CN213997138U - Waste oil discharge mechanism for vacuum cleaning machine - Google Patents

Waste oil discharge mechanism for vacuum cleaning machine Download PDF

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Publication number
CN213997138U
CN213997138U CN202022281468.6U CN202022281468U CN213997138U CN 213997138 U CN213997138 U CN 213997138U CN 202022281468 U CN202022281468 U CN 202022281468U CN 213997138 U CN213997138 U CN 213997138U
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pipe
oil
discharge mechanism
tank
lower extreme
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冯志珍
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Wuhan Xinmupei Environmental Protection Co.,Ltd.
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Individual
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Abstract

The utility model provides a waste oil discharge mechanism for vacuum cleaner, including the coarse filter box, the upper end external fixed surface of coarse filter box is connected with into oil pipe, the one side that advances oil pipe is provided with negative pressure water-collecting device, the internal fixed surface of coarse filter box installs the electrothermal tube, one side external fixed surface of coarse filter box is connected with the evaporation tank, the upper end surface of evaporation tank is provided with the medicine mouth, one side lower extreme of evaporation tank is provided with the rose box. A waste oil discharge mechanism for vacuum cleaner, be equipped with negative pressure water-collecting device and oil circulation heat radiation structure, can collect the vapor that evaporates in the oil, with higher speed the evaporation rate of moisture, the water economy resource to can reach untreated waste oil with the heat transfer of handling back oil, handle the back oil cooling with higher speed and preheat waste oil simultaneously, better filtration dregs of fat practice thrift the electric energy, raise the efficiency, bring better use prospect.

Description

Waste oil discharge mechanism for vacuum cleaning machine
Technical Field
The utility model relates to a vacuum cleaner field, in particular to waste oil discharge mechanism for vacuum cleaner.
Background
When the vacuum cleaning machine is used, the cleaning environment needs to be pumped to vacuum by using the vacuum pump, the vacuum pump can continuously generate waste oil when in use, and the waste oil needs to be subjected to a series of treatments when being discharged, so that the waste oil can be recycled.
The waste oil discharge mechanism for the existing vacuum cleaning machine has certain defects when in use, firstly, the evaporation process of water vapor in the waste oil is slow, a large amount of discharged water vapor cannot be collected to cause waste, secondly, the cooling process is slow after the waste oil is treated, heat cannot be fully utilized, oil residue cannot be fully filtered, certain influence is brought to the use process of people, and therefore the waste oil discharge mechanism for the vacuum cleaning machine is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a waste oil discharge mechanism for vacuum cleaner can effectively solve the problem in the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a waste oil discharge mechanism for vacuum cleaner, includes the coarse filter case, the upper end external fixed surface of coarse filter case is connected with into oil pipe, the one side of advancing oil pipe is provided with negative pressure water-collecting device, the internal fixed surface of coarse filter case installs the electrothermal tube, one side external fixed surface of coarse filter case is connected with the evaporation tank, the upper end surface of evaporation tank is provided with the medicine mouth, one side lower extreme of evaporation tank is provided with the rose box, one side surface of rose box is provided with oil circulation heat radiation structure, the opposite side of rose box is provided with and stores the case.
Preferably, negative pressure water-collecting device is including gas collecting bucket, coolant tank, condenser pipe, header tank and air pump, the upper end internal surface fixedly connected with gas collecting bucket of colating tank, the upper end surface that gas collecting bucket runs through the upper end internal surface of colating tank and the one end surface connection of condenser pipe, the surface of condenser pipe is provided with coolant tank, coolant tank's lower extreme surface is provided with the header tank, the other end external surface fixedly connected with air pump of condenser pipe.
Preferably, oil cycle heat radiation structure includes oil pump, defeated oil pipe, circulating pipe and spiral pipe, the inside lower extreme of coarse strainer case is provided with the spiral pipe, one side of rose box surface fixed connection has oil pump and circulating pipe, the circulating pipe is located the upper end of oil pump, one side surface of oil pump is provided with defeated oil pipe, defeated oil pipe's upper end surface runs through the lower extreme surface of coarse strainer case and the one end fixed surface of spiral pipe and is connected, the upper end surface of circulating pipe runs through the lower extreme surface of coarse strainer case and the other end fixed surface of spiral pipe and is connected.
Preferably, the lower extreme surface of condenser pipe is provided with the drain pipe, and the lower extreme surface of drain pipe runs through cooling water tank's lower extreme internal surface and the upper end surface of header tank, be provided with pipe joint between air pump and the condenser pipe, the one end surface of condenser pipe passes through pipe joint and one side fixed surface connection of air pump.
Preferably, a fixing screw is arranged between the oil pump and the filter box, the outer surface of one side of the oil pump is fixedly connected with the outer surface of one side of the filter box through the fixing screw, and the outer surface of one end of the circulating pipe penetrates through the outer surface of one side of the filter box.
Preferably, a high-temperature-resistant oil discharge pipe is arranged between the evaporation tank and the filter box, an oil guide pipe is arranged between the filter box and the storage box, a filter is arranged on the inner surface of the filter box, and stirring devices are arranged on the inner surfaces of the upper end and the lower end of the evaporation tank.
Advantageous effects
Compared with the prior art, the utility model provides a waste oil discharge mechanism for vacuum cleaner possesses following beneficial effect:
1. this a waste oil discharge mechanism for vacuum cleaner, negative pressure water-collecting device through setting up, full cooling water is equipped with in the cooling water tank, the air pump operation forms the negative pressure through condenser pipe air extraction in with the gas collecting bucket, the inside waste oil of coarse filter box is after the heating, the evaporation of water in the waste oil, the evaporation rate of moisture becomes fast under the environment of negative pressure, vapor is cooled by cooling water tank in entering into the condenser pipe through the gas collecting bucket, the vapor condensation forms the drop of water and then is collected in the inflow water-collecting tank, thereby accelerate the evaporation rate of moisture, collect vapor, the water economy resource.
2. This a waste oil discharge mechanism for vacuum cleaner, oil circulation heat radiation structure through the setting, the oil of high temperature gets into and filters in the filter box, then the oil pump is taken out the oil in with the filter box and is carried the spiral pipe through defeated oil pipe in, with the heat transfer of oil to untreated waste oil, preheat untreated waste oil, then the oil of handling filters once more in carrying the filter box through the circulating pipe, thereby can accelerate oil cooling and preheat untreated waste oil, resources are saved, it is cleaner to make oil filterable, be favorable to people to use, whole waste oil discharge mechanism for vacuum cleaner simple structure, high durability and convenient operation, the effect of using is better for traditional mode.
Drawings
FIG. 1 is a schematic view of the overall structure of a waste oil discharge mechanism for a vacuum cleaner.
FIG. 2 is a schematic structural view of a negative pressure water collecting device in a waste oil discharging mechanism for a vacuum cleaner.
Fig. 3 is a schematic structural diagram of an oil circulation heat dissipation structure in the waste oil discharge mechanism for the vacuum cleaning machine of the present invention.
In the figure: 1. a coarse filter box; 2. an oil inlet pipe; 3. a negative pressure water collecting device; 31. a gas collecting hopper; 32. a cooling water tank; 33. a condenser tube; 34. a water collection tank; 35. an air pump; 4. an evaporation tank; 5. a medicine adding port; 6. a filter box; 7. a storage box; 8. an oil circulation heat dissipation structure; 81. an oil pump; 82. an oil delivery pipe; 83. a circulation pipe; 84. a spiral tube; 9. an electric heating tube.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1-3, a waste oil discharge mechanism for a vacuum cleaning machine comprises a coarse filter tank 1, an oil inlet pipe 2 is fixedly connected to the outer surface of the upper end of the coarse filter tank 1, a negative pressure water collecting device 3 is arranged on one side of the oil inlet pipe 2, an electric heating pipe 9 is fixedly mounted on the inner surface of the coarse filter tank 1, an evaporation tank 4 is fixedly connected to the outer surface of one side of the coarse filter tank 1, a chemical feeding port 5 is arranged on the outer surface of the upper end of the evaporation tank 4, a filter tank 6 is arranged at the lower end of one side of the evaporation tank 4, an oil circulation heat dissipation structure 8 is arranged on the outer surface of one side of the filter tank 6, and a storage tank 7 is arranged on the other side of the filter tank 6.
Further, the negative pressure water collecting device 3 comprises a gas collecting hopper 31, a cooling water tank 32, a condensing pipe 33, a water collecting tank 34 and an air pump 35, the gas collecting hopper 31 is fixedly connected to the inner surface of the upper end of the coarse filter tank 1, the outer surface of the upper end of the gas collecting hopper 31 penetrates through the inner surface of the upper end of the coarse filter tank 1 and is connected to the outer surface of one end of the condensing pipe 33, the cooling water tank 32 is arranged on the outer surface of the condensing pipe 33, the water collecting tank 34 is arranged on the outer surface of the lower end of the cooling water tank 32, the air pump 35 is connected to the outer surface of the other end of the condensing pipe 33, cooling water is filled in the cooling water tank 32, the air in the gas collecting hopper 31 is pumped out through the condensing pipe 33 to form negative pressure by the air pump 35, moisture in waste oil in the coarse filter tank 1 is evaporated after the waste oil is heated, the evaporation speed of the moisture is increased under the negative pressure environment, water vapor enters the condensing pipe 33 through the gas collecting hopper 31 and is cooled by the cooling water tank 32, the water vapor is condensed to form water drops and then flows into the water collecting tank 34 to be collected, thereby quickening the water evaporation speed, collecting the water vapor and saving water resources.
Further, the oil circulation heat dissipation structure 8 includes an oil pump 81, an oil delivery pipe 82, a circulation pipe 83 and a spiral pipe 84, the spiral pipe 84 is disposed at the lower end of the interior of the coarse filter tank 1, the oil pump 81 and the circulation pipe 83 are fixedly connected to the outer surface of one side of the filter tank 6, the circulation pipe 83 is disposed at the upper end of the oil pump 81, the oil delivery pipe 82 is disposed at the outer surface of one side of the oil pump 81, the outer surface of the upper end of the oil delivery pipe 82 penetrates through the outer surface of the lower end of the coarse filter tank 1 and is fixedly connected to the outer surface of one end of the spiral pipe 84, the outer surface of the upper end of the circulation pipe 83 penetrates through the outer surface of the lower end of the coarse filter tank 1 and is fixedly connected to the outer surface of the other end of the spiral pipe 84, high-temperature oil enters the filter tank 6 for filtration, then the oil pump 81 pumps the oil in the filter tank 6 through the oil delivery pipe 82 and delivers the heat of the untreated waste oil to preheat the untreated waste oil, then the treated oil is delivered to the filter tank 6 through the circulation pipe 83 for filtration again, therefore, the oil cooling can be accelerated to preheat the untreated waste oil, the resource is saved, and the oil is filtered more cleanly.
The utility model discloses theory of operation and use flow: when in use, waste oil is discharged into the coarse filter box 1 through the oil inlet pipe 2, the cooling water tank 32 is filled with cooling water, the air pump 35 runs to pump air in the air collecting hopper 31 through the condensing pipe 33 to form negative pressure, the waste oil in the coarse filter box 1 is heated, moisture in the waste oil is evaporated, the evaporation speed of the moisture is increased under the environment of the negative pressure, water vapor enters the condensing pipe 33 through the air collecting hopper 31 to be cooled by the cooling water tank 32, the water vapor is condensed to form water beads and then flows into the water collecting tank 34 to be collected, so that the evaporation speed of the moisture is increased, the water vapor is collected, water resources are saved, oil residues in the waste oil are settled at the bottom of the coarse filter box 1, then the waste oil is conveyed into the evaporation tank 4, an acid solution is added into the evaporation tank 4 through the chemical adding port 5, then the waste oil is heated and stirred until the oil becomes clear, then the oil is conveyed into the filter box 6 to be filtered, and then the oil pump 81 conveys the oil in the filter box 6 to be conveyed to the spiral pipe 84 through the oil conveying pipe 82, the heat of oil is transferred to untreated waste oil, the untreated waste oil is preheated, then the treated oil is conveyed to the filter box 6 through the circulating pipe 83 to be filtered again, so that the untreated waste oil is preheated by accelerating oil cooling, the oil is filtered to be cleaner, and the filtered oil is conveyed to the storage box 7 to be stored.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a waste oil discharge mechanism for vacuum cleaner, includes coarse filter box (1), its characterized in that: the utility model discloses a chemical spraying device, including coarse strainer (1), one side of advancing oil pipe (2), the internal fixed surface of coarse strainer (1) is connected with into oil pipe (2), the one side of advancing oil pipe (2) is provided with negative pressure water-collecting device (3), the internal fixed surface of coarse strainer (1) installs electrothermal tube (9), one side external fixed surface of coarse strainer (1) is connected with evaporating sump (4), the upper end surface of evaporating sump (4) is provided with medicine mouth (5), one side lower extreme of evaporating sump (4) is provided with rose box (6), one side surface of rose box (6) is provided with oil circulation heat radiation structure (8), the opposite side of rose box (6) is provided with storage box (7).
2. The used oil discharge mechanism for a vacuum cleaner as defined in claim 1, wherein: negative pressure water-collecting device (3) are including air-collecting bucket (31), cooling water tank (32), condenser pipe (33), header tank (34) and air pump (35), the upper end internal surface fixedly connected with air-collecting bucket (31) of coarse strainer (1), the upper end surface of air-collecting bucket (31) runs through the upper end internal surface of coarse strainer (1) and is connected with the one end surface of condenser pipe (33), the surface of condenser pipe (33) is provided with cooling water tank (32), the lower extreme surface of cooling water tank (32) is provided with header tank (34), the other end external surface fixedly connected with air pump (35) of condenser pipe (33).
3. The used oil discharge mechanism for a vacuum cleaner as defined in claim 1, wherein: oil circulation heat radiation structure (8) are including oil pump (81), defeated oil pipe (82), circulating pipe (83) and spiral pipe (84), the inside lower extreme of coarse filter case (1) is provided with spiral pipe (84), one side external surface fixed connection of rose box (6) oil pump (81) and circulating pipe (83), circulating pipe (83) are located the upper end of oil pump (81), one side surface of oil pump (81) is provided with defeated oil pipe (82), the one end external surface fixed connection that the lower extreme surface of coarse filter case (1) and spiral pipe (84) were run through to the upper end surface of defeated oil pipe (82), the other end external surface fixed connection that the lower extreme surface of coarse filter case (1) and spiral pipe (84) were run through to the upper end surface of circulating pipe (83).
4. The used oil discharge mechanism for a vacuum cleaner as defined in claim 2, wherein: the lower extreme surface of condenser pipe (33) is provided with the drain pipe, and the lower extreme surface of drain pipe runs through the lower extreme internal surface of cooling water tank (32) and the upper end surface of header tank (34), be provided with pipe joint between air pump (35) and condenser pipe (33), the one end surface of condenser pipe (33) passes through pipe joint and one side fixed surface connection of air pump (35).
5. The used oil discharge mechanism for a vacuum cleaner as defined in claim 3, wherein: be provided with the set screw between oil pump (81) and rose box (6), one side surface of oil pump (81) passes through the one side fixed surface of set screw and rose box (6) to be connected, the one side surface of one end surface of circulating pipe (83) runs through the one side surface of rose box (6).
6. The used oil discharge mechanism for a vacuum cleaner as defined in claim 1, wherein: a high-temperature-resistant oil discharge pipe is arranged between the evaporation tank (4) and the filter box (6), an oil guide pipe is arranged between the filter box (6) and the storage box (7), a filter is arranged on the inner surface of the filter box (6), and a stirring device is arranged on the inner surface of the upper end and the lower end of the evaporation tank (4).
CN202022281468.6U 2020-10-14 2020-10-14 Waste oil discharge mechanism for vacuum cleaning machine Active CN213997138U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022281468.6U CN213997138U (en) 2020-10-14 2020-10-14 Waste oil discharge mechanism for vacuum cleaning machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022281468.6U CN213997138U (en) 2020-10-14 2020-10-14 Waste oil discharge mechanism for vacuum cleaning machine

Publications (1)

Publication Number Publication Date
CN213997138U true CN213997138U (en) 2021-08-20

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022281468.6U Active CN213997138U (en) 2020-10-14 2020-10-14 Waste oil discharge mechanism for vacuum cleaning machine

Country Status (1)

Country Link
CN (1) CN213997138U (en)

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GR01 Patent grant
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Effective date of registration: 20221221

Address after: Floor 1-4, Xumiao Village, Julong Avenue, Panlongcheng Economic Development Zone, Huangpi District, Wuhan City, Hubei Province 430000

Patentee after: Wuhan Xinmupei Environmental Protection Co.,Ltd.

Address before: 525100 No. 1, Nali village, Lanshan, Zhongdong Town, Huazhou City, Maoming City, Guangdong Province

Patentee before: Feng Zhizhen

TR01 Transfer of patent right