Processing unit and label printing machine having the processing unit
10449757 ยท 2019-10-22
Assignee
Inventors
Cpc classification
B41F13/34
PERFORMING OPERATIONS; TRANSPORTING
B41F13/24
PERFORMING OPERATIONS; TRANSPORTING
B41F13/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41F13/20
PERFORMING OPERATIONS; TRANSPORTING
B41F13/34
PERFORMING OPERATIONS; TRANSPORTING
B41F13/24
PERFORMING OPERATIONS; TRANSPORTING
B41F17/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A processing unit for rotational processing includes at least two processing cylinders and a machine frame. A first processing cylinder is movably mounted in the machine frame, a second processing cylinder is stationarily mounted in the machine frame and a pair of support members is provided for each respective processing cylinder. A respective support member of the second processing cylinder has a solid joint, a manipulator and an annular segment attached to the solid joint and contacting one support member of the first processing cylinder. A solid joint is linearly displaceable by the manipulator and an annular segment is linearly displaceable therewith. A gap dimension between the processing cylinders can therefore be adjusted in a simple, accurate manner with precise repeatability. A label printing machine having the processing unit is also provided.
Claims
1. A processing unit for the rotational processing of a web-shaped or sheet-shaped substrate, the processing unit comprising: a machine frame; at least two processing cylinders including a first processing cylinder movably mounted in said machine frame, a second processing cylinder stationarily mounted in said machine frame, and pairs of support members each pair being associated with a respective one of said processing cylinders; each respective support member associated with said second processing cylinder having a solid joint, a manipulator, and an annular segment being attached to said solid joint and contacting a respective one of said support members associated with said first processing cylinder; and each of said solid joints being linearly displaceable by a respective one of said manipulators and each of said annular segments being linearly displaceable with a respective one of said solid joints.
2. The processing unit according to claim 1, wherein each of said solid joints has one respective degree of freedom.
3. The processing unit according to claim 2, wherein each of said solid joints has at least one of elements or tapers in a material of said respective solid joint enabling an elastic deformation of said respective solid joint.
4. The processing unit according to claim 3, wherein each of said solid joints has a respective body and at least one respective leaf spring connecting said body to said machine frame.
5. The processing unit according to claim 1, wherein said manipulator is a rotatable eccentric roller or a helical roller being fixedly attached to said machine frame.
6. The processing unit according to claim 5, wherein said manipulator is rotatable by motive power.
7. The processing unit according to claim 1, wherein said support members associated with said first processing cylinder are raceways.
8. The processing unit according to claim 1, wherein said first processing cylinder has a tensioning mechanism for setting a relative position of said processing cylinders.
9. The processing unit according to claim 1, wherein said solid joint has a body, and said annular segment is disposed on said body so as to be pivotable counter to a restoring force.
10. A label printing machine, comprising at least one processing unit according to claim 1.
11. A label printing machine, comprising: at least one processing unit according to claim 1; said first processing cylinder being constructed as a printing cylinder; said second processing cylinder being constructed as an impression cylinder; and a further stationary processing cylinder being constructed as an inking roller.
12. The label printing machine according to claim 11, wherein said inking roller is an anilox roller.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
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DETAILED DESCRIPTION OF THE INVENTION
(7) Referring now to the figures of the drawings in detail and first, particularly, to
(8) The construction of a respective support member 20 is shown in detail in the illustration of
(9) The configuration of the support members 20 and of the support members 30, in each case on either side of the cylinders 11, 12, 13 (drive side and operator side), can be derived from the three-dimensional illustration of
(10) The activation of the manipulators herein can be performed manually by the machine operator, or else by motive power. This second variant is illustrated in
(11) In the case of an order changeover, for example when switching takes place from a first cylinder 11 to a first cylinder 11 having a smaller diameter, the pneumatic cylinder 14 is deactivated, and the bias force F between the cylinders 11, 12, 13 is canceled. The spring packs 28, which are integrated in the bodies 22 of the solid joints 21, by way of the spring force of the former, cause the annular segments 23 to be pivoted away from the respective body 22 of the solid joint 21 in such a way that the support members 30 of the first cylinder 11 are also raised. As a result, the first cylinder 11 is set apart from the two other cylinders 12, 13.
(12) As an alternative to the embodiment of the manipulator 24 as a helical roller, the manipulator 24 could also be embodied as an eccentric roller or as a piezo actuator.
(13) A processing unit 10 having a first cylinder 11 and having a second cylinder 12, both being mounted in the machine frame 9, is illustrated in
(14) An illustration of a preferred embodiment of a printing machine 100, more specifically a narrow-web label printing machine with a sequential construction, having printing units 110 that follow in the horizontal direction, is shown in
(15) In the illustration of the individual printing units 110, which are presently shown as flexographic printing units, chamber doctor blades are also shown apart from the printing cylinders, the impression cylinders, and the inking rollers. The printing units 110 in the printing machine 100 furthermore have various drying installations. UV drying installations are assigned downstream of the impression cylinders on respective printing gap of the printing unit 110 in such a way that the printed substrate 1000 can be dried directly on the impression cylinder. The printing units 110 also have web guide rollers 160 for guiding the web-shaped substrate 1000. The fifth printing unit 110 in the embodiment shown has a hot air drying installation 162. Alternatively, a UV or an IR drying installation could also be employed in this case. A punching unit 150, which has a punching cylinder and a mating die cylinder as rotating tools, is disposed subsequent to the drying installation. An embossing unit, for example a hot-film embossing unit, can also be used additionally or alternatively, respectively, to the punching unit.
(16) As an alternative to the illustrated flexographic printing units, gravure printing, offset printing, and rotary screen printing units can also be employed. At least one of the printing units 110 and/or the punching unit 150 shown herein have the construction of the processing units 10 described above.