1. Technical Field
The present invention relates generally to fabric steamers, and more particularly to a production level low pressure steam jet fabric finisher for batch steam setting of fabrics dyed by digital printers or other conventional means.
2. Background Art
Fabrics printed with dyes must be steam treated to fix or set the dyes. Unfortunately, advances in fabric dye setting processes have not kept pace with the many recent advances in printing on textiles, both with respect to conventional screen and roller printing, and with respect to ink jet printing. Accordingly, there remains a need for an effective method for rapidly and thoroughly fixing inks and dyes on fabric: the purposes being to prevent backstaining and the migration of low viscosity inks and dyes, to prevent the fixation process from becoming a production bottleneck, to facilitate post-fixation handling and processing and to ensure washability and color fastness.
The fully automatic low pressure steam jet fabric finisher of the present invention comprises a stainless steel elongate cuboid housing having dimensions suitable for steam setting a large, elongate bolt of fabric. The front side of the housing has a front lockout door that provides access to a hollow cylindrical steaming chamber which runs longitudinally almost the entire length of the steamer to within a few inches of the back side of the housing. Supported concentrically within the steaming chamber is a hollow cylindrical steaming core having a plurality of holes through its sides for the passage of steam from the steaming core into the steaming chamber. The front side further includes a control panel for operator control of the steamer, which includes a pressure gauge, a temperature gauge, an electronic timer and temperature control, a cycle indicator light, a door lock indicator light, water full and add water indicator lights, a power/start cycle switch, a power on indicator light, a heater on indicator light, and an emergency shut-off knob.
The steamer interior includes a water reservoir into which a heating element is positioned. The heating element is powered by single phase power and heats water to produce steam up to a temperature of 250° F. (121° C.) or higher. The cylindrical hollow steaming core extends longitudinally from the front door and to a steam inlet near the top of the water reservoir, with which it is in open communication. Steam generated by the heating element rises from the reservoir and migrates into the steaming core through the steam inlet and passes through a plurality of holes through the cylinder walls of the steaming core and into the steaming chamber. When dyed and printed fabrics are to be steam fixed, the dyed or printed fabric is rolled into a layered sandwich over a helical spring coil which slides over the steaming core, and the rolled fabric is processed in a steam cycle suited to the fabric and dyes used.
The present invention comprises a fully automatic low pressure jet steam fabric finisher, and a method of using the same, for rapid and thorough fixation of fabric dyes and inks. The disclosed apparatus and process increase productivity by reducing the fixation cycle time, by thoroughly fixing fabric dyes and inks so that the post-fixation wash cycle is also reduced, and by producing consistent results. The inventive fabric finisher is particularly well-suited for the entire range of digital ink printing production settings.
The front side 14 of the housing has a front lockout door 30 pivotally connected to the front with a hinge 32. When open the door provides access to a hollow cylindrical steaming chamber 34, which has an opening 35 at its front end and which runs longitudinally almost the entire length of the steamer to within a few inches of the back side of the housing. Supported concentrically within the steaming chamber is a hollow cylindrical steaming core 36 having a plurality of holes through its sides for the passage of steam from the steaming core into the steaming chamber (see also FIGS. 4 and 5).
As shown in detail in
The control panel includes a pressure gauge 40, a temperature gauge showing current temperature 42, an electronic timer and temperature control 44 for setting the time and temperature of the steam cycle, a cycle indicator light 46, a door lock indicator light 48, a “water full” indicator light 50, an “add water” indicator light 52, a power/start cycle switch 54, a power on indicator light 56, a heater on indicator light 58, and an emergency shut-off knob 60.
The cylindrical hollow steaming core 80 extends longitudinally from a point 82 near the front door and terminates in a steam inlet 84 proximate the back of the steamer at the water reservoir 70, with which it is in open communication. Steam generated by the heating element rises from the reservoir and migrates into the steaming core through the steam inlet and passes through a plurality of holes 86 through the cylinder walls of the steaming core and into the steaming chamber 88, which entirely surrounds the steaming core.
When dyed and printed fabrics are to be steam fixed, the dyed or printed fabric is rolled into a layered sandwich over helical spring coil 90, and each layer of fabric is separated by steaming paper. The coil is slid over the steam core and supported (along with the steam core itself) by and steaming core support 92 shown in
The control panel 38 is preferably electrically connected via a power cord 94 to a standard 110V power supply with an interposing heavy duty breaker 96. Electrically connected components and devices may include a power on light, a cycle timer, a temperature control, a water heater element, a water full light, an add water light, a door closed light, a cycle control/power on button, and a cycle on light (all described above); and may further include a door closed switch 98, a door lock solenoid 100, a temperature probe 102, a pressure valve 103 and pressure valve solenoid 103a for releasing steam and pressure from the steaming chamber after a cycle is completed, a power relay, a time delay (not shown), and other features as modified.
As may be readily appreciated, the low pressure fabric steamer will not operate with the front door open. Once the front door is closed, it will automatically lock via a solenoid when the power to the system is turned on at on/off button. The system is then sealed. If a finishing cycle is begun, the heating element will heat reservoir water to generate steam up to temperatures of 250° F. (121° C.). The steam migrates upwardly and then into and through the steam core as described above to create chamber pressures of between 15 psi to 30 psi (1.02-2.04 Pa). The combination of tightly controlled heat and pressure fixes dyes and inks rapidly and thoroughly. The electronic time and temperature controls provide the user with the means to tailor the fixing process precisely to the fabrics and dyes employed.
Fabric steaming cycle times and recommended steaming temperatures will, of course, vary according to the type of fabric. Silk, nylon and wool are generally steamed at 222° F. (106° C.) for 10 to 20 minutes; cotton and rayon are steamed at approximately 220° F. (104° C.) for only 6 to 10 minutes, depending on the amount of fabric.
To use the inventive apparatus, the following steps are including:
| Filing Document | Filing Date | Country | Kind | 371c Date |
|---|---|---|---|---|
| PCTUS00/35403 | 12/22/2000 | WO | 00 | 6/5/2002 |
| Publishing Document | Publishing Date | Country | Kind |
|---|---|---|---|
| WO0148296 | 7/5/2001 | WO | A |
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| Number | Date | Country | |
|---|---|---|---|
| 20030000022 A1 | Jan 2003 | US |