CN212360310U - Multifunctional submersible pump - Google Patents

Multifunctional submersible pump Download PDF

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Publication number
CN212360310U
CN212360310U CN202020451067.8U CN202020451067U CN212360310U CN 212360310 U CN212360310 U CN 212360310U CN 202020451067 U CN202020451067 U CN 202020451067U CN 212360310 U CN212360310 U CN 212360310U
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water
submersible pump
water pumping
aquarium
water outlet
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CN202020451067.8U
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Chinese (zh)
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丁绍杰
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Individual
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Abstract

The utility model belongs to the technical field of the non-varactor formula pump, specifically disclose a multi-functional immersible pump, including the immersible pump body, the immersible pump body is equipped with water inlet and delivery port, still includes the subassembly that draws water, the subassembly that draws water can be dismantled with the delivery port of immersible pump body and be connected. Adopt this immersible pump not only can be used to the water in the aquarium and carry out hydrologic cycle, can conveniently draw water the blowdown moreover to the aquarium.

Description

Multifunctional submersible pump
Technical Field
The utility model discloses the application relates to non-varactor formula pump technical field, concretely relates to multi-functional immersible pump.
Background
With the improvement of the living standard of people, the pursuit of people for spiritual life is increased day by day, and the raising of aquaria is one of the enthusiastic leisure life styles of most people. How to easily raise the aquatic animals is particularly important in the fast-paced life. The aquarium is generally raised in the aquarium, and the submersible pump is used as an important member of the aquarium and is a key for easily raising the aquarium.
Many submersible pumps on the market at present comprise a suspension type multifunctional submersible pump, and the submersible pump integrates the functions of water circulation filtration, oxygen increasing, water pumping, sewage discharging and the like. However, the water pumping and sewage discharging modes of the submersible pump adopt that a water pumping hose is directly connected to one of T-shaped water outlets of the submersible pump. The disadvantage of this method is that when the aquarium is pumping water and discharging sewage, the water circulating filter still has water flowing into the aquarium, which is not favorable to pumping the water in the aquarium completely and affecting the effect of pumping water and discharging sewage.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a multifunctional submersible pump, adopt this submersible pump not only can be used to the water in the aquarium and carry out hydrologic cycle, can conveniently draw water the blowdown moreover to the aquarium.
In order to achieve the above purpose, the basic scheme of the utility model is as follows: the utility model provides a multifunctional submersible pump, includes the immersible pump body, the immersible pump body is equipped with water inlet and delivery port, still includes the subassembly that draws water, the subassembly that draws water can be dismantled with the delivery port of immersible pump body and be connected.
The working principle of the basic scheme is as follows: when the submersible pump is used, the submersible pump body is placed into the aquarium. When the water in the aquarium needs to be circulated, the water pumping component is detached from the water outlet, so that the water pumping component is separated from the water outlet. Then the submersible pump is started, water in the aquarium enters the submersible pump from the water inlet and is pumped out by the submersible pump from the water outlet, and the water pumped out from the water outlet still enters the aquarium. When water pumping and sewage discharging are needed, the water pumping assembly is connected with the water outlet, then the submersible pump is started, and water in the aquarium enters the submersible pump from the water inlet and enters the water pumping assembly from the water outlet and is discharged along the water pumping assembly.
The basic scheme has the following beneficial effects: 1. under normal conditions, the water pumping component is separated from the water outlet, the submersible pump is started to enable water in the aquarium to be in a circulating state, the water flows and is fully contacted with air, the dissolved oxygen amount of the water is improved, and the water in the aquarium is prevented from going bad, rotting and the like due to 'dead water'. 2. When water pumping and sewage discharging are needed, the water pumping assembly is connected with the water outlet, and water pumped out from the water outlet can be discharged out of the aquarium along the water pumping assembly, so that the water in the aquarium can be discharged, and the water pumping and sewage discharging effects are achieved. 3. In this scheme, can link together or pull down the subassembly that draws water with the delivery port as required to can reach the effect of hydrologic cycle or the blowdown of drawing water as required, a thing is multi-purpose promptly.
Further, the subassembly that draws water includes the connector and the hose that draws water, connector one end that draws water can be dismantled with the delivery port and be connected, the connector other end that draws water can be dismantled with the hose that draws water and be connected. The water outlet and the water pumping hose are connected through the water pumping connector, so that the connection is convenient, and the water pumping hose is adopted to control the position of the water outlet end of the water pumping hose, so that the water in the aquarium can be discharged more conveniently.
Furthermore, a convex column is arranged at the water outlet, and an L-shaped guide groove matched with the convex column is arranged at the end part of the water pumping connector connected with the water outlet. When the water pumping connector is connected with the water outlet, the port of the L-shaped guide groove is opposite to the convex column, then the water pumping connector is pushed to enable the convex column to abut against the bottom of the L-shaped guide groove, and then the L-shaped guide groove is rotated to connect the water pumping connector with the water outlet. When the water pumping connector needs to be detached, the operation is reversed. Therefore, the connection strength of the water pumping connector and the water outlet can be ensured, and the water pumping connector can be particularly prevented from falling off when the water pumping connector is accidentally subjected to external force.
Furthermore, one end of the water pumping connector is clamped with the water outlet. The clamping mode is adopted, and the operation is simple and convenient.
Further, a hollow cylinder body used for being connected with the oxygenation regulator is arranged on the side of the water outlet. The hollow cylinder is connected with the oxygenation regulator, and oxygen in the oxygenation regulator can be discharged into the aquarium through the water outlet through the hollow cylinder, so that the dissolved oxygen of water in the aquarium is increased, and the growth of fishes, aquatic weeds and the like in the aquarium is facilitated.
Further, still include the upper cover, the upper cover is equipped with the power cord hole of stepping down, the upper cover is connected with immersible pump body upper end. The upper cover is arranged to protect the submersible pump body conveniently, and the power line of the submersible pump body can be passed through the power supply abdicating hole to facilitate connection of the power supply.
Further, still include the lower cover, the lower cover is connected with immersible pump body lower extreme, sets up the lower cover and conveniently protects the immersible pump body.
Further, the lateral part of the submersible pump body is provided with a T-shaped groove used for being connected with a suspension piece. The T-shaped groove can be connected with a suspension piece, and the submersible pump is fixed in the aquarium through the suspension piece.
Furthermore, the water pumping connector is L-shaped. People need only hold the one end of keeping away from being connected with the delivery port when need will draw water the connector and be connected with the delivery port, need not stretch into aquatic or need not all stretch into aquatic and just can connect or pull down, is the linear type in comparison with the connector that draws water, and is easier to operate.
Furthermore, still include filtering component and filtration connecting pipe, filter the connecting pipe both ends and be connected with filtering component and water inlet respectively, filtering component places in aquarium bottom. The filter component can filter the water entering the submersible pump in the aquarium, so that the water pumped out by the water outlet of the submersible pump is clean.
Drawings
Fig. 1 is a perspective view of a first embodiment of the multifunctional submersible pump of the present invention;
fig. 2 is a schematic perspective exploded view of a first embodiment of the multifunctional submersible pump of the present invention;
fig. 3 is a schematic perspective exploded view of a first embodiment of the multifunctional submersible pump of the present invention;
fig. 4 is a perspective view of a water pumping connector in a first embodiment of the multifunctional submersible pump of the present invention;
fig. 5 is a perspective view of the connection between the water pumping connector and the submersible pump body according to the first embodiment of the multifunctional submersible pump of the present invention;
fig. 6 is a perspective view of the connection between the water pumping connector and the submersible pump body according to the first embodiment of the multifunctional submersible pump of the present invention;
fig. 7 is a perspective view of a first embodiment of the multifunctional submersible pump of the present invention;
fig. 8 is a perspective view of a second embodiment of the multifunctional submersible pump of the present invention;
fig. 9 is a perspective view of a second embodiment of the multifunctional submersible pump of the present invention;
fig. 10 is a schematic perspective exploded view of a third embodiment of the multifunctional submersible pump of the present invention;
fig. 11 is a perspective view of a third embodiment of the multifunctional submersible pump of the present invention.
Detailed Description
The following is further detailed by way of specific embodiments:
reference numerals in the drawings of the specification include: the water pump comprises a submersible pump body 01, a hanging piece 02, an upper cover 10, a power line abdicating hole 11, a first clamping hook 12, a pump body 20, a water outlet 21, a hollow column 211, a convex column 212, a T-shaped groove 22, a first clamping hole 24, a second clamping hole 23, a lower cover 30, a second clamping hook 31, a water inlet 32, a water pumping connector 40, an L-shaped guide groove 41, an oxygenation regulator 50, a filter component 60, a first bottom sand filter plate 61, a second bottom sand filter plate 62, a first groove 611, a second groove 621, a float grass basin 70, an aquarium 80, an oxygenation regulator hose 91, a water pumping hose 92, a first hard hollow pipe 93 and a second hard hollow pipe 94.
Example one
This embodiment is substantially as shown in figures 1-7 of the drawings: the utility model provides a multifunctional submersible pump, includes immersible pump body 01, and immersible pump body 01 is equipped with water inlet 32 and delivery port 21, and wherein water inlet 32 is located immersible pump body 01 lower extreme, and delivery port 21 is located immersible pump body 01 lateral wall lower part, and the connected mode of water inlet 32 and delivery port 21 and immersible pump body 01 is known by technical personnel in the field, and no longer the repeated description here. The submersible pump body 01 further comprises an upper cover 10, a lower cover 30 and a pump body 20, wherein the upper cover 10 is provided with a power line abdicating hole 11 for a power line of the submersible pump body 01 to pass through. The upper end of the pump body 20 is provided with a first clamping hole 24, the lower end of the pump body 20 is provided with a second clamping hole 23, the upper cover 10 is provided with a first clamping hook 12, and the lower cover 30 is provided with a second clamping hook 31. The first hook 12 is integrally formed with the upper case 10, and the second hook 31 is integrally formed with the lower case 30. The first hook 12 is clamped with the first clamping hole 24; the second hook 31 engages with the second engaging hole 23. The upper cover 10 is connected with the upper end of the pump body 20 through a first clamping hook 12 and a first clamping hole 24; the lower cover 30 is connected with the submersible pump body 01 through the second hook 31 and the second fastening hole 23.
The embodiment also comprises a water pumping assembly, and the water pumping assembly is detachably connected with the water outlet 21 of the submersible pump body 01. Specifically, the water pumping assembly includes a water pumping connector 40 and a water pumping hose 92, in this embodiment, the water pumping connector 40 is L-shaped. One end of the water pumping connector 40 is detachably connected with the water outlet 21. In this embodiment, the water outlet 21 is provided with a convex pillar 212, the convex pillar 212 and the water outlet 21 are integrally formed, and the end of the water pumping connector 40 connected to the water outlet 21 is provided with an L-shaped guide slot 41 matched with the convex pillar 212. When the water pumping connector 40 is connected with the water outlet 21, the port of the L-shaped guide groove 41 is directly opposite to the convex column 212, then the water pumping connector 40 is pushed to enable the convex column 212 to be abutted against the bottom of the L-shaped guide groove 41, then the L-shaped guide groove 41 is rotated to connect the water pumping connector 40 with the water outlet 21, and the water pumping hose 92 is in interference fit with the water pumping connector 40. The water outlet 21 and the water pumping hose 92 are connected through the water pumping connector 40, so that the connection is convenient, and the water pumping hose 92 can be rotated or bent due to the fact that the water pumping hose 92 is made of soft materials, so that the position of the water outlet end of the water pumping hose 92 is changed, and water in the aquarium can be discharged to any position more conveniently. The water pumping hose 92 in this embodiment is made of soft plastic, and may be a bellows.
When the water pumping connector 40 needs to be detached, the water pumping connector 40 is operated reversely. Therefore, the connection strength of the water pumping connector 40 and the water outlet 21 can be ensured, and the water pumping connector 40 is prevented from falling off.
The oxygen increasing regulator further comprises an oxygen increasing regulator hose 91, a hollow cylinder 211 used for being connected with the oxygen increasing regulator 50 is arranged on the side of the water outlet 21, and the hollow cylinder 211 and the water outlet are integrally formed. One end of the oxygen increasing regulator hose is in interference fit with the hollow cylinder 211, and the other end of the oxygen increasing regulator hose is connected with the oxygen increasing regulator 50 in the prior art, which is not described herein again. The oxygen in the oxygen increasing regulator 50 can be discharged into the aquarium 80 through the water outlet 21, so as to increase the dissolved oxygen of the water in the aquarium 80 and be more beneficial to the growth of fishes, aquatic weeds and the like in the aquarium 80.
In this embodiment, a suspension member 02, which is a U-shaped suspension member in this embodiment, is further included, and a T-shaped groove 22 for engaging with the suspension member 02 is formed at a side portion of the submersible pump body 01.
The specific implementation process is as follows: when the submersible pump is used, the T-shaped groove 22 is connected with the hanging piece 02, and the submersible pump is fixed in the aquarium 80 through the hanging piece 02. When the water in the aquarium 80 needs to be circulated, the water pumping assembly is detached from the water outlet 21 to be separated from the water outlet 21. The submersible pump is then activated and water from the aquarium enters the submersible pump from the water inlet 32 and is pumped out by the submersible pump from the water outlet 21, the water being pumped out from the water outlet 21 still entering the aquarium 80 for water circulation. When water pumping and sewage discharging are needed, the water pumping assembly is connected with the water outlet 21, and the water outlet end of the water pumping hose 92 is ensured to be positioned in a certain container (such as a water bucket) outside the aquarium 80 or communicated with a sewer; the submersible pump is then activated and water within the aquarium 80 enters the submersible pump from the water inlet 32 and enters the water pumping assembly from the water outlet 21 and is discharged out of the aquarium 80 along the water pumping assembly to achieve a water and dirt pumping function, followed by introduction of new water within the aquarium 80. In this embodiment, the water pumping assembly and the water outlet 21 can be connected together or detached as required, so that the water circulation or water pumping and sewage discharging functions can be achieved as required, and the multifunctional water pump is multifunctional.
Example two
As shown in fig. 8 and 9, the present embodiment is different from the first embodiment in that the present embodiment further includes a filtering assembly 60 and a filtering connecting pipe, two ends of the filtering connecting pipe are respectively connected to the filtering assembly 60 and the water inlet 32, and the filtering assembly 60 is placed at the bottom of the aquarium 80. Specifically, the filtering connecting pipe comprises a first hard hollow pipe 93 and a second hard hollow pipe 94, wherein one end of the first hard hollow pipe 93 is connected with the water inlet 32 in a sleeved mode, and the other end of the first hard hollow pipe 93 extends into the second hard hollow pipe 94 and can slide along the second hard hollow pipe 94. The other end of the second rigid hollow tube 94 is sleeved with the column of the filter assembly 60.
In this embodiment, the filter assembly 60 includes a first base filter plate 61 and a plurality of second base filter plates 62, and the first base filter plate 61 and the second base filter plates 62 are joined to form the filter assembly 60. First recess 611 has been seted up at first bottom sand filter 61 upper end, has seted up second recess 621 at second bottom sand filter 62 upper end, and first recess 611 and second recess 621 are used for placing pasture and water basin 70, place pasture and water basin 70 and both can strengthen the pleasing to the eye effect in the aquarium 80, and the pasture and water can carry out photosynthesis again, to the water release oxygen in the aquarium.
The filter assembly 60 filters water entering the submersible pump within the aquarium 80 such that the water being pumped out of the submersible pump outlet 21 contains no or minimal contaminants to facilitate biological growth within the aquarium 80.
EXAMPLE III
As shown in fig. 10 and fig. 11, the difference between the present embodiment and the first embodiment is that in the present embodiment, one end of the water pumping connector 40 is clamped with the water outlet 21. Compared with the first embodiment, the clamping manner is adopted, so that the operation is convenient, and particularly, the operation is convenient when the water pumping connector 40 is detached from the water outlet 21.
The above description is only an example of the present invention, and the common general knowledge of the known specific structures and characteristics of the embodiments is not described herein. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (8)

1. The utility model provides a multifunctional submersible pump, includes the immersible pump body, the immersible pump body is equipped with water inlet and delivery port, its characterized in that: the water pumping assembly is detachably connected with a water outlet of the submersible pump body; the water pumping assembly comprises a water pumping connector and a water pumping hose, one end of the water pumping connector is detachably connected with the water outlet, and the other end of the water pumping connector is detachably connected with the water pumping hose; the water outlet is provided with a convex column, and the end part of the water pumping connector connected with the water outlet is provided with an L-shaped guide groove matched with the convex column.
2. The multifunctional submersible pump of claim 1, wherein: one end of the water pumping connector is clamped with the water outlet.
3. The multifunctional submersible pump of claim 2, wherein: the water pumping connector is L-shaped.
4. The multifunctional submersible pump of claim 3, wherein: still include the upper cover, the upper cover is equipped with the power cord hole of stepping down, the upper cover is connected with immersible pump body upper end.
5. The multifunctional submersible pump of claim 4, wherein: the submersible pump further comprises a lower cover, and the lower cover is connected with the lower end of the submersible pump body.
6. The multifunctional submersible pump of claim 5, wherein: the lateral part of the submersible pump body is provided with a T-shaped groove used for being connected with a suspension piece.
7. The multifunctional submersible pump of claim 1 or 6, wherein: and a hollow cylinder used for being connected with the oxygenation regulator is arranged on the side part of the water outlet.
8. The multifunctional submersible pump of claim 6, wherein: the aquarium is characterized by further comprising a filtering component and a filtering connecting pipe, wherein two ends of the filtering connecting pipe are connected with the filtering component and the water inlet respectively, and the filtering component is placed at the bottom of the aquarium.
CN202020451067.8U 2020-03-31 2020-03-31 Multifunctional submersible pump Active CN212360310U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020451067.8U CN212360310U (en) 2020-03-31 2020-03-31 Multifunctional submersible pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020451067.8U CN212360310U (en) 2020-03-31 2020-03-31 Multifunctional submersible pump

Publications (1)

Publication Number Publication Date
CN212360310U true CN212360310U (en) 2021-01-15

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Application Number Title Priority Date Filing Date
CN202020451067.8U Active CN212360310U (en) 2020-03-31 2020-03-31 Multifunctional submersible pump

Country Status (1)

Country Link
CN (1) CN212360310U (en)

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