Makeup fluid and inkjet printer apparatus
10843477 ยท 2020-11-24
Assignee
Inventors
- Takuya OTOWA (Tokyo, JP)
- Masahiko OGINO (Tokyo, JP)
- Hiroshi Sasaki (Tokyo, JP)
- Takahiro ARIMA (Tokyo, JP)
- Keisuke NAGAI (Tokyo, JP)
- Hiromichi Takeyama (Tokyo, JP)
- Shengnan Hua (Tokyo, JP)
Cpc classification
C09D11/38
CHEMISTRY; METALLURGY
C09D11/50
CHEMISTRY; METALLURGY
B41J2/02
PERFORMING OPERATIONS; TRANSPORTING
B41J2/17566
PERFORMING OPERATIONS; TRANSPORTING
B41J2002/17573
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41J2/175
PERFORMING OPERATIONS; TRANSPORTING
B41J2/02
PERFORMING OPERATIONS; TRANSPORTING
C09D11/38
CHEMISTRY; METALLURGY
C09D11/50
CHEMISTRY; METALLURGY
Abstract
A makeup fluid is added to an ink liquid of an inkjet printer to reduce the viscosity of the ink liquid, the makeup fluid including a fluorescent color material in a solvent. An inkjet printer apparatus employing a makeup fluid is provided with a makeup fluid tank to which a light-emitting element and a light-receiving element are attached, and detects the presence or absence of the makeup fluid by irradiating ultraviolet light from the light-emitting element, causing visible light to be emitted from the fluorescent color material in the makeup fluid, and detecting the visible light with the light-receiving element.
Claims
1. An inkjet printer apparatus comprising: a print head configured to eject ink; a makeup fluid tank configured to store a makeup fluid; a display configured to display information regarding a state of the makeup fluid tank; a float sensor; a light-emitting element; a light-receiving element, and a CPU that is operatively coupled to the float sensor, the light-emitting element, and the light-receiving element, the CPU being configured to determine a characteristic of makeup fluid, wherein the float sensor is configured to detect an amount of the makeup fluid, the light-emitting element is configured to emit ultraviolet light, the light-receiving element is configured to detect visible light are attached to the makeup fluid tank, the CPU determines whether or not the visible light is detected by the light-receiving element, using the ultraviolet light that is emitted from the light-emitting element, and in accordance with a result of the determination, the CPU generates a display signal that indicates whether or not a fluorescent color material absorbing the ultraviolet light and emitting the visible light is included in the makeup fluid in the makeup fluid tank, and the CPU sends the display signal to the display.
2. The inkjet printer apparatus according to claim 1, wherein when the float sensor detects that a height of a liquid level of the makeup fluid in the makeup fluid tank is higher than a position of the light-emitting element and the light-receiving element, and the ultraviolet light is emitted from the light-emitting element and the visible light is detected by the light-receiving element, the CPU sends the display signal to the display.
3. The inkjet printer apparatus according to claim 1, wherein when the float sensor detects that a height of a liquid level of the makeup fluid in the makeup fluid tank is higher than a position of the light-emitting element and the light-receiving element, and the ultraviolet light is emitted from the light-emitting element and the visible light is not detected by the light-receiving element, the CPU sends the display signal to the display.
4. The inkjet printer apparatus according to claim 1, wherein a main ingredient of a solvent of the makeup fluid is an alcohol-based or ketone-based solvent.
5. The inkjet printer apparatus according to claim 1, wherein the fluorescent color material is a compound having a coumarin structure or a compound having a stilbene structure.
6. The inkjet printer apparatus according to claim 1, wherein light of the light-emitting element is black light with a wavelength having a peak value of between 200 nm and 400 nm.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(13) A makeup fluid is a liquid which is used in an inkjet printer, particularly, an inkjet printer adapted to a charge control method, in such a manner as to be added to an ink liquid when a viscosity of the ink liquid in an apparatus increases due to volatilization of a solvent or the like component so that the viscosity is reduced to an appropriate value. Generally, the inkjet printer adapted to a charge control method is equipped with a makeup fluid tank which is filled with a makeup fluid for keeping the viscosity of the ink liquid in the apparatus at an appropriate value at all times. When the makeup fluid tank becomes empty of the makeup fluid, it becomes difficult to keep the viscosity of the ink liquid at the appropriate value. For this reason, it is important to check whether or not the makeup fluid is sufficiently supplied in the tank, and to advise an operator to additionally supply a makeup fluid when an amount of the makeup fluid in the tank become low.
(14) The present application includes a makeup fluid including a fluorescent color material, and a makeup fluid tank in which a light-emitting element and a light-receiving element are incorporated. In the present application, according to a mechanism in which a makeup fluid is caused to emit visible light by irradiation light provided from a light-emitting element and a light-receiving element senses the visible light, presence or absence of the makeup fluid in a predetermined position within the tank is detected, so that a height of a liquid level can be detected.
(15) Below, embodiments of the present application will be described. The embodiments described below are mere examples resulted from embodying of the present application, and do not limit the technical scope of the present application.
(16) 1. Component Materials of a Makeup Fluid
(17) A makeup fluid includes at least a fluorescent color material and a solvent. These are dissolved, stirred, and mixed, and thereafter, are filtered through a filter having a pore size of 0.25 to 10 m, so that a makeup fluid for an inkjet printer is obtained.
(18) (1) Fluorescent Color Material
(19) A fluorescent color material used in the present application includes a stilbene-based compound, a biphenyl-based compound, a coumarin-based compound, an imidazole-based compound, a benzoxazolyl-based compound, a naphthalimide-based compound, a pyrazolone-based compound, a carbostyril-based compound, and a triazole-based compound, for example. Among those, as the fluorescent color material used in the invention, a stilbene-based compound is preferable in view of solubility in an organic solvent, and a stilbene-based compound including a sulfo group represented in
(20) While an increase in an amount of a fluorescent color material being added results in an increase in an amount of visible light being emitted by a makeup fluid, there is a fear that dissolution may become unstable to cause precipitation. While reduction in the amount of the fluorescent color material being added prevents precipitation of the fluorescent color material, there is a fear that emission of visible light may be insufficient. As for an example represented in
(21) (2) Solvent
(22) As a main ingredient of a solvent, an alcohol-based or ketone-based solvent is used. An alcohol-based solvent includes methanol, ethanol, propanol, butanol, and the like. A ketone-based solvent includes acetone, methyl ethyl ketone (MEK), and methyl isobutyl ketone (MIBK), for example. Those substances are individually used, or are mixed for use. Besides, an ether-based solvent or a glycol-based solvent may be added.
(23) (3) Additive
(24) In order to improve solubility of a fluorescent color material in a solvent, or in order to adjust various properties of a makeup fluid, such as a viscosity, conductivity, or surface tension, an additive may be added.
(25) 2. Inkjet Printer
(26) (1) Printing Method
(27) The above makeup fluid can be used in an inkjet printer adapted to a known printing method. While the printing method includes a charge control method and a drop-on-demand method, for example, the present application is particularly suitable to a charge control method which uses a makeup fluid tank.
(28) (2) Makeup Fluid Tank
(29) By incorporating a light-emitting element and a light-receiving element into a makeup fluid tank, it is possible to detect presence or absence of a makeup fluid in a predetermined position within a lank, so that a height of a liquid level can be estimated. The light-emitting element and the light-receiving element can be incorporated in an inner wall or an outer wall of a tank. A light source of the light-emitting element is preferably an LED in view of energy savings and a longer life. As irradiation light emitted by the light source of the light-emitting element, while ultraviolet light with a wavelength having a peak value of 200 nm to 400 nm is preferable so that emission of visible light in the makeup fluid can be observed, light with a wavelength having a peak value of 315 nm to 400 nm, which is referred to as a near-ultraviolet light and slightly affects a human body, is more preferable, and light with a wavelength having a peak value of 360 to 390 nm which is safer and generally referred to as black light is the most preferable. A wavelength of emitted visible light varies depending on a kind of a fluorescent color material used for the makeup fluid, and thus, a wavelength range to be detected by a light sensor used for the light-receiving element is determined in accordance with the wavelength of the visible light emitted from the fluorescent color material. For example, in a case where a substance represented in
Example 1
(30) A fluorescent color material A represented by CHEM. 1 in an amount of 0.1 g was added to ethanol in an amount of 100 g and dissolved by stirring, and a resultant liquid was filtered through a filter made of polypropylene having a pore size of 0.5 m. In this manner, a makeup fluid according to the present example was prepared.
(31) When the prepared makeup fluid was irradiated with light having a peak value of 200 nm, emission of visible light having a peak value of 450 nm was observed in the makeup fluid.
(32) When the prepared makeup fluid was irradiated with light having a peak value of 400 nm, emission of visible light having a peak value of 450 nm was observed in the makeup fluid.
Comparative Example 1
(33) An ethanol liquid in an amount of 100 g was filtered through a filter made of polypropylene having a pore size of 0.5 m. In this manner, a makeup fluid according to the present comparative example was prepared.
(34) When the prepared makeup fluid was irradiated with light having a peak value of 200 nm, light having a peak value in a range of visible light was not observed in the makeup fluid.
(35) When the prepared makeup fluid was irradiated with light having a peak value of 400 nm, light having a peak value in a range of visible light was not observed in the makeup fluid.
Example 2
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(37) The inkjet printer 10 in
(38) According to the present invention, if a tank contains a makeup fluid, a fluorescent material in the makeup fluid is caused to emit visible light by light emitted from a light-emitting element, and then the emitted visible light is detected by a light-receiving element. As a result of this, an error in detection of a liquid level which is likely to be caused due to mechanical friction between solid matters or degradation in material property is reduced, so that a liquid level can be detected with high accuracy at all times.
Example 3
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Example 4
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Example 5
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Example 6
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Example 7
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REFERENCE SIGNS LIST
(44) 1 body 2 print head 3 operation display 4 conduit 10 inkjet printer 20 CPU 21 signal line (for input to CPU) 22 signal line (for input to operation display) 101 makeup fluid tank 102 light-emitting element 103 light-receiving element 111 liquid level of makeup fluid 121 light having a peak value of 375 nm 122 visible light having a peak value of 450 nm