Environment-friendly ceramic blasting bead for cigarettes and manufacturing method

文档序号:1103514 发布日期:2020-09-29 浏览:35次 中文

阅读说明:本技术 一种烟用环保陶瓷化爆珠及制作方法 (Environment-friendly ceramic blasting bead for cigarettes and manufacturing method ) 是由 周少豪 周少丰 于 2020-06-28 设计创作,主要内容包括:本发明公开了一种烟用环保陶瓷化爆珠及制作方法,包括爆珠、保润陶瓷涂层、中空胶质树脂球和爆珠水,所述爆珠包括保润陶瓷涂层、中空胶质树脂球和爆珠水,所述爆珠水通过注射器注射于中空胶质树脂球内,所述中空胶质树脂球外围表面涂覆有保润陶瓷涂层。效提高传统中空胶质树脂球的保湿密封性,实现保持爆珠内爆珠水的水分、香气,并同时避免外界湿气异味对爆珠内侵蚀,可长时间稳定保留爆珠原有的水分和气味,提高香烟使用的品质,在人员对香烟使用时,具备保润陶瓷涂层的爆珠的压破感受与传统爆珠大大不同,给人员破碎时的回馈感受更明显,使人员更容易了解爆珠是否破碎,增加人员使用的体验感。(The invention discloses an environment-friendly ceramic bead blasting for cigarettes and a manufacturing method thereof. Effect improves the leakproofness of moisturizing of traditional cavity gum resin ball, realize keeping exploding the moisture of pearl water in the pearl, fragrance, and avoid external moisture peculiar smell to exploding the erosion in the pearl simultaneously, can stably remain for a long time and explode original moisture of pearl and smell, improve the quality that the cigarette used, when personnel use the cigarette, the crushing impression that possesses the pearl that explodes of moisturizing ceramic coating explodes the pearl is different greatly with the tradition, it is more obvious to give the repayment impression when personnel are broken, make personnel know more easily whether broken explode the pearl, increase the experience that personnel used and feel.)

1. The utility model provides a pearl is exploded to environmental protection pottery for cigarette, includes explode pearl (1), moisture-preserving ceramic coating (2), hollow colloid resin ball (3) and explode pearl water (4), its characterized in that, explode pearl (1) including moisture-preserving ceramic coating (2), hollow colloid resin ball (3) and explode pearl water (4), explode pearl water (4) and pass through the syringe and inject in hollow colloid resin ball (3), the peripheral surface coating of hollow colloid resin ball (3) has moisture-preserving ceramic coating (2).

2. The method for manufacturing the environment-friendly ceramic blasting bead for the cigarettes according to claim 1, characterized by comprising the following steps: the preparation method comprises the following specific steps:

the method comprises the following steps: mixing purple sand, silicon oxide and aluminum oxide to obtain composite powder, mixing the composite powder with deionized water to obtain slurry, preparing the slurry into a blank, feeding the blank into a calcining chamber to be calcined, putting the blank into a ball mill to be ground to obtain a nano-scale ultrafine powder raw material;

step two: sufficiently and uniformly mixing acrylic acid, epoxy resin, methyl methacrylate, methyl ether, ethanolamine and benzoyl peroxide to obtain a water-based agent, sufficiently mixing the water-based agent with deionized water to obtain a water-based coating, wherein the use ratio of the water-based agent to the deionized water is 1: 4-6;

step three: uniformly mixing the water-based paint obtained in the step two with the nano-scale ultrafine powder raw material obtained in the step one to obtain a nano moisture-retaining paint;

step four: preparing a hollow colloid resin ball (3) through a mould, and injecting bead blasting water (4) into the hollow colloid resin ball (3) through an injector to obtain a bead blasting for cigarettes;

step five: taking the nano moisture-retaining coating obtained in the third step, performing roll coating on the surface of the cigarette bead blasting obtained in the fourth step, and plugging the injection micropores of the hollow colloidal resin balls (3);

step six: and (4) conveying the hollow colloid resin ball (3) coated with the nano moisture-retaining coating in the fifth step into a hot drying oven, and drying at the temperature of 35-65 ℃ for 5-20h to obtain the cigarette blasting bead with the moisture-retaining ceramic coating (2).

3. The environment-friendly ceramic blasting bead for the cigarettes according to claim 1, characterized in that: the coating thickness of the moisture-retaining ceramic coating (2) on the peripheral surface of the hollow colloid resin ball (3) is 1-1.5 mm.

4. The manufacturing method of the environment-friendly ceramic blasting bead for the cigarettes according to claim 2, characterized by comprising the following steps: the particle diameter of the nanometer ultrafine powder raw material in the first step is 0.3-0.6 μm.

5. The manufacturing method of the environment-friendly ceramic blasting bead for the cigarettes according to claim 2, characterized by comprising the following steps: the purple sand, the silicon oxide and the aluminum oxide in the first step comprise the following specific parts by weight: 10-30 parts of purple sand, 40-60 parts of silicon oxide and 3-10 parts of aluminum oxide.

6. The manufacturing method of the environment-friendly ceramic blasting bead for the cigarettes according to claim 2, characterized by comprising the following steps: the concrete parts by weight of diacrylic acid, epoxy resin, methyl methacrylate, methyl ether, ethanolamine and benzoyl peroxide in the step are as follows: 5-15 parts of acrylic acid, 25-55 parts of epoxy resin, 5-15 parts of methyl methacrylate, 4-12 parts of methyl ether, 1-2 parts of ethanolamine and 1-2 parts of benzoyl peroxide.

7. The manufacturing method of the environment-friendly ceramic blasting bead for the cigarettes according to claim 2, characterized by comprising the following steps: the use ratio of the composite powder to the deionized water in the first step is 1: 1-3.

8. The environment-friendly ceramic bead and the manufacturing method thereof according to claim 1, wherein the bead comprises the following components in percentage by weight: the hollow colloid resin ball (3) is made of food-grade colloid resin material.

Technical Field

The invention belongs to the technical field of ceramics, and particularly relates to an environment-friendly ceramic blasting bead for cigarettes and a manufacturing method thereof.

Background

Present cigarette explodes pearl is the preparation of gum resin, and after keeping for a long time, its inside moisture and fragrance run off in order to volatilize outward, and outside moisture also easily erodees the pearl internal portion, has influenced the taste that explodes pearl formula cigarette used greatly, and the tradition explodes the pearl when biting up garrulous or hand breakage, and its breakage repayment sense for personnel is lower, is unfavorable for personnel's accuracy to learn whether explode the pearl and produce the breakage, uses experience and feels and remains to be improved.

Disclosure of Invention

The invention aims to provide an environment-friendly ceramic bead for cigarettes and a manufacturing method thereof, and aims to solve the problems in the background technology.

In order to achieve the purpose, the invention provides the following technical scheme: the environment-friendly ceramic bead blasting device for the cigarettes comprises a bead blasting body, a moisture-retaining ceramic coating, a hollow colloid resin ball and bead blasting water, wherein the bead blasting body comprises the moisture-retaining ceramic coating, the hollow colloid resin ball and the bead blasting water, the bead blasting water is injected into the hollow colloid resin ball through a syringe, and the moisture-retaining ceramic coating is coated on the peripheral surface of the hollow colloid resin ball.

Further, the specific preparation steps are as follows:

the method comprises the following steps: mixing purple sand, silicon oxide and aluminum oxide to obtain composite powder, mixing the composite powder with deionized water to obtain slurry, preparing the slurry into a blank, feeding the blank into a calcining chamber to be calcined, putting the blank into a ball mill to be ground to obtain a nano-scale ultrafine powder raw material;

step two: sufficiently and uniformly mixing acrylic acid, epoxy resin, methyl methacrylate, methyl ether, ethanolamine and benzoyl peroxide to obtain a water-based agent, sufficiently mixing the water-based agent with deionized water to obtain a water-based coating, wherein the use ratio of the water-based agent to the deionized water is 1: 4-6;

step three: uniformly mixing the water-based paint obtained in the step two with the nano-scale ultrafine powder raw material obtained in the step one to obtain a nano moisture-retaining paint;

step four: preparing hollow colloid resin balls through a mould, and injecting bead blasting water into the hollow colloid resin balls through an injector to obtain bead blasting water for cigarettes;

step five: taking the nano moisture-retaining coating obtained in the third step, performing roll coating on the surface of the cigarette bead blasting obtained in the fourth step, and plugging the injection micropores of the hollow colloidal resin balls;

step six: and (4) conveying the hollow colloid resin ball coated with the nano moisture-retaining coating in the fifth step into a hot drying oven, and drying for 5-20h at the temperature of 35-65 ℃ to obtain the cigarette blasting bead with the moisture-retaining ceramic coating.

Further, the coating thickness of the moisture-retaining ceramic coating 2 on the peripheral surface of the hollow colloid resin ball is 1-1.5 mm.

Further, the particle diameter of the nanometer-level ultrafine powder raw material in the first step is 0.3-0.6 μm.

Further, the specific parts by weight of the purple sand, the silicon oxide and the aluminum oxide in the first step are as follows: 10-30 parts of purple sand, 40-60 parts of silicon oxide and 3-10 parts of aluminum oxide.

Further, the specific parts by weight of diacrylic acid, epoxy resin, methyl methacrylate, methyl ether, ethanolamine and benzoyl peroxide in the step (b) are as follows: 5-15 parts of acrylic acid, 25-55 parts of epoxy resin, 5-15 parts of methyl methacrylate, 4-12 parts of methyl ether, 1-2 parts of ethanolamine and 1-2 parts of benzoyl peroxide.

Further, the use ratio of the composite powder and the deionized water in the first step is 1: 1-3.

Further, the hollow colloid resin ball is made of food-grade colloid resin materials.

Compared with the prior art, the invention has the beneficial effects that: coating the hollow colloid resin ball periphery of filling the pearl water of exploding through moisturizing ceramic coating, can effectively improve the leakproofness of moisturizing of traditional hollow colloid resin ball, realize keeping the moisture of pearl water of exploding in the pearl, fragrance, and avoid external moisture peculiar smell to corrode in exploding the pearl simultaneously, can stably remain and explode original moisture of pearl and smell for a long time, improve the quality that the cigarette was used, when personnel used cigarette, the crushing impression that possesses the pearl that explodes of moisturizing ceramic coating is different greatly with the tradition, the repayment impression when giving personnel's breakage is more obvious, make personnel know more easily whether broken of pearl that explodes, increase the experience that personnel used and feel.

Drawings

FIG. 1 is a schematic cross-sectional structure diagram of an environment-friendly ceramic bead for cigarette and a manufacturing method thereof.

FIG. 2 is a schematic structural view of the environment-friendly ceramic bead and the manufacturing method thereof for the cigarette.

In the figure: 1. bead blasting; 2. maintaining the ceramic coating; 3. hollow gum resin spheres; 4. and (5) blasting bead water.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

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