Novel high-strength multicolor seam beautifying agent integrated rubber pipe

By designing a high-strength, multi-color grout integrated hose, employing an independent liquid storage chamber and flow control valve, and combining it with a motor-driven power shaft and mixing blades, the problems of low construction efficiency and unsatisfactory color transition effects of multi-color grout have been solved, resulting in a significant improvement in construction efficiency and color transition effects.

CN223867594UActive Publication Date: 2026-02-03DISHENGWEI (ZHEJIANG) PLASTIC CO LTD
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Patent Information

Application Number
CN202520344665.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-01
Publication Date
2026-02-03
Estimated Expiration
2035-03-01

AI Technical Summary

Technical Problem

The current multi-color grout application method is inefficient, the color transition effect is not ideal, and frequent replacement of grout tubes leads to construction interruptions and increased time costs.

Method used

Design a high-strength, multi-color tile grout integrated hose, comprising a hose body, a dispensing nozzle, an upper partition, a lower partition, a separator seat, and a distribution pipe. Employ independent liquid storage chambers and flow control valves to ensure that multiple colors of tile grout are stored independently and supplied as needed. Combined with a motor-driven power shaft and mixing blades, uniform mixing is achieved.

Benefits of technology

It simplifies the construction process, improves efficiency and the naturalness of color transitions, reduces construction interruptions and time costs, and enables precise mixing and uniform supply of various colors of grout.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of seam beautifying rubber pipes, in particular to a novel high-strength multi-color seam beautifying agent integrated rubber pipe which comprises a rubber pipe barrel and a glue outlet nozzle, an upper partition block and a lower partition block are arranged inside the lower end of the rubber pipe barrel, a partition seat of a three-edge structure is clamped to the top of the upper partition block, and the lower partition block is clamped to the top of the lower partition block. The internal space of the upper end of the rubber tube barrel is divided into a plurality of independent liquid storage cavities through the separation seats, the internal space of the lower end of the rubber tube barrel is divided into mixing cavities through the lower separation blocks, and flow dividing pipes corresponding to the liquid storage cavities are connected between the upper separation blocks and the lower separation blocks. Flow control valves which are independently controlled are mounted on the flow dividing pipes; and a plurality of material guiding pipes which are connected with the bottom ends of the flow dividing pipes are arranged at the bottom of the lower spacer block. According to the novel high-strength multi-color seam beautifying agent integrated rubber pipe, independent storage and synchronous supply of multi-color seam beautifying agents are achieved, the construction process is simplified, efficiency and color transition naturalness are improved, and construction interruption and time cost are reduced.
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Description

Technical Field

[0001] This utility model relates to the field of tile grout tube technology, specifically a new type of high-strength multi-color tile grout integrated tube. Background Technology

[0002] In the field of architectural decoration, grout sealant is used to fill gaps in tiles and stone to enhance aesthetics and durability. With the diversification of decoration needs, the market demand for multi-color grout sealant is gradually increasing. Traditional single-color grout sealant applications have limitations and cannot meet the requirements of personalized designs. Therefore, grout sealant that can offer a variety of color options has become particularly important. Grout sealant is usually applied through a tube, which is typically made of high-quality plastics or composite materials with high strength and rigidity, capable of withstanding the pressure of the grout sealant, and not easily broken or deformed, ensuring its integrity during storage and use. The production of high-strength grout tubes involves using an injection molding machine to rapidly inject molten polymer materials (such as polypropylene, polyethylene, etc.) into a pre-designed mold cavity using the pressure generated by the rotation of a screw. Within the mold cavity, the molten material fills according to the shape and size of the mold under certain pressure and temperature conditions, and is rapidly cooled and solidified by the mold's cooling system, ultimately forming a grout sealant tube with a specific shape and size. The design of the grout tube directly affects the application effect and ease of application of the grout sealant.

[0003] Most existing multi-color grout solutions rely on installers manually changing grout tubes of different colors or using pre-mixed grout with limited color combinations. This method is not only inefficient, but also makes it difficult to achieve the desired color transition effect, especially in small areas that require fine treatment or in designs with varied colors. In addition, frequent changes of grout tubes can lead to construction interruptions, increasing the difficulty and time cost of construction, and limiting construction efficiency and design flexibility. Utility Model Content

[0004] The purpose of this utility model is to provide a new type of high-strength multi-color tile grout integrated tube to solve the problems mentioned in the background art, such as low construction efficiency of multi-color tile grout, unsatisfactory color transition effect, and construction interruption and increased time cost caused by frequent replacement of tile grout tubes.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a novel high-strength multi-color sealant integrated hose, comprising a hose body and a nozzle. The lower end of the hose body is provided with an upper partition and a lower partition. The top of the upper partition is fitted with a three-sided dividing seat, which divides the internal space of the upper end of the hose body into several independent liquid storage chambers. The lower partition divides the internal space of the lower end of the hose body into a mixing chamber. A diversion pipe corresponding to each liquid storage chamber is connected between the upper and lower partitions. Each diversion pipe is equipped with an independently controlled flow control valve. The bottom of the lower partition has several guide pipes connected to the bottom of each diversion pipe.

[0006] Preferably, the partition seat divides the interior of the upper end of the tubing into three independent liquid storage chambers, and each liquid storage chamber has the same space.

[0007] Preferably, the mixing chamber is provided with a power shaft driven by a motor, and a plurality of mixing blades are arranged around the outside of the power shaft.

[0008] Preferably, the guide tube has a variable diameter structure that is wider at the top and narrower at the bottom and is connected to the bottom of the lower partition through a threaded structure, and the inside of the guide tube is provided with a diffuser bar with a spiral structure.

[0009] Preferably, the hose shell is provided with a flip cover at the position corresponding to the diverter pipe, and the hose shell is provided with a viewing window lens at the position corresponding to the mixing chamber.

[0010] Preferably, the top end of the hose body is connected to an end cap via a threaded structure, and the inner side of the end cap is provided with a sealing gasket that matches the edge structure of the top end of the hose body.

[0011] Compared with existing technologies, the beneficial effects of this utility model are as follows: This novel high-strength multi-color grout integrated hose enables independent storage and simultaneous supply of multiple colors of grout, simplifying the construction process, improving efficiency and the naturalness of color transitions, and reducing construction interruptions and time costs. The design of the separator ensures that multiple colors of grout remain independent in their respective storage chambers, avoiding impure colors or contamination caused by pre-mixing. The combined use of the diversion pipe and flow control valve allows each color of grout to flow smoothly and as needed into the mixing chamber, ensuring uniform flow and precise mixing ratios. The design of the guide pipe further promotes the dispersion of the different colors of grout, improving the pre-mixing effect. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of a novel high-strength multi-color tile grout integrated tube structure according to the present invention;

[0013] Figure 2This is a top view of the internal structure of the tube body of a novel high-strength multi-color tile grout integrated tube according to this utility model.

[0014] Figure 3 This is a schematic diagram of the internal structure of the guide tube of a novel high-strength multi-color tile grout integrated tube according to this utility model;

[0015] Figure 4 This is a schematic diagram of the external structure of the tube body of a novel high-strength multi-color tile grout integrated tube according to this utility model.

[0016] In the diagram: 1. Hose body; 2. Dispensing nozzle; 3. Upper partition; 4. Separator seat; 5. Lower partition; 6. Mixing chamber; 7. Diverter pipe; 8. Flow control valve; 9. Feed pipe; 10. Power shaft; 11. Mixing vane; 12. End cap; 13. Sealing gasket; 14. Diffuser strip; 15. Flip cap; 16. Viewing window lens. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] Please see Figure 1-4This utility model provides a technical solution: a novel high-strength multi-color tile grout integrated hose, comprising a hose body 1 and a nozzle 2. The nozzle 2 is connected to the bottom of the hose body 1 via a threaded interface. During the processing of the hose, high-strength plastic granule raw materials (such as PP or PE particle masterbatch) are mixed and heated to a molten state, and then injected into a pre-designed mold cavity through an injection molding machine. Under the action of the mold's cooling system, the mixture is rapidly cooled and solidified, and then demolded to form the basic shape of the hose body 1, nozzle 2, and other components. The lower end of the hose body 1 is provided with an upper partition 3 and a lower partition 5, both of which are circular structures with their edges welded and fixed to the inner wall of the hose body 1. The top of the upper partition 3 is engaged with a three-sided... The partition seat 4 divides the internal space at the upper end of the hose cylinder 1 into several independent liquid storage chambers. The outer surface of the partition seat 4 is coated with a chemical corrosion resistant coating, which has good smoothness and helps reduce the residue of sealant on the surface of the partition seat 4, making cleaning and maintenance easier. The lower partition 5 divides the internal space at the lower end of the hose cylinder 1 into a mixing chamber 6. A diversion pipe 7 corresponding to each liquid storage chamber is connected between the upper partition 3 and the lower partition 5. Each diversion pipe 7 is equipped with an independently controlled flow control valve 8. The bottom of the lower partition 5 is provided with several guide pipes 9 connected to the bottom end of each diversion pipe 7. The guide pipes 9 are located inside the mixing chamber 6. When using this hose cylinder 1, the construction personnel adjust the diversion pipes 7. Each independently controlled flow control valve 8 precisely controls the flow rate of each color of grout, ensuring that different colors of grout enter the mixing chamber 6 for thorough mixing according to a preset ratio. The separator 4 ensures that the various colors of grout remain independent in their respective reservoirs, avoiding impurities or contamination caused by pre-mixing. The diverter pipe 7 ensures that each color of grout flows smoothly from its reservoir to the mixing chamber 6 without blockage or uneven flow. The guide pipe 9 further helps to disperse the flow of different colors of grout, creating a better pre-mixing effect before entering the mixing chamber 6. Overall, this structure simplifies the construction process, improves work efficiency, and significantly enhances the naturalness of color transitions, solving the problem of frequent replacements in existing technologies. The construction interruptions, increased time costs, and difficulty in achieving ideal color transitions caused by grout tubes are greatly improved by this design, which significantly enhances construction efficiency and design flexibility, especially when dealing with small areas or varied color designs. The separator 4 divides the interior of the upper part of the tube 1 into three independent liquid storage chambers, each with the same space. This three-sided structure of the separator 4 ensures that the three different colors of grout are completely isolated in their respective storage chambers, avoiding any possible color mixing or contamination. Furthermore, because each storage chamber has the same space, it ensures consistent storage of each color of grout, facilitating precise mixing by construction personnel according to actual needs. The mixing chamber 6 is equipped with a motor-driven power shaft 10.This motor is fixed to the outside of the bottom end of the hose cylinder 1 by a support block. Its output shaft is fixedly connected to one end of the power shaft 10. Several mixing blades 11 are arranged around the outside of the power shaft 10. Each mixing blade 11 is at a certain tilt angle. After the motor is started, it can drive the power shaft 10 to rotate, thereby causing the mixing blades 11 to rotate at high speed in the mixing chamber 6. This ensures that the different colors of grout flowing into the mixing chamber 6 can be quickly and evenly mixed together. That is, the mixing blades 11 can generate strong shear force and vortex effect during rotation, further promoting the full fusion of the different colors of grout. This design achieves a more delicate and natural color transition effect. The guide tube 9 has a variable diameter structure, wider at the top and narrower at the bottom, and is connected to the bottom of the lower partition 5 via a threaded structure. Inside the guide tube 9 is a spiral diffuser strip 14. When the grout flows from the diversion tube 7 into the guide tube 9, the flow rate gradually increases due to the wider-at-the-top design. Simultaneously, the diffuser strip 14 creates a swirling flow, which helps to further disperse the different colors of the grout, allowing them to mix initially before entering the mixing chamber 6. Thus, the diffuser strip 14 not only enhances this dispersion effect but also… This design promotes uniform distribution of the grout within the delivery tube 9, preventing uneven concentration in certain areas. A flap 15 is located on the tube body 1 corresponding to the distribution tube 7. One end of the flap 15 is connected to the tube body 1 via a hinge. A viewing window 16 is located on the tube body 1 corresponding to the mixing chamber 6. This structure allows the operator to easily and quickly access each independently controlled flow control valve 8 by opening the flap 15, enabling rapid adjustment of the flow rate of each color of grout according to construction needs. The viewing window 16 allows the operator to observe the mixing process in the mixing chamber 6 in real time, ensuring consistent mixing of different colors. The grout can be mixed according to the expected ratio and effect. The top of the tube 1 is connected to an end cap 12 via a threaded structure. A sealing gasket 13, matching the edge structure of the top of the tube 1, is adhered and fixed to the inside of the end cap 12. The sealing gasket 13 is pressed against the top of the separator 4. This structure ensures the airtightness of the entire tube 1 when the end cap 12 is tightened to the top of the tube 1 via the threaded structure, effectively preventing leakage of the grout or the entry of external impurities into the storage chamber during storage and use, thus guaranteeing the purity and quality of each color of grout.

[0019] Working principle: When using this new type of high-strength multi-color tile grout integrated hose, the operator first opens the end cap 12 and adds the three different colors of tile grout to the three independent liquid storage chambers separated by the separator seat 4. Then, the end cap 12 is tightened to ensure that the sealing gasket 13 is tightly pressed against the top of the separator seat 4. Next, the construction worker opens the flip cap 15 and adjusts the independent flow control valve 8 on each diversion pipe 7 according to actual needs to accurately set the outflow ratio of each color of tile grout. After adjustment, the motor located outside the bottom end of the hose body 1 is started. The motor drives the power shaft 10 to rotate, which in turn drives the mixing blades. 11 rotates at high speed in the mixing chamber 6. At this time, the three colors of grout flow from their respective storage chambers into the guide pipe 9 through the diversion pipe 7 and come into contact with the diffuser strip 14. The flow rate of the grout increases and a rotating flow is generated. It is initially mixed before entering the mixing chamber 6. As the grout flows into the mixing chamber 6, the strong shear force and vortex effect generated by the mixing blade 11 further promote the full fusion of the grout colors. The operator can observe the mixing situation in the mixing chamber 6 in real time through the viewing window lens 16. Finally, the grout after being fully mixed is evenly discharged through the glue outlet 2, completing the entire grouting operation process and thus completing a series of tasks.

[0020] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A novel high-strength multi-color tile grout integrated hose, comprising a hose body (1) and a nozzle (2), characterized in that: The lower end of the hose cylinder (1) is provided with an upper partition (3) and a lower partition (5). The top of the upper partition (3) is fitted with a three-sided partition seat (4). The partition seat (4) divides the internal space of the upper end of the hose cylinder (1) into several independent liquid storage chambers. The lower partition (5) divides the internal space of the lower end of the hose cylinder (1) into a mixing chamber (6). The upper partition (3) and the lower partition (5) are connected by a diversion pipe (7) corresponding to each liquid storage chamber. Each diversion pipe (7) is equipped with an independently controlled flow control valve (8). The bottom of the lower partition (5) is provided with several guide pipes (9) connected to the bottom of each diversion pipe (7).

2. The novel high-strength multi-color tile grout integrated hose according to claim 1, characterized in that: The separator (4) divides the interior of the upper end of the tubing body (1) into three independent liquid storage chambers, and each liquid storage chamber has the same space.

3. The novel high-strength multi-color tile grout integrated tube according to claim 1, characterized in that: The mixing chamber (6) is provided with a power shaft (10) driven by a motor, and a number of mixing blades (11) are arranged around the outside of the power shaft (10).

4. The novel high-strength multi-color tile grout integrated tube according to claim 1, characterized in that: The guide tube (9) has a variable diameter structure that is wider at the top and narrower at the bottom and is connected to the bottom of the lower partition (5) by a threaded structure. The inside of the guide tube (9) is provided with a diffuser strip (14) with a spiral structure.

5. The novel high-strength multi-color tile grout integrated tube according to claim 1, characterized in that: The hose cylinder (1) shell is provided with a flip cover (15) at the position corresponding to the diverter pipe (7), and the hose cylinder (1) shell is provided with a viewing window (16) at the position corresponding to the mixing chamber (6).

6. The novel high-strength multi-color tile grout integrated hose according to claim 1, characterized in that: The top end of the hose body (1) is connected to an end cap (12) by a threaded structure, and the inner side of the end cap (12) is provided with a sealing gasket (13) that matches the opening structure of the top end of the hose body (1).