SYSTEM FOR MEASURING OUT AND CUTTING COMPACTED POWDERS
20190382148 ยท 2019-12-19
Inventors
Cpc classification
B65B1/40
PERFORMING OPERATIONS; TRANSPORTING
B65B31/045
PERFORMING OPERATIONS; TRANSPORTING
B65B9/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B31/04
PERFORMING OPERATIONS; TRANSPORTING
B65B9/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A system and a method for packaging compacted powders are provided, wherein the system comprises a first tube (TC), wherein a screw conveyor (C) is positioned inside the first tube (TC) which is configured so as to rotate around an axis (ac) inside the first tube (TC) in order to convey the powders towards an outlet (UT) of the first tube (TC); the system (100) comprises a rotatable terminal (TI, TIC) in the proximity of the output (UT); the rotatable terminal (TI, TIC) comprises in its inside cutting means (F) which are configured so as to cut the compacted powders leaving the first tube (TC) when the rotatable terminal (TI) rotates, wherein the rotatable terminal (TI, TIC) is positioned so as to contact the end of the first tube (TC) which defines the output (UT).
Claims
1. Compacted powders packaging system, comprising: a first tube, wherein said first tube comprises a screw conveyor configured to rotate about an axis inside said first tube so as to convey powders towards an outlet of said first tube (TC), wherein said system comprises a rotatable terminal in proximity to said output; said rotatable terminal comprising internal cutting means configured to cut compacted powders going out from said first tube when said rotatable terminal rotates, wherein said rotatable terminal is positioned so as to contact the end portion of said first tube which defines said outlet; wherein said rotatable terminal includes an internal opening which is concentric with said first tube so as to convey the powders through said opening; wherein said cutting means are positioned within said opening; and wherein said internal opening has a diameter at said outlet of said first tube which is equal to the inner diameter of said first tube at said outlet.
2. Compacted powders packing system according to claim 1, wherein: said first tube is placed inside a second tube; wherein said second tube is rotatable around said first tube; and wherein said rotatable terminal is connected to said second tube so as to rotate with it.
3. Compacted powders packing system according to claim 2, wherein: said first tube and said second tube are concentric.
4. Compacted powders packing system according to claim 2, wherein: said rotatable terminal comprises a ring structure, which is detachably connected to said second tube so as to be able to rotate with it, wherein said cutting means are connected to said ring structure.
5. Compacted powders packing system according to claim 1, wherein: said cutting means comprise a plurality of wires arranged in a radial pattern.
6. Compacted powders packing system according to claim 5, wherein: the center of said radial pattern coincides with the axis of said first tube.
7. Compacted powders packing system according to claim 1, further comprising: a vertical packaging machine comprising a forming tube configured to accommodate a film coming from a reel; wherein said forming tube contains in its inside said first tube.
8. Compacted powders packing system according to claim 7, wherein: said first tube and said forming tube are concentric.
9. (canceled)
10. Compacted powders packing system according to claim 1, wherein: said internal opening of said rotatable terminal is of cylindrical shape, wherein the axis of said cylinder coincides with the axis of said screw conveyor.
11. Compacted powders packing system according to claim 1, wherein: said internal opening of said rotatable terminal is of conical or truncated cone shape; wherein the axis of said cone coincides with the axis of said screw conveyor.
12. (canceled)
13. Compacted powders packing system according to claim 1, further comprising: a forming tube containing said first tube; wherein said forming tube has an opening configured to insufflate gas into the gap between said forming tube and said second tube.
14. Compacted powders packing system according to claim 13, wherein: said opening is positioned in proximity to the upper edge of said forming tube.
15. Compacted powders packing system according to claim 2, further comprising: a vertical packaging machine comprising a forming tube configured to accommodate a film coming from a reel; and wherein said forming tube contains in its inside said second tube.
16. A method for packaging compacted powders in containers by means of a system that conveys the powders through a first tube to an output of said first tube, said method comprises the following step: a) cutting the compacted powders outgoing from said first tube by means of the rotation of a rotatable terminal comprising internal cutting means and positioned in the proximity of said output; wherein said rotatable terminal includes an internal opening which is concentric with said first tube so as to convey the powders through said opening; wherein said cutting means are positioned within said opening; and wherein said internal opening has a diameter at said outlet of said first tube which is equal to the inner diameter of said first tube at said outlet.
17. Method according to claim 16, wherein during said step a) said rotatable terminal is in direct contact with the end of said first tube which defines said output.
18. Method according to claim 16, wherein: rotation of said rotatable terminal is provided by the rotation of a second tube around its own axis, wherein said first tube is contained within said second tube; and wherein said rotatable terminal is connected to said second tube.
19. Method according claim 16, further comprising a step of: formation of containers by a vertical packaging machine so as to convey the compacted powders inside said containers; and wherein said vertical packaging machine comprises a forming tube around which a film coming from a reel is accommodated.
20. Method according to claim 16, further comprising a step of: gas feeding in order to compensate an internal depression in said containers.
21. A compacted powders packaging system comprising: a first tube having an outlet with an outlet diameter; a screw conveyor placed within said first tube; a rotatable terminal having an internal opening with an internal opening diameter, said rotatable terminal placed adjacent the outlet of said first tube; a cutter placed within the internal opening of said rotatable terminal; and wherein the outlet diameter of said first tube is equal to the internal opening diameter of the internal opening of said rotatable terminal, whereby said screw conveyor is configured to convey compacted powders through the outlet of said first tube and the cutter within the internal opening of said rotatable terminal rotates cutting the compacted powders.
22. The compacted powders packaging system as on claim 21, further comprising: a second tube place around said first tube, said second tube connected to said rotatable terminal, whereby rotation of said second tube rotates said rotatable terminal.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0035] The present invention will be described with reference to the attached figures in which the same reference numerals and/or marks indicate the same parts and/or similar and/or corresponding parts of the system.
[0036]
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DETAILED DESCRIPTION
[0048] Hereinafter, the present invention is described with reference to particular embodiments, as illustrated in the attached tables of drawings. However, the present invention is not limited to the particular embodiments described in the following detailed description and represented in the figures, but rather the described embodiments simply exemplify the various aspects of the present invention, the purpose of which is defined by the claims. Further modifications and variations of the present invention will become clear to those skilled in the art.
[0049]
[0050]
[0051] The rotatable terminal T1, which is cylindrical in shape, comprises a concentric inner opening AP with the first TC tube so as to convey the powders through it. Furthermore, the cutting means F are positioned inside said opening AP.
[0052] The first TC tube is inserted inside a second tube TR. In this way, a gap is formed between the outer region of the first tube TC and the inner region of the second tube TR. The second tube TR is rotatable around the first tube TC. This rotation is guaranteed, as shown in
[0053] The second tube TR is connected to the rotatable terminal T1 so as to transmit the rotation to the terminal T1. This connection is guaranteed, for example, by a mechanical constraint.
[0054] The axes of the first tube TC and of the second tube TR coincide. Between the first tube TC and the second tube TR, a centring ring AO is positioned which ensures that the second tube TR is always centred with respect to the first tube TC. Such an element can be made, for example, of plastic, brass or bronze material which has reduced friction coefficient in order to help sliding between the tubes.
[0055] The cutting means F, represented in
[0056] The cutting means F can also be formed from a grid having a plurality of openings. In this way, it is thus possible to have cutting means F consisting of multiple wires arranged woven together and forming a plurality of openings having any shape and size.
[0057] In the manufacturing step, the cutting means F can also be made by removal of material from a lower terminal TI initially without cavities. In this case, through mechanical processing, it is possible to remove material so as to form the wires in this case having a square section.
[0058] The centre of the fan of wires coincides with the axis of the first tube TC and thus consequently with the axis of the screw conveyor ac. The system thus obtained, as described having central symmetry, has cutting means positioned at the centre of the first tube TC.
[0059] As can be seen in
[0060] Moreover, as can be seen in
[0061] The opening AP of the rotatable terminal TI, as shown in
[0062] Alternatively, the opening AP of the rotatable terminal TIC, as shown in
[0063] A further variant, shown in
[0064] As shown in
[0065] As shown in
[0066] Moreover, the second tube TR can be replaced by any other structure capable of connecting the rotatable terminal TI with the upper flange FS, like, for example, a grid. In this case the two aforementioned gaps will communicate. An alternative is represented by a system of rods capable of mechanically connecting the rotatable terminal TI with the upper flange TS or by a tube machined inside it.
[0067] Hereinafter, with reference to
[0068]
[0069] In a subsequent step, depicted in
[0070] In a subsequent step, represented in
[0071] For this reason, it becomes necessary to cut the remainder RI of the compacted powders still anchored to the outlet. Therefore, as shown in
[0072] In the embodiment depicted, the lever LC allows the rotation of the flange FS in both directions: clockwise and anti-clockwise. Therefore, in the case depicted it is possible, once cutting has been carried out, to return to the starting position. It is obvious to those skilled in the art that in the case in which it is wished to avoid the step of returning to the starting position the lever LC can be replaced with a system that allows the upper flange FS to rotate 360 like, for example, gear, rack or similar systems.
[0073]
[0074] In the case described above, following the cutting process, the second tube TR is brought back into the position where it was before the rotation discussed above. Alternatively, it is also possible to proceed with a rotation in a first direction, then carry out the dosing step through the rotation of the screw conveyor C, and thereafter take the rotatable terminal TI to its original position by carrying out a second rotation in the opposite direction with respect to the first. In this way, the cutting would be carried out in the return step of the rotatable terminal TI. Therefore, the rotatable terminal TI will in this case be equipped with blades directed so as to be able to cut in the return step in the case in which blades have been selected as cutting means F. On the other hand, in the case in which they are cutting means TI represented by wires, in this case, there is not the problem of the cutting direction since they can be used without distinction in both of the cutting directions.
[0075] At this point, the tubular element TS is ready to be closed. Therefore, in a subsequent step, depicted in
[0076] As shown in
[0077] Moreover, in the case in which it is intended to prevent the contact of the compacted powders (which therefore have previously been removed of much of the air contained inside them) with an oxygen-rich atmosphere, it is possible to introduce inert gas, like, for example, nitrogen inside the opening AZ of the forming tube. In the case, for example, in which coffee is being handled, this solution is particularly advantageous since it is well known that it would be harmful for the coffee to be in contact with an oxygen-rich atmosphere, since the coffee could oxidise.
[0078] The amount of gas to be inserted inside the opening AZ is adjusted according to what depression is created inside the tubular element TS during the unwinding step. Such a depression can indeed be different depending on the format of the package to be made and on the type of film used. Such adjustment can, for example, be carried out by means of a valve.
[0079] Even if the present invention has been described with reference to the embodiments described above, it is clear to those skilled in the art that it is possible to make different modifications, variations and improvements to the present invention in light of the teaching described above and in the attached claims, without departing from the object and the scope of protection of the invention.
[0080] For example, the shape of the rotatable terminal is not necessarily round. Similarly, the shape of the tubes is not necessarily round. Moreover, the step of cutting the package is not constrained to being carried out through mechanical shearing since it could, for example, be carried out by laser cutting.
[0081] The method and the system for packaging powders described in the present invention makes it possible to package any type of powdered material in any field. An example of powdered material that can be packaged is flour or ground coffee, and more generally any type of powdered material present in the food industry. Another example is represented by powders used in the building trade, for example, lime. The first tube can, for example, be interchangeable so as to be able to be replaced to change the filtering fineness in the case in which there are big variations in the grain size of the powder to be packaged.
[0082] Finally, fields that are deemed known by those skilled in the art have not been described in order to avoid needlessly excessively overshadowing the described invention.
[0083] Consequently, the invention is not limited to the embodiments described above, but is only limited by the scope of protection of the attached claims.