Wrinkle detector for a fabric printer
10906334 ยท 2021-02-02
Assignee
Inventors
Cpc classification
F41J11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B41J11/0005
PERFORMING OPERATIONS; TRANSPORTING
B41J2203/011
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41J3/407
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A wrinkle detector for detecting creases or wrinkles to protect a print head of a fabric printer from occlusion by protruding fabric. The wrinkle detector comprises a mounting located in advance of a print head relative to fabric approaching to be printed, the mounting comprising one or more deflectable elements extending into a predetermined clearance zone between the printing head and the fabric, wherein deflection of the elements is used as an indicator of fabric protruding into the clearance zone. The detector may be used to halt or modify printing, in particular ink jet printing of the fabrics so that occlusion does not block the printing nozzles.
Claims
1. A wrinkle detector for detecting creases or wrinkles to protect a print head of a fabric printer from occlusion by protruding fabric, the wrinkle detector comprising a mounting located in advance of a print head relative to fabric approaching to be printed, the mounting comprising at least one deflectable element extending into a predetermined clearance zone between said printing head and said fabric, wherein deflection of said at least one deflectable element is used as an indicator of fabric protruding into the clearance zone, said deflectable element being linearly deflected to cause electrical switching and further configured to close a powered circuit or to modulate a resistance or a reactance of a powered circuit upon said being linearly deflected.
2. The wrinkle detector of claim 1, wherein said deflectable element is sufficiently light to be deflected by a light fabric.
3. The wrinkle detector of claim 1, wherein said deflectable element comprises a flap.
4. The wrinkle detector of claim 3, wherein said flap is configured to close said circuit upon said being linearly deflected.
5. The wrinkle detector of claim 3, wherein said flap is configured to modulate said resistance or said reactance upon said being linearly deflected.
6. The wrinkle detector of claim 1, wherein said deflectable element comprises a pin.
7. The wrinkle detector of claim 6, wherein said pin is an acupuncture-like needle.
8. The wrinkle detector of claim 6, wherein said pin is surrounded by a conductive ring and wherein deflection of said pin causes said pin and said ring to touch.
9. The wrinkle detector of claim 1, configured to stop printing of a current printing job on detection of a wrinkle.
10. The wrinkle detector according to claim 1, having a detection delay between occurrence of said deflection due to a wrinkle and providing an output signal to said fabric printer, wherein said delay does not exceed two milliseconds.
11. The wrinkle detector according to claim 1, wherein said clearance zone does not exceed two millimeters.
12. The wrinkle detector of claim 1 wherein said clearance zone does not exceed one millimeter.
13. The wrinkle detector according to claim 1, comprising a plurality of deflectable elements forming a comb structure wherein teeth of said comb extend into said clearance range in advance of said print head as said print head moves relative to fabric to be printed.
14. The wrinkle detector of claim 1, being attached to a fabric printer, the fabric printer comprising a print head for printing on fabrics.
15. The wrinkle detector of claim 14, wherein the fabric printer comprises a plurality of platens, each platen carrying an item to be printed, the fabric printer configured with a log unit to log items on which wrinkles are detected.
16. A method of protected printing of fabrics using a printhead, the method comprising: defining a clearance zone below said print head; feeding smoothed out fabric towards said print head for printing; detecting wrinkles that extend into said clearance zone in fabric approaching said print head, said detecting comprising linearly deflecting a deflectable element said linearly deflecting causing closing of a powered circuit or modulating of a resistance or a reactance in a powered circuit; and using said detecting to modify a printing operation.
17. The method of claim 16, wherein said deflecting causes electrical switching.
18. The method of claim 16, wherein said modification comprises stopping printing of a current printing job.
19. The method according to claim 16, having a detection delay between occurrence of said deflection due to a wrinkle and providing an output signal for said modification, wherein said delay does not exceed two milliseconds.
20. The method according to claim 16, wherein said clearance zone does not exceed two millimeters.
21. The method according to claim 16, wherein said clearance zone does not exceed one millimeter.
22. The method according to claim 16, comprising providing a plurality of print jobs and wherein said modification comprises inhibiting printing on any one of said plurality of print jobs on which a wrinkle is detected while continuing to print each other print job.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) Some embodiments of the invention are herein described, by way of example only, with reference to the accompanying drawings. With specific reference now to the drawings in detail, it is stressed that the particulars shown are by way of example and for purposes of illustrative discussion of embodiments of the invention. In this regard, the description taken with the drawings makes apparent to those skilled in the art how embodiments of the invention may be practiced.
(2) In the drawings:
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DESCRIPTION OF SPECIFIC EMBODIMENTS OF THE INVENTION
(16) The present invention, in some embodiments thereof, relates to a fabric wrinkle detector and, more particularly, but not exclusively, to a wrinkle detector for a fabric printing machine.
(17) The terms wrinkle, crease and fold are used hereinafter interchangeably.
(18) The terms fabric, textile, textile fabric, are used hereinafter interchangeably. The term textile refers to a woven fabric whereas the term fabric is intended to cover both the woven and unwoven cases.
(19) The present embodiments may detect protrusions in the fabric due to creases and wrinkles, irrespective of the color or contrast on the fabric. Detection may be used to find the creases and wrinkles as the print head approaches and thereby halt the printing process irrespective of the color of the fabrics and irrespective of clouds of particles in the environment. In the case of garments on a platen, a mechanical detector for example a detector made of electromechanical switches or of components that operate microswitches, detects any wrinkles so that the printing of the current platen is aborted to avoid risk to the print heads but continues as normal with the next platen in the queue.
(20) Embodiments of the wrinkle detector may comprise a mounting located in advance of a print head relative to fabric approaching to be printed, the mounting comprising one or more deflectable elements extending into a predetermined clearance zone between the printing head and the fabric, wherein deflection of the elements is used as an indicator of fabric protruding into the clearance zone. The detector may be used to halt or modify printing, in particular ink jet printing of the fabrics so that occlusion does not block the printing nozzles.
(21) A further embodiment may illuminate the wrinkle from the side, causing high contrast between an illuminated and a shadow side of the wrinkle which can then be detected by imaging from above at right angles to the light source.
(22) Before explaining at least one embodiment of the invention in detail, it is to be understood that the invention is not necessarily limited in its application to the details of construction and the arrangement of the components and/or methods set forth in the following description and/or illustrated in the drawings and/or the Examples. The invention is capable of other embodiments or of being practiced or carried out in various ways.
(23) Referring now to the drawings,
(24) The wrinkle detector comprises a base 17, and a mounting 18, which are located in advance of the print head relative to fabric approaching to be printed, as discussed. The mounting comprises one or more deflectable elements which extend downwardly below the openings of the nozzles into a predetermined clearance zone between the printing head and the fabric. Any fabric that gets into that clearance zone is considered as dangerously close to the nozzles and causes deflection of one of the deflectable elements 20.1 . . . 20.n.
(25) Deflection of any of the deflectable elements is used as an indicator of fabric protruding into the clearance zone. Movement of one or more of the elements indicates that the print head is in imminent danger of occlusion and the likelihood of blockage and some kind of avoidance action is required. One kind of avoidance action is to inhibit printing until the wrinkle has passed or for the duration of a current print job. Another possibility is to temporarily increase the distance between the print head and the fabric.
(26) As discussed herein, the height of the crease that becomes problematic for the nozzles is the 1-2 mm range of the clearance zone in a typical embodiment.
(27) The deflectable elements 20.1 . . . 20.n may cause electrical switching when deflected to set up a signal which can then be used to modify printing.
(28) Fabrics can be very light and the deflectable elements may be sufficiently light to be deflected by a small crease or wrinkle from the lightest of fabrics. Furthermore the elements need to return to their original positions rapidly after detection of a wrinkle so that they are in position to detect the next wrinkle. Generally the relative speed between the fabric and the print head is of the order of a 1000 mm per second so that even a few milliseconds of reaction time leaves the fabric unprotected.
(29) As shown in
(30) The comb structure may be layered as schematically shown in
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(33) As illustrated in
(34) Alternatively, a ring or coiled spring may surround the needle in place of the hole and provide for closing of the circuit in the same way.
(35) The mount 32 is held to base 38 which holds the parts together. Cover 40 (See
(36) Both mechanical devices and electronic circuits have reaction times. Neither are instantaneous and an electromechanical system has a reaction time which is the combination of the reaction times of the electrical circuitry and the mechanical switch. The wrinkle detector may typically have a delay between deflection due to a wrinkle and providing an output signal to the fabric printer, which can be in the order of milliseconds. The reaction time needs to be short enough so that at the relative speed between the fabric and the print head, the print head has been shut off before the wrinkle arrives. As the speed may be of the order of 1000 millimeters per second, the reaction time is preferably less than two milliseconds and more preferably less than one millisecond. The processor that deals with the signals and translates them into instructions for the printer also has a reaction time. A typical processor reaction time is of the order of two milliseconds, so if two signals are close together, the second signal may need to be buffered until the processor is ready to receive the next signal.
(37) Not all creases or wrinkles need to shut off the printer, but rather only those which occlude or block the nozzles. Therefore, as discussed, a clearance zone is defined below the nozzles in which fabric is not allowed. A high resolution printing result may need the print nozzles to be close to the fabric surface so the total space between the print head and the fabric is of the order of millimeters. The clearance zone may therefore be as small as two or even one millimeter or even less than 1 millimeter.
(38) The printer may have separate platens, each platen carrying an item such as a tee shirt to be printed. The fabric printer may be provided with a log unit to log items on which wrinkles are detected. Thus a printing run may include a hundred shirts of which three shirts are rejected due to wrinkles. The log may allow the device to point out that the printing run is short by three shirts and offer to print three more.
(39) Additionally or alternatively, the log may be used to find patterns in rejected printing lots so that issues can be identified and addressed.
(40) Reference is now made to
(41) In some embodiments, detection of the wrinkle may be used to operate a cleaning cycle in the print head. A timely cleaning cycle may unblock nozzles in case the shutdown is not quick enough to prevent the wrinkle from interfering with the print head or in case there are other undetected wrinkles coinciding with the detected wrinkle. In any event a cleaning cycle is much less of a disruption to the printing process than the need to replace the print head.
(42) Reference is now made to
(43) Reference is now made to
(44) The terms comprises, comprising, includes, including, having and their conjugates mean including but not limited to.
(45) The term consisting of means including and limited to.
(46) As used herein, the singular form a, an and the include plural references unless the context clearly dictates otherwise.
(47) It is appreciated that certain features of the invention, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. Conversely, various features of the invention, which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any suitable subcombination or as suitable in any other described embodiment of the invention. Certain features described in the context of various embodiments are not to be considered essential features of those embodiments, unless the embodiment is inoperative without those elements.
(48) Although the invention has been described in conjunction with specific embodiments thereof, it is evident that many alternatives, modifications and variations will be apparent to those skilled in the art. Accordingly, it is intended to embrace all such alternatives, modifications and variations that fall within the spirit and broad scope of the appended claims.
(49) All publications, patents and patent applications mentioned in this specification are herein incorporated in their entirety by reference into the specification, to the same extent as if each individual publication, patent or patent application was specifically and individually indicated to be incorporated herein by reference. In addition, citation or identification of any reference in this application shall not be construed as an admission that such reference is available as prior art to the present invention. To the extent that section headings are used, they should not be construed as necessarily limiting.