Fragrant ink-jet ink

Compositions: coating or plastic – Coating or plastic compositions – Marking

Reexamination Certificate

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C106S031270, C106S031580, C106S031600, C106S031860

Reexamination Certificate

active

06706098

ABSTRACT:

This application incorporates by reference of Taiwan application Serial No. 090114012, filed Jun. 8, 2001.
BACKGROUND OF THE INVENTION
1. Field of the Invention
The invention relates in general to an ink-jet ink, and more particularly to a fragrant ink-jet ink.
2. Description of the Related Art
Essential oil, normally extracted from animals or plants, is hot goods in the recent market and important for human and other living beings. Essential oil influence human spiritually and emotionally. Scent comforts people and helps to refresh. The use of spices in religious ceremonies was recorded. Since 3000 years ago to the middle ages, people in Babylon and Greece started to use aromatic rubber resin, fragrant wood and vanilla and believed them have the power of healing and value of hygiene. India and South East Asia are treasure-house of attar and flavorings, which are widely used in people's daily life, such as cosmetics and bathing, in addition to religious ceremony.
Perfumes can be sorted as natural perfumes and synthetic perfumes by their origins. The natural perfumes are obtained from living beings by the separation steps such as extraction, condensation, oil pressing or distillation and can be categorized as plant-originated perfumes and animal-originated perfumes. The synthetic perfumes are manufactured by chemical synthesize. One of the categories is petrochemical perfume.
Perfumes can also be sorted into 5 grades by their contents of essence. (1) Parfum, also called condensed Eau de parfum, contains more than 20 wt % of essence. It is the highest grade. (2) Eau de parfum contains 15 to 20 wt % of essence, which is cheaper than parfum. (3) Eau de toilette contains 8 to 15 wt % of essence, which is more popular. (4) Eau de cologne contains 4 to 8 wt % of essence. Most male perfumes belong to this grade. (5) Eau fraiche contains 1 to 3 wt % of essence.
Perfumes can be categorized as flower perfumes and fancy perfumes. For flower perfumes, the floral fragrance like roses, jasmines or tuberoses is used as a base to manufacture perfumes with single floral fragrance perfumes or multi floral fragrance perfumes. Fancy perfume uses natural beings other than flowers as a base, to express forests, grasses, places, landscapes, characters, music or certain atmospheres.
Perfumes are blends of essences, water and ethanol. Most essences are oil-soluble and are not soluble in water. Ethanol has the drawbacks of low boiling point, high volatility, low durability, being lipo-phobic, and hard to emulsify. Thus, surfactant is frequently added to emulsify essences. By adding hydro-phobic functional group at the oil-soluble essence particles, oil-in-water type emulsion is formed. To ensure the stability of the perfume, surfactants with proper percentage of long and short hydrophobic functional groups are required. (HLB) is proposed by Griffin to characterize surfactants. The hydrophilic-lipophilic balance (HLB) is an empirical number that describes the relationship between the hydrophilic (water-soluble) and lipophilic (oil-soluble) portions of a surfactant molecule. There are a number of ways to determine HLB. The general rule is to determine the ratio of lipophilic functional groups to the whole surfactant molecular. Surfactants with a strong lipophilic character have a low HLB, while the ones with a stronger hydrophilic character have a high HLB. The surfactants for perfumes can be also characterized by the solubility of spices in the surfactants. Alcohol type spices have higher solubility, ketone type spices have less and ester type spices have the lowest in the three.
Magenta inks, cyan inks, yellow ink and black inks are four common inks. Most of them apply water-base dyes. Light magenta inks, light cyan inks, and even light yellow ink become popular recently to form six-color inks or even seven-color inks. Theses four-color inks, six-color inks and seven-color inks include at least one water-soluble dye, water, organic solvents and other additives. However, the additives like colorants, surfactants and pH buffers are mostly organic compounds and are pungent.
U.S. Pat. No. 6,123,757 discloses a composition of a fragrant ink, including a alcohol, a chemical compound for forming images, an aromatic compound, deionized water and ethanol. The aromatic compound in the ink covers the pungent odor of the other ink ingredients and produces fragrance. In the invention, ethanol is chosen as a surfactant. However, ethanol is poor at emulsification. Ethanol is not able to dissolve the aromatic compounds completely in the inks, and therefore unable to effectively provide fragrance. Further more, the uneven dispersion often causes nozzle clogging. Also, ethanol has a low boiling point and high volatility, which leads the aromatic compounds to volatilize. As a result, the durability of the fragrance of the printed figures is greatly reduced. Moreover, inks with ethanol have low surface tension, which causes the printed words and figures to fade and spread.
SUMMARY OF THE INVENTION
It is therefore an object of the invention to provide a fragrant ink-jet ink keeps approximately the same physical properties, such as surface tension, pH value, optical density and brightness as a common ink-jet ink. The fragrant ink-jet ink causes the printed figure and words to emit a pleasant scent.
The fragrant ink-jet ink of the invention comprises: a fragrant agent, a surfactant, wherein a boiling point of the surfactant is above 78° C. and a Hydrophilic Lipophilic Balance (HLB) of the surfactant is in a range of about 5 to 16, a colorant, and a solvent. The fragrant agent can be a natural fragrant agent, a synthetic fragrant agent or a mixture thereof. The natural fragrant agent is selected from the group consisting of: oil of rose, oil of cymbopogonmartini, oil of lena-batu, oil of sandal, rosemary, oil of lavender, oil of fennel, oil of jasmin, oil of cinnamon, oil of lilac, oil of Ylang-Ylang, oil of turpentine, musk, ciret, castreum and ambergris. The synthetic fragrant agent is selected from the group consisting of: &bgr;-caryophyllene, linalool, &agr;-terpineol, cinnamic aldehyde, salicylic aldehyde, allyl caproate, &bgr;-lonone, maltol, musk ambrette, anethole, thymol, eugenol, isosafrol, benzoic acid, methyl phenylacetate, oxide ketone, and 1-bromo-2-phenylethylene. The amount of the fragrant agent is about 0.01 wt % to 10.0 wt %.
The surfactant of the invention is selected from the group consisting of: 2-propanol, di-1,2-propylene glycol, 2-pyrrolidone, N-methyl-2-pyrrolidone, 2,4,7,9-tetramethyl-5-decyne-4,7-diol and 1,1,1-trimethylolpropane. And the amount is about 0.05 wt % to 30.0 wt %.
The solvent can be water such as deionized water, organic solvent or the mixture thereof. The amount of water is about 50 wt. %~90 wt %. The organic solvent can be selected from the group consisting of: cyclohexane, methanol, ethanol, ethylene glycol, diethylene glycol, triethylene glycol, polyethylene glycol, propylene glycol, butylene glycol, pentylene glycol, hexylene glycol and polyhydric alcohol. The amount of the organic solvent is about 0.01 wt %~5 wt %.
The fragrant ink-jet ink can further comprise a pH buffer and the pH buffer is selected from the group consisting of: diethanolamine, triethanolamine, a hydroxide of alkali metal, ammonium hydroxide and a carbonate of alkali metal.
The fragrant ink-jet ink can further comprise a humectant and the humectant is a polymer comprising a hydrophilic segment and a hydrophobic segment, selected from a group consisting of: polyethandiol, polypropandiol, ethyleneoxy/propyleneoxy (EO/PO) copolymer, butyleneoxy/ethyleneoxy (BO/EO) copolymer, sodium dioctyl sulfosuccinate, alkylene oxide adduct of acetylene glycol, polybutyl resin, cellulose derivative, styrene/acrylic copolymer resin and maleic acid/styrene copolymer.
The fragrant ink-jet ink can further comprise a chelating agent, which is selected from sodium ethylenediamine tetraacetate, trisodium nitrilotriacetate, hydroxyethyl ethylenediamine trisodium acetate, diethylenetriamino pentasodium acetate, and uramil disodium

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