Ultraviolet curing adhesive filtering and impurity removing device

By introducing a pressurizing chamber and a spiral propeller structure into the UV-curable adhesive filtration and impurity removal device, the problem of low filtration and impurity removal efficiency of high-viscosity adhesives has been solved, achieving high-efficiency filtration and impurity removal and improving production line efficiency.

CN224126717UActive Publication Date: 2026-04-17SHANDONG LINGKE NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG LINGKE NEW MATERIAL TECH CO LTD
Filing Date
2025-04-30
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing UV-curable adhesive filtration and impurity removal devices are inefficient when handling high-viscosity adhesives, resulting in a decrease in the overall efficiency of the production line.

Method used

It adopts a structure of pressure chamber, pressure plate and spiral propeller. The pressure chamber is continuously pressurized by the coordinated movement of pressure plate and electric push rod. Combined with the spiral propeller, the adhesive is fed in faster and the flow rate is increased.

Benefits of technology

It significantly improves the filtration and impurity removal efficiency of UV-curable adhesives, shortens processing time, and enhances the overall efficiency of the production line.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ultraviolet curing adhesive filtering and impurity removing device which comprises a device shell, a hand crank and a soil sample box, a group of feeding hoppers are arranged at the top of the device shell, a group of grinding cavities are arranged in the device shell, and the lower part of the front surface of the device shell is sunken backwards to form a group of material taking windows. Compared with the prior art, the soil raw material crushing and grinding device has the following beneficial effects that the hand crank, the driving grinding roller and the fixed grinding roller are arranged, the hand crank is manually shaken clockwise to drive the driving shaft to rotate so as to drive the driving grinding roller to rotate, then soil raw materials are crushed and ground, and then large-particle soil raw materials are ground into fine powder; by arranging the soil sample box and the storage cavity, multiple groups of soil samples can be conveniently collected at a time, the accuracy of soil sample analysis is improved, and meanwhile, the working efficiency can be improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of soil filtration and impurity removal equipment, and specifically relates to a UV-curable adhesive filtration and impurity removal device. Background Technology

[0002] A UV-curable adhesive filtration and impurity removal device is an industrial equipment specifically designed for purifying UV-curable adhesives (UV glue). Its core function is to remove impurities from the adhesive through the synergistic effect of physical filtration and ultraviolet light, ensuring the material's stable performance in subsequent use. This type of device typically consists of a filtration system, a UV curing module, an impurity separation unit, and a control system. During the filtration and impurity removal process, the high viscosity of the adhesive itself results in poor flowability, requiring a longer time to ensure effective separation and removal of impurities. Furthermore, when processing high-viscosity adhesives, the limited flow rate means even small volumes require a longer filtration time, increasing the time spent on the impurity removal process and impacting the overall efficiency of the production line. Therefore, a new structure is proposed to address these issues. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a UV-curable adhesive filtration and impurity removal device to solve the problems mentioned in the background technology.

[0004] This utility model is achieved through the following technical solution: a UV curing adhesive filtration and impurity removal device, comprising: a pressure plate and a spiral push rod, wherein the spiral push rod is installed inside the feed pipe at the top of the filtration and impurity removal box, and a pressure chamber is respectively opened on the left and right sides inside the filtration and impurity removal box;

[0005] The pressurization chamber is equipped with a pressurization plate for pressurizing the filter and impurity removal box. The side of the pressurization chamber near the filter and impurity removal box has several sets of air outlets, and the side of the pressurization plate away from the air outlets has two sets of push-pull rods.

[0006] In a preferred embodiment, a V-shaped impurity removal plate is installed inside the filtration and impurity removal box. Several sets of filter grooves are formed on the upper surface of the impurity removal plate, and filter screens are installed at the bottom of the filter grooves.

[0007] In a preferred embodiment, a bracket is installed on the top of the filter and impurity removal box, and a feed pipe is vertically installed on the top of the bracket, with the bottom of the feed pipe communicating with the top of the filter and impurity removal box.

[0008] A drive motor is installed on the right side of the feed pipe. The output end of the drive motor on the left side is connected to a spiral propulsion rod installed inside the feed pipe via a coupling. A discharge pipe is installed at the bottom of the filter and impurity removal box, and a control valve is installed on the outside of the discharge pipe.

[0009] In a preferred embodiment, the width and depth of the pressurizing chamber are matched with the width and height of the pressurizing plate. The pressurizing plate is parallel to the left and right inner walls of the pressurizing chamber. Two sets of one-way air inlets are provided through the top of the pressurizing chamber. When the two sets of pressurizing plates move towards each other, the one-way air inlets are closed, and the pressure inside the filtration and impurity removal box increases. When the two sets of pressurizing plates move away from each other, the one-way air inlets open and draw air into the pressurizing chamber to prepare for the next pressurization.

[0010] In a preferred embodiment, the air outlets are provided in several groups of the same specifications, and the several groups of air outlets are distributed in two rows on the side of the pressurization chamber near the impurity removal plate.

[0011] In a preferred embodiment, the horizontal height of the air outlet described in the lower row is greater than the horizontal height of the top of the impurity removal plate.

[0012] In a preferred embodiment, two support plates are installed on the left and right sides of the filter and impurity removal box, and an electric push rod is installed on the top of each set of support plates, with the output ends of the electric push rods on the left and right sides facing each other.

[0013] In a preferred embodiment, the output end of the electric push rod is connected to the portion of the push-pull rod located outside the pressurization chamber, and the four sets of electric push rods are a synchronous mechanism.

[0014] The beneficial effects of this utility model after adopting the above technical solution are as follows: 1. By setting up a pressurizing chamber, a pressurizing plate, and a push-pull rod, the pressurizing plate is located inside the pressurizing chamber, which is located on the left and right sides inside the filter and impurity removal box. Several sets of air outlets are opened on the side of the pressurizing chamber near the center line of the filter and impurity removal box. An impurity removal plate is installed inside the filter and impurity removal box, and a bracket is installed on the top of the filter and impurity removal box. One-way air inlets are opened on the top of the filter and impurity removal box on both sides of the bracket. A feed pipe is vertically installed on the top of the bracket. In actual use, the ultraviolet curing adhesive is passed through... The feed pipe descends into the filtration and impurity removal chamber. At this time, four sets of electric push rods are activated, which push the two sets of pressure plates on the left and right sides to move towards each other in their respective pressure chambers via four sets of push-pull rods. This pressurizes the inside of the filtration and impurity removal chamber. Then, the two sets of pressure plates move away from each other, and air is drawn into the pressure chamber through the one-way air inlet. The two sets of pressure plates then move towards each other again, and so on. This cycle continuously pressurizes the inside of the filtration and impurity removal chamber, thereby accelerating the speed at which the UV-cured adhesive passes through the impurity removal plates and significantly improving the filtration efficiency.

[0015] 2. By setting up a spiral propeller, which is located inside the feed pipe, and a drive motor is installed on the top of the bracket on the right side of the feed pipe, the drive motor drives the spiral propeller to rotate inside the feed pipe. In actual use, when the UV-curable adhesive enters the feed pipe, its feeding speed would obviously be very slow if it relied on its own gravity. At this time, the drive motor is started to drive the spiral propeller to rotate. Under the push of the rotation of the spiral propeller, the UV-curable adhesive moves quickly downward along the spiral groove on the surface of the spiral propeller and finally falls onto the surface of the impurity removal plate inside the filter and impurity removal box for filtration and impurity removal. Therefore, the final effect is that by setting up a spiral propeller, the feeding speed of the UV-curable adhesive can be effectively increased, thereby helping to improve the efficiency of filtration and impurity removal. Attached Figure Description

[0016] 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 only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of a UV-curable adhesive filtration and impurity removal device according to the present invention.

[0018] Figure 2 This is a schematic diagram of the spiral propulsion rod in a UV-curable adhesive filtration and impurity removal device according to this utility model.

[0019] Figure 3 This is a schematic diagram of the internal structure of the filtration and impurity removal box in a UV-curable adhesive filtration and impurity removal device of this utility model.

[0020] Figure 4 This is a schematic diagram of the pressure plate in a UV-curable adhesive filtration and impurity removal device according to this utility model.

[0021] In the diagram, 100-filtration and impurity removal box, 101-one-way air inlet, 110-support, 120-feed pipe, 121-screw propeller, 130-drive motor, 140-electric push rod, 150-impurity removal plate;

[0022] 200-Pressure chamber, 201-Air outlet, 210-Pressure plate, 211-Push-pull rod. Detailed Implementation

[0023] 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.

[0024] Please see Figures 1-4 As the first embodiment of this utility model: a UV curable adhesive filtration and impurity removal device, comprising: a pressure plate 210 and a spiral push rod 121, the spiral push rod 121 being installed inside the feed pipe 120 at the top of the filtration and impurity removal box 100, and a pressure chamber 200 being opened on the left and right sides of the filtration and impurity removal box 100 respectively.

[0025] The pressurizing chamber 200 is equipped with a pressurizing plate 210 for pressurizing the filter and impurity removal box 100. The side of the pressurizing chamber 200 near the filter and impurity removal box 100 has several sets of air outlets 201. The side of the pressurizing plate 210 away from the air outlets 201 is equipped with two sets of push-pull rods 211.

[0026] The filter box 100 has a V-shaped filter plate 150 installed inside. The upper surface of the filter plate 150 has several sets of filter grooves, and the bottom of the filter grooves is equipped with filter screens.

[0027] The width and depth of the booster chamber 200 are matched with the width and height of the booster plate 210. The booster plate 210 is parallel to the left and right inner walls of the booster chamber 200. Two sets of one-way air inlets 101 are provided through the top of the booster chamber 200. When the two sets of booster plates 210 move towards each other, the one-way air inlets 101 are closed, and the pressure inside the filter and impurity removal box 100 increases. When the two sets of booster plates 210 move away from each other, the one-way air inlets 101 open and draw air into the booster chamber 200 to prepare for the next boost.

[0028] The air outlet 201 has several sets of the same specifications, and the several sets of air outlets 201 are distributed in two rows on the side of the pressurization chamber 200 near the impurity removal plate 150.

[0029] The horizontal height of the lower row of air outlets 201 is greater than the horizontal height of the top of the impurity removal plate 150.

[0030] Two support plates are installed on the left and right sides of the filter and impurity removal box 100. Each set of support plates has an electric push rod 140 installed on the top. The output ends of the electric push rods 140 on the left and right sides are opposite each other.

[0031] The output end of the electric push rod 140 is connected to the part of the push-pull rod 211 located outside the pressure chamber 200, and its four sets of electric push rods 140 are a synchronous mechanism.

[0032] In actual use, the UV-curable adhesive enters the filter and impurity removal box 100 through the feed pipe 120 and falls onto the surface of the impurity removal plate 150. At this time, the UV-curable adhesive can also perform filtration and impurity removal by its own gravity. That is, the UV-curable adhesive slowly passes through the surface of the filter screen installed at the bottom of the filter tank by its own gravity, and thus the UV-curable adhesive can be filtered and impurities removed. However, this process is relatively slow. At this time, four sets of electric push rods 140 can be activated at the same time. The output ends of the two sets of electric push rods 140 on the left and the two sets of electric push rods 140 on the right are opposite. The two sets of electric push rods 140 on the left are connected to the two sets of push-pull rods 211 installed on the left side of the left pressure plate 210, and the two sets of electric push rods 140 on the right are connected to the two sets of push-pull rods 211 installed on the right side of the right pressure plate 210 (the electric push rods 140 are existing technology, and their models can be selected according to the models available on the market, which will not be described in detail).

[0033] When the four sets of electric push rods 140 extend simultaneously, the two sets of pressure plates 210 move towards each other, the one-way air inlet 101 closes, and the air inside the pressure chamber 200 is forced into the filter and impurity removal box 100 through several sets of air outlets 201. This increases the pressure inside the filter and impurity removal box 100, which in turn accelerates the speed at which the UV-curable adhesive passes through the impurity removal plate 150, thereby increasing the filtration and impurity removal efficiency. When the four sets of electric push rods 140 retract, the two sets of pressure plates 210 move in opposite directions, and the one-way air inlet 101 opens, allowing external air to enter the pressure chamber 200 through the one-way air inlet 101. Then, the four sets of electric push rods 140 continue to extend, forcing the air inside the pressure chamber 200 into the filter and impurity removal box 100 through the pressure plates 210. This cycle continues, continuously pressurizing the filter and impurity removal box 100. Therefore, the final effect is to significantly improve the filtration and impurity removal efficiency of the UV-curable adhesive.

[0034] Please see Figures 1-4 As a second embodiment of the present utility model: based on the description in the above embodiments, further, a bracket 110 is installed on the top of the filter and impurity removal box 100, and a feed pipe 120 is vertically installed on the top of the bracket 110, with the bottom of the feed pipe 120 communicating with the top of the filter and impurity removal box 100.

[0035] A drive motor 130 is installed on the right side of the feed pipe 120. The output end of the drive motor 130 on the left side is connected to the spiral propulsion rod 121 installed inside the feed pipe 120 via a coupling. A discharge pipe is installed at the bottom of the filter and impurity removal box 100, and a control valve is installed on the outside of the discharge pipe.

[0036] In actual use, the UV-curable adhesive enters the feed pipe 120. At this time, relying on its own gravity, the UV-curable adhesive can also enter the filter and impurity removal box 100 along the feed pipe 120. However, this process is relatively slow. At this time, the drive motor 130 can be started (the drive motor 130 is a geared motor, and its model can be selected according to the models available on the market, which will not be described in detail). Under the action of the drive motor 130, the spiral propeller 121 rotates inside the feed pipe 120. The UV-curable adhesive moves quickly downward under the rotation of the spiral propeller 121 and falls onto the upper surface of the impurity removal plate 150. Therefore, the feeding speed of the UV-curable adhesive can be greatly increased, which in turn helps to improve the filtration and impurity removal efficiency of the UV-curable adhesive.

[0037] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An ultraviolet light curable adhesive filtration and impurity removal apparatus comprising: The pressure plate (210) and the spiral propeller (121) are characterized in that: the spiral propeller (121) is installed inside the feed pipe (120) at the top of the filter and impurity removal box (100), and a pressure chamber (200) is opened on the left and right sides of the filter and impurity removal box (100). The pressurizing chamber (200) is provided with a pressurizing plate (210) for pressurizing the filter and impurity removal box (100). The pressurizing chamber (200) has several sets of air outlets (201) on the side close to the filter and impurity removal box (100). The pressurizing plate (210) is equipped with two sets of push-pull rods (211) on the side away from the air outlets (201).

2. The device for filtering and removing impurities from the ultraviolet light curing adhesive according to claim 1, characterized in that: The filter and impurity removal box (100) is equipped with a V-shaped impurity removal plate (150). Several sets of filter grooves are opened on the upper surface of the impurity removal plate (150), and filter screens are installed at the bottom of the filter grooves.

3. The device for filtering and removing impurities from the ultraviolet light curing adhesive according to claim 2, characterized in that: A bracket (110) is installed on the top of the filter and impurity removal box (100), and a feed pipe (120) is vertically installed on the top of the bracket (110). The bottom of the feed pipe (120) is connected to the top of the filter and impurity removal box (100). A drive motor (130) is installed on the right side of the feed pipe (120), and the output end of the drive motor (130) on the left side is connected to the spiral propulsion rod (121) installed inside the feed pipe (120) via a coupling.

4. The device for filtering and removing impurities from the ultraviolet light curing adhesive according to claim 1, characterized in that: The width and depth of the booster chamber (200) are matched with the width and height of the booster plate (210). The booster plate (210) is parallel to the left and right inner walls of the booster chamber (200). The top of the booster chamber (200) is provided with two sets of one-way air inlets (101).

5. The ultraviolet light curing adhesive filtration and impurity removal device as described in claim 1, characterized in that: The air outlet (201) has several sets of the same specifications, and the several sets of air outlets (201) are distributed in two rows on the side of the pressurization chamber (200) near the impurity removal plate (150).

6. The device for filtering and removing impurities from the ultraviolet light curing adhesive according to claim 5, characterized in that: The horizontal height of the air outlet (201) described in the lower row is greater than the horizontal height of the top of the impurity removal plate (150).

7. The device according to claim 3, wherein the device is characterized by: Two support plates are installed on the left and right sides of the filter and impurity removal box (100). Each set of support plates has an electric push rod (140) installed on the top. The output ends of the electric push rods (140) on the left and right sides are opposite each other.

8. The device according to claim 7, wherein the device is an ultraviolet light-cured adhesive filtering and impurity-removing device. The output end of the electric push rod (140) is connected to the part of the push-pull rod (211) located outside the pressure chamber (200), and the four sets of electric push rods (140) are a synchronous mechanism.