CLEANING SYSTEM FOR A TRANSPORTING AND STORING DEVICE HAVING ADJUSTABLE CAPACITY FOR TOBACCO INDUSTRY ROD-LIKE ELEMENTS
20170275101 · 2017-09-28
Inventors
Cpc classification
B65G45/22
PERFORMING OPERATIONS; TRANSPORTING
B65G47/5122
PERFORMING OPERATIONS; TRANSPORTING
A24C5/35
HUMAN NECESSITIES
International classification
Abstract
A cleaning system for a transporting and storing device having adjustable capacity for tobacco industry rod-like elements, the device comprising at least one circular conveyor located on a stationary support element of the device and at least one circular conveyor of the device located on a rotary support element, wherein the conveyors are arranged one above another. The cleaning system comprises a plurality of cleaning units attached to the support elements and oriented towards a transporting surface of the conveyor located below a corresponding cleaning unit of the plurality of cleaning units and configured to remove contaminations from the transporting surface of the conveyor. At least a first cleaning unit of the plurality of cleaning units is attached to the stationary support element and at least a second cleaning unit of the plurality of cleaning units is attached to the rotary support element.
Claims
1. A cleaning system for a transporting and storing device having adjustable capacity for tobacco industry rod-like elements, the device comprising at least one circular conveyor located on a stationary support element of the device and at least one circular conveyor of the device located on a rotary support element, wherein the conveyors are arranged one above another, and wherein the cleaning system comprises a plurality of cleaning units attached to the support elements and oriented towards a transporting surface of the conveyor located below a corresponding cleaning unit of the plurality of cleaning units and configured to remove contaminations from the transporting surface of the conveyor, wherein at least a first cleaning unit of the plurality of cleaning units is attached to the stationary support element and at least a second cleaning unit of the plurality of cleaning units is attached to the rotary support element.
2. The cleaning system according to claim 1, wherein the plurality of cleaning units comprises at least one compressed air nozzle.
3. The cleaning system according to claim 2, wherein at least one compressed air nozzle is oriented at an angle from 0 degrees to 45 degrees with respect to a vertical axis towards the transporting surface of the conveyor.
4. The cleaning system according claim 1, wherein above at least one conveyor there are arranged radially at least first and second cleaning units of the plurality of cleaning units.
5. The cleaning system according to claim 1, wherein at least a first cleaning unit of the plurality of cleaning units attached to the stationary support element is configured to clean the conveyor located on the rotary support element.
6. The cleaning system according to claim 1, wherein at least one second cleaning unit of the plurality of cleaning units attached to the rotary support element is configured to clean the conveyor located on the stationary support element.
7. A multilevel reservoir having adjustable capacity and comprising the cleaning system according to claim 1.
8. A method for cleaning a transporting and storing device having adjustable capacity for tobacco industry rod-like elements, the transporting and storing device having at least a first circular conveyor located on a stationary support element and at least a second circular conveyor located on a rotary support element, wherein the at least a first and second circular conveyors are arranged one above another, wherein a plurality of cleaning units are attached to the support elements and oriented towards a transporting surface of the conveyor located below a corresponding cleaning unit of the plurality of cleaning units and configured to remove contaminations from the transporting surface of the conveyor, the method comprising the steps of: activating consecutively the plurality of cleaning units in order to remove contaminations, starting from an uppermost cleaning unit of the plurality of cleaning units, down to a lowermost cleaning unit of the plurality of cleaning units; removing the contaminations from the conveyor located on the rotary support element by at least one cleaning unit of the plurality of cleaning units attached to the stationary support element; and removing the contaminations from the conveyor located on the stationary support element by at least one cleaning unit of the plurality of cleaning units attached to the rotary support element.
9. The method according to claim 8, additionally comprising: after removing the contaminations from the transporting surface of the conveyor, starting the removal of the contaminations from the transporting surface of the conveyor located below.
10. The method according to claim 8, additionally comprising: removing the contaminations from the conveyor by an air stream directed from at least one compressed air nozzle of the plurality of cleaning units.
11. The method according to claim 10, further comprising: orienting the airflow output from at least one nozzle at an angle from 0 to 45 degrees with respect to the vertical axis towards a transporting surface of the conveyor.
12. The method according to claim 8, further comprising: removing contaminations from at least one conveyor by at least two cleaning units arranged radially in equal spacing above the conveyor, such that each cleaning unit is configured to remove contaminations only from a fragment of the entire length of the conveyor.
Description
BRIEF DESCRIPTION OF FIGURES
[0021] The system is shown by means of example embodiments in a drawing, in which:
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DETAILED DESCRIPTION
[0031]
[0032] In the presented embodiment, the circular support elements 2-7 have a form of rings, however it is possible to make the circular support elements 2-7 as full wheels 30, wherein the conveyors are positioned on their circumference, as shown in
[0033] A support structure of the reservoir 1 comprises the circular support elements 2-7, 14, 14′ which are arranged coaxially and vertically one above another. Vertical gaps between the neighboring circular support elements are adjusted so as to enable the multilayer mass flow F of the rod-like elements R. The circular support elements 2-7, 14, 14′ include stationary support elements 3, 5, 7, 14, 14′ and rotary support elements 2, 4, 6. In the presented embodiment, the rotary support elements 2, 4, 6 of the reservoir 1 are arranged alternately with the stationary support elements 3, 5, 7, 14 which are connected to a stationary structure 25 of the reservoir 1 with fixing means 15. The reservoir may be configured so that all rotary support elements 2, 4, 6 are connected and have one common driver unit (not shown in the figure). In another embodiment, each rotary support element 2, 4, 6 and thus each conveyor 8, 10, 12 may have an independent driver unit (not shown in the figure) for rotating them about the X axis. Above each conveyor 8, 9, 10, 11, 12, 13 there is located a cleaning unit 16, 17, 18, 19, 20, 21, respectively. Therefore, the system comprises a plurality of cleaning units 16, 17, 18, 19, 20, 21. The process of cleaning of the conveyor begins preferably after the reservoir 1 is completely emptied from the rod-like elements. First, the cleaning unit located above the uppermost conveyor of the reservoir, is activated. After cleaning the uppermost conveyor, the lower conveyors are consecutively cleaned, down to the lowermost conveyor.
[0034] The cleaning unit 16 (which may be referred to as a first cleaning unit of the plurality of cleaning units) shown in
[0035]
[0036] As shown in
[0037] After the complete cleaning cycle, the cleaning unit 17 is deactivated, and the cleaning unit 18 located below, above the consecutive conveyor 10 (as shown in
[0038] The cleaning units 16, 16′, 16″ positioned above the conveyor 8 located on the rotary support element 2 are arranged radially in equal spacing so that during the rotation of the support element 2 about the X axis, the entire length L of the conveyor is cleaned. In this embodiment, there are three cleaning units 16, 16′, 16″ arranged radially above the conveyor 8 and spaced apart by an angle α equal to 120 degrees. In such angular spacing, each cleaning unit 16, 16′, 16″ is responsible for cleaning ⅓ of the length L of the conveyor 8.
[0039] The arrangement of
[0040]