical body (30); said second cylindrical body (60) having a plurality of second holes (62) arranged longitudinally at a second given pitch (P2) and facing said first holes (32); actuating means (56)(6230) being associated with said first and second cylindrical bodies (30)(60) to move them relative to each other; characterized in that said second cylindrical body (60) is arranged inside said first cylindrical body in a longitudinally and angularly free manner, and in that said actuating means (56) (6230) are so designed, that the rotation of one of the first and second cylindrical bodies (30) (60) through said actuating means (56) (6230) results in a change in both the reciprocal position of the first and second cylindrical bodies along the longitudinal direction parallel to said central axis (51) and in their reciprocal position in rotational direction, wherein therefore, by means of the actuating means, one of the two cylindrical bodies (30) (60) is both translated and rotated with respect to the other cylindrical body (30) (60).
18. Basket according to claim 17, characterized in that said second cylindrical body (60) has a second diameter (D2) that is slightly smaller than a first diameter (D1) of said first cylindrical body (32); said first holes (32) and said second holes (62) having substantially the same width, so that, in use, when they overlap each other, the filtering capability exerted by the combination of said first and second cylindrical bodies (30)(60) is equal to the filtering capability of the first or second cylindrical body (30)(60).
19. Basket according to claim 17, characterized by comprising first centering means (40) associated with said first cylindrical body (30) to keep it coaxial with said central axis (51).
20. Basket according to claim 19, characterized in that said second cylindrical body (60) has a bottom (624) closing it at the side of said centering means (40).
21. Basket according to claim 20, characterized in that said centering means (40) comprise a spoke-member (42) coaxial with said central axis (51); said bottom portion (624) being coupled to said spoke-member (42) by means of a plurality of pins (622) parallel to said central axis (51) so as to be longitudinally movable with respect to said spoke-member (42).
22. Basket according to claim 21, characterized in that said actuating unit (50) comprises a first case (52) supporting a second case (54) in a freely rotatable manner; said first case (52) and second case (54) being hydraulically coupled to each other; said actuating unit and said actuating means (56) being hydraulically coupled to each other; said actuating means (56) comprising a first linear actuator (56) coaxial with said central axis (51) to move said bottom (624) axially with respect to said spoke-member (42).
23. Basket according to claim 17, characterized in that each of said first and second holes (32) (62) is delimited by a first polygonal perimeter (320) and by a second polygonal perimeter (620) provided with first and second edges (320) (620) that have substantially constant width and are orthogonal to each other.
24. Basket according to claim 23, characterized in that said first and second holes (32) (62) are square in shape and have substantially equal extension.
25. Basket according to claim 22, characterized in that said case (52) has, at the back thereof, hydraulic valves (520).
26. Basket according to claim 17, characterized in that said actuating unit (50) and said actuating means (56) are hydraulically coupled to each other; said actuating means (6230) comprising a second linear actuator (6230) arranged between said second cylindrical body (60) and said first cylindrical body (30) to couple them together in a way that is axially fixed and can be angularly set at will within a given angular interval.
27. Basket according to claim 22, characterized in that said second cylindrical body (60) comprises a cylindrical element (420) coupled to said second case (54) in an axially and angularly rotatable way; the respective cylindrical element (420) and second case (54) having respective projections (302) and recesses (602) conjugated together so as to be, in use, reciprocally movable in a helical manner.
28. Scanning bucket (100) provided with a box-type frame (10) having a space (20) that extends around a pivot axis (22) and is provided with rotatable support means (24); characterized in that said space (20) is designed to house a screening basket (1), comprising a first cylindrical body (30) having a central axis (51) and a plurality of first holes (32) arranged longitudinally at a first given pitch (P2); a fluid-dynamic actuating unit (50) being provided to rotate said first cylindrical body (30) around said central axis (51); said basket (1) comprising a second cylindrical body (60) arranged inside said first cylindrical body (30) and coupled to said first cylindrical body (30); said second cylindrical body (60) having a plurality of second holes (62) arranged longitudinally at a second given pitch (P2) and facing said first holes (32); actuating means (56)(6230) being associated with said first and second cylindrical bodies (30)(60) to move them relative to each other; characterized in that said second cylindrical body (60) is arranged inside said first cylindrical body in a longitudinally and angularly free manner, and in that said actuating means (56) (6230) are so designed, that the rotation of one of the first and second cylindrical bodies (30) (60) through said actuating means (56) (6230) results in a change in both the reciprocal position of the first and second cylindrical bodies along the longitudinal direction parallel to said central axis (51) and in their reciprocal position in rotational direction, wherein therefore, by means of the actuating means, one of the two cylindrical bodies (30) (60) is both translated and rotated with respect to the other cylindrical body (30) (60), wherein the scanning bucket is provided with a respective central axis (51); said rotatable support means (24) being designed to support said basket (1) so as to keep said respective central axis (51) coaxial with said pivot axis (22).
29. Bucket according to claim 28, characterized in that said frame (10) has an annular front portion (11) provided, at the bottom, with a blade (110); a longitudinal portion (12), delimiting, at the top, said space (20), extends at opposite side with respect to said blade (110) and is provided with a gripping member (14); a Y-shaped or T-shaped rear portion (16), arranged transversally to said pivot axis (22), extends downwards from said longitudinal portion (12) with two respective arms (162, 162), symmetrically inclined with respect to said longitudinal portion (12); and a pair of longitudinal members (17, 17), each of which extends from one said arm (162)(162) to said front portion at the side of said blade (110); said pair of longitudinal members (17, 17) being spaced, transversally to said pivot axis (22), by a distance that is slightly greater than an outer diameter of said basket (1).
30. Bucket according to claim 29, characterized in that said rotatable support means (24) comprise at least one rolling roller (242) carried parallel to said front portion (11) at opposite side from said blade (110) in a position facing said rear portion (16) and with a peripheral portion (2420) thereof that is externally tangential to said first cylindrical body (30).
31. Bucket according to claim 30, characterized in that each said roller (242) is coupled to said front portion (11) in a removable manner, so that said space (20) can be freely accessed at the bottom from said basket (1) to assembling/disassembling operations.
32. Basket according to claim 23, characterized in that said actuating unit (50) and said actuating means (56) are hydraulically coupled to each other; said actuating means (6230) comprising a second linear actuator (6230) arranged between said second cylindrical body (60) and said first cylindrical body (30) to couple them together in a way that is axially fixed and can be angularly set at will within a given angular interval.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0026] Further characteristics and advantages of the screening bucket, the screening basket and the method for fractionated screening according to the present invention will be more apparent from the description below, set forth with reference to the attached drawings, that illustrate some examples of embodiment, where identical or corresponding parts of the equipment are identified by the same reference numbers. In particular:
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DETAILED DESCRIPTION OF THE PRESENT INVENTION
[0047] In
[0048] The bucket 100 (
[0049] With reference to
[0050] The space 20 is so shaped as to house the basket 1 and a respective roto-translatory actuating unit 50, for example of the fluid-dynamic type, better described below, coaxially with the axis 22. In particular, the actuating unit 50 comprises an actuator 50, for instance an hydraulic actuator of the type CPR-8 produced by Baltrotors, which has an interface rotatable around a given axis and is designed to control a hydraulic device, for instance a hydraulic actuator associated with the same interface. The actuating unit 50 is provided with a first cylindrical case 52 (
[0051] With particular reference to
[0052] The first cylindrical body 30 is coaxial with the central axis 51 and is rigidly coupled to the spoke-member 42 extending radially from the hub-shaped portion 420. The cylindrical body 30 is therefore pivoted to the frame 10 through the centring unit 40 provided with the spoke-member 42 and with the hub-shaped portion 420, coaxially with the central axis 51. The centring unit 40 is so designed as to be kept coaxial with the pivot axis 22 cooperating with each roller 242 having a respective peripheral portion 2420 externally adjacent to the same first cylindrical body 30. Therefore, each roller 242 is arranged at a radial distance from the pivot axis 22 that is quiet equal to an outer radius of the first cylindrical body 30. Therefore, the spoke-member 42 of the centring unit 40 keeps the first cylindrical body 30 and the second cylindrical body 60 coaxial with the axis 22/51.
[0053] The cylindrical body 30 has a plurality of first holes 32 (square-shaped in the embodiment illustrated, but they may have different shape), better shown in
[0054] Similarly to the first cylindrical body, the second cylindrical body 60, provided with a bottom 624, reinforced anteriorly by means of a plurality of ribs 621, has a plurality of second holes 62 arranged, like the first holes 32, on the first cylindrical body 30, and therefore longitudinally at a second given pitch P2. Therefore, the first and second holes 32/62 are respectively delimited by a first square perimeter 320 and by a second square perimeter 620, provided with first and second edges 320 and 620 that are orthogonal to each other and have constant width.
[0055] The second cylindrical body 60 is arranged inside the first cylindrical body 30 and has a second diameter D2 that is slightly smaller than a first diameter D1 of the first cylindrical body 32; the first holes 32 and the second holes 62 have substantially the same width, so that, in use, when they overlap each other, the filtering capability resulting by combining the first and second cylindrical bodies 30/60 is equal to the filtering capability of the single first or second cylindrical body 30/60, so as to act together as the basket 1 would comprise only one of them (one of the two cylindrical bodies 30 and 60).
[0056] Each of the first and second holes 32/62 is delimited by a first square perimeter 320 and by a second square perimeter 620, polygonal and delimited by first and second edges that are orthogonal to each other and have constant width.
[0057] In view of the above description, the integral coupling between the second cylindrical case 54 and the hub-shaped portion 420 of the spoke-member 42 allows driving the first cylindrical body 30 (and therefore the second cylindrical body 60) into rotation with respect to the frame 10. Again with reference to
[0058] The bottom 624 of the second cylindrical body 60 has the function of protecting the actuating unit 50 against the material contained in the basket 1 and each roller 242 is coupled to the front portion 11 in a releasable manner, so that the basket 1 can freely access the space 20 from the bottom through the opening 170 for mounting/removing operations.
[0059] The operation of the basket 1 and of the bucket 100 is clearly apparent from the description above and does not require further explanations. However, it is useful to specify that, with references to
[0060] Lastly, it is clearly apparent that variants and modifications can be done to the basket 1 and the screening bucket 100 comprising it, described and illustrated herein, without however departing from the protective scope of the invention.
[0061] For example, it should be specify that the holes 32 and 62 of the first and second cylindrical bodies 30 and 60 may have the same shape, as well as different shape according to the operating needs. Usually, without however limiting the protective scope of the invention, these holes may have round, triangular, pentagonal shape.
[0062] Moreover, the relative motion between the first and second cylindrical bodies 30 and 60 for adjusting the overlapping degree of the respective first and second holes, and therefore the screening degree of the basket 1 resulting from the different overlapping degree of the holes 32 and 62, may be also different than an axial movement, as it is shown in
[0063] The truncated-conical portion may be replaced with a flat portion, provided with holes of any shape.
[0064] With particular reference to
[0065] With reference to