UNIT FOR THERMOSETTING PRINTED FABRICS
20190143718 ยท 2019-05-16
Inventors
Cpc classification
B41J29/377
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/14211
PERFORMING OPERATIONS; TRANSPORTING
B65H2406/3312
PERFORMING OPERATIONS; TRANSPORTING
B41J11/0024
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41J11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A unit for thermosetting printed fabrics, comprising: a heated roller rotatable about a rotation axis and having a cylindrical outer surface, at least one fabric guiding element having an inner wall facing the cylindrical outer surface of the heated roller and defining a gap with the cylindrical outer surface of the heated roller for passing the fabric, wherein said at least one fabric guiding element has a fume suction chamber connected to a suction device, and wherein said inner wall has a plurality of holes communicating with said suction chamber.
Claims
1. A unit for thermosetting printed fabrics, comprising: a heated roller rotatable about a rotation axis and having a cylindrical outer surface, at least one fabric guiding element having a fume suction chamber connected to a suction device, wherein said at least one fabric guiding element has a concave inner wall facing the cylindrical outer surface of the heated roller and defining a gap with the cylindrical outer surface of the heated roller for passing the fabric, and in that said concave inner wall has a plurality of holes that communicate with said suction chamber.
2. A unit according to claim 1, wherein said suction chamber is delimited by said inner wall and by an outer wall.
3. A unit according to claim 1, wherein said at least one fabric guiding element comprises two tubular elements parallel to said rotation axis which delimit said suction chamber along respective longitudinal edges of said fabric guiding element.
4. A unit according to claim 1, comprising a first fabric guiding element and a second fabric guiding element facing respective portions of said cylindrical outer surface of the heated roller.
5. A unit according to claim 4, wherein the first guiding element is carried by an adjusting device rotatable about said rotation axis independently of the heated roller to adjust the angular position of said fabric guiding element about said rotation axis.
6. A unit according to claim 4, wherein said second fabric guiding element is articulated to a stationary supporting structure about an axis parallel to said rotation axis and movable between an operative position in which the inner wall of the fabric guiding element is placed next to the cylindrical outer surface of the heated roller and an inoperative position in which the inner wall of the fabric guiding element is moved away from the cylindrical outer surface of the heated roller.
7. A textile printer comprising a thermosetting unit according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The present invention will now be described in detail with reference to the attached drawings, given purely by way of non-limiting example, wherein:
[0011]
[0012]
[0013]
[0014]
[0015]
[0016] It will be appreciated that, for clarity and simplicity of illustration, the various figures may not be reproduced on the same scale.
DETAILED DESCRIPTION
[0017] With reference to
[0018] The thermosetting unit 12 comprises at least one fabric guiding element for guiding the fabric 16 in contact with the cylindrical outer surface of the heated roller 18. In the illustrated example, the thermosetting unit 12 comprises two fabric guiding elements 22, 24 facing respective portions of the outer cylindrical surface of the heated roller 18. The fabric guiding elements 22, 24 have respective concave inner surfaces facing the heated roller 18 which define respective gaps with respect to the cylindrical outer surface of the heated roller 18 and through which the fabric 16 passes in contact with the heated outer surface of the heated roller 18.
[0019] As the fabric 16 passes around the heated roller 18, the thermosetting of the inks onto the fabric 16 is carried out due to the heat transferred to the fabric by the heated roller 18, whose outer surface is heated to a temperature that can reach up to 200 C.
[0020] The textile printer 10 comprises a first reel 26 on which a bobbin 28 of fabric to be printed is rotatably mounted and a second reel 30 on which the printed fabric wraps downstream of the thermosetting unit 12, forming a bobbin 32. The textile printer 10 comprises a plurality of rollers 34, 36, 38, 40, 42, 44 which feed and guide the fabric 16 in its movement through the printing head 14 and through the thermosetting unit 12.
[0021] With reference to
[0022] As shown in particular in
[0023] The adjusting device 54 comprises a shaft 60 parallel to the rotation axis A, rotatably carried about its own axis by the sides 48 of the stationary supporting structure 46. Two toothed sprockets 62 are fixed on the shaft 60, which engage with the respective gears 56. The shaft 60 is rotated about its axis by a motor 64 carried by one of the sides 48 of the stationary supporting structure 46. The motor 64, by means of the shaft 60 and the toothed pinions 62, can control the joint rotation of the two gears 56 about the axis A and can therefore adjust the angular position of the first guiding device 22 about the heated roller 18, to regulate the wrapping angle (
[0024] In the case in which adjustment of the contact angle between the fabric and the heated roller 18 is not required, the first guiding element 22 can be in a fixed position with respect to the stationary supporting structure 46.
[0025] With reference to
[0026] With reference to
[0027] With reference to
[0028] With reference to
[0029] Extraction of the fumes carried out in the gap formed between the fabric guiding elements 22, 24 and the outer surface of the heated roller 18 allows better extraction of the fumes and allows a better and more defined print quality to be obtained. The fabric guiding elements 22, 24 have the dual function of guiding the fabric 16 in contact with the outer cylindrical surface of the heated roller 18 and fume extraction. Thus, separate elements for fume extraction are avoided. The fume extraction system according to the present invention can be easily integrated with the adjusting device, which allows adjustment of the contact angle a of the fabric around the heated roller 18.
[0030] The thermosetting unit can be integrated into the textile printer 10 as illustrated in
[0031] Of course, without prejudice to the principle of the invention, the details of construction and the embodiments may 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.