Method for operating a tubular bag machine for producing bags having a transverse bottom seam and a transverse top seam different to the transverse bottom seam
10946991 ยท 2021-03-16
Assignee
Inventors
Cpc classification
B65B9/2042
PERFORMING OPERATIONS; TRANSPORTING
B65B9/213
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method for operating a tubular bag machine having a biaxially drivable transverse sealing device for producing tubular bags, a film sheet being closed by transverse bottom and top seams after having formed a film tube, an edge area of the film sheet forming a side fold using a side folder before forming the transverse bottom seam, and transverse top and bottom seams formed by adjacent tubular bags in one work step, said tubular bags formed in the draw direction having an alternating orientation, said side folder interacting with a stationary fold molding on the inner side of the film sheet, the minimal distance of the transverse sealing device to the fold molding alternatingly altered in the draw direction and being larger when producing the two transverse top seams than the minimal distance of the transverse sealing device to the fold molding when producing the transverse bottom seams.
Claims
1. A method for operating a tubular bag machine (10) having a biaxially drivable transverse sealing device (16) for producing a tubular bag (01), a film sheet (04) being closed by means of a transverse bottom seam (02) and a transverse top seam (03) after having formed a film tube, at least an edge area of the film sheet (04) of the tubular bag (01) being folded so as to form a side fold (09) using a side folder (18), which is transversally moveable to a longitudinal axis of the film sheet (04), before the transverse bottom seam has been formed, and two transverse bottom seams (02) each being formed by adjacent tubular bags (01) in one work step of the transverse sealing device (16), and two transverse top seams (03) each being formed by adjacent tubular bags in one work step of the transverse sealing device (16), and said tubular bags (01) being formed in a draw direction having an alternating orientation, characterized in that the side folder (18) interacts with a stationary fold molding (19) disposed on the inner side of the film sheet (04) when forming the side fold (09) in an area of the transverse bottom seam (02), a minimal distance of the transverse sealing device (16) to a fold molding (19) being alternatingly altered in the draw direction on a closed movement trajectory when forming the transverse top seams and the transverse bottom seams, said minimal distance of the transverse sealing device (16) to the fold molding (19) being larger when producing the two transverse top seams (03) than the minimal distance of the transverse sealing device (16) to the fold molding (19) when producing the transverse bottom seams (02).
2. The method according to claim 1, characterized in that a draw speed of a draw device (15) when forming a first tubular bag (01) corresponds to a first speed profile, said draw speed of the draw device (15) corresponding to a second speed profile different to the first speed profile when forming a directly following second tubular bag.
3. The method according to claim 2, characterized in that the draw speed of the draw device (15), by means of which the film sheet is drawn in the longitudinal direction, is alternatingly altered between a speed maximum and a speed minimum in such a manner that the alternating alteration of the minimal distance of the transverse sealing device (16) to the fold molding (19) is compensated and the tubular bag length of all tubular bags (01) is maintained.
4. The method according to claim 1, characterized in that strip-shaped closing elements (07, 08) detachably engaged with each other, are adapted to be fastened adjacent to the transverse top seam (03) of the tubular bag (01) transversally to the longitudinal axis of the film sheet (04).
5. The method according to claim 2, characterized in that strip-shaped closing elements (07, 08), detachably engaged with each other, are adapted to be fastened adjacent to the transverse top seam (03) of the tubular bag (01) transversally to the longitudinal axis of the film sheet (04).
6. The method according to claim 3, characterized in that strip-shaped closing elements (07, 08), detachably engaged with each other, are adapted to be fastened adjacent to the transverse top seam (03) of the tubular bag (01) transversally to the longitudinal axis of the film sheet (04).
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
(1) A variation of the method according to the invention is described in the following in an exemplary manner by means of the schematic drawings.
(2) In the following,
(3)
(4)
(5)
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(8)
DETAILED DESCRIPTION OF THE INVENTION
(9) In
(10)
(11)
(12)
(13) Each adjacent tubular bag 01 is sealed such that either the two adjacent transverse bottom seams 02 are sealed by means of the transverse sealing jaws or, in the next work step, the two adjacent transverse top seams 03 are sealed by means of the transverse sealing jaws. This is necessary in order to alternatingly fold the film tube, which is made of the film sheet 04, at the side, whereupon the transverse bottom seams 02 are sealed, and to forgo folding the film sheet in the respectively following work step and to seal the unfolded transverse top seam 03.
(14) The method according to the invention for producing tubular bags 01 is to be further explained by means of the illustration in
(15) The tubular bag machine 10 illustrated in
(16) Filling material, which exits the filling tube 14 and enters the interior of the film tube, is poured through the filling tube 14 (process not illustrated). A biaxially drivable transverse sealing device 16 is arranged beneath the filling tube 14. The two transverse sealing jaws 17 can be driven in the Z-direction, i.e. in the conveying direction of the tubular bag 01, and towards each other, i.e. transverse to the conveying direction. When sealing the tubular bags 01, the transverse sealing jaws 17 are pressed against each other and the film sheet 04 is sealed via heat exposure. At the same time, the transverse sealing jaws 17 of the transverse sealing device 16 are displaced in the Z-direction in order to follow the conveying movement of the tubular 01 in order to follow the downward conveying direction of the tubular bag 01 from the top.
(17)
(18) In
(19) In order to compensate the additional distance 20 when commencing the sealing for producing the two transverse top seams with regard to the bag length, the draw speed of the two draw bands 15 is altered. By altering the draw speed of the draw bands 15, the change in distance, i.e. the alteration of the Z-coordinates of the transverse sealing jaws 17, can be compensated when commencing the sealing of the transverse bottom seams 02 on the one hand and the transverse top seams 03 on the other hand.