Glove impregnation pool with small bubble amount

By designing a glove impregnation tank with a small amount of air bubbles, and using a stirring and foaming mechanism and a separator to control the flowability and amount of air bubbles in the adhesive, the problem of air bubbles caused by the high flowability of the adhesive in the prior art has been solved, thereby improving the breathability and abrasion resistance of the gloves.

CN224130286UActive Publication Date: 2026-04-17SHANDONG JINGYUANJI LABOR PROTECTION PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG JINGYUANJI LABOR PROTECTION PROD CO LTD
Filing Date
2025-04-30
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing mixing equipment results in high fluidity of the adhesive solution, a large number of air bubbles that easily aggregate into large bubbles, affecting the breathability and abrasion resistance of the gloves.

Method used

Design a glove dipping tank with low bubble volume. The tank body is convex in shape, with a stirring and foaming mechanism, a partition plate and a foam liquid level adjustment component. The stirring and foaming mechanism pushes the glue liquid into the flow channel. The partition plate separates the glue liquid at the surface and bottom. The flow port area and liquid level are adjusted to control the flow of the glue liquid and the amount of bubbles.

Benefits of technology

It effectively reduces the number and volume of air bubbles on the adhesive surface, improves the breathability and abrasion resistance of gloves, and extends the service life of gloves.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224130286U_ABST
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Abstract

The utility model provides a glove gum dipping pool with small bubble quantity, which comprises a gum dipping pool body, a stirring and foaming mechanism, a partition plate and a foam liquid level adjusting component, the gum dipping pool body is in a convex shape, the stirring and foaming mechanism is arranged at the narrow body part of the gum dipping pool body, the partition plate is arranged at the lower side in the wide body part of the gum dipping pool body, and the foam liquid level adjusting component is arranged in the foam liquid level adjusting component. A glue solution circulation channel is formed between the partition plate and the bottom of the glue dipping pool body, the stirring and foaming mechanism can continuously push glue solution into the glue solution circulation channel, at least two circulation openings are formed in the partition plate, and an adjusting cover plate used for adjusting the circulation area of the circulation openings is arranged on one side of each circulation opening. The foam liquid level adjusting assembly can achieve up-down telescopic adjustment in the vertical direction. The liquid level fluidity of the glue solution in the glue dipping pool is small, and the number and the volume of bubbles in the liquid level are reduced, so that the wear resistance of the gloves can be ensured under the condition that the air permeability of the dipped gloves is realized.
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Description

Technical Field

[0001] This utility model relates to the field of dipped glove production technology, specifically a glove dipping tank with a small amount of air bubbles. Background Technology

[0002] In the production process of dipped gloves, in order to improve the breathability of the gloves and thus improve their comfort, the adhesive solution is generally foamed. The presence of a certain amount of air bubbles in the adhesive solution enables the breathability function, thereby improving the comfort of the dipped gloves.

[0003] Currently, in adhesive foaming processes, a certain amount of foaming agent is generally added to the adhesive solution, and a stirring device is used to agitate and foam the solution. Existing stirring equipment is located on one side of the adhesive tank, and the flowing adhesive solution repeatedly tumbles and flows from top to bottom along the side wall opposite the stirring equipment. This results in some areas of the adhesive solution having high fluidity, leading to a large number of bubbles, which tend to aggregate and form large bubbles. After the gloves are impregnated with the adhesive, while the presence of many large bubbles in the solution ensures breathability, it also reduces the abrasion resistance of the adhesive solution, thereby shortening the service life of the impregnated gloves. Utility Model Content

[0004] The purpose of this invention is to provide a glove dipping tank with a small amount of air bubbles. The liquid in the dipping tank has low surface fluidity, which helps to reduce the number and volume of air bubbles on the surface. Therefore, while achieving the breathability of the dipped gloves, the wear resistance of the gloves can be guaranteed at the same time.

[0005] The technical solution adopted by this utility model to solve its technical problem is: a glove dipping tank with small bubble volume, including a dipping tank body, a stirring and foaming mechanism, a partition plate, and a foam liquid level adjustment component. The dipping tank body is convex in shape. The stirring and foaming mechanism is located in the narrow part of the dipping tank body and is used to stir the glue liquid in the dipping tank body. The partition plate is located on the lower inner side of the wide part of the dipping tank body, forming a glue liquid flow channel between the partition plate and the bottom of the dipping tank body. The stirring and foaming mechanism can continuously push the glue liquid into the glue liquid flow channel. At least two flow ports are provided on the partition plate. An adjustment cover plate is provided on one side of the flow port to adjust the flow area of ​​the flow port. The foam liquid level adjustment component can realize vertical extension and retraction adjustment.

[0006] Preferably, the stirring and foaming mechanism includes a drive motor, a drive shaft, and a stirring head. The drive motor is inverted and fixedly disposed on the upper part of the narrow body portion. The drive shaft is located inside the narrow body portion and its upper part is connected to the output shaft of the drive motor. The stirring head is fixedly disposed on the lower part of the drive shaft.

[0007] Furthermore, the stirring head includes an upper connecting ring and a lower connecting ring, both of which are fixedly connected to the drive shaft. Two rings of stirring rods are arranged between the upper and lower connecting rings, and each group of stirring rods includes several stirring rods. The gap between one stirring rod in one group of stirring rods is opposite to the gap between two stirring rods in another group of stirring rods.

[0008] Furthermore, two elongated holes are provided on the adjusting cover plate, and two first pressing bolts that can be adjusted up and down are provided on one side of the flow port. The first pressing bolts are fitted into the corresponding elongated holes, and the adjusting cover plate can be pressed and fixed by rotating the first pressing bolts.

[0009] Furthermore, the foam liquid level adjustment assembly includes a fixed plate and an adjusting baffle. The fixed plate is vertically fixed at the intersection of the narrow body and the wide body, and the bottom of the fixed plate is attached to the upper part of the partition plate. The adjusting baffle is disposed on the fixed plate and can be adjusted up and down and positioned relative to the fixed plate.

[0010] The beneficial effects of this utility model are as follows: This utility model has a simple structure and is convenient to process and manufacture; the partition plate effectively isolates the bottom and surface of the adhesive liquid inside the dipping tank, while the adhesive liquid in the flow channel flows upward from the bottom of the dipping tank through multiple flow ports, which greatly reduces the fluidity of the adhesive surface, thereby reducing the number of air bubbles in the adhesive surface and effectively preventing large air bubbles. This ensures the wear resistance of the gloves after dipping and extends their service life. By moving and adjusting the position of the cover plate, the actual flow area of ​​the flow port can be adjusted. In practical applications, the flow area of ​​the flow port can be determined based on experience to adjust the fluidity of the adhesive liquid in the tank. The adjusting baffle plate allows for adjustment of the adhesive liquid level. By reasonably controlling the distance between the adhesive surface and the partition plate, the fluidity of the liquid surface can be effectively controlled, thereby facilitating the control of the number of air bubbles in the adhesive surface. Attached Figure Description

[0011] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some preferred embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0013] Figure 2 This is a schematic diagram of the stirring head.

[0014] Figure 3 This is a schematic diagram of the internal structure of the impregnation tank.

[0015] Figure 4 for Figure 2 Enlarged view of point A in the middle;

[0016] Figure 5 for Figure 3 Enlarged view at point B in the middle;

[0017] In the figure: 1. Impregnation tank body, 11. Narrow body, 111. Support plate, 12. Wide body, 2. Stirring and foaming mechanism, 21. Drive motor, 22. Drive shaft, 23. Stirring head, 231. Upper connecting ring, 232. Lower connecting ring, 233. Stirring rod, 3. Divider plate, 31. Flow port, 32. Adjusting cover plate, 321. First elongated hole, 33. First top pressure bolt, 4. Foam liquid level adjustment assembly, 41. Fixing plate, 42. Adjusting baffle, 421. Second elongated hole, 43. Bolt and nut assembly, 101. Adhesive liquid flow channel. Detailed Implementation

[0018] The following will describe specific embodiments and appendices. Figure 1-5 The technical solutions in the embodiments of this utility model are clearly and completely described below. Obviously, the described embodiments are only some preferred embodiments of this utility model, and not all embodiments. Those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.

[0019] This invention provides a glove impregnation tank with low bubble volume (such as...). Figure 1As shown, the device includes a dipping tank body 1, a stirring and foaming mechanism 2, a partition plate 3, and a foam liquid level adjustment component 4. In practical applications, the dipping tank body 1 is mainly used to hold the adhesive liquid. During the dipping operation, the glove is inserted into the adhesive liquid by the hand to complete the dipping process. The dipping tank body 1 is convex in shape and hollow inside. The stirring and foaming mechanism 2 is located at the narrow part 11 of the dipping tank body 1. The stirring and foaming mechanism 2 is used to stir the adhesive liquid in the dipping tank body 1. A certain amount of foaming agent is added to the adhesive liquid. Under the stirring of the stirring and foaming mechanism 2, the adhesive liquid can achieve uniform flow and facilitate uniform foaming. The partition plate 3 is located on the lower inside of the wide part 12 of the dipping tank body 1. The partition plate 3 and the dipping tank body 1 are connected. A liquid flow channel 101 is formed between the bottom and the bottom of the container. The stirring and foaming mechanism 2 can continuously push the liquid into the liquid flow channel 101. At least two flow ports 31 are provided on the partition plate 3. In actual application, the liquid in the liquid flow channel 101 flows into the upper part of the partition plate 3 through the flow ports 31, which facilitates the subsequent dipping operation. At the same time, the partition plate 3 can isolate the liquid at the bottom and the liquid at the top of the dipping tank body 1, which can greatly reduce the fluidity of the liquid at the top and thus help reduce the amount of air bubbles in the upper part of the liquid, especially on the surface of the liquid. An adjustment cover plate 32 is provided on one side of the flow port 31 to adjust the flow area of ​​the flow port 31. The foam liquid level adjustment component 4 can realize vertical extension and retraction adjustment. The foam liquid level adjustment component 4 is mainly used to adjust the liquid level of the colloid inside the immersion tank body 1. When the liquid level of the colloid is high, the distance between the liquid level and the partition plate 3 is far, which helps to reduce the fluidity of the colloid liquid and thus helps to achieve the content of air bubbles in the colloid liquid.

[0020] Based on the above embodiments, the specific implementation of the stirring and foaming mechanism 2 is as follows: The stirring and foaming mechanism 2 includes a drive motor 21, a drive shaft 22, and a stirring head 23. The drive motor 21 is inverted and fixedly disposed on the upper part of the narrow body portion 11. Specifically, a support plate 111 is fixedly disposed on the upper part of the narrow body portion 11, and the drive motor 21 is inverted and fixedly disposed on the support plate 111. The drive shaft 22 is located inside the narrow body portion 11, and the upper part of the drive shaft 22 is connected to the output shaft of the drive motor 21. The stirring head 23 is fixedly disposed on the lower part of the drive shaft 22. After the drive motor 21 is started, the stirring head 23 is driven to rotate by the rotation of the drive shaft 22. During the rotation, the stirring head 23 realizes the cyclic stirring of the adhesive liquid. Further, the specific implementation of the stirring head 23 is as follows: The stirring head 23 includes an upper connecting ring 231 and a lower connecting ring 232. Both the upper connecting ring 231 and the lower connecting ring 232 are fixedly connected to the drive shaft 22. Specifically, the upper connecting ring 231 and the lower connecting ring 232 are fixedly connected to the drive shaft 22 by welding through several connecting rods. Two rings of stirring rods are arranged between the upper connecting ring 231 and the lower connecting ring 232. Each ring of stirring rods includes several stirring rods 233. The gap between one stirring rod 233 in one ring of stirring rods is opposite to the gap between two stirring rods 233 in another ring of stirring rods. The inner and outer adjacent stirring rods 233 in the two rings of stirring rods are staggered. During the rotation of the stirring head 233, it is beneficial to achieve full agitation of the adhesive, thereby facilitating the circulation of the adhesive and ensuring the uniformity of air bubbles.

[0021] Based on the above embodiments, the specific implementation of the adjustment cover plate 32 at the corresponding flow port 31 is as follows: Two first elongated holes 321 are provided on the adjustment cover plate 32, and two first pressing bolts 33 that can be adjusted up and down are provided on one side of the flow port 31. Specifically, two through holes are provided on one side of the flow port 31, and a nut is fixedly installed at the lower part of each through hole. The first pressing bolt 33 passes through the corresponding through hole and is fitted into the corresponding nut. By rotating the first pressing bolt 33, the height of the nut of the first pressing bolt 33 can be adjusted. Further, the first pressing bolt 33 is fitted into the corresponding first elongated hole 321, and by rotating the first pressing bolt 33, the adjustment cover plate 32 can be pressed and fixed. By moving the position of the adjustment cover plate 32, the size of its coverage of the flow port 31 can be adjusted, thereby adjusting the actual flow area of ​​the flow port 31. In this specific embodiment, the number of flow ports 31 is set to three.

[0022] Based on the above embodiments, the specific implementation of the foam liquid level adjustment component is as follows: The foam liquid level adjustment component includes a fixed plate 41 and an adjusting baffle 42. The fixed plate 41 is vertically fixed at the intersection of the narrow body portion 11 and the wide body portion 12, and the bottom of the fixed plate 41 is attached to the upper part of the partition plate 3. The adjusting baffle 42 is disposed on the fixed plate 41, and the adjusting baffle 42 can be adjusted up and down and positioned relative to the fixed plate 41. Specifically, four sets of bolt and nut assemblies 43 are provided on the fixed plate 41, and the four sets of bolt and nut assemblies 43 are separated in pairs. The two bolt and nut assemblies 43 in one set are distributed vertically. Two second elongated holes 421 corresponding to the bolts in the bolt and nut assemblies 43 are provided on the adjusting baffle 42. The bolts are fitted into the corresponding second elongated holes 421. The adjusting baffle 42 is fixed by rotating the nuts in the bolt and nut assemblies 43. In practical applications, by adjusting the height of the baffle 42, the height of the adhesive liquid level (i.e., the overflow surface) can be adjusted. At the same time, the adhesive liquid can also flow to the narrow body 11 through the second elongated hole 421, which helps to reduce the flow of the adhesive liquid level inside the wide body 12, thereby helping to reduce the amount of air bubbles on the adhesive liquid level inside the wide body 12.

[0023] In this utility model, "upper", "lower", "front", "back", "left", and "right" are all relative positions used to facilitate the description of positional relationships, and therefore cannot be understood as absolute positions to limit the scope of protection.

[0024] Except for the technical features described in the specification, all other technologies are known to those skilled in the art.

[0025] The preferred embodiments and examples of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments and examples. For those skilled in the art, several improvements and modifications can be made without departing from the concept of the present invention, and these improvements and modifications should also be considered within the protection scope of the present invention.

Claims

1. A dip tank for gloves with a small amount of air bubbles, characterized in that, The device includes a dipping tank body, a stirring and foaming mechanism, a partition plate, and a foam liquid level adjustment component. The dipping tank body is convex in shape. The stirring and foaming mechanism is located in the narrow part of the dipping tank body and is used to stir the adhesive liquid inside the dipping tank body. The partition plate is located on the lower inner side of the wide part of the dipping tank body, forming an adhesive liquid flow channel between the partition plate and the bottom of the dipping tank body. The stirring and foaming mechanism can continuously push the adhesive liquid into the adhesive liquid flow channel. At least two flow ports are provided on the partition plate, and an adjustment cover plate is provided on one side of each flow port to adjust the flow area of ​​the flow port. The foam liquid level adjustment component can be adjusted vertically.

2. A bubble minimization glove dip tank according to claim 1, wherein, The stirring and foaming mechanism includes a drive motor, a drive shaft, and a stirring head. The drive motor is inverted and fixedly disposed on the upper part of the narrow body. The drive shaft is located inside the narrow body and its upper part is connected to the output shaft of the drive motor. The stirring head is fixedly disposed on the lower part of the drive shaft.

3. A bubble minimised dip tank according to claim 2, wherein, The stirring head includes an upper connecting ring and a lower connecting ring, both of which are fixedly connected to the drive shaft. Two rings of stirring rods are arranged between the upper and lower connecting rings. Each group of stirring rods includes several stirring rods, and the gap between one stirring rod in one group of stirring rods is opposite to the gap between two stirring rods in another group of stirring rods.

4. The bubble-less glove dip tank of claim 1, wherein, The adjusting cover plate is provided with two first elongated holes, and two first pressing bolts that can be adjusted up and down are provided on one side of the flow port. The first pressing bolts are fitted into the corresponding first elongated holes, and the adjusting cover plate can be pressed and fixed by rotating the first pressing bolts.

5. The glove dipping tank with low bubble volume according to claim 1, characterized in that, The foam liquid level adjustment assembly includes a fixed plate and an adjusting baffle. The fixed plate is vertically fixed at the intersection of the narrow body and the wide body, and the bottom of the fixed plate is attached to the upper part of the partition plate. The adjusting baffle is disposed on the fixed plate and can be adjusted up and down and positioned relative to the fixed plate.