Production workshop cooling lubricating liquid self-circulation system

The dual-pool, single-pump cooling lubricant self-circulation system solves the problems of high cost and complex operation of traditional cooling systems, achieving efficient, low-cost, and clean cooling for multiple devices.

CN223572686UActive Publication Date: 2025-11-21CHONGQING CHENGYUAN MACHINERY
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Patent Information

Application Number
CN202422603868.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-11-21
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

Traditional cooling systems require a separate cooling system for each piece of equipment, resulting in high construction and maintenance costs, high energy consumption, easy coolant leakage that pollutes the environment, and complex operation.

Method used

The cooling and lubricating fluid self-circulation system adopts a dual-pool single-pump system. The circulation system is formed by a storage pool and a recovery pool. The cooling and lubricating fluid is cooled by gravity and a single pump. Foreign matter is removed by sedimentation and filtration in the storage pool. The opening and closing valve controls the flow of lubricating fluid into the equipment.

Benefits of technology

It reduces construction and maintenance costs, decreases electricity consumption, prevents coolant corrosion, simplifies operation, and improves coolant cleanliness and cooling effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a production workshop cooling lubricating liquid self-circulation system which comprises a liquid storage pool, the liquid storage pool is communicated with an inlet of a cooling pipe in at least one device through a liquid feeding pipe, and outlets of all the cooling pipes are communicated with the outside. A recycling trench is arranged at the periphery of the equipment and is communicated with the recycling pool through a recycling pipe; the recycling pool is provided with a water suction pump, a water inlet of the water suction pump is communicated with the recycling pool through a first water suction pipe, and a water outlet of the water suction pump is communicated with the liquid storage pool through a second water suction pipe. The double-tank single-pump cooling system has the beneficial effects that the liquid storage tank provides cooling lubricating liquid for a plurality of devices through the liquid conveying pipe, so that the plurality of devices are cooled through the double tanks and the single pump, the construction and maintenance cost is reduced, and the electric energy consumption and the resource waste are reduced. The liquid storage pool and the recovery pool form a circulation system, and the cooling lubricating liquid can circularly flow in the liquid storage pool and the recovery pool, so that the cooling lubricating liquid is effectively prevented from decaying and stinking.
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Description

TECHNICAL FIELD

[0001] The utility model relates to operation mechanical cooling technical field, especially a kind of production workshop cooling lubricating liquid self-circulation system. BACKGROUND

[0002] With the development of science and technology, machinery has replaced most of the manual, but the cutter head will produce heat in the operation of machinery, leading to cutter head overheating, so that cutter head efficiency is reduced or damaged. Therefore, the running cutter head needs to be cooled and lubricated.

[0003] The traditional cooling method is to set a cooling system for each device, which is a single machine, a single tank and a single pump. Although the above cooling system can effectively reduce the operating temperature of the cutter head in each device, improve efficiency and prevent cutter head damage, there are many problems that cannot be ignored, such as: 1. Configuring a cooling system for each device will increase the construction and maintenance cost, and also increase the power consumption and waste resources; 2. The cooling lubricant will evaporate and become smelly after the device is stopped for a long time; 3. The cooling lubricant also leaks and pollutes the environment; 4. Starting multiple devices requires starting multiple cooling systems, which makes the operation complex.

[0004] Therefore, how to improve the cooling system to solve the above problems has become a hot spot of current attention. INVENTION CONTENTS

[0005] The utility model aims at providing a kind of production workshop cooling lubricating liquid self-circulation system, can cool and lubricate multiple devices by double pool single pump, and constitute circulation system, reduce construction, maintenance cost, reduce power consumption, waste resources, and effectively prevent cooling lubricant corruption stink.

[0006] The production workshop cooling lubricating liquid self-circulation system, the key is that it includes a liquid storage tank, which is connected to the inlet of the cooling pipe in at least one device through a liquid delivery pipe, and the outlet of all cooling pipes is connected to the outside;

[0007] A recycling trench is provided around the device, which is connected to a recycling tank through a recycling pipe;

[0008] The recycling tank is provided with a water pump, the water inlet of the water pump is connected to the recycling tank through a first water pumping pipe, and the water outlet of the water pump is connected to the liquid storage tank through a second water pumping pipe.

[0009] The liquid storage tank provides cooling and lubricating liquid for the cutter head in multiple devices through a liquid delivery pipe, which realizes cooling and lubrication of multiple devices by double pool single pump, reduces construction and maintenance cost, and reduces power consumption and resource waste.

[0010] The accumulator and the recovery tank form a circulating system, and the cooling lubricant can flow in the accumulator and the recovery tank, thereby effectively preventing the cooling lubricant from being corrupted and smelly.

[0011] Further, the accumulator is divided into a sedimentation area and a liquid storage area by a baffle.

[0012] The used cooling lubricant can be deposited in the sedimentation area, and the dirt, stones, iron filings and other foreign matters with large density in the cooling lubricant can be removed, thereby improving the cleanliness of the cooling lubricant, preventing the cooling lubricant from being corrupted and smelly, and improving the cooling and lubricating effect of the tool head.

[0013] Further, the baffle is lower than the depth of the accumulator.

[0014] After the cooling lubricant is deposited, the cooling lubricant enters the liquid storage area when the liquid level is higher than the baffle, and waits for the cooling and lubricating tool head.

[0015] Further, a filter plate is arranged in the liquid storage area, and the filter plate is close to the sedimentation area.

[0016] The filter plate further filters the cooling lubricant, removes the foreign matters with low density in the cooling lubricant, further improves the cleanliness of the cooling lubricant, prevents the cooling lubricant from being corrupted and smelly, and improves the cooling and lubricating effect of the tool head.

[0017] Further, the liquid delivery pipe comprises a main liquid delivery pipe, and the main liquid delivery pipe is communicated with the liquid storage area.

[0018] Further, at least one branch liquid delivery pipe is arranged on the main liquid delivery pipe, the branch liquid delivery pipe is connected with the cooling pipe one by one, and the branch liquid delivery pipe is communicated with the inlet of the cooling pipe.

[0019] An on-off valve is arranged on the branch liquid delivery pipe.

[0020] By controlling the opening and closing of the on-off valve, whether the cooling lubricant enters the cooling pipe of the corresponding equipment or not can be controlled, and the corresponding tool head can be cooled, thereby reducing resource waste.

[0021] Meanwhile, the cooling and lubricating operation of each tool head is simplified.

[0022] Further, the second water suction pipe is communicated with the sedimentation area.

[0023] Further, the accumulator is arranged on the roof, and the recovery tank is arranged on the ground.

[0024] The accumulator is higher than the equipment, and the cooling lubricant in the accumulator can flow into the cooling pipe by gravity, thereby flushing the tool head, cooling and lubricating the tool head, and reducing resource waste.

[0025] Beneficial effects: 1. The utility model discloses a single water pump and cooling lubricant gravity, make cooling lubricant in the storage pool and recycling pool circulation flow, make cooling lubricant can be reused, thereby reduce the power consumption and resource waste.

[0026] 2. The utility model discloses simple structure can simultaneously cool and lubricate the cutter head of multiple equipment, thereby reduce the construction, maintenance cost.

[0027] 3. The utility model discloses through sedimentation and filtration can remove the sundries in cooling lubricant, thereby improve the cooling lubricant cleanliness, prevent the cooling lubricant corruption and stink, improve the cutter head cooling lubrication effect.

[0028] 4. The utility model discloses through control on-off valve can control cooling lubricant whether cooling lubrication to corresponding cutter head, thereby simplify the cooling lubrication operation, reduce the resource waste. DRAWINGS

[0029] Figure 1 It is the structural drawing of the utility model. CONCRETE IMPLEMENTING METHOD

[0030] The concrete implementing method and working principle of the utility model will be further explained in detail in combination with the drawings.

[0031] As Figure 1 The production workshop cooling lubricant self-circulation system, including storage pool 1, the storage pool 1 is set up in the working house roof, the storage pool 1 is provided with the baffle 11 lower than the depth of the storage pool 1, the baffle 11 divides the storage pool 1 into the sedimentation zone and the liquid storage area.

[0032] When the liquid level in the sedimentation zone is higher than the baffle 11, the cooling lubricant will flow into the liquid storage area.

[0033] The liquid storage area is provided with the filter plate 12 same with the depth of the storage pool 1, and the filter plate 12 is close to the sedimentation zone.

[0034] The liquid storage area is away from the side of the sedimentation zone and is communicated with the liquid sending main pipe 21 of the liquid sending pipe 2, and the liquid sending main pipe 21 penetrates the ceiling of the working house and extends into the working house.

[0035] The liquid sending main pipe 21 is provided with four liquid sending branch pipes 22, the working house is provided with four equipment 4, and the liquid sending branch pipe 22 is connected with the inlet of the cooling pipe in the equipment 4 one by one, and the liquid sending branch pipe 22 is provided with the on-off valve 3.

[0036] When the opening and closing valve 3 opens, the cooling lubricant in the storage area flows into the cooling pipe of the equipment 4 along the liquid pipe 2 due to gravity, and cools and lubricates the tool head in the equipment 4, and the opening and closing valve 3 corresponds to the equipment 4 one by one.

[0037] The outlet of the cooling pipe is communicated with the room of the working room, and the recovery trench 5 is arranged on the ground of the working room, the recovery trench 5 is located around the equipment 4, and the ground of the working room has a certain slope, and the recovery trench 5 is located at the lowest point.

[0038] The recovery trench 5 is communicated with the recovery pool 7 through the recovery pipe 6, and the recovery pool 7 is arranged on the ground outside the room of the working room, and the pool opening of the recovery pool 7 is flush with the ground.

[0039] The cooling lubricant flows to the ground of the working room after flushing the tool head, and then flows into the recovery pool 7 through the recovery trench 5 and is recovered and deposited.

[0040] The water pump 9 is arranged on the recovery pool 7, the water inlet of the water pump 9 is communicated with the recovery pool 7 through the first water suction pipe 8, and the water outlet of the water pump 9 is communicated with the deposition area through the second water suction pipe 10.

[0041] The water pump 9 is started to pump the cooling lubricant in the recovery pool 7 into the deposition area, so that the cooling lubricant circulates.

[0042] Finally, it should be noted that: the above-mentioned is only the specific embodiment of the present application, of course, the person skilled in the art can make changes and modifications to the present application, such as changing the number of equipment 4, the number of liquid branch pipe 22, these modifications and modifications belong to the scope of the present application claim and its equivalent technology, should be considered as the protection scope of the present application.

Claims

1. A self-circulating cooling and lubricating fluid system for a production workshop, characterized in that, It includes a liquid storage tank (1), which is connected to the inlet of a cooling pipe in at least one device (4) via a liquid delivery pipe (2), and the outlet of all said cooling pipes is connected to the outside. The device (4) is surrounded by a recycling ditch (5), which is connected to the recycling pool (7) via a recycling pipe (6); The recycling tank (7) is equipped with a water pump (9). The inlet of the water pump (9) is connected to the recycling tank (7) through a first water pumping pipe (8), and the outlet of the water pump (9) is connected to the liquid storage tank (1) through a second water pumping pipe (10). The liquid storage tank (1) is located on the roof, the recycling tank (7) is located on the ground, the ground has a certain slope, and the recycling ditch (5) is located at its lowest point.

2. The self-circulating cooling and lubricating fluid system for production workshops according to claim 1, characterized in that, The liquid storage tank (1) is divided into a sedimentation zone and a liquid storage zone by a baffle (11).

3. The self-circulating cooling and lubricating fluid system for production workshops according to claim 2, characterized in that, The baffle (11) is below the depth of the liquid storage tank (1).

4. The self-circulating cooling and lubricating fluid system for production workshops according to claim 2, characterized in that, A filter plate (12) is provided in the liquid storage area, and the filter plate (12) is close to the sedimentation area.

5. The self-circulating cooling and lubricating fluid system for production workshops according to claim 2, characterized in that, The liquid delivery pipe (2) includes a liquid delivery main pipe (21) which is connected to the liquid storage area.

6. The self-circulating cooling and lubricating fluid system for production workshops according to claim 5, characterized in that, The main liquid delivery pipe (21) is provided with at least one liquid delivery branch pipe (22), which is connected to the cooling pipe one by one and communicates with the inlet of the cooling pipe. An on / off valve (3) is provided on the liquid delivery branch pipe (22).

7. The self-circulating cooling and lubricating fluid system for production workshops according to claim 2, characterized in that, The second pumping pipe (10) is connected to the sedimentation zone.