Humidification bottle pressure relief ring die

By using a six-axis industrial robot and an automated material handling system designed with molds, the problems of difficulty in manual material handling and risk of burns in the production of humidification bottle pressure relief rings have been solved, achieving the effects of automated material handling and cost reduction.

CN224074904UActive Publication Date: 2026-04-03CHENGDU DE RUIXIN PACKAGING PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The current production of pressure relief rings for humidification bottles presents challenges such as difficulty in manual material handling, risk of burns, and increased labor costs.

Method used

The system employs a six-axis industrial robot in conjunction with a mold design, and automatically removes the pressure relief ring through a picking pin and elastic components. It also achieves automated unloading by combining a limit component and a belt conveyor.

Benefits of technology

It enables automated material handling of pressure relief rings, reducing manual labor, lowering labor costs, and protecting worker safety by avoiding the risk of burns.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of a humidification bottle pressure relief ring production device, and particularly discloses a humidification bottle pressure relief ring mold which comprises a mold body, wherein the mold body is arranged on an injection molding machine and is used for carrying out injection molding on a pressure relief ring; the six-axis industrial robot is arranged on one side of the mold body; the mounting seat is carried on the six-axis industrial robot; the mounting plate is arranged on the mounting seat; one end of each material taking pin is arranged on the mounting plate, and the other end is inserted into an inner hole of the pressure relief ring; the function plate is arranged on the mounting plate in a sliding mode, located between the pressure relief ring and the mounting plate and capable of sliding in the axial direction of the material taking pin so as to push the pressure relief ring; the elastic component provides a movement trend of moving towards the pressure relief ring for the functional plate; the limiting assembly is used for limiting the function plate to move towards the pressure relief ring; according to the pressure relief ring taking device, the pressure relief ring in the die body can be automatically taken, the manual labor amount can be reduced, the labor cost is reduced, workers cannot be scalded, and the workers are protected.
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Description

Technical Field

[0001] This utility model relates to the technical field of humidification bottle pressure relief ring production equipment, and in particular to a humidification bottle pressure relief ring mold. Background Technology

[0002] The pressure relief ring is one of the important components of the humidification bottle. It is usually installed inside the vent of the humidification bottle. By adjusting the fit between the pressure relief ring and the vent, the pressure of the humidification bottle can be regulated.

[0003] Pressure relief rings are usually cylindrical in shape. In production, pressure relief rings are formed by injection molding in a mold. After the injection molding process is completed, the finished pressure relief ring usually needs to be manually removed from the mold.

[0004] Although the pressure relief rings are cooled inside the mold, they still retain a certain temperature, posing a risk of burns to workers. Furthermore, the manual unloading of the pressure relief rings increases labor costs. Utility Model Content

[0005] In view of the above problems, this utility model provides a humidification bottle pressure relief ring mold, the purpose of which is to reduce manual labor and save labor costs.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] A humidification bottle pressure relief ring mold is provided, comprising: a mold body mounted on an injection molding machine for injection molding the pressure relief ring; a six-axis industrial robot disposed on one side of the mold body; a mounting base mounted on the six-axis industrial robot; a mounting plate disposed on the mounting base; a plurality of picking pins, one end of which is disposed on the mounting plate and the other end of which is used to insert into the inner hole of the pressure relief ring; a functional plate slidably disposed on the mounting plate, located between the pressure relief ring and the mounting plate, and capable of sliding along the axial direction of the picking pins to push the pressure relief ring; an elastic component providing a movement tendency for the functional plate to move toward the pressure relief ring; and a limiting component for limiting the movement of the functional plate toward the pressure relief ring.

[0008] Furthermore, the mold also includes: a limiting block; a sliding rod, parallel to the picking pin, slidably disposed within the mounting plate, one end of the sliding rod connected to the limiting hole, and the other end of the sliding rod connected to the functional plate; wherein, the limiting block and the functional plate are respectively located on both sides of the mounting plate, the elastic component is sleeved on the sliding rod, and the elastic component is located between the mounting plate and the functional plate.

[0009] Furthermore, the limiting component includes: a telescopic component and a slider. The slider is slidably mounted on the mounting plate. The main body of the telescopic component is mounted on the mounting plate. The piston rod of the telescopic component is connected to the slider. The telescopic movement of the piston rod can drive the slider to move closer to / away from the slider rod, thereby moving the slider between the limiting block and the mounting plate.

[0010] Furthermore, a groove is provided on the slider for the sliding rod to enter.

[0011] Furthermore, the mold also includes: several tapered holes, opened on the side of the functional plate near the pressure relief ring, for positioning the pressure relief ring; one end of the pick-up pin can pass through the functional plate and enter the tapered holes.

[0012] Furthermore, the mold also includes a belt conveyor, positioned on one side of the industrial six-axis robot, for receiving pressure relief rings.

[0013] The beneficial effects of this utility model are as follows: In this utility model, the picking pin is carried by a six-axis industrial robot, which can insert the picking pin into the inner hole of the pressure relief ring in the lower mold base and automatically remove the pressure relief ring from the lower mold base; an elastic component is also provided, which can provide a tendency for the functional plate to move towards the pressure relief ring, and can push the pressure relief ring out of the picking pin to complete the automatic unloading of the pressure relief ring; a limit component is also provided, which can restrict the movement of the functional plate and prevent the functional plate from pushing the pressure relief ring out of the picking pin in advance, ensuring the normal operation of the picking work; by using this utility model, the picking work of the pressure relief ring in the mold body can be automatically completed, which can reduce the amount of manual labor, reduce labor costs, and prevent workers from being burned, thus protecting workers. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall installation of the mold provided in the embodiment of this application.

[0015] Figure 2 This is a schematic diagram of the mounting structure of the mounting plate and function board provided in the embodiments of this application.

[0016] Figure 3 A top view of the slider provided in an embodiment of this application.

[0017] Among them, 11. Upper mold base; 12. Lower mold base; 13. Vertical injection molding machine; 2. Six-axis industrial robot; 3. Mounting base; 4. Mounting plate; 5. Material picking pin; 6. Functional plate; 61. Limiting block; 62. Sliding rod; 63. Tapered hole; 7. Elastic component; 81. Telescopic component; 82. Slider; 9. Belt conveyor; 10. Pressure relief ring. Detailed Implementation

[0018] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.

[0019] Reference Figure 1 and Figure 2As shown in the figure, this application discloses a humidification bottle pressure relief ring mold, including: a mold body, mounted on an injection molding machine, for injection molding a pressure relief ring 10; a six-axis industrial robot 2, disposed on one side of the mold body; a mounting base 3, mounted on the six-axis industrial robot 2; a mounting plate 4, disposed on the mounting base 3; a plurality of picking pins 5, one end of which is disposed on the mounting plate 4, and the other end of which is used to insert into the inner hole of the pressure relief ring 10; a functional plate 6, slidably disposed on the mounting plate 4, located between the pressure relief ring 10 and the mounting plate 4, and capable of sliding along the axial direction of the picking pins 5 to push the pressure relief ring 10; an elastic member 7, providing the functional plate 6 with a movement tendency toward the pressure relief ring 10; and a limiting component, used to limit the movement of the functional plate 6 toward the pressure relief ring 10.

[0020] It is worth mentioning that, in actual operation, the mold body includes an upper mold base 11 and a lower mold base 12 mounted on a vertical injection molding machine 13. The upper mold base 11 and the lower mold base 12 complete the mold closing and injection molding and mold opening operations through the vertical injection molding machine 13. The pressure relief ring 10 product after injection molding is located in the mold cavity of the lower mold base 12.

[0021] After the pressure relief ring 10 is injection molded and the mold is opened, the material picker pin 5 is carried by the six-axis industrial robot 2. The six-axis industrial robot 2 can insert the material picker pin 5 into the inner hole of the pressure relief ring 10 in the lower mold base 12 and automatically remove the pressure relief ring 10 from the lower mold base 12. An elastic component 7 is also provided, which can provide the functional plate 6 with a tendency to move towards the pressure relief ring 10, and can push the pressure relief ring 10 out of the material picker pin 5 to complete the automatic unloading of the pressure relief ring 10. A limit component is also provided, which can limit the movement of the functional plate 6 to prevent the functional plate 6 from pushing the pressure relief ring 10 out of the material picker pin 5 in advance, so as to ensure the normal operation of the material picking work.

[0022] By using this utility model, the removal of the pressure relief ring 10 inside the mold body can be completed automatically, which can reduce manual labor and lower labor costs, and will not burn workers, thus protecting them.

[0023] It is worth mentioning that both the vertical injection molding machine 13 and the six-axis industrial robot 2 are readily available on the market, and the specific installation is also a well-known technology in the field, so it will not be described in detail here.

[0024] Specifically, the mold also includes: a limiting block 61; a sliding rod 62, parallel to the material picking pin 5, slidably disposed in the mounting plate, one end of the sliding rod 62 is connected to the limiting hole, and the other end of the sliding rod 62 is connected to the functional plate 6; wherein, the limiting block 61 and the functional plate 6 are respectively located on both sides of the mounting plate 4, and the elastic component 7 is sleeved on the sliding rod 62, and the elastic component 7 is located between the mounting plate 4 and the functional plate 6.

[0025] Specifically, the limiting component includes: a telescopic component 81 and a slider 82. The slider 82 is slidably disposed on the mounting plate 4. The main body of the telescopic component 81 is disposed on the mounting plate 4. The piston rod of the telescopic component 81 is connected to the slider 82. The telescopic movement of the piston rod of the telescopic component 81 can drive the slider 82 to move closer to / away from the slide bar 62, thereby moving the slider 82 between the limiting block 61 and the mounting plate 4.

[0026] During operation, when removing the pressure relief ring 10 from the mold, the six-axis industrial robot 2 presses down the mounting base 3, which squeezes the elastic component 7 and drives the limiting block 61 to slide upward. After the material removal pin 5 is inserted into the inner hole of the pressure relief ring 10, the telescopic component 81 is activated, and the piston rod of the telescopic component 81 extends. The slider 82 approaches the sliding rod 62 and places the slider 82 between the limiting block 61 and the mounting plate 4, restricting the limiting block 61 from sliding towards the mounting plate 4 and preventing the functional plate 6 from pushing the pressure relief ring 10 out of the material removal pin 5. The six-axis industrial robot 2 can then flexibly remove the pressure relief ring 10 from the lower mold base 12.

[0027] Specifically, after the six-axis industrial robot 2 removes the pressure relief ring 10 from the lower mold base 12, the piston rod of the telescopic component 81 retracts, the slider 82 moves away from the slide rod 62, and the slider 82 exits between the limiting block 61 and the mounting plate 4, releasing the limiting effect on the limiting block 61. The supporting component then moves to restore its deformation, pushing the functional plate 6 to slide. The functional plate 6 pushes the pressure relief ring 10 out of the picking pin 5.

[0028] In this embodiment, a spring is selected as the support component.

[0029] Reference Figure 3 As shown, a groove is provided on the slider 82 for the slide rod 62 to enter.

[0030] In this embodiment, the mold further includes: a plurality of tapered holes 63, which are opened on the side of the functional plate 6 near the pressure relief ring 10, for positioning the pressure relief ring 10; one end of the material picking pin 5 can pass through the functional plate 6 and enter the tapered hole 63.

[0031] By setting the tapered hole 63, the pressure relief ring 10 can be guided into the tapered hole 63, and the pressure relief ring 10 can be positioned.

[0032] Preferably, the mold further includes: a belt conveyor 9, which is set on one side of the industrial six-axis robot for receiving the pressure relief ring 10; the pressure relief ring 10 pushed off by the functional plate 6 falls onto the conveyor belt of the belt conveyor 9, and the belt conveyor 9 transfers the finished pressure relief ring 10 to the next process.

[0033] In this embodiment, the belt conveyor 9 is a chain conveyor, and the telescopic component 81 is a cylinder.

[0034] It is understandable that within a lower mold base 12, several pressure relief rings 10 are integrally formed, and the several pressure relief rings 10 are connected by flow channels. A groove for the flow channels to enter is provided on the functional plate 6.

[0035] Those skilled in the art will understand that although preferred embodiments of the present invention have been described, those skilled in the art, once they learn the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention. Clearly, those skilled in the art can make various alterations and modifications to the present invention without departing from its spirit and scope. Thus, if these modifications and modifications of the present invention fall within the scope of the machine equivalents of the claims of the present invention, the present invention also intends to include these modifications and modifications.

Claims

1. A humidification chamber pressure relief ring mould, characterised in that, The utility model relates to a kind of six-axis industrial robot and its installation structure, including: Mold body, install on injection molding machine, for the pressure relief ring (10) injection molding; Six-axis industrial robot (2), is arranged in one side of mold body; Mounting seat (3), is carried on six-axis industrial robot (2); Mounting plate (4), is arranged in mounting seat (3); Several material taking pins (5), one end is arranged in mounting plate (4), the other end is used to insert the inner hole of pressure relief ring (10); Function plate (6), slidably arranged in mounting plate (4), between pressure relief ring (10) and mounting plate (4), it can slide along the axial direction of material taking pin (5), to push pressure relief ring (10) in this way; Elastic component (7), provide the movement tendency of function plate (6) to pressure relief ring (10) movement; Limiting assembly, for limiting function plate (6) to pressure relief ring (10) movement.

2. The humidification chamber pressure equalizing ring mold of claim 1, wherein, Further including: Limiting block (61); Slide bar (62), parallel to material taking pin (5), slidably arranged in mounting plate, one end of slide bar (62) is connected limiting hole, the other end of slide bar (62) is connected function plate (6); Wherein, limiting block (61) and function plate (6) are respectively in both sides of mounting plate (4), elastic component (7) is sleeved on slide bar (62), and elastic component (7) is between mounting plate (4) and function plate (6).

3. The humidification chamber pressure equalizing ring mold of claim 2, wherein, Limiting assembly includes: Telescopic component (81) and sliding block (82), sliding block (82) is slidably arranged in mounting plate (4), the main body of telescopic component (81) is arranged in mounting plate (4), the piston rod of telescopic component (81) is connected sliding block (82), and the piston rod of telescopic component (81) telescopic movement can drive sliding block (82) to approach / away from slide bar (62), to reach / exit limiting block (61) and mounting plate (4) between sliding block (82).

4. The humidification chamber pressure equalizing ring mold of claim 3, wherein, Groove is set on sliding block (82) for slide bar (62) to enter.

5. The humidification chamber pressure equalizing ring mold of claim 1, wherein, Further including: Several taper holes (63), are set in the side of function plate (6) close to pressure relief ring (10), for positioning pressure relief ring (10);The one end of material taking pin (5) can pass through function plate (6) and enter taper hole (63) in.

6. The humidification chamber pressure equalizing ring mold of claim 1, wherein, Further including: Belt conveyor (9), is arranged in one side of industrial six-axis robot, for receiving pressure relief ring (10).