CRUSHING MILL AND METHOD FOR CRUSHING REFUSE
20180221887 ยท 2018-08-09
Inventors
Cpc classification
B02C19/0062
PERFORMING OPERATIONS; TRANSPORTING
B02C2201/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Crushing mill including a crushing chamber, an inlet pipe of the refuse to be crushed connected to the crushing chamber, and a thruster member associated to the inlet pipe; the crushing mill includes a compactor apparatus for the refuse to be crushed provided with one or more presser elements positioned in correspondence to the inlet pipe of the refuse to be crushed and configured to be moved from at least a first inactive position, in which they allow the loading of the refuse to be crushed into the inlet pipe, to at least a second active position in which they compact the refuse in the pipe; the mass of compacted refuse in the inlet pipe is sent to the crushing chamber by means of the thruster member.
Claims
1. Crushing mill, comprising a crushing chamber, an inlet pipe of the refuse to be crushed connected to said crushing chamber, and a thruster member associated to said inlet pipe and movable between at least an inactive position of loading the refuse to be crushed into said pipe and one or more active positions of thrusting the refuse to be crushed toward the crushing chamber, wherein it comprises a compactor apparatus for the refuse to be crushed provided with one or more presser elements positioned in correspondence to the inlet pipe of the refuse to be crushed and configured to be moved from at least a first inactive position, in which they allow the loading of the refuse to be crushed into said inlet pipe, to at least a second active position in which they compact said refuse in said pipe, the mass of compacted refuse in said inlet pipe being sent to the crushing chamber by means of said thruster member.
2. Mill as in claim 1, wherein it comprises an introduction element positioned between said compactor apparatus and said crushing chamber so as to selectively open or close the access to said crushing chamber.
3. Mill as in claim 2, wherein said introduction element is in an opening or closing position of the crushing chamber when at least one of said presser elements closes or opens the inlet pipe of the refuse.
4. Mill as in any claim hereinbefore, wherein said compactor apparatus comprises a first presser element positioned on a first side of said inlet pipe and a second presser element positioned on a second side of said inlet pipe opposite said first side, said first presser element being configured mainly to convey the refuse in said inlet pipe and said second presser element being configured mainly to compact the refuse.
5. Mill as in claim 4, wherein said first presser element is connected in a rotatable manner on said first side of the inlet pipe and comprises an arched containing surface of the refuse.
6. Mill as in claim 4, wherein said second presser element is connected in a rotatable manner on said second side of the inlet pipe and comprises a flat pressing surface.
7. Mill as in claim 1, wherein said inlet pipe has a box-like or parallelepiped shape and is open at the upper part to allow the loading of the refuse to be crushed.
8. Mill as in claim 1, wherein, downstream of said inlet pipe of the refuse to be crushed in the compactor apparatus, a transfer pipe is positioned to transfer the compacted refuse toward the crushing chamber, the cross section of the transfer pipe substantially corresponding to the cross section of the inlet pipe.
9. Mill as in claim 1, wherein said thruster member has a cross section with a shape substantially corresponding to that of the inlet pipe of the refuse to be crushed.
10. Mill as in claim 1, wherein said thruster member is mobile from at least a first extreme position in which it is positioned externally to said inlet pipe of the refuse to be crushed and a second extreme position in which it moves into proximity to a loading aperture of the mass of compacted refuse in the crushing chamber.
11. Method for treating refuse, such as scrap, which comprises moving a thruster member associated to an inlet pipe between an inactive position in which said refuse is loaded into said pipe and one or more active positions of thrusting said refuse in which said refuse is thrust toward a crushing chamber to be crushed, after loading said refuse into said pipe, it provides a compacting of the refuse with a compactor apparatus and, during said compacting, providing to move one or more presser elements, positioned in correspondence to said pipe, between a first inactive position in which they allow the loading of said refuse into said pipe, and a second active position in which they compact said refuse in said pipe, the mass of said compacted refuse being sent to said crushing chamber by means of said thruster member.
12. Method as in claim 11, wherein it provides open and closed steps of the crushing chamber synchronized with the closed and open steps of said inlet pipe to load the refuse to be treated, so that the crushing chamber is always closed toward the outside.
13. Method as in claim 11, wherein a first presser element performs a first compacting operation of the refuse to be compacted, thrusting it toward a second presser element, and said second presser element performs a second compacting operation at the end of which the compacted refuse is leveled and substantially has a shape corresponding to that of the inlet pipe.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] These and other characteristics of the present invention will become apparent from the following description of some embodiments, given as a non-restrictive example with reference to the attached drawings wherein:
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[0032]
[0033] To facilitate comprehension, the same reference numbers have been used, where possible, to identify identical common elements in the drawings.
DETAILED DESCRIPTION OF SOME EMBODIMENTS
[0034] With reference to the attached drawings and in particular to
[0035] Inside the crushing chamber 12 a crushing device 17 is housed that comprises a rotor 18, cylindrical in shape and provided centrally with a substantially horizontal rotation shaft 19. The rotor 18 is supported by suitable supports 20, for example bearings, and will be connected to drive means, for example an electric motor with adjustable speed or suchlike. The rotor 18 has a series of crushing hammers 21 along the periphery, preferably equidistant from each other. The refuse or scrap to be crushed reach the crushing chamber 12 by means of a slide, the terminal part 22 of which can be seen.
[0036] Upstream of the crushing chamber 12 a box 23 is shown, for housing an introduction element 24, shaped as a cylindrical sector and able to rotate round a rotation shaft 25 by suitable drive means, not visible in the drawings. The function of the introduction element 24 is to thrust the terminal part of the compacted refuse into the crushing chamber 12 and to close the access to the inlet aperture 14 of the crushing chamber 12.
[0037] In the zone under the introduction element 24 a pipe 26 is provided, of a box-like or parallelepiped shape, suitable to transfer a compacted mass of refuse to the crushing chamber 12.
[0038] The transfer pipe 26 communicates by means of a suitable mouth 27 with an inlet pipe 28 of a compactor apparatus 30. The inlet pipe 28 has a shape and size corresponding to the transfer pipe 26 and the mouth 27, that is, it has a parallelepiped or box-like shape and is open at the top to allow loading of refuse. The mass of refuse or scrap to be crushed by the crushing mill 10 is offloaded into the inlet pipe 28. The inlet pipe 28 is therefore delimited at one end by the mouth 27 through which a mass of compacted refuse is transferred to the transfer pipe 26 and, at the other end, by an aperture 29. The aperture 29 has a cross section corresponding to the cross section of the inlet pipe 28 and the mouth 27, and through it a parallelepiped thruster member 31 can enter and exit. The thruster member 31 can slide backward and forward in the inlet pipe 28, through the mouth 27 and into the transfer pipe 26. The thruster member 31 can be driven by any suitable drive mean, for example a linear actuator or suchlike and is connected for this purpose to a rod 32 that is supported and guided by suitable supports 33 and 34.
[0039] The inlet pipe 28 for the mass of refuse R to be treated (see
[0040] On the top of the lateral wall 28c, instead, one end of a second presser element 37 is connected, by means of one or more rotation pins 44, and comprises a flat pressing surface 38. The presser elements 35 and 37 are driven by corresponding actuators:
[0041] During the loading of a mass of refuse R into the compactor apparatus 30, the thruster member 31 is in a retracted position and remains outside the inlet pipe 28 (see
[0042] In a first compacting step of the refuse R (see
[0043] The first presser element 35 is stopped in a position such that it does not interfere with the subsequent rotation of the second presser element 37. By means of the plunger 41 with which the corresponding actuator 42 is provided (see
[0044] In this way a compacted mass of refuse R is obtained, which will have a parallelepiped or box-like shape substantially corresponding to the shape of the inlet pipe 28.
[0045] When the mass of refuse R is compacted, the thruster member 31 can come into action, which until now had been inactive and in a retracted position. In the meantime, a new mass R1 of refuse is offloaded onto the presser element 35 to be compacted and crushed.
[0046] The thruster member 31 (see
[0047] When the mass of compacted refuse R advances into the crushing chamber 12 through the inlet aperture 14, the rotor 18 starts crushing using the hammers 21. As the rotor 18 gradually crushes the mass of refuse R, the thruster member 31 thrusts the remaining part of the refuse outside the inlet pipe 28 and as far as near the bottom of the transfer pipe 26, where the aperture 14 of the crushing chamber 12 is positioned.
[0048]
[0049] The function of the introduction element 24, in its operating conditions, is therefore to close the feed aperture 14 of the chamber 12 on each occasion, and when it is in the raised position, the accidental spillage of refuse or scrap from the crushing mill 10 is prevented by the presser element 37 in the closed position on the inlet pipe 28.
[0050]
[0051] In substance, the step shown in
[0052] The crushing method performed by the crushing mill 10 according to the present invention is therefore advantageously continuous and without downtimes, since the crushing mill 10 is loaded with refuse to be crushed every time the presser element 35 moves to the positions shown in
[0053] It is clear that modifications and/or additions of parts may be made to the crushing mill as described heretofore, without departing from the field and scope of the present invention.
[0054] It is also clear that, although the present invention has been described with reference to some specific examples, a person of skill in the art shall certainly be able to achieve many other equivalent forms of crushing mill, having the characteristics as set forth in the claims and hence all coming within the field of protection defined thereby.