Intelligent sewage filtering mechanism of multi-groove type ultrasonic cleaning machine

Through the four-group slot through-connection design and the intelligent control of the electromagnetic control valve, the problem of cleaning fluid waste in the multi-slot ultrasonic cleaning machine is solved, and the intelligent management of the cleaning fluid and the efficient use of resources are realized.

CN223367704UActive Publication Date: 2025-09-23HENAN XINYANG CONSTRUCTION CO LTD
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Patent Information

Application Number
CN202421898424.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-09-23
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

Existing multi-tank ultrasonic cleaning machines have problems with waste and inefficient water supply and drainage during the cleaning liquid filtration process. In particular, when some sub-tanks are not in use, the cleaning liquid is discharged along with the sewage, resulting in a waste of resources.

Method used

It adopts a through-connection design of four groups of tanks, and controls the connection of each group of tanks through electromagnetic control valves. Combined with an intelligent control panel, it realizes the selective delivery of cleaning fluid and centralized filtration of sewage, reducing the waste of cleaning fluid.

Benefits of technology

It realizes intelligent control of cleaning fluid, reduces waste of cleaning fluid, improves resource utilization efficiency, and adapts flexibly to different cleaning needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of ultrasonic cleaning machines, in particular to an intelligent sewage filtering mechanism of a multi-groove type ultrasonic cleaning machine, which comprises a filtering mechanism arranged in the ultrasonic cleaning machine and used for filtering sewage in different grooves. The first partition groove, the second partition groove, the third partition groove and the fourth partition groove can be communicated through the first connecting bent pipe and the second connecting bent pipe, circulation and closing of the interiors of the partition grooves can be controlled through the electromagnetic control valves, and therefore conveyed liquid enters the specific branch grooves which need to work can be selected through the intelligent control panel; the condition that all the component tanks work at the same time is avoided, and when sewage is discharged, all the component tanks can be communicated through the electromagnetic control valves according to the use conditions of the component tanks, so that the sewage can be intensively discharged and is filtered through the filter box, and in this way, in the sewage filtering process, all the component tanks can be recycled. The waste of the cleaning liquid is reduced; and the equipment can be subjected to intelligent adaptive control according to the condition required by cleaning.
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Description

Technical Field

[0001] The utility model relates to the field of ultrasonic cleaning machines, and in particular to an intelligent sewage filtering mechanism of a multi-tank ultrasonic cleaning machine. Background Art

[0002] Ultrasonic cleaning machine is a kind of equipment that uses the physical properties of ultrasound for cleaning. Its working principle is mainly to use the high-frequency vibration of ultrasound to generate strong shock waves, which quickly burst the tiny bubbles in the cleaning liquid, thereby stripping off dirt, grease, dust and other impurities on the surface of the object to achieve the purpose of cleaning. Due to different objects being cleaned.

[0003] The Chinese patent application with announcement number CN215089397U is a multi-tank ultrasonic cleaning machine with sewage filtering function, including an ultrasonic cleaning machine main body and a filter box. A control panel is installed on the front of the ultrasonic cleaning machine main body, and a cleaning tank and a drying tank are provided on the top of the ultrasonic cleaning machine main body. A water inlet pipe is installed on the left side of the ultrasonic cleaning machine main body, a water spray hole and an ultrasonic generator are provided inside the cleaning tank, an air blower is installed on the right side of the drying tank, a drying fan is installed on the right side of the ultrasonic cleaning machine main body, a liquid suction pump, a stirring assembly and an injection port are installed on the filter box, the liquid suction pump is connected to the ultrasonic cleaning machine main body through a connecting pipe, a filter assembly is provided in the filter box, and a drain pipe is installed on the right bottom of the filter box. The utility model can dry the workpiece, improve the cleaning efficiency, and filter the sewage at the same time, so that the sewage is not easy to block the pipeline and is not easy to pollute the environment.

[0004] In order to meet the needs of cleaning different types of items at the same time, existing ultrasonic cleaning equipment uses a divided-tank ultrasonic cleaning equipment for cleaning. Since there are a lot of impurities in the cleaning liquid after cleaning, direct discharge will have an impact on the environment, so it is generally discharged after filtering. However, during the filtration process, since the cleaning liquid in each component tank is generally discharged and discharged at the same time, when some sub-tanks are not being cleaned, the cleaning liquid in this sub-tank will also be discharged into the filtering equipment together with the sewage, resulting in a large amount of cleaning liquid waste. In addition, the existing ultrasonic cleaning equipment cannot selectively and automatically fill and drain the water of each component tank according to the number of sub-tanks required for cleaning.

[0005] Therefore, it is necessary to invent an intelligent sewage filtering mechanism of a multi-tank ultrasonic cleaning machine to solve the above problems. Summary of the Invention

[0006] The purpose of this utility model is to provide an intelligent sewage filtering mechanism of a multi-tank ultrasonic cleaning machine. Through the penetration of four groups of tanks and the control of the penetration of each group of tanks by an electromagnetic control valve, the cleaning liquid can be transported to the corresponding sub-tank according to the required number of sub-tanks before use by opening and closing the electromagnetic control valve, thereby reducing the waste of cleaning liquid. In addition, this method can be automatically adapted and controlled by an intelligent control panel to solve the problems of relatively wasteful cleaning liquid during filtration and insufficient intelligence of water supply and drainage in the prior art.

[0007] In order to achieve the above purpose, the present invention provides the following technical solutions: an intelligent sewage filtering mechanism of a multi-tank ultrasonic cleaning machine, comprising

[0008] The filtering mechanism is arranged in the ultrasonic cleaning machine and is used to filter the sewage in different tanks;

[0009] The body component is arranged in the ultrasonic cleaning machine and is used to control the ultrasonic cleaning machine to perform cleaning work.

[0010] As a preferred solution of the present invention, the filtering mechanism includes a delivery pump, and a pipeline on one side of the delivery pump is connected to the partition groove 1 and the partition groove 2, and the partition groove 1 and the partition groove 2 are opened in the ultrasonic cleaning machine.

[0011] As a preferred solution of the present invention, the bottoms of the partition grooves one and two are connected through a connecting elbow one, the bottom of the partition groove two is connected through a connecting elbow two, the connecting elbow two is connected through one side of the partition groove three, and the bottom of the partition groove three is also connected through a connecting elbow one, and the connecting elbow is connected through one side with the partition groove four, and the partition groove four and the bottom of the partition groove one are also connected through a group of connecting elbows one, and the partition grooves three and four are both opened in the ultrasonic cleaning machine.

[0012] As a preferred solution of the present invention, electromagnetic control valves are installed inside the two groups of connecting bend pipes 1 and 2, and the electromagnetic control valves are installed at the connection between the delivery pump and partition tank 1 and partition tank 2, as well as at the connection pipes between the output pump and partition tank 3 and partition tank 4. The pipes on one side of partition tank 3 and partition tank 4 are connected to the output pump, and the output pump is arranged on the outside of the ultrasonic cleaning machine, and the pipe on one side of the output pump is connected to the filter box.

[0013] As a preferred solution of the present invention, the body assembly includes an intelligent control panel, which is installed on the outside of the ultrasonic cleaning machine and is linearly connected to each group of electromagnetic control valves.

[0014] As a preferred solution of this utility model, ultrasonic cleaners are respectively installed in the partition groove one, partition groove two, partition groove three and partition groove four, and the ultrasonic cleaners are linearly connected to the intelligent control panel. Screen boxes are respectively installed in the partition groove one, partition groove two, partition groove three and partition groove four.

[0015] In the above technical solution, compared with the existing technology, the technical effects and advantages provided by this utility are as follows:

[0016] Through two sets of connecting elbows one and two, compartment one, compartment two, compartment three and compartment four can be connected, and each set of electromagnetic control valves can control the internal circulation and closure, so that the conveying liquid can enter the specific compartment that needs to work and can be selected through the intelligent control panel to avoid the situation where each group of compartments works at the same time. When the sewage is discharged, the various groups of compartments can be connected through the electromagnetic control valve according to the use of the compartment, so that the sewage can be discharged in a centralized manner and filtered through the filter box. In this way, the waste of cleaning fluid can be reduced during the sewage filtration process, and the equipment can be intelligently adapted and controlled according to the cleaning requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in this utility model. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the structure of the connecting elbow 1 and the connecting elbow 2 of this utility;

[0020] Figure 3 This is a schematic diagram of the layout structure of each group of partitions in this practical application;

[0021] Figure 4 This is a schematic diagram of the practical partial sliced ​​structure.

[0022] Description of reference numerals:

[0023] 001, filtering mechanism; 101, delivery pump; 102, partition 1; 103, partition 2; 104, partition 3; 105, partition 4; 106, connecting elbow 1; 107, connecting elbow 2; 108, electromagnetic control valve; 109, output pump; 110, filter box; 002, machine body assembly; 201, intelligent control panel; 202, ultrasonic cleaner; 203, sieve box. DETAILED DESCRIPTION

[0024] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.

[0025] This utility provides Figure 1-4 The intelligent sewage filtering mechanism of the multi-tank ultrasonic cleaning machine shown in the figure includes:

[0026] The filtering mechanism 001 is provided in the ultrasonic cleaning machine and is used to filter the sewage in different tanks;

[0027] The body component 002 is arranged in the ultrasonic cleaning machine and is used to control the ultrasonic cleaning machine to perform cleaning work.

[0028] Furthermore, in the above structure, the filtering mechanism 001 includes a delivery pump 101, and a pipeline on one side of the delivery pump 101 is connected to the partition 1 102 and the partition 2 103, and the partition 102 and the partition 2 103 are opened in the ultrasonic cleaning machine.

[0029] The cleaning liquid can be selectively delivered to the interior of the compartment 1 102 and the compartment 2 103 by the delivery pump 101 .

[0030] Furthermore, in the above structure, the bottoms of partition groove 102 and partition groove 2 103 are connected through connecting elbow pipe 106, the bottom of partition groove 2 103 is connected through connecting elbow pipe 2 107, the opposite side of connecting elbow pipe 2 107 is connected through partition groove 3 104, and the bottom of partition groove 3 104 is also connected through connecting elbow pipe 1 106, and the opposite side of connecting elbow pipe 106 is connected through partition groove 4 105, and partition groove 4 105 and the bottom of partition groove 1 102 are also connected through a group of connecting elbow pipe 106, and partition groove 3 104 and partition groove 4 105 are both opened in the ultrasonic cleaning machine.

[0031] Through two sets of connecting elbows 106 and connecting elbows 2 107, the interiors of compartment 1 102, compartment 2 103, compartment 3 104 and compartment 4 105 can be connected respectively, so that the cleaning liquids inside them can circulate with each other.

[0032] Furthermore, in the above structure, electromagnetic control valves 108 are installed inside the two sets of connecting bends 106 and connecting bends 2 107, and the electromagnetic control valves 108 are installed at the connection between the delivery pump 101 and partition 1 102 and partition 2 103, as well as at the connecting pipes between the output pump 109 and partition 3 104 and partition 4 105. The output pump 109 is connected to the pipe on one side of partition 3 104 and partition 4 105. The output pump 109 is arranged on the outside of the ultrasonic cleaning machine, and the filter box 110 is connected to the pipe on one side of the output pump 109.

[0033] The electromagnetic control valve 108 can cut off the connection between each group of connecting elbows 106 and connecting elbows 2 107, and the delivery pump 101 and the output pump 109 can perform independent delivery and output.

[0034] Furthermore, in the above structure, the body component 002 includes an intelligent control panel 201 , which is installed on the outside of the ultrasonic cleaning machine, and the intelligent control panel 201 is linearly connected to each group of electromagnetic control valves 108 .

[0035] Rongguo intelligent control panel 201 can control the opening and closing of each group of electromagnetic control valves 108

[0036] Furthermore, in the above structure, ultrasonic cleaners 202 are respectively installed in partition 102, partition 2 103, partition 3 104 and partition 4 105, and the ultrasonic cleaners 202 are linearly connected to the intelligent control panel 201, and sieve boxes 203 are respectively installed in partition 102, partition 2 103, partition 3 104 and partition 4 105.

[0037] The mesh box 203 can carry items that need to be cleaned, and the ultrasonic cleaner 202 can clean the items.

[0038] like Figure 1-4 As shown, first determine the required number of sub-slots according to the number of items to be cleaned, and at the same time select the required number of sub-slots on the intelligent control panel 201, and put the items into the sieve box 203 of the corresponding sub-slot. At this time, the intelligent control panel 201 will open or close the electromagnetic control valve 108 to control the water inlet of compartment one 102, compartment two 103, compartment three 104 and compartment four 105, and turn on the corresponding ultrasonic cleaner 202 to achieve the effect of cleaning the items. When filtering is required, the output pump 109 works, and by controlling the electromagnetic control valve 108, the sewage passes through compartment three 104 or compartment four 105, so that the filter box 110 can filter the sewage. In this way, the waste of cleaning liquid can be minimized, and each component slot can be selectively used according to actual cleaning needs.

[0039] The above description is merely illustrative of certain exemplary embodiments of the present invention. It goes without saying that those skilled in the art will be able to modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims of this invention.

Claims

1. An intelligent sewage filtration mechanism for a multi-tank ultrasonic cleaning machine, characterized by: include A filtering mechanism (001) is provided in the ultrasonic cleaning machine and is used for filtering sewage in separate tanks; A body component (002) is provided in the ultrasonic cleaning machine and is used to control the ultrasonic cleaning machine to perform cleaning work; The filtering mechanism (001) comprises a delivery pump (101), a pipeline on one side of the delivery pump (101) is connected to a partition 1 (102) and a partition 2 (103), the partition 1 (102) and the partition 2 (103) are arranged in an ultrasonic cleaning machine, the bottoms of the partition 1 (102) and the partition 2 (103) are connected to a connecting elbow 1 (106), the bottom of the partition 2 (103) is connected to a connecting elbow 2 (107), the connecting elbow 2 (107) is connected to a partition 3 (104) on the opposite side, and the bottom of the partition 3 (104) is also connected to a connecting elbow 1 (106), and the connecting elbow 1 (106) is connected to a partition 4 (105) on the opposite side, and the partition 4 (105) is connected to the partition 1 (102). ) The bottom is also connected with a group of connecting elbows (106), the partition three (104) and the partition four (105) are both opened in the ultrasonic cleaning machine, and the two groups of connecting elbows (106) and connecting elbows (107) are both installed with electromagnetic control valves (108), and the electromagnetic control valves (108) are installed at the connection between the delivery pump (101) and the partition one (102) and the partition two (103) and the connection pipeline between the output pump (109) and the partition three (104) and the partition four (105). The output pump (109) is connected to the pipeline on one side of the partition three (104) and the partition four (105). The output pump (109) is set on the side outside the ultrasonic cleaning machine, and the pipeline on one side of the output pump (109) is connected to the filter box (110); The body component (002) includes an intelligent control panel (201), which is installed on the outside of the ultrasonic cleaning machine and is linearly connected to each group of electromagnetic control valves (108). Ultrasonic cleaners (202) are respectively installed in the partition tank (102), the partition tank (103), the partition tank (104) and the partition tank (105), and the ultrasonic cleaners (202) are linearly connected to the intelligent control panel (201). Screen boxes (203) are respectively installed in the partition tank (102), the partition tank (103), the partition tank (104) and the partition tank (105).

Citation Information

Patent Citations

  • Multi-groove type ultrasonic cleaning machine with sewage filtering function

    CN215089397U