Thermosetting unit, in particular for a textile printer
11230094 · 2022-01-25
Assignee
Inventors
Cpc classification
B41J11/002
PERFORMING OPERATIONS; TRANSPORTING
B41J11/0024
PERFORMING OPERATIONS; TRANSPORTING
F26B13/183
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65H27/00
PERFORMING OPERATIONS; TRANSPORTING
B65H2515/40
PERFORMING OPERATIONS; TRANSPORTING
F26B3/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B41F23/0436
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41F23/04
PERFORMING OPERATIONS; TRANSPORTING
B41J11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A thermosetting unit, in particular for a textile printer, includes a pair of stationary supports, a thermosetting roller extending between said stationary supports and rotatably carried by said stationary supports around a longitudinal axis thereof, a stationary infrared lamp extending inside said thermosetting roller and having opposite ends supported by said stationary supports, and a temperature-uniforming device housed inside the thermosetting roller.
Claims
1. A thermosetting unit, comprising: a pair of stationary supports, a thermosetting roller having a longitudinal axis, extending between said pair of stationary supports and rotatably carried by said pair of stationary supports around said longitudinal axis, a stationary infrared lamp extending inside said thermosetting roller and having opposite ends supported by said pair of stationary supports, and a temperature-uniforming device housed inside the thermosetting roller, the temperature-uniforming device including at least one longitudinal bar fixed to the thermosetting roller and projecting radially inwardly from an inner surface of the thermosetting roller, wherein said at least one longitudinal bar produces a swirling movement of air between the infrared lamp and the inner surface of the thermosetting roller during rotation of the thermosetting roller around said longitudinal axis.
2. The thermosetting unit according to claim 1, wherein said at least one longitudinal bar extends over an entire length of the thermosetting roller.
3. The thermosetting unit according to claim 2, wherein said at least one longitudinal bar is fixed to opposite front walls of the thermosetting roller.
4. The thermosetting unit according to claim 2, wherein the at least one longitudinal bar of the temperature-uniforming device comprises at least two longitudinal bars opposite to each other.
5. A thermosetting unit, comprising: a pair of stationary supports, a thermosetting roller having a longitudinal axis, extending between said pair of stationary supports and rotatably carried by said pair of stationary supports around said longitudinal axis, a stationary infrared lamp extending inside said thermosetting roller and having opposite ends supported by said pair of stationary supports, and a temperature-uniforming device housed inside the thermosetting roller, the temperature-uniforming device including at least one perforated tubular sleeve coaxial to a side wall of the thermosetting roller and having an outer surface in contact with at least a part of an inner surface of the thermosetting roller.
6. The thermosetting unit according to claim 5, wherein said perforated tubular sleeve is formed by a perforated metal sheet folded into a tubular shape.
7. The thermosetting unit according to claim 5, wherein said perforated tubular sleeve is formed of a material having a thermal conductivity less than a thermal conductivity of a material forming the thermosetting roller.
8. The thermosetting unit according to claim 5, wherein said perforated tubular sleeve comprises a plurality of sections aligned with each other along said longitudinal axis.
9. A thermosetting unit, comprising: a pair of stationary supports, a thermosetting roller having a longitudinal axis, extending between said pair of stationary supports and rotatably carried by said pair of stationary supports around said longitudinal axis, a stationary infrared lamp extending inside said thermosetting roller and having opposite ends supported by said pair of stationary supports, and a temperature-uniforming device housed inside the thermosetting roller, the temperature-uniforming device including a plurality of metal rings fixed with respect to the thermosetting roller and orthogonal to said longitudinal axis, wherein said plurality of metal rings surround the infrared lamp without contact and have outer surfaces in contact with an inner surface of the thermosetting roller.
10. The thermosetting unit according to claim 9, wherein said plurality of metal rings are spaced apart from each other along the longitudinal axis and are fixed to each other by longitudinal pins.
11. The thermosetting unit according to claim 9, wherein at least one of said plurality of metal rings is fixed to a corresponding front wall of the thermosetting roller by longitudinal pins.
12. The thermosetting unit according to claim 9, wherein said plurality of metal rings are hollow.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention will now be described in detail with reference to the attached drawings, given purely by way of non-limiting example, wherein:
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DETAILED DESCRIPTION
(12) In
(13) The textile printer 10 can comprise a thermosetting unit 18 for thermosetting the inks onto the fabric after printing. The thermosetting unit 18 comprises a thermosetting roller 20, illustrated in an exploded position in the representation of
(14) In the example shown in
(15) The thermosetting unit 18 comprises two stationary supports 22, which rotatably support the thermosetting roller 20 around its longitudinal axis A. One of the two stationary supports 22 may carry a motor that rotates the thermosetting roller 20 around the axis A. The stationary supports 22 may be constructed as illustrated in document EP-A-3473438 by the same Applicant.
(16) The thermosetting roller 20 has a cylindrical side wall 24 of metal material, for example, of aluminum or its alloys, having a smooth outer surface on which—during operation—a moving fabric is wound downstream of the printing section.
(17) The thermosetting roller 20 is hollow and a heating device is housed therein, which heats the cylindrical wall 24 at temperatures in the order of 200° C.
(18) During operation, the fabric at the outlet of the printing section moves in contact with the outer surface of the heated thermosetting roller 20. The heat that is transferred from the thermosetting roller 20 to the moving fabric carries out the thermosetting of the inks on the printed surface of the fabric.
(19) With reference to
(20) The thermosetting unit 18 comprises a temperature-uniforming device 28 housed inside the thermosetting roller 20. The temperature-uniforming device 28 has the object of making the temperature of the side wall 24 of the thermosetting roller 20 more uniform along the longitudinal axis A.
(21) With reference to
(22) With reference to
(23) The longitudinal pins 34 that fix the longitudinal bars 30 to the front walls 32 of the thermosetting roller allow the support of the bars 30 and allow the differentiated deformation between the longitudinal bars and the outer wall 24 of the thermosetting roller 20 caused by the thermal expansion.
(24) With reference to
(25) The tubular sleeve intercepts and captures the heat radiated by the infrared lamp 26 and transfers the heat by conduction along the longitudinal axis A. The tubular sleeve 36 is in direct contact with the inner surface of the thermosetting roller 20 so that the heat collected by the tubular sleeve 36 is transferred by conduction to the side wall 24 of the thermosetting roller 20. In this way, the tubular sleeve 36 allows uniforming of the temperature of the side wall 24 of the thermosetting roller 20 along the longitudinal axis A. The effect of interception and storage of the heat in the tubular sleeve 36 can be increased by virtue of the fact that the tubular sleeve 36 may have a thermal conductivity lower than that of the material constituting the thermosetting roller 20. In the illustrated example, the tubular sleeve 36 can be formed of a sheet, for example, of stainless steel, in which a plurality of parallel arrays of circular holes are formed. The diameter of the holes and, consequently, the dimensions of the material comprised between the holes, are determined so as to provide a correct thermal balance between the radiated heat that is intercepted by the tubular sleeve 36 and transferred by conduction to the side wall 24 of the thermosetting roller 20, and the heat that is radiated directly onto the side wall 24 of the thermosetting roller 20.
(26) With reference to
(27) In the side areas of the thermosetting roller 20, the metal rings 40 heat by irradiation and transfer heat by conduction to the side wall 24 of the thermosetting roller 20. The greater mass at the side ends of the thermosetting roller 20 formed by the metal rings 40 allows storage of a greater quantity of the heat radiated by the infrared lamp, and transfer of the heat by conduction to the side portions of the thermosetting roller 20. The metal rings 40, therefore, constitute thermal bridges capable of capturing the heat in the inner areas adjacent to the infrared lamp 26 and of transferring the heat to the side wall 24 of the thermosetting roller 20, making the temperature distribution of the side wall 24 of the thermosetting roller 20 more uniform along the longitudinal axis A. The rings 40 can be hollow to reduce the weight and can be made of aluminum to optimize heat transmission.
(28) The different embodiments of the temperature-uniforming device 28 could also be combined with each other in various ways in the same thermosetting roller 20. Therefore, a thermosetting roller 20 could comprise two or more of the different embodiments of the temperature-uniforming devices 28 combined together in various ways.
(29) Of course, without prejudice to the principle of the invention, the details of construction and the embodiments can be widely varied with respect to those described and illustrated, without thereby departing from the scope of the invention as defined by the claims that follow.