Green and environment-friendly cooling liquid recovery assembly for electromechanical engineering

By designing a clean collection box and a meshing transmission mechanism, the problems of limited storage capacity and impurity contamination in the coolant recovery device are solved, achieving stable and continuous coolant delivery and impurity filtration, improving environmental performance and secondary utilization efficiency, and reducing processing costs.

CN224009152UActive Publication Date: 2026-03-20BEIJING TELLHOW INTELLIGENT ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing coolant recovery devices have limited storage capacity during collection and transportation, making it impossible to deliver coolant stably and continuously. Furthermore, the coolant contains cutting debris, which reduces its effectiveness for secondary use and may even damage the transportation pipeline, increasing processing costs and resulting in insufficient environmental performance.

Method used

A coolant recovery assembly was designed, comprising a cleaning collection box, a cleaning filter, a meshing transmission mechanism, and a drive motor. The cleaning filter filters impurities, and the drive motor drives the cleaning brush and the meshing transmission mechanism to achieve stable and continuous delivery of coolant and filtration of impurities, avoiding clogging and improving environmental performance.

Benefits of technology

It achieves stable and continuous delivery of coolant and filtration of impurities, reduces processing costs, improves the secondary utilization efficiency and environmental performance of coolant, and avoids damage to delivery pipelines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an environment-friendly cooling liquid recovery assembly for electromechanical engineering, which relates to the field of electromechanical engineering and comprises a fixed mounting frame, a cleaning and collecting box is mounted on the inner bottom surface of the fixed mounting frame, and a reciprocating sliding mechanism for moving an attached cleaning brush back and forth is mounted on the upper surface of the cleaning and collecting box. According to the environment-friendly cooling liquid recycling assembly for electromechanical engineering, when conveying and cleaning operation of cooling liquid is conducted, the cooling liquid can be directly guided to flow into the upper portion of a cleaning and collecting box and penetrate through the interior of a cleaning and filtering net, internal impurity filtering work is completed, starting of a driving motor can drive a connecting and driving disc to rotate continuously, and the cooling liquid can be recycled. And a connecting driving disc can drive an attached cleaning brush through a hollow connecting rod to achieve continuous reciprocating sliding, through the design, the cooling liquid is stably and continuously conveyed, internal impurities can be filtered out while conveying is conducted, the impurities and the cooling liquid are better collected and utilized, and the equipment is more environmentally friendly when used.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of electromechanical engineering, concretely to a green and environment -friendly cooling liquid recovery assembly for electromechanical engineering. BACKGROUND

[0002] Electromechanical engineering includes electrical engineering technology, automatic control and instrument, water supply and drainage, mechanical equipment installation, container installation, heating ventilation and air conditioning engineering, building intelligent engineering, and electromechanical equipment generally refers to machinery, electrical appliances and electrical automation equipment.

[0003] When the pipeline or container in the liquid cooling circulation system breaks, the cooling liquid will leak out of the liquid cooling circulation system and then flow to the ground, and the cooling liquid flowing to the ground needs to arrange personnel to use special tools to suck and recover, which is very difficult to recover and low in efficiency.

[0004] In order to overcome the above defects, the prior art (publication number: CN221448935U, application date: 2024-07-30 Chinese patent) discloses a cooling liquid recovery device, the device includes a cooling liquid recovery unit, a cooling liquid storage unit and a recovery pipeline; the cooling liquid recovery unit is arranged at the bottom of the liquid cooling circulation system, and is used for receiving the leaked cooling liquid of the liquid cooling circulation system; the cooling liquid storage unit is used for storing the cooling liquid recovered by the cooling liquid recovery unit; the recovery pipeline connects the cooling liquid recovery unit and the cooling liquid storage unit. Compared with the prior art, the cooling liquid recovery unit arranged at the bottom of the liquid cooling circulation system collects the leaked cooling liquid in the liquid cooling circulation system, and then sends the cooling liquid to the cooling liquid storage unit through the recovery pipeline for recovery, reduces the participation of manual work, can automatically recover the cooling liquid when the liquid cooling circulation system leaks, reduces the waste of cooling liquid, and improves the efficiency of cooling liquid recovery.

[0005] The above design can solve the above problems, but when the cooling liquid needs to be collected, relying on the storage unit for collection will result in limited storage capacity, and the cooling liquid cannot be stably and continuously transported, and the cooling liquid will be mixed with cutting impurities after transportation, which will reduce the effect of secondary use or even damage the conveying pipeline. The existing design of the recovery mechanism cannot collect the cutting impurities in the cooling liquid, which increases the processing cost, cannot be recycled and reused after use, increases the processing cost, and lacks environmental protection performance. UTILITY MODEL CONTENTS

[0006] The utility model discloses a green environmental protection type cooling liquid recovery assembly for mechanical and electrical engineering, to solve the need of collecting operation of cooling liquid in the background art, and the storage unit is collected to cause the limited storage, cannot carry out stable continuous conveying to cooling liquid, and after completing conveying, the inside of cooling liquid will be mixed with cutting sundries, make the effect of secondary use be poor even damage the conveying pipeline, and the recovery mechanism of prior design can not complete the collection of cutting sundries in cooling liquid, lead to the increase of processing cost, after using, the recycling secondary use of the increase of processing cost, and the environmental protection performance is insufficient problem.

[0007] To realize above-mentioned purpose, the utility model provides the following technical scheme: a green environmental protection type cooling liquid recovery assembly for mechanical and electrical engineering, including fixed mounting frame, the inside bottom surface of fixed mounting frame is installed with clean collection box, and the upper surface of clean collection box is installed with reciprocating sliding mechanism that moves before and after to the clean brush that sticks, the reciprocating sliding mechanism includes limit sliding frame, and limit sliding frame fixed mounting is in the upper surface of clean collection box, the inner surface of limit sliding frame is set with first sliding inner groove, and the inside installation of first sliding inner groove has nested auxiliary rod, the top of fixed mounting frame is installed with centralized collection box, and the lower surface of centralized collection box is installed with meshing transmission mechanism that moves up and down to the triangular jamming block.

[0008] Further, the meshing transmission mechanism includes a transmission meshing worm, and the transmission meshing worm is fixedly installed on the output end upper surface of the drive motor. The lower surface of the centralized collection box is installed with an auxiliary flow pipe, and the centralized collection box and the auxiliary flow pipe are designed in a through type.

[0009] Further, the inside of the auxiliary flow pipe is installed with a fixed transmission rod, and the side surface of the fixed transmission rod is installed with a fixed connection gear. The fixed transmission rod and the fixed connection gear are designed in an integral type, and the transmission meshing worm is meshingly connected with the fixed connection gear. The outer surface of the fixed transmission rod is installed with a transmission contraction line group, and the inner surface of the auxiliary flow pipe is installed with a triangular jamming block.

[0010] Further, the inside of the clean collection box is installed with a clean filter screen, and the installation size of the clean filter screen corresponds to the opening size of the clean collection box. The end of the nested auxiliary rod slides along the inside of the first sliding inner groove, and the side surface of the clean collection box is installed with a drive motor.

[0011] Further, the lower output end outer surface of the driving motor is provided with a connecting driving disc, and the lower outer surface of the connecting driving disc is provided with a hollow connecting rod, the other end lower surface of the nested auxiliary rod is provided with a fit cleaning brush, and the lower surface of the fit cleaning brush is matched with the upper surface of the cleaning filter screen, the other end of the hollow connecting rod is rotatably installed on the upper end outer surface of the fit cleaning brush, and the fit cleaning brush and the nested auxiliary rod are integrally designed.

[0012] Further, the inner surface of the first sliding inner groove is in contact with the outer surface of the tail end of the nested auxiliary rod to form a sliding structure, and the lower outer surface of the connecting driving disc is in contact with the inner surface of the hollow connecting rod to form a sliding structure, the nested auxiliary rod is symmetrically installed with two groups about the center point of the fit cleaning brush, and the connecting driving disc is in contact with the upper end of the fit cleaning brush through the inner surface of the hollow connecting rod to form a transmission structure.

[0013] Further, the two sides of the auxiliary flow pipe are provided with a second sliding inner groove, and the two sides of the triangular blocking block slide along the inside of the second sliding inner groove, the other end of the transmission contraction line group is fixedly installed on the top of the triangular blocking block, and the opening of the auxiliary flow pipe is designed above the cleaning filter screen.

[0014] Compared with the prior art, the green and environment-friendly cooling liquid recovery assembly for mechanical and electrical engineering has the advantages that when the cooling liquid is conveyed and cleaned, the cooling liquid is directly guided to flow above the cleaning collection box and passes through the inside of the cleaning filter screen to complete the internal impurity filtering work, the start of the driving motor drives the connecting driving disc to continuously rotate, the connecting driving disc drives the fit cleaning brush to continuously reciprocate through the hollow connecting rod, so that the impurities above the cleaning filter screen are cleaned, and such a design enables the cooling liquid to be stably and continuously conveyed, and the internal impurities are filtered out at the same time, so that the impurities and the cooling liquid can be better collected and utilized, and the equipment is more green and environment-friendly when in use.

[0015] Further, when the cooling liquid needs to be conveyed, the driving motor is directly started to drive the transmission meshing worm to synchronously rotate, the transmission meshing worm drives the fixed transmission rod to continuously rotate through the fixed connecting gear, and the transmission contraction line group is loosened downward during the rotation, and the triangular blocking block is synchronously slid downward, so that the cooling liquid can be continuously collected, the cooling liquid is stably and continuously conveyed, the secondary use effect is better, and the conveying pipeline is not damaged.

[0016] Further, the cleaning filter screen and the attached cleaning brush are designed with corresponding sizes, so that the impurity cleaning effect is better, and the problem of blockage due to long-term work is avoided, the use cost of the equipment is saved, the working process is more green and environmentally friendly, and the opening of the auxiliary flow pipe and the installation of the cleaning filter screen correspond to each other, so that the use of the equipment is more convenient. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a three-dimensional structure schematic view of the fixed mounting frame of the utility model;

[0018] Figure 2 It is a three-dimensional structure schematic view of the driving motor of the utility model;

[0019] Figure 3 It is a three-dimensional structure schematic view of the cleaning collection box of the utility model;

[0020] Figure 4 It is a three-dimensional structure schematic view of the fixed connection gear of the utility model;

[0021] Figure 5 It is a three-dimensional structure schematic view of the triangular blockage block of the utility model;

[0022] Figure 6 It is a three-dimensional structure schematic view of the hollow connecting rod of the utility model.

[0023] In the drawing: 1, fixed mounting frame; 2, centralized collection box; 3, cleaning collection box; 4, limiting sliding frame; 5, auxiliary flow pipe; 6, driving motor; 7, cleaning filter screen; 8, first sliding inner groove; 9, transmission meshing worm; 10, fixed connection gear; 11, connecting driving disc; 12, hollow connecting rod; 13, nested auxiliary rod; 14, attached cleaning brush; 15, second sliding inner groove; 16, fixed transmission rod; 17, transmission contraction wire group; 18, triangular blockage block. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0025] Embodiment one: please refer to Figures 1-6The utility model provides following technical scheme: A kind of cooling liquid recovery assembly for green environmental protection type mechanical and electrical engineering, including fixed mounting frame 1, the inside bottom surface of fixed mounting frame 1 is equipped with cleaning collection box 3, and the upper surface of cleaning collection box 3 is equipped with the reciprocating sliding mechanism of moving back and forth to the cleaning brush 14 that is attached, reciprocating sliding mechanism includes limiting sliding frame 4, and limiting sliding frame 4 is fixedly installed on the upper surface of cleaning collection box 3, the inner surface of limiting sliding frame 4 is equipped with first sliding inner groove 8, and first sliding inner groove 8 is equipped with nested auxiliary rod 13 in its inside, the top of fixed mounting frame 1 is equipped with centralized collection box 2, and the lower surface of centralized collection box 2 is equipped with the meshing transmission mechanism of moving up and down to triangular jamming block 18.

[0026] As Figure 3 , Figure 5 , Figure 6 The technical scheme shown in the figure, in order to solve the problem that the storage capacity is limited when collecting cooling liquid by relying on the storage unit, and the cooling liquid cannot be stably and continuously transported, it is disclosed that: a cleaning filter screen 7 is installed inside the cleaning collection box 3, and the installation size of the cleaning filter screen 7 corresponds to the opening size of the cleaning collection box 3, the nested auxiliary rod 13 slides along the inside of the first sliding inner groove 8, and a drive motor 6 is installed on the side of the cleaning collection box 3, a connecting driving disc 11 is installed on the lower output surface of the drive motor 6, a hollow connecting rod 12 is installed on the lower surface of the connecting driving disc 11, a cleaning brush 14 is attached to the lower surface of the other end of the nested auxiliary rod 13, the lower surface of the cleaning brush 14 is attached to the upper surface of the cleaning filter screen 7, the other end of the hollow connecting rod 12 is rotatably installed on the upper end surface of the cleaning brush 14, the cleaning brush 14 and the nested auxiliary rod 13 are designed as one piece, the inner surface of the first sliding inner groove 8 and the outer surface of the other end of the nested auxiliary rod 13 form a sliding structure, the lower surface of the connecting driving disc 11 and the inner surface of the hollow connecting rod 12 form a sliding structure, two groups of the cleaning brush 14 are symmetrically installed about the center point of the nested auxiliary rod 13, and the upper end of the cleaning brush 14 is in contact with the inner surface of the hollow connecting rod 12 through the connecting driving disc 11, forming a transmission structure.

[0027] When the external cleaning operation of the cleaning filter screen 7 is needed, first, the driving motor 6 is started to work, and the cooling liquid is introduced into the upper part of the cleaning collection box 3 through the auxiliary flow pipe 5 to perform the cleaning work. The cooling liquid flowing out will first contact the cleaning filter screen 7 fixedly installed on the inner surface of the cleaning collection box 3. While the cooling liquid passes through the inside of the cleaning filter screen 7, the cutting impurities mixed inside will be filtered. The impurities will be filtered and placed on the upper surface of the cleaning filter screen 7, and the filtered cooling liquid will flow into the cleaning collection box 3 fixedly installed in the fixed installation frame 1 to complete the collection. While the driving motor 6 is started to work, the connecting driving disc 11 fixedly installed on the outer surface of the lower output end will be driven to continuously rotate synchronously. While the connecting driving disc 11 rotates, the hollow connecting rod 12 will be driven. Since the hollow connecting rod 12 is nested and slidably installed outside the connecting driving disc 11, the hollow connecting rod 12 will be driven to continuously swing. The cleaning brush 14 rotatably installed at the other end of the hollow connecting rod 12 will move forward and backward corresponding to the swinging movement. A set of nested auxiliary rods 13 are fixedly installed on the left and right sides of the cleaning brush 14. The nested auxiliary rods 13 will synchronously reciprocate forward and backward. The sliding track of the nested auxiliary rods 13 will be inside the limiting sliding frame 4 fixedly installed above the cleaning collection box 3. The movement of the nested auxiliary rods 13 will be limited and horizontally slid within the first sliding inner groove 8 corresponding to the inner surface of the limiting sliding frame 4. Therefore, the cleaning brush 14 will continuously slide forward and backward along the upper surface of the cleaning filter screen 7 under the driving of the nested auxiliary rods 13. Such design makes the equipment more convenient for collection work, and the use of the equipment is more environmentally friendly.

[0028] Example two: as Figure 1 , Figure 2 , Figure 4The technical scheme is shown, in order to solve, the cutting impurities will be mixed in the cooling liquid, so that the effect of secondary use is poor or even damage the conveying pipeline, the existing design of the recovery mechanism cannot complete the collection of cutting impurities in the cooling liquid, resulting in high processing cost, and the recycling of the used cooling liquid increases the processing cost and the environmental protection performance is insufficient, the meshing transmission mechanism is disclosed, which comprises a transmission meshing worm 9, and the transmission meshing worm 9 is fixedly installed on the upper surface of the output end of the driving motor 6, the lower surface of the centralized collection box 2 is provided with an auxiliary flow pipe 5, and the centralized collection box 2 and the auxiliary flow pipe 5 are designed in a through type, the inside of the auxiliary flow pipe 5 is provided with a fixed transmission rod 16, the side surface of the fixed transmission rod 16 is provided with a fixed connection gear 10, the fixed transmission rod 16 and the fixed connection gear 10 are designed in an integral type, the transmission meshing worm 9 is meshed with the fixed connection gear 10, the outer surface of the fixed transmission rod 16 is provided with a transmission contraction line group 17, the inner surface of the auxiliary flow pipe 5 is provided with a triangular blocking block 18, the two side surfaces of the auxiliary flow pipe 5 are provided with a second sliding inner groove 15, the two sides of the triangular blocking block 18 slide along the inside of the second sliding inner groove 15, the other end of the transmission contraction line group 17 is fixedly installed on the top of the triangular blocking block 18, and the opening of the auxiliary flow pipe 5 is designed above the cleaning filter screen 7.

[0029] When the driving motor 6 works, the transmission meshing worm 9 fixedly installed on the output end will be driven, the transmission meshing worm 9 will produce meshing movement with the fixed connection gear 10 in contact with the side surface and drive it to rotate, since the fixed connection gear 10 is rotatably installed in the inside of the auxiliary flow pipe 5, and the auxiliary flow pipe 5 is fixedly installed on the top of the centralized collection box 2, so the fixed connection gear 10 will continuously rotate in place under the driving of the meshing movement, and the rotation of the fixed connection gear 10 will drive the fixed transmission rod 16 fixedly installed on the side surface to move synchronously, since the fixed transmission rod 16 is rotatably installed in the inside of the auxiliary flow pipe 5, so when the fixed transmission rod 16 rotates, the transmission contraction line group 17 installed around the outer surface will be loosened, after the transmission contraction line group 17 is loosened, it will be driven to continuously slide downward by the gravity of the triangular blocking block 18 fixedly installed below, the two side surfaces of the triangular blocking block 18 will vertically slide downward along the second sliding inner groove 15 provided on the corresponding position of the inner surface of the auxiliary flow pipe 5, and the inside of the auxiliary flow pipe 5 will be gradually realized through, since the centralized collection box 2 and the auxiliary flow pipe 5 are designed in a through type, so the cooling liquid in the inside of the centralized collection box 2 will flow downward along the inside of the auxiliary flow pipe 5, such design makes the use of the equipment more intelligent and fast.

[0030] In the description of the utility model, it is necessary to explain, unless another explicit provision and limitation, the term "link", "connection" should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connected;Can be mechanical connection, also can be electrical connection;Can be directly connected, also can be indirectly connected through the intermediate medium.

[0031] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features, any modification, equivalent replacement, improvement etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A green and environmentally friendly coolant recovery assembly for electromechanical engineering, comprising a fixed mounting frame (1), wherein a cleaning collection box (3) is installed on the inner bottom surface of the fixed mounting frame (1), and a reciprocating sliding mechanism for moving a cleaning brush (14) back and forth is installed on the upper surface of the cleaning collection box (3); Its features are: The reciprocating sliding mechanism includes a limiting sliding frame (4), which is fixedly installed on the upper surface of the cleaning collection box (3). The inner surface of the limiting sliding frame (4) is provided with a first sliding inner groove (8), and a nested auxiliary rod (13) is installed inside the first sliding inner groove (8). A centralized collection box (2) is installed on the top of the fixed mounting frame (1), and a meshing transmission mechanism for moving the triangular blocking block (18) up and down is installed on the lower surface of the centralized collection box (2).

2. The green and environmentally friendly coolant recovery assembly for electromechanical engineering according to claim 1, characterized in that: The meshing transmission mechanism includes a transmission meshing worm (9), and the transmission meshing worm (9) is fixedly installed on the upper surface of the output end of the drive motor (6). An auxiliary flow pipe (5) is installed on the lower surface of the centralized collection box (2), and the centralized collection box (2) and the auxiliary flow pipe (5) are designed to be connected.

3. The green and environmentally friendly coolant recovery assembly for electromechanical engineering according to claim 2, characterized in that: The auxiliary flow tube (5) is equipped with a fixed transmission rod (16) inside, and a fixed connecting gear (10) is installed on the side of the fixed transmission rod (16). The fixed transmission rod (16) and the fixed connecting gear (10) are designed as a single unit, and the transmission meshing worm gear (9) is meshed with the fixed connecting gear (10). The outer surface of the fixed transmission rod (16) is equipped with a transmission shrinkage line assembly (17), and the inner surface of the auxiliary flow tube (5) is equipped with a triangular blocking block (18).

4. The green and environmentally friendly coolant recovery assembly for electromechanical engineering according to claim 1, characterized in that: The cleaning collection box (3) is equipped with a cleaning filter (7) inside, and the installation size of the cleaning filter (7) corresponds to the opening size of the cleaning collection box (3). The end of the nested auxiliary rod (13) slides along the inside of the first sliding inner groove (8), and a drive motor (6) is installed on the side of the cleaning collection box (3).

5. The green and environmentally friendly coolant recovery assembly for electromechanical engineering according to claim 4, characterized in that: A connecting drive plate (11) is installed on the outer surface of the lower output end of the drive motor (6), and a hollow connecting rod (12) is installed on the lower outer surface of the connecting drive plate (11). A fitting cleaning brush (14) is installed on the lower surface of the other end of the nested auxiliary rod (13), and the lower surface of the fitting cleaning brush (14) is in contact with the upper surface of the cleaning filter (7). The other end of the hollow connecting rod (12) is rotatably installed on the upper outer surface of the fitting cleaning brush (14), and the fitting cleaning brush (14) and the nested auxiliary rod (13) are designed as a single unit.

6. The green and environmentally friendly coolant recovery assembly for electromechanical engineering according to claim 5, characterized in that: The inner surface of the first sliding inner groove (8) contacts the outer surface of the end of the nested auxiliary rod (13) to form a sliding structure, and the lower outer surface of the connecting drive plate (11) contacts the inner surface of the hollow connecting rod (12) to form a sliding structure. The nested auxiliary rod (13) is symmetrically installed in two sets about the center point of the fitting cleaning brush (14), and the connecting drive plate (11) contacts the upper end of the fitting cleaning brush (14) through the inner surface of the hollow connecting rod (12) to form a transmission structure.

7. The green and environmentally friendly coolant recovery assembly for electromechanical engineering according to claim 3, characterized in that: The auxiliary flow tube (5) has a second sliding inner groove (15) on both sides, and the two sides of the triangular block (18) slide along the inside of the second sliding inner groove (15). The other end of the transmission shrink line group (17) is fixedly installed on the top of the triangular block (18), and the opening of the auxiliary flow tube (5) is designed above the cleaning filter (7).

Citation Information

Patent Citations

  • Cooling liquid recovery device

    CN221448935U