Three-color floating pattern spherical water-absorbing composite gel bead

By using three different colors of absorbent resin and an interlaced float structure design, the absorbency and visual effect of the absorbent beads are improved, solving the problem of monotonous patterns in existing beads and achieving a combination of high absorbency and decoration.

CN223737963UActive Publication Date: 2025-12-30ZHEJIANG TRIPLE WIN MEDICAL APPLIANCE
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Patent Information

Application Number
CN202421841375.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-12-30
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

Existing absorbent beads have independent decorative structures and simple patterns, resulting in poor visual effects.

Method used

Three different colored water-absorbing resins were used to make the first, second, and third granules, and an interlaced float structure was formed by extending the resin. Spherical granules were formed by high-temperature polymerization of acrylic resin and additives.

Benefits of technology

It improves the water absorption capacity and visual effect of the absorbent beads, increases the product's artistry and fun, and makes it both decorative and environmentally friendly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a three-color floating pattern spherical water-absorbing composite gel bead, which comprises a first gel bead block body, a second gel bead block body and a third gel bead block body, and is made of acrylic resin, so that the whole composite gel bead has extremely strong water-absorbing capacity and is particularly effective in occasions needing rapid water absorption; the first gel bead block body, the second gel bead block body and the third gel bead block body are respectively made of water-absorbent resins with different colors, so that the composite gel bead visually presents a colorful effect, the attraction and interestingness of a product are increased, and a unique floating pattern structure is formed in the gel bead block bodies by designing the mutually staggered extension belts with different shapes, so that the composite gel bead is more attractive and interesting. Therefore, the composite gel bead not only has practicability, but also has certain artistry and decorativeness, and has remarkable advantages in the aspects of water absorption performance, visual effect, environmental protection property and application universality.
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Description

Technical Field

[0001] This utility model relates to polymer water-absorbing material products, and more particularly to a three-color float spherical water-absorbing composite bead. Background Technology

[0002] Patent document CN216159411U discloses a water-absorbing cold storage body with a decorative structure, which is a type of water-absorbing bead. It includes a cold storage base and a decorative structure, which is disposed inside or outside the cold storage base. The cold storage body incorporates a decorative structure composed of glitter flakes within the cold storage base. The light reflected by the glitter flakes can pass through the cold storage base, forming reflective points. Alternatively, spherical, polyhedral, or irregularly shaped water-absorbing resin can be incorporated into the cold storage base, working in conjunction with the spherical or polyhedral cold storage base. The cold storage base and the decorative structure can also be dyed separately to create combinations of different shapes and colors, thereby enhancing the aesthetics and playability of the cold storage body. However, the decorative structure used in this type of water-absorbing bead is independent of each other within the cold storage base, resulting in a relatively simple pattern and poor visual effect. Therefore, it is necessary to optimize the structure of this water-absorbing bead to overcome the aforementioned shortcomings. Utility Model Content

[0003] The purpose of this invention is to provide a three-color float spherical water-absorbing composite bead to enhance its visual effect.

[0004] The technical solution adopted by this utility model to solve its technical problem is:

[0005] A three-color float spherical water-absorbing composite bead, comprising:

[0006] The first agglomerated bead block is made of water-absorbing resin;

[0007] The second agglomerated bead block is made of water-absorbing resin and is bonded to the first agglomerated bead block.

[0008] The third agglomerate block is made of water-absorbing resin and is bonded to the second agglomerate block. The third agglomerate block, the second agglomerate block, and the first agglomerate block are combined to form spherical agglomerates.

[0009] In one embodiment of this utility model, the first, second, and third agglomerated beads are made of acrylic resin.

[0010] In one embodiment of this utility model, the first, second, and third agglomerated beads are arranged sequentially along the circumference of the spherical agglomerated beads. The two sides of the first agglomerated bead are respectively joined to the second and third agglomerated beads. The two sides of the second agglomerated bead are respectively joined to the first and third agglomerated beads. The two sides of the third agglomerated bead are respectively joined to the first and second agglomerated beads.

[0011] In the above embodiment, the first condensed bead block has a first extension band, which is provided in two sets. Each set of first extension bands is formed on both sides of the first condensed bead block. Each first extension band has a different length and extends into the second and third condensed bead blocks to form a first graphic structure in the second and third condensed bead blocks.

[0012] The second agglomerate block has a second extension band, which is provided in two sets. Each set of the second extension band is formed on both sides of the second agglomerate block. Each second extension band has a different shape and extends into the first agglomerate block and the third agglomerate block respectively, forming a second graphic structure in the first agglomerate block and the third agglomerate block.

[0013] The third agglomerate block has a third extension band, which has two sets. Each set of the third extension band is formed on both sides of the third agglomerate block. Each third extension band has a different length and extends into the interior of the first agglomerate block and the second agglomerate block, forming a third graphic structure in the first agglomerate block and the second agglomerate block.

[0014] In another embodiment of the present invention, the first, second, and third agglomerated beads are arranged sequentially along the radial direction of the spherical beads. The first and third agglomerated beads are spherical cap structures, the second agglomerated beads are spherical band structures, and the first and third agglomerated beads are respectively joined to both sides of the second agglomerated beads.

[0015] In this embodiment, the first bead block has a first extension band, and a set of the first extension bands are provided. Each first extension band is formed inside the first bead block and has a different shape. They extend into the second bead block to form a first graphic structure in the second bead block.

[0016] The third agglomerate block has a third extension band, which is provided in a set. Each third extension band is formed inside the third agglomerate block and has a different shape. It extends into the second agglomerate block to form a third graphic structure in the second agglomerate block.

[0017] The second agglomerated block has a second extension band, which is provided in two sets. Each set of the second extension band is formed on both sides of the second agglomerated block. The bands are different in shape and extend into the first and third agglomerated blocks respectively, forming a second graphic structure in the first and third agglomerated blocks.

[0018] In the above embodiment, the first extension strip also passes through the second agglomerate block and extends into the third agglomerate block, and the third extension strip also passes through the second agglomerate block and extends into the first agglomerate block. The first extension strip, the second extension strip, and the third extension strip together form a float structure. The first agglomerate block, the second agglomerate block, and the third agglomerate block are each made of a different colored absorbent resin. The first extension strip, the second extension strip, and the third extension strip are the same color as the first agglomerate block, the second agglomerate block, and the third agglomerate block, respectively. The first extension strip, the second extension strip, and the third extension strip interweave with each other to form a float structure of three colors. During production, acrylic acid and sodium hydroxide are selected as the main raw materials. By adding color paste, initiator, crosslinking agent, and other auxiliary agents, and thickening the liquid with sodium carboxymethyl cellulose, the three different colored liquids are mixed into droplets and dripped into the molding machine in a reverse-phase suspension manner. Spherical agglomerates are formed by high-temperature polymerization.

[0019] The advantages of this utility model are:

[0020] These composite beads are made of acrylic resin, giving them extremely strong water absorption capacity. They are particularly effective in situations requiring rapid water absorption. The first, second, and third beads are made of different colored water-absorbing resins, creating a colorful visual effect that increases the product's appeal and interest. By designing intersecting extension strips of different shapes, a unique floating structure is formed within the bead blocks, making the composite beads not only practical but also artistic and decorative. They have significant advantages in terms of water absorption performance, visual effect, environmental friendliness, and versatility. Attached Figure Description

[0021] Figure 1 This is one of the structural schematic diagrams of the three-color float spherical water-absorbing composite beads proposed in this utility model;

[0022] Figure 2 This is the second schematic diagram of the composite granules;

[0023] Figure 3 This is the third schematic diagram of the composite granules;

[0024] Figure 4 This is the fourth schematic diagram of the composite agglomerates. Detailed Implementation

[0025] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this utility model provided in the accompanying drawings is not intended to limit the scope of the claimed utility model, but merely represents selected embodiments of the utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.

[0026] like Figures 1-4 As shown, the three-color floating spherical water-absorbing composite beads proposed in this utility model include a first bead block 100, a second bead block 200, and a third bead block 300. The first bead block is made of water-absorbing resin, the second bead block is made of water-absorbing resin and is bonded to the first bead block, and the third bead block is made of water-absorbing resin and is bonded to the second bead block. The spherical beads are formed by combining the third bead block, the second bead block, and the first bead block. In this embodiment, the first bead block, the second bead block, and the third bead block are all made of acrylic resin.

[0027] In Example 1, as Figure 1 The first agglomerated block 100, the second agglomerated block 200 and the third agglomerated block 300 are arranged sequentially along the circumference of the spherical agglomerated block. The two sides of the first agglomerated block are respectively connected to the second agglomerated block and the third agglomerated block. The two sides of the second agglomerated block are respectively connected to the first agglomerated block and the third agglomerated block. The two sides of the third agglomerated block are respectively connected to the first agglomerated block and the second agglomerated block.

[0028] In this embodiment, such as Figure 3 The first agglomerated block has a first extension band 110. The first extension band is provided in two sets. Each set of the first extension band is formed on both sides of the first agglomerated block. Each first extension band has a different length and extends into the second agglomerated block and the third agglomerated block respectively, forming a first graphic structure in the second agglomerated block and the third agglomerated block.

[0029] The second agglomerated block has a second extension band 210. The second extension band is provided in two sets. Each set of the second extension band is formed on both sides of the second agglomerated block. Each second extension band has a different shape and extends into the first agglomerated block and the third agglomerated block respectively, forming a second graphic structure in the first agglomerated block and the third agglomerated block.

[0030] The third agglomerated block has a third extension band 310, which has two sets. Each set of the third extension band is formed on both sides of the third agglomerated block. Each third extension band has a different length and extends into the interior of the first agglomerated block and the second agglomerated block, forming a third graphic structure in the first agglomerated block and the second agglomerated block.

[0031] In Example 2, as Figure 2 The first condensate block 100, the second condensate block 200 and the third condensate block 300 are arranged in sequence along the radial direction of the spherical condensate. The first condensate block and the third condensate block are spherical cap structures, and the second condensate block is a spherical band structure. The first condensate block and the third condensate block are respectively joined to both sides of the second condensate block.

[0032] In this embodiment, such as Figure 4 The first agglomerated block has a first extension band 110. The first extension band is provided in a group. Each first extension band is formed inside the first agglomerated block. They have different shapes and extend into the second agglomerated block to form a first graphic structure in the second agglomerated block.

[0033] The third agglomerate block has a third extension band 310. The third extension band is provided in a group. Each third extension band is formed inside the third agglomerate block. They have different shapes and extend into the second agglomerate block to form a third graphic structure in the second agglomerate block.

[0034] The second agglomerated block has a second extension band 210. The second extension band is provided in two sets. Each set of the second extension band is formed on both sides of the second agglomerated block. The bands are different in shape and extend into the first agglomerated block and the third agglomerated block respectively, forming a second graphic structure in the first agglomerated block and the third agglomerated block.

[0035] In one embodiment, the first extension band extends through the second agglomerate block and into the third agglomerate block, and the third extension band extends through the second agglomerate block and into the first agglomerate block, together forming a float structure.

[0036] In the description of this utility model, it should be noted that when terms such as "upper," "lower," "inner," "outer," "left," and "right" appear to indicate orientation or positional relationships, they should be understood as being based on the orientation or positional relationships shown in the accompanying drawings, or the orientation or positional relationships commonly used when the product of this utility model is in use, or the orientation or positional relationships commonly understood by those skilled in the art. These terms are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, when terms such as "first" and "second" appear, they are only used to distinguish descriptions and should not be construed as indicating or implying relative importance. In the description of this utility model, it should also be noted that unless otherwise explicitly specified and limited, terms such as "installation," "setting," and "connection" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

Claims

1. A tricolour floating chart spherical water-absorbing composite condensate bead, characterized in that, The application relates to a ball-shaped condensate bead, which comprises: a first condensate bead block made of water-absorbing resin; a second condensate bead block made of water-absorbing resin and connected with the first condensate bead block; a third condensate bead block made of water-absorbing resin and connected with the second condensate bead block, wherein the third condensate bead block, the second condensate bead block and the first condensate bead block are combined to form a ball-shaped condensate bead; wherein the first condensate bead block, the second condensate bead block and the third condensate bead block are respectively made of acrylic resin with different colors; the first condensate bead block, the second condensate bead block and the third condensate bead block are sequentially arranged along the circumference of the ball-shaped condensate bead, the two sides of the first condensate bead block are respectively connected with the second condensate bead block and the third condensate bead block, the two sides of the second condensate bead block are respectively connected with the first condensate bead block and the third condensate bead block, and the two sides of the third condensate bead block are respectively connected with the first condensate bead block and the second condensate bead block; the first condensate bead block is provided with a first extension belt, the first extension belt is provided with two groups, each group of the first extension belt is formed on the two sides of the first condensate bead block, the lengths of the first extension belts are different, the first extension belts respectively extend into the second condensate bead block and the third condensate bead block, and first pattern structures are formed in the second condensate bead block and the third condensate bead block; the second condensate bead block is provided with a second extension belt, the second extension belt is provided with two groups, each group of the second extension belt is formed on the two sides of the second condensate bead block, the shapes of the second extension belts are different, the second extension belts respectively extend into the first condensate bead block and the third condensate bead block, and second pattern structures are formed in the first condensate bead block and the third condensate bead block; the third condensate bead block is provided with a third extension belt, the third extension belt is provided with two groups, each group of the third extension belt is formed on the two sides of the third condensate bead block, the lengths of the third extension belts are different, the third extension belts respectively extend into the first condensate bead block and the second condensate bead block, and third pattern structures are formed in the first condensate bead block and the second condensate bead block.

2. A tricolour floating chart spherical water-absorbing composite condensate bead, characterized in that, The application relates to a ball-shaped condensate bead, which comprises: a first condensate bead block made of water-absorbing resin; a second condensate bead block made of water-absorbing resin and connected with the first condensate bead block; a third condensate bead block made of water-absorbing resin and connected with the second condensate bead block, wherein the third condensate bead block, the second condensate bead block and the first condensate bead block are combined to form a ball-shaped condensate bead; wherein the first condensate bead block, the second condensate bead block and the third condensate bead block are respectively made of acrylic resin with different colors; the first condensate bead block, the second condensate bead block and the third condensate bead block are sequentially arranged along the circumference of the ball-shaped condensate bead, the two sides of the first condensate bead block are respectively connected with the second condensate bead block and the third condensate bead block, the two sides of the second condensate bead block are respectively connected with the first condensate bead block and the third condensate bead block, and the two sides of the third condensate bead block are respectively connected with the first condensate bead block and the second condensate bead block; the first condensate bead block is provided with a first extension belt, the first extension belt is provided with two groups, each group of the first extension belt is formed on the two sides of the first condensate bead block, the lengths of the first extension belts are different, the first extension belts respectively extend into the second condensate bead block and the third condensate bead block, and first pattern structures are formed in the second condensate bead block and the third condensate bead block; the second condensate bead block is provided with a second extension belt, the second extension belt is provided with two groups, each group of the second extension belt is formed on the two sides of the second condensate bead block, the shapes of the second extension belts are different, the second extension belts respectively extend into the first condensate bead block and the third condensate bead block, and second pattern structures are formed in the first condensate bead block and the third condensate bead block; the third condensate bead block is provided with a third extension belt, the third extension belt is provided with two groups, each group of the third extension belt is formed on the two sides of the third condensate bead block, the lengths of the third extension belts are different, the third extension belts respectively extend into the first condensate bead block and the second condensate bead block, and third pattern structures are formed in the first condensate bead block and the second condensate bead block. The third extension belt is provided with a group of third extension belts, each of which is formed in the inside of the third bead block, has a different shape, and extends to the inside of the second bead block to form a third pattern structure in the second bead block. The second extension belt is provided with two groups of second extension belts, each of which is formed on the two sides of the second bead block, has a different shape, and extends to the inside of the first bead block and the third bead block to form a second pattern structure in the first bead block and the third bead block.

3. The three-color floating map spherical water-absorbing composite bead according to claim 2, characterized in that: The first extension belt further extends to the third bead block after passing through the second bead block, and the third extension belt further extends to the first bead block after passing through the second bead block, and the floating map structure is composed of the first extension belt, the second extension belt, and the third extension belt.

Citation Information

Patent Citations

  • Water absorption type cold storage body with decorative structure

    CN216159411U