CN221334760U - Water adding structure for centrifugal oil filter - Google Patents

Water adding structure for centrifugal oil filter Download PDF

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Publication number
CN221334760U
CN221334760U CN202323165250.4U CN202323165250U CN221334760U CN 221334760 U CN221334760 U CN 221334760U CN 202323165250 U CN202323165250 U CN 202323165250U CN 221334760 U CN221334760 U CN 221334760U
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China
Prior art keywords
water
salt
oil filter
proportioning
centrifugal oil
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CN202323165250.4U
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Chinese (zh)
Inventor
袁玉金
刘松
王昌龄
栗舟
邱爽
李峰
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Zaozhuang Nanjiao Thermal Power Co ltd
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Zaozhuang Nanjiao Thermal Power Co ltd
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Abstract

The utility model discloses a water adding structure for a centrifugal oil filter, which belongs to the technical field of centrifugal oil filters and adopts the technical scheme that the water adding structure comprises a centrifugal oil filter body, wherein the top of the centrifugal oil filter body is communicated with a feed liquid hopper, the front side of the top of the centrifugal oil filter body is bolted with a proportioning water tank, when the water adding structure is used, salt is added into a lower salt component at the top of a gravity sensor through arranging the centrifugal oil filter body, the feed liquid hopper, the proportioning water tank, a lower salt component, a weighing component, a water inlet component, the mixing component and a water outlet component, in the process, a supporting rod supports the gravity sensor and the lower salt component for use, then the weighing of the salt added into the lower salt component is realized through the gravity sensor, the data obtained by weighing is fed back to a display control screen for display, and then the salt in the centrifugal oil filter is discharged into the proportioning water tank through opening the lower salt component.

Description

Water adding structure for centrifugal oil filter
Technical Field
The utility model relates to the technical field of centrifugal oil filters, in particular to a water adding structure for a centrifugal oil filter.
Background
The centrifugal oil filter is characterized by that it utilizes the high-speed rotation of its centrifugal head to make the oil, water and impurity in the lubricating oil with different pollution degree be quickly separated by means of different centrifugal force, for example, the saline water is required to be added into the oil filtered by centrifugal oil filter, and this is related to the design principle of centrifugal oil filter, and the principle of centrifugal oil filter is that the high-speed rotation of internal oil cylinder of oil filter is driven by means of rotation of motor to produce centrifugal machine, so that the oil sludge with large specific gravity can be forced to be thrown onto and attached to the inner wall of oil filter, so that the effect of filtering oil can be reached, and the saline water can be thrown out to make adsorption after the above-mentioned materials are aggregated, and the ratio of saline water and crude oil is 1 jin to 100 jin, and the ratio of water and salt is 9 two to 1 jin.
When the existing centrifugal oil filter needs to be added with salt water, a user needs to firstly receive and put boiling water with a proper proportion by using a barrel, then manually add salt into the boiling water, stir the boiling water and the salt to form salt water, then add the salt water into the centrifugal oil filter for use, and in the process, the received and put boiling water and the manually put salt can not reach an accurate proportion, so that the actual effect of adding the salt water into the centrifugal oil filter is affected, and the manual water receiving and putting and salt putting of the user can increase the labor intensity of the user and the effect is not ideal.
Disclosure of utility model
The utility model provides a water adding structure for a centrifugal oil filter, which aims to solve the problems that when the conventional centrifugal oil filter needs to add salt water, a user needs to firstly add a proper proportion of boiling water into a barrel, then manually add salt into the boiling water, stir the boiling water and the salt to form salt water, then add the salt water into the centrifugal oil filter for use, and in the process, the boiling water which is received and released and the salt which is manually released cannot reach the accurate proportion, so that the actual effect of adding the salt water into the centrifugal oil filter is influenced, and the manual water receiving and salt releasing of the user can increase the labor intensity of the user and the effect is not ideal.
The utility model is realized in such a way, the water adding structure for the centrifugal oil filter comprises a centrifugal oil filter body, wherein the top of the centrifugal oil filter body is communicated with a feed liquid hopper, the front side of the top of the centrifugal oil filter body is bolted with a proportioning water tank, the rear side of the top of the proportioning water tank is provided with a lower salt component, the bottom of the lower salt component is provided with a weighing component, the weighing component is positioned at the rear side of the top of the proportioning water tank, the left side of the top of the proportioning water tank is provided with a water inlet component, the inside of the proportioning water tank is provided with a mixing component, the bottom of the proportioning water tank is provided with a water outlet component, and the rear side of the water outlet component is communicated with the feed liquid hopper;
the weighing assembly comprises a supporting rod, a gravity sensor and a display control screen, wherein the supporting rod is respectively bolted to two sides of the rear side of the top of the proportioning water tank, the gravity sensor is bolted to the top of the supporting rod, the top of the gravity sensor is bolted to the bottom of the lower salt assembly, the display control screen is bolted to the right side of the lower salt assembly, and the display control screen is electrically connected with the gravity sensor.
In order to achieve the effect of storing and using salt under the supporting weighing of the weighing assembly, the water adding structure for the centrifugal oil filter is preferable, the lower salt assembly comprises a salt placing box and a lower salt electromagnetic valve, the bottom of the salt placing box is bolted with the top of the gravity sensor, the right side of the salt placing box is bolted with the display control screen, the top of the lower salt electromagnetic valve is communicated with the bottom of the salt placing box, the bottom of the lower salt electromagnetic valve is communicated with the rear side of the top of the proportioning water tank, and the lower salt electromagnetic valve is electrically connected with the display control screen.
In order to achieve the effect of conveniently adding a proper amount of boiling water into the proportioning water tank, the water adding structure for the centrifugal oil filter is preferable, and the water inlet assembly comprises a water outlet pipe and an electromagnetic water inlet valve, wherein the water outlet pipe is communicated with the front side of the top of the proportioning water tank, and the front side of the water outlet pipe is communicated with the electromagnetic water inlet valve.
In order to achieve the effect of mixing boiled water and salt entering the water tank in a follow-up mode, the water adding structure for the centrifugal oil filter is preferable, the mixing and stirring assembly comprises a motor and a stirring shaft rod, the motor is bolted in the middle of the top of the water tank in a proportioning mode, the output end of the motor penetrates through the top of the water tank in a proportioning mode, and the top of the stirring shaft rod is bolted with the output end of the motor.
In order to achieve the effect that the saline water in the proportioning water tank is discharged into the feed liquid hopper and then enters the centrifugal oil filter body for use, the water adding structure for the centrifugal oil filter is preferable, and the water outlet assembly comprises a water outlet pipe, a water pump and a water outlet pipe, wherein the water outlet pipe is communicated with the bottom of the proportioning water tank, the water pump is bolted to the front side of the top of the proportioning water tank, the absorption end of the water pump is communicated with the rear side of the water outlet pipe, the front side of the water outlet pipe is communicated with the discharge end of the water pump, and the rear side of the water outlet pipe is communicated with the front side of the feed liquid hopper.
In order to achieve the effect of protecting and using the salt storage box when salt is stored in the salt storage box, the water adding structure for the centrifugal oil filter is preferable, the top of the salt storage box is bolted with a protection plate, and a hole groove is formed in the left side of the top of the protection plate.
In order to achieve the effect of conveniently adding salt to the salt box through the protection plate, the water adding structure for the centrifugal oil filter is preferable, wherein the salt adding hopper is arranged on the right side of the top of the protection plate, and the salt adding hopper is welded and communicated with the hole groove.
In order to achieve the effect of improving the real-time temperature of the proportioning water tank for use, the water adding structure for the centrifugal oil filter is preferable, wherein an auxiliary heating pipe is embedded in the inner side of the proportioning water tank, and the auxiliary heating pipe is in an annular shape.
Compared with the prior art, the utility model has the beneficial effects that:
The water adding structure for the centrifugal oil filter comprises a centrifugal oil filter body, a feed liquid hopper, a proportioning water tank, a lower salt component, a weighing component, a water inlet component, a mixing component and a water outlet component, wherein when the water adding structure is used, salt is added into the lower salt component at the top of a gravity sensor, a supporting rod supports the gravity sensor and the lower salt component in the process, then the gravity sensor is used for weighing the salt added into the lower salt component, the weighed data is fed back to a display control screen for display, then the lower salt component is opened for discharging the salt in the water tank in a mode of 9:1 of the proportion of water to the salt, and when the salt discharged from the lower salt component reaches a preset value, the gravity sensor feeds back to the display control screen for display, then the lower salt component stops discharging salt to the inside of the proportioning water tank, the synchronous water inlet component which passes through the left side of the top of the proportioning water tank is externally connected with boiling water to be conveyed to the inside of the proportioning water tank, because the proportioning water tank is designed in a mode of 9:1 of water to salt, when the entering boiling water reaches a proper water level, the water inlet component is closed and stops water inlet, then the synchronous water mixing component is started to mix the boiling water and salt which enter the proportioning water tank so as to form salt water, then the water outlet component at the bottom of the proportioning water tank is started to discharge the salt water to the inside of a feed liquid hopper, then the salt water enters the centrifugal oil filter body through the feed liquid hopper to be used, so that the boiling water and the salt are prevented from being mixed accurately, the use effect of adding the salt water to the centrifugal oil filter body is improved, and the labor intensity of a user is reduced, the integral matching use effect is more ideal.
Drawings
FIG. 1 is an overall construction diagram of a water adding structure for a centrifugal oil filter of the present utility model;
FIG. 2 is a schematic diagram of the structure of the proportioning water tank in the utility model;
FIG. 3 is a schematic view of the structure of the lower salt assembly and the weighing assembly of the present utility model;
FIG. 4 is a schematic view of a water inlet assembly according to the present utility model;
FIG. 5 is a schematic view of the mixing assembly of the present utility model;
FIG. 6 is a schematic view of the structure of the water outlet assembly according to the present utility model.
In the figure, 1, a centrifugal oil filter body; 2. a feed liquid hopper; 3. proportioning a water tank; 4. a lower salt assembly; 401. a salt box is arranged; 402. a salt discharging electromagnetic valve; 5. a weighing assembly; 501. a support rod; 502. a gravity sensor; 503. displaying a control screen; 6. a water inlet assembly; 601. a water supply pipe; 602. an electromagnetic water inlet valve; 7. a mixing and stirring assembly; 701. a motor; 702. a stirring shaft lever; 8. a water outlet assembly; 801. a water outlet pipe; 802. a water pump; 803. a drain pipe; 9. a protection plate; 10. adding salt hopper; 11. and (5) an auxiliary heating pipe.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
In the description of the present utility model, it should be understood that the terms "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like indicate orientations or positional relationships based on the orientation or positional relationships shown in the drawings, merely to facilitate describing the present utility model and simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be construed as limiting the present utility model. Furthermore, in the description of the present utility model, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
Referring to fig. 1-6, the present utility model provides the following technical solutions: the utility model provides a centrifugal oil filter is with adding water structure, including centrifugal oil filter body 1, there is feed liquid bucket 2 in the top intercommunication of centrifugal oil filter body 1, the front side bolt at centrifugal oil filter body 1 top has proportioning water pitcher 3, proportioning water pitcher 3 top the rear side is provided with down salt subassembly 4, down salt subassembly 4's bottom is provided with weighing assembly 5, weighing assembly 5 is located proportioning water pitcher 3 top the rear side, proportioning water pitcher 3 top the left side is provided with water inlet module 6, proportioning water pitcher 3's inside is provided with mixing assembly 7, proportioning water pitcher 3's bottom is provided with out water subassembly 8, go out water subassembly 8 the rear side and feed liquid bucket 2 intercommunication;
The weighing assembly 5 comprises a supporting rod 501, a gravity sensor 502 and a display control screen 503, wherein the supporting rod 501 is respectively bolted to two sides of the rear side of the top of the proportioning water tank 3, the gravity sensor 502 is bolted to the top of the supporting rod 501, the top of the gravity sensor 502 is bolted to the bottom of the lower salt assembly 4, the display control screen 503 is bolted to the right side of the lower salt assembly 4, and the display control screen 503 is electrically connected with the gravity sensor 502.
In this embodiment: through arranging the centrifugal oil filter body 1, the feed liquid bucket 2, the proportioning water tank 3, the lower salt component 4, the weighing component 5, the water inlet component 6, the mixing component 7 and the water outlet component 8, when in use, salt is added into the lower salt component 4 at the top of the gravity sensor 502, the gravity sensor 502 and the lower salt component 4 are supported and used by the supporting rod 501 in the process, then the salt added into the lower salt component 4 is weighed through the gravity sensor 502, the weighed data is fed back to the display control screen 503 for display, then the salt in the lower salt component 4 is opened for discharging to the proportioning water tank 3, the process is carried out according to the mode of the proportion 9:1 of water and salt, and then when the salt discharged from the lower salt component 4 reaches a preset value, the gravity sensor 502 feeds back to the display control screen 503 for display, then the lower salt component 4 stops discharging salt to the inside of the proportioning water tank 3, the synchronous water inlet component 6 which passes through the left side of the top of the proportioning water tank 3 is externally connected with boiling water and is conveyed to the inside of the proportioning water tank 3, because the proportioning water tank 3 is designed according to the water-salt ratio 9:1 mode, when the entering boiling water reaches a proper water level, the water inlet component 6 is closed and water inlet is stopped, then the synchronous water mixing component 7 is started to mix the boiling water and salt which enter the proportioning water tank 3, so as to form salt water, then the water outlet component 8 at the bottom of the proportioning water tank 3 is started to discharge the salt water into the feed liquid hopper 2, then the salt water enters the centrifugal oil filter body 1 through the feed liquid hopper 2 for use, so that the boiling water and the salt are prevented from not reaching an accurate proportioning, the use effect of adding the salt water into the centrifugal oil filter body 1 is improved, and the labor intensity of a user is reduced, the integral matching use effect is more ideal.
As a technical optimization scheme of the utility model, the lower salt assembly 4 comprises a salt placing box 401 and a lower salt electromagnetic valve 402, wherein the bottom of the salt placing box 401 is bolted with the top of the gravity sensor 502, the right side of the salt placing box 401 is bolted with the display control screen 503, the top of the lower salt electromagnetic valve 402 is communicated with the bottom of the salt placing box 401, the bottom of the lower salt electromagnetic valve 402 is communicated with the rear side of the top of the proportioning water tank 3, and the lower salt electromagnetic valve 402 is electrically connected with the display control screen 503.
In this embodiment: through setting up put salt box 401 and lower salt solenoid valve 402, add the salt in putting the salt box 401 at gravity sensor 502 top, in this process bracing piece 501 supports gravity sensor 502 and puts salt box 401 and uses, then realize putting the inside salt of salt box 401 to adding through gravity sensor 502 and weigh, and feedback display control screen 503 with the data that the weighing obtained shows, then go on discharging to proportioning water jar 3 inside through opening lower salt solenoid valve 402 of putting salt box 401 bottom, in this process goes on according to the mode of 9:1 of water and salt, then after the salt of putting the salt box 401 of discharging reaches the predetermined value, its gravity sensor 502 feeds back to display control screen 503 and shows, then lower salt solenoid valve 402 stops to be to its proportioning water jar 3 inside go on discharging salt.
As a technical optimization scheme of the utility model, the water inlet assembly 6 comprises a sewer pipe 601 and an electromagnetic water inlet valve 602, wherein the sewer pipe 601 is communicated with the front side of the top of the proportioning water tank 3, and the front side of the sewer pipe 601 is communicated with the electromagnetic water inlet valve 602.
In this embodiment: by arranging the sewer pipe 601 and the electromagnetic water inlet valve 602, boiling water is externally connected through the electromagnetic water inlet valve 602 at the left side of the top of the proportioning water tank 3 and is conveyed into the proportioning water tank 3 through opening the electromagnetic water inlet valve 602, the proportioning water tank 3 is designed in a mode of 9:1 of water to salt ratio, and when the entering boiling water reaches a proper water level, the electromagnetic water inlet valve 602 is closed and water inlet is stopped.
As a technical optimization scheme of the utility model, the mixing and stirring assembly 7 comprises a motor 701 and a stirring shaft lever 702, wherein the motor 701 is bolted in the middle of the top of the proportioning water tank 3, the output end of the motor 701 penetrates through the top of the proportioning water tank 3, and the top of the stirring shaft lever 702 is bolted with the output end of the motor 701.
In this embodiment: through setting up motor 701 and stirring axostylus axostyle 702, drive stirring axostylus axostyle 702 through starter motor 701 and stir boiling water and salt that gets into in proportioning water tank 3 to this forms salt water.
As a technical optimization scheme of the utility model, the water outlet assembly 8 comprises a water outlet pipe 801, a water pump 802 and a water outlet pipe 803, wherein the water outlet pipe 801 is communicated with the bottom of the proportioning water tank 3, the water pump 802 is bolted to the front side of the top of the proportioning water tank 3, the absorption end of the water pump 802 is communicated with the rear side of the water outlet pipe 801, the front side of the water outlet pipe 803 is communicated with the discharge end of the water pump 802, and the rear side of the water outlet pipe 803 is communicated with the front side of the feed liquid hopper 2.
In this embodiment: through setting up outlet pipe 801, water pump 802 and drain pipe 803, through opening the inside salt solution suction of proportioning water pitcher 3 of water pump 802 cooperation outlet pipe 801 of proportioning water pitcher 3, then discharge to the inside of feed liquid bucket 2 through drain pipe 803, then salt solution gets into centrifugal oil filter body 1 through feed liquid bucket 2 and uses.
As a technical optimization scheme of the utility model, the top of the salt box 401 is bolted with a protection plate 9, and the left side of the top of the protection plate 9 is provided with a hole slot.
In this embodiment: by setting the protection plate 9, the effect of protecting the use when the salt is stored in the salt storage box 401 can be achieved, so that the practicability is improved.
As a technical optimization scheme of the utility model, a salt adding hopper 10 is arranged on the right side of the top of the protection plate 9, and the salt adding hopper 10 is connected and communicated with Kong Caohan.
In this embodiment: by arranging the salt adding hopper 10, the effect of adding salt to the salt placing box 401 through the protection plate 9 can be realized, so that the practicability is improved.
As a technical optimization scheme of the utility model, an auxiliary heating pipe 11 is embedded in the inner side of the proportioning water tank 3, and the auxiliary heating pipe 11 is in an annular shape.
In this embodiment: by arranging the auxiliary heating pipe 11, the effect of using the real-time temperature of the water tank 3 can be improved, so that the practicability is improved.
Working principle: firstly, add salt into the salt box 401 at the top of gravity sensor 502, in the process, bracing piece 501 supports gravity sensor 502 and salt box 401 and uses, then realize weighing the salt of adding into the inside of salt box 401 through gravity sensor 502, and feed back the data that is obtained of weighing to display control screen 503 and show, then open the lower salt solenoid valve 402 of salt box 401 bottom and discharge its inside salt to proportioning pitcher 3 inside, in the mode of 9:1 of water and salt in the process, then after the salt of arranging the salt box 401 reaches the predetermined value, its gravity sensor 502 feeds back to display control screen 503 and shows, then lower salt solenoid valve 402 stops to its proportioning pitcher 3 inside and discharges salt, synchronous through proportioning pitcher 3 top left electromagnetic water inlet valve 602 external boiling water and carry to proportioning pitcher 3 inside through opening electromagnetic water inlet valve 602, because proportioning pitcher 3 is designed according to the mode of water and salt's proportion 9:1, after the boiling water that gets into reaches suitable back and close electromagnetic water inlet valve 602 and stop motor 701, then drive the mode of proportion water pump body 802, and pump body 802 is driven to the inside of the pump water filter tip 3 is reached through the pump, thereby the water filter tip is formed to the water pump 801 is driven to the inside of the pump jack-up pump body is reached to the water filter tip of proportioning water pump 3, and then the pump is stopped to the inside is reached through the pump of proportioning pump 801, the pump is driven to fill pump is driven to the pump is stopped to be mixed with the inside of pump 1, the pump is driven to be filled with the pump is discharged into the inside of pump is 3, the pump is 3, the inside is pumped into the inside is 3 inside is 3.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.

Claims (8)

1. The utility model provides a centrifugal oil filter is with adding water structure, includes centrifugal oil filter body (1), its characterized in that: the top of centrifugal oil filter body (1) is communicated with feed liquid bucket (2), proportioning water tank (3) is bolted to the front side at centrifugal oil filter body (1) top, lower salt subassembly (4) is provided with in the rear side at proportioning water tank (3) top, the bottom of lower salt subassembly (4) is provided with weighing subassembly (5), weighing subassembly (5) are located the rear side at proportioning water tank (3) top, the left side at proportioning water tank (3) top is provided with water inlet subassembly (6), the inside of proportioning water tank (3) is provided with thoughtlessly stirs subassembly (7), the bottom of proportioning water tank (3) is provided with water outlet subassembly (8), the rear side and feed liquid bucket (2) of water outlet subassembly (8) communicate;
The weighing assembly (5) comprises a supporting rod (501), a gravity sensor (502) and a display control screen (503), wherein the supporting rod (501) is respectively bolted to two sides of the rear side of the top of the proportioning water tank (3), the gravity sensor (502) is bolted to the top of the supporting rod (501), the top of the gravity sensor (502) is bolted to the bottom of the lower salt assembly (4), the display control screen (503) is bolted to the right side of the lower salt assembly (4), and the display control screen (503) is electrically connected with the gravity sensor (502).
2. The water adding structure for a centrifugal oil filter according to claim 1, wherein: the salt subassembly (4) down is including putting salt box (401) and lower salt solenoid valve (402), the bottom of putting salt box (401) is bolted with the top of gravity sensor (502), the right side of putting salt box (401) is bolted with display control screen (503), the top of lower salt solenoid valve (402) communicates with the bottom of putting salt box (401), the bottom of lower salt solenoid valve (402) communicates with the rear side at proportioning water jar (3) top, lower salt solenoid valve (402) and display control screen (503) electric connection.
3. The water adding structure for a centrifugal oil filter according to claim 1, wherein: the water inlet assembly (6) comprises a sewer pipe (601) and an electromagnetic water inlet valve (602), the sewer pipe (601) is communicated with the front side of the top of the proportioning water tank (3), and the front side of the sewer pipe (601) is communicated with the electromagnetic water inlet valve (602).
4. The water adding structure for a centrifugal oil filter according to claim 1, wherein: the mixing and stirring assembly (7) comprises a motor (701) and a stirring shaft rod (702), wherein the motor (701) is bolted in the middle of the top of the proportioning water tank (3), the output end of the motor (701) penetrates through the top of the proportioning water tank (3), and the top of the stirring shaft rod (702) is bolted with the output end of the motor (701).
5. The water adding structure for a centrifugal oil filter according to claim 1, wherein: the water outlet assembly (8) comprises a water outlet pipe (801), a water pump (802) and a water outlet pipe (803), wherein the water outlet pipe (801) is communicated with the bottom of the proportioning water tank (3), the water pump (802) is bolted to the front side of the top of the proportioning water tank (3), the absorption end of the water pump (802) is communicated with the rear side of the water outlet pipe (801), the front side of the water outlet pipe (803) is communicated with the discharge end of the water pump (802), and the rear side of the water outlet pipe (803) is communicated with the front side of the feed liquid hopper (2).
6. The water adding structure for a centrifugal oil filter according to claim 2, wherein: the top bolt of putting salt box (401) has guard plate (9), the left side at guard plate (9) top has seted up the hole groove.
7. The water adding structure for a centrifugal oil filter according to claim 6, wherein: the right side at the top of the protection plate (9) is provided with a salt adding hopper (10), and the salt adding hopper (10) is welded and communicated with the hole groove.
8. The water adding structure for a centrifugal oil filter according to claim 1, wherein: an auxiliary heating pipe (11) is embedded in the inner side of the proportioning water tank (3), and the auxiliary heating pipe (11) is in an annular shape.
CN202323165250.4U 2023-11-23 2023-11-23 Water adding structure for centrifugal oil filter Active CN221334760U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323165250.4U CN221334760U (en) 2023-11-23 2023-11-23 Water adding structure for centrifugal oil filter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323165250.4U CN221334760U (en) 2023-11-23 2023-11-23 Water adding structure for centrifugal oil filter

Publications (1)

Publication Number Publication Date
CN221334760U true CN221334760U (en) 2024-07-16

Family

ID=91843180

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323165250.4U Active CN221334760U (en) 2023-11-23 2023-11-23 Water adding structure for centrifugal oil filter

Country Status (1)

Country Link
CN (1) CN221334760U (en)

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