A method for making a sub-unit of a smoking article
US-2020390147-A1 · Dec 17, 2020 · US
US10375987B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10375987-B2 |
| Application number | US-201615768835-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 17, 2016 |
| Priority date | Nov 19, 2015 |
| Publication date | Aug 13, 2019 |
| Grant date | Aug 13, 2019 |
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An apparatus ( 10, 20, 30, 40 ) for shifting of rod-shaped articles ( 4, 4 ′) of different lengths or rod-shaped article groups ( 6 ) of different total lengths on a drum conveyor ( 2 ), comprising a pushing unit ( 5, 25, 35 ) mounted angularly to the axis of rotation of the drum conveyor ( 2 ), forcing the movement of the rod-shaped articles ( 4, 4 ′), whereas the pushing unit ( 5, 25, 35 ) comprises rotational pushing elements ( 11, 21, 31 ) for shifting of the rod-shaped articles ( 4, 4 ′), characterised in that the pushing unit ( 5, 25, 35 ) is movably mounted in a direction being substantially transverse to the axis of the flute ( 3 ) of the drum conveyor ( 2 ) so as to shift the rod-shaped-articles ( 4, 4 ′) or the rod-shaped article groups ( 6 ) inside the flute ( 3 ) of the drum conveyor ( 2 ) by the pressure of surfaces ( 11 A, 21 A, 31 A) of the pushing unit ( 5, 25, 35 ) directly on the ends of the rod-shaped article ( 4, 4 ′).
Opening claim text (preview).
The invention claimed is: 1. Method for shifting of rod-shaped articles wherein: at least one rod-shaped article ( 4 , 4 ′), or a rod-shaped article group comprising rod-shaped articles ( 6 ), is conveyed in a flute ( 3 ) situated on the circumference of a drum conveyor ( 2 ), wherein the length of the at least one rod-shaped article ( 4 , 4 ′), or the total lengths of the rod-shaped articles comprising the rod-shaped article group ( 6 ), in each flute ( 3 ) may vary, whereas a pushing unit ( 5 , 25 , 35 ) forcing the movement of the at least one rod-shaped article is shifted in a direction being substantially transverse to an axis of the flute ( 3 ) of the drum conveyor ( 2 ), whereas the pushing unit ( 5 , 25 , 35 ) has surfaces ( 11 A, 21 A, 31 A) situated angularly to the axis of the flute ( 3 ) the drum conveyor ( 2 ), characterised in that the at least one rod-shaped article ( 4 , 4 ′), or the rod-shaped article group ( 6 ), is axially shifted in the flute ( 3 ) by means of the surfaces ( 11 A, 21 A, 31 A) of the pushing unit ( 5 , 25 , 35 ). 2. Method as in claim 1 characterised in that the at least one rod-shaped article ( 4 , 4 ′), or the rod-shaped article group ( 6 ), is axially shifted in the flute ( 3 ) directly with the use of flexible rings ( 17 , 18 ) by means of the surfaces ( 11 A, 21 A, 31 A) of the pushing unit ( 5 , 25 , 35 ). 3. Method as in claim 1 characterised in that at least two pushing units ( 5 , 25 , 35 ) mounted on both sides of the flute ( 3 ) of the drum conveyor ( 2 ) are shifted in a direction being substantially transverse to the axis of the at least one rod-shaped article ( 4 , 4 ′), or the rod-shaped article group ( 6 ), whereas by means of the surfaces ( 11 A, 21 A, 31 A) of the pushing unit ( 5 , 25 , 35 ) situated on both sides of the flute ( 3 ) of the drum conveyor the force exerted by the pushing unit ( 5 , 25 , 35 ) is directed on the rod-shaped articles ( 4 , 4 ′) so that the centers of the at least one rod-shaped article ( 4 , 4 ′), or rod-shaped article group ( 6 ), in the flutes ( 3 ) of the drum conveyor ( 2 ) are positioned substantially in a common plane. 4. Apparatus ( 10 , 20 , 30 ) for shifting of the at least one rod-shaped article ( 4 , 4 ′) of different length, or rod-shaped article group ( 6 ) of different total length, on a drum conveyor ( 3 ), comprising a pushing unit ( 5 , 25 , 35 ) mounted angularly to the axis of rotation of the drum conveyor ( 2 ) forcing a movement of the at least one rod-shaped article ( 4 , 4 ′), whereas the pushing unit ( 5 , 25 , 35 ) comprises rotational pushing elements ( 11 , 21 , 31 ) for shifting of the at least one rod-shaped article ( 4 , 4 ′), characterised in that the pushing unit ( 5 , 25 , 35 ) is movably mounted in a direction being substantially transverse to the axis of the flute ( 3 ) of the drum conveyor ( 2 ) adapted to shift axially the at least one rod-shaped article ( 4 , 4 ′), or the rod-shaped article group ( 6 ), inside the flute ( 3 ) of the drum conveyor ( 2 ) by pressure of surfaces ( 11 A, 21 A, 31 A) of the pushing unit ( 5 , 25 , 35 ) on the ends of the at least one rod-shaped article ( 4 , 4 ′). 5. Apparatus as in claim 4 characterised in that the pushing unit ( 5 , 25 , 35 ) is movably mounted in a direction being substantially transverse to the axis of the flute ( 3 ) of the drum conveyor ( 2 ) so as to shift the at least one rod-shaped article ( 4 , 4 ′), or the rod-shaped article group ( 6 ), inside the flute ( 3 ) of the drum conveyor ( 2 ) by the pressure of the surfaces ( 11 A, 21 A, 31 A) of the pushing unit ( 5 , 25 , 35 ) directly on the ends of the at least one rod-shaped article ( 4 , 4 ′). 6. Apparatus as in claim 4 characterised by comprising at least two pushing units ( 5 , 25 , 35 ) mounted angularly to the axis of the flute ( 3 ), on both sides of the flute ( 3 ) of the drum conveyor ( 2 ), whereas the pushing units ( 5 , 25 , 35 ) are movably mounted in a direction being substantially transverse to the axis of the flute ( 3 ) of the drum conveyor ( 2 ) so as to shift the at least one rod-shaped article ( 4 , 4 ′), or the rod-shaped article group ( 6 ), inside the flute ( 3 ) of the drum conveyor ( 2 ) so that the centers of the at least one rod-shaped article ( 4 , 4 ′), or the rod-shaped article group ( 6 ), in the flute ( 3 ) of the drum conveyor ( 2 ) position themselves substantially in a common plane. 7. Apparatus as in claim 4 characterised in that the contact of the rotational pushing elements ( 11 , 21 , 31 ) of the pushing unit ( 5 , 25 , 35 ) with the at least one rod-shaped article ( 4 , 4 ′), or the rod- shaped article group ( 6 ), is effected by means of a spring ( 16 , 53 ). 8. Apparatus as in claim 4 characterised in that the rotational pushing elements ( 11 , 21 , 31 ) have circumferential surfaces ( 11 A, 21 A, 31 A) selected from the group: a conical, spherical, cylindrical, paraboloidal surface.
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