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Latex balloon and manufacturing method thereof

A balloon and latex technology, which is applied in the field of balloon manufacturing, can solve the problems that it is difficult to meet the requirements, and the pearlescent balloon is difficult to show a metallic texture, and achieve a good decorative effect and a strong metallic texture.

Inactive Publication Date: 2021-08-17
张帅
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the surface of pearlescent balloons is also difficult to present a strong metallic texture; and with the continuous advancement of environmental protection indicators, existing pearlescent balloons are often difficult to meet the requirements

Method used

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  • Latex balloon and manufacturing method thereof
  • Latex balloon and manufacturing method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0059] Get a stainless steel barrel with a diameter of 50 cm and a height of 100 cm and a disperser. The diameter of the stirring plate of the disperser is 30 cm to be used in conjunction with the stainless steel barrel.

[0060] Add 37.5 kg of deionized water into the stainless steel bucket, then turn on the disperser and set it at a speed of 100 rpm. Thereafter 1.25 kg of Tego 655 dispersant was added, followed by the slow addition of 0.7 kg of Aquatix 8421 wax emulsion. Stir for 15 minutes to fully mix the additives with water.

[0061] Stop stirring, add 25 kg of XL-8905 aluminum silver paste to the mixed solution, and make the mixed solution overflow the aluminum silver paste, soak for 24 hours, and stir it with a disperser at a speed of 100 rpm for 10 hours after soaking for 12 hours. Turn off after 10 minutes, and continue soaking for a full 24 hours of total soaking time.

[0062] After soaking, use a disperser to stir the soaked mixed solution at a speed of 100 rpm ...

Embodiment 2

[0068] Get a stainless steel barrel with a diameter of 50 cm and a height of 100 cm and a disperser, and the diameter of the stirring plate of the disperser is 30 cm.

[0069] Add 35 kg of deionized water into the stainless steel bucket, then turn on the disperser and set it at a speed of 100 rpm. Thereafter 0.85 kg of Tego 655 dispersant was added, followed by the slow addition of 0.65 kg of Aquatix 8421 wax emulsion. Stir for 10 minutes to fully mix the additives with water.

[0070] Stop stirring, add 22 kg of XL-8905 type aluminum silver paste to the mixed solution, and make the mixed solution overflow over the aluminum silver paste, and soak for 20 hours.

[0071] After soaking, use a disperser to stir the soaked mixed solution at a speed of 100 rpm for 9 minutes and then continue to stir at a high speed for 16 minutes at a speed of 300 rpm. The high-speed stirring must have a vortex during the stirring process as a reference standard.

[0072] Continue to add 7.6 kg of...

Embodiment 3

[0077] Get a stainless steel barrel with a diameter of 50 cm and a height of 100 cm and a disperser. The diameter of the stirring plate of the disperser is 30 cm to be used in conjunction with the stainless steel barrel.

[0078] Add 41 kg of deionized water into the stainless steel bucket, then turn on the disperser and set it at a speed of 100 rpm. Thereafter 1.4 kg of Tego 655 dispersant was added, followed by the slow addition of 0.82 kg of Aquatix 8421 wax emulsion. Stir for 20 minutes to fully mix the additives with water.

[0079] Stop stirring, add 26.5 kg of XL-8905 aluminum silver paste to the mixed solution, and let the mixed solution overflow the aluminum silver paste, soak for 26 hours, and after soaking for 13 hours, use a disperser to stir at a speed of 100 rpm for 12 hours. Turn off after 10 minutes, and continue soaking for a full 26 hours of total soaking time.

[0080] After soaking, use a disperser to stir the soaked mixed solution at a speed of 100 rpm f...

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Abstract

A method for manufacturing a latex balloon, the method comprising the steps of: S1, adding 5-7 parts by weight of water, 0.4-0.8 parts by weight of additives, 3-4.5 parts by weight of aluminum silver paste and 1-2 parts by weight of color slurry, and the above-mentioned components are fully dissolved and mixed to obtain the aluminum-silver paste mixture; S2, the aluminum-silver paste mixture is added to 86-91 parts by weight of latex, and the balloon ingredients are obtained after continuous stirring; S3, using the balloon mold and Balloon ingredients complete the manufacture of latex balloons. Another aspect of the present invention provides a latex balloon manufactured according to the above method. In the present invention, by adding an appropriate amount of aluminum-silver paste and additives to the raw materials of latex balloons, the colors of the balloons are diversified and more three-dimensional, and the surface is as bright as a mirror, showing a strong metallic texture. Compared with traditional balloons It has a better decorative effect.

Description

technical field [0001] The invention relates to the field of balloon manufacturing, in particular to a metallic latex balloon and a manufacturing method thereof. Background technique [0002] Colorful latex balloons are usually used as toys or for celebrations. Traditional balloons are usually made of organic pigments and natural latex. However, traditional balloons can only distinguish different colors, and it is difficult to present a metallic texture, which cannot give people a bright feeling. [0003] At present, there are also pearlescent balloons made of pearlescent powder on the market. Ordinary balloons are brighter in color than pearlescent balloons, but under lights or sunlight, pearlescent balloons are more reflective and brighter than ordinary balloons. However, the surface of pearlescent balloons is also difficult to present a strong metallic texture; and with the continuous advancement of environmental protection indicators, existing pearlescent balloons are o...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08J5/02C08L7/02C08L91/06C08K3/08
Inventor 张帅
Owner 张帅