CN212292801U - Oxygen collection device for municipal garden engineering - Google Patents

Oxygen collection device for municipal garden engineering Download PDF

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Publication number
CN212292801U
CN212292801U CN202020396994.4U CN202020396994U CN212292801U CN 212292801 U CN212292801 U CN 212292801U CN 202020396994 U CN202020396994 U CN 202020396994U CN 212292801 U CN212292801 U CN 212292801U
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China
Prior art keywords
annular groove
bottle
air
air inlet
water
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CN202020396994.4U
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Chinese (zh)
Inventor
张来勇
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Shandong Runfuyuan Construction Engineering Co ltd
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Shandong Runfuyuan Construction Engineering Co ltd
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Abstract

The utility model relates to the technical field of garden equipment, in particular to an oxygen collection device for municipal garden engineering.A cylinder is fixedly arranged on a top plate, an inflation tube is fixedly arranged at the output end of the cylinder, a connecting tube is connected between the air outlet end of an air pump and a water tank, a connecting hose is connected between the upper end of the water tank and the air inlet of the inflation tube, water is filled in a bottle body, an air inlet hole is arranged on the bottle stopper, a first spring is arranged between the lower side of a baffle and a first annular groove, a water outlet hole is arranged at the bottom of the bottle body, and a second spring is arranged between the baffle and a; the utility model discloses an in the air pump sent into oxygen water tank, through the filtration and the washing of the water in the water tank, get into the gas tube to drive the gas tube downstream by the cylinder and oxygenate in to the storage bottle, the oxygen that obtains is cleaner, and the oxygenation finishes the back first spring and promotes baffle rebound and seal the inlet port, and the second spring promotes the separation blade downstream and seals the apopore, avoids the oxygen in the bottle to be contaminated.

Description

Oxygen collection device for municipal garden engineering
Technical Field
The utility model relates to a garden equipment technical field, concretely relates to oxygen collection device for municipal garden engineering.
Background
Natural non-polluted air in nature contains 78% of nitrogen, 21% of oxygen, 0.94% of rare gas, 0.03% of carbon dioxide, and 0.03% of water and impurities, however, human beings continuously discharge harmful components including total suspended particulate matter, inhalable particulate matter, nitrogen oxides, fluorides, etc. into the air in production and life, thereby causing air pollution in cities. Oxygen is one of the most basic conditions on which humans live, and with the increasing deterioration of the human living environment, fresh oxygen is really a luxury more valuable than gold in a certain environment or area, and therefore fresh oxygen collection devices are in charge. The garden plants are numerous, and the oxygen content in garden areas is high due to photosynthesis of the plants, so that an oxygen collecting device for municipal garden engineering is urgently needed at present.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that an oxygen collection device is used in municipal garden engineering is provided, the oxygen of collection is comparatively clean, and can avoid oxygen to be contaminated during the storage to solve the problem in the background art.
In order to solve the technical problem, the technical scheme of the utility model is that: the oxygen collecting device for the municipal garden engineering comprises a bottom plate, wherein a vertical plate is fixedly mounted on the bottom plate, a top plate is fixedly mounted on the vertical plate, an air cylinder with an output end facing downwards is fixedly mounted on the top plate, an inflation tube with a closed upper end is fixedly mounted at the output end of the air cylinder, an air inlet is formed in one side of the inflation tube, a thin tube with a closed lower end is fixedly connected to the lower end of the inflation tube, a plurality of air outlet holes are further formed in the outer side of the lower end of the thin tube, and the inflation tube is communicated with the thin tube; the air pump is also included, and the air inlet end of the air pump is connected with an air inlet pipe; the air pump is characterized by further comprising a sealed water tank, a connecting pipe is connected between the air outlet end of the air pump and the water tank, the lower end of the connecting pipe extends below the liquid level of the water tank, and a connecting hose is connected between the upper end of the water tank and the air inlet of the air inflation pipe; the storage bottle is characterized by further comprising a storage bottle, a groove matched with the storage bottle is formed in the bottom plate and is located right below the thin tube, and a clamping device is arranged between the groove and the storage bottle; oxygen is conveniently fed into the water tank through the air pump, enters the inflation tube after being filtered and washed by water in the water tank, and is driven by the air cylinder to move downwards to oxygenate the storage bottle, so that the obtained oxygen is relatively clean;
the storage bottle comprises a bottle body, water is filled in the bottle body, a bottle stopper is arranged on the bottle body, an air inlet matched with the thin tube is arranged on the bottle stopper, a coaxial first annular groove is formed in the air inlet, a baffle is movably arranged in the first annular groove from top to bottom, a plurality of air holes extending from top to bottom are formed in the positions, corresponding to the first annular groove, of the baffle, and a first spring is arranged between the lower side of the baffle and the first annular groove; the bottom of the bottle body is provided with a water outlet hole extending up and down, a water outlet hole is formed in the corresponding position of the bottom plate and the water outlet hole, a second annular groove is formed in the water outlet hole, a blocking piece is movably mounted in the second annular groove up and down, a plurality of water holes extending up and down are formed in the corresponding position of the blocking piece and the second annular groove, and a second spring is arranged between the blocking piece and the second annular groove; it makes the tubule insert the inlet port and make the venthole get into first ring channel to be convenient for the cylinder drives the gas tube downstream, oxygen gets into in the bottle through inlet port and venthole, make the internal gas pressure of bottle increase and promote the separation blade downstream, make the internal water of bottle flow out from the bottle through apopore and water hole, after the water drainage in the bottle, the cylinder drives the gas tube upstream motion and makes the tubule extract from the inlet port, first spring promotes the baffle upward movement and seals the inlet port, second spring promotes the separation blade downstream and seals the apopore, avoid the oxygen in the bottle to be contaminated.
As a further improvement, clamping device is including being located two installation cavities in the bottom plate, two the installation cavity sets up relatively the both sides of recess, the installation cavity is equipped with inwards extending and feed through the through-hole of recess, movable mounting has the locking post in the through-hole, the inner of locking post is equipped with the arcwall face, be equipped with on the bottle with the arcwall face assorted locking groove of locking post, the outer end fixed mounting of locking post has the dog, the outside of dog with be equipped with the third spring between the installation cavity, be convenient for promote the dog through the third spring and make locking post card go into the locking groove, play and carry out the effect fixed to the bottle.
As a further improvement, the tubule is fixedly provided with a limiting block, when the limiting block is attached to the upper end of the bottle stopper, the air outlet extends into the first annular groove, and the limiting block plays a role in positioning.
As a further improvement, the air inlet end of the air inlet pipe is fixedly provided with a funnel-shaped cover body, the cover body is further provided with a filter screen, and the filter screen can block large impurities such as fallen leaves and branches.
As a further improvement, the side wall of the air inlet hole is provided with a sealing ring, and when the thin pipe is inserted into the air inlet hole, the sealing ring can improve the sealing property between the thin pipe and the air inlet pipe.
As a further improvement, the upper wall of the first annular groove is provided with a first sealing gasket, so that the sealing performance between the baffle and the first annular groove can be enhanced.
As a further improvement, the lower wall of the second annular groove is provided with a second sealing gasket, so that the sealing performance between the baffle plate and the second annular groove can be enhanced.
Due to the adoption of the technical scheme, the oxygen collecting device for the municipal garden engineering comprises a bottom plate, wherein a vertical plate is fixedly arranged on the bottom plate, a top plate is fixedly arranged on the vertical plate, a cylinder is fixedly arranged on the top plate, an inflation tube is fixedly arranged at the output end of the cylinder, a plurality of air outlet holes are further formed in the outer side of the lower end of the thin tube, a connecting tube is connected between the air outlet end of the air pump and the water tank, the lower end of the connecting tube extends into the position below the liquid level of the water tank, a connecting hose is connected between the upper end of the water tank and the air inlet of the inflation tube, the storage bottle comprises a bottle body, water is filled in the bottle body, an air inlet hole is formed in the bottle plug, a plurality of air holes are formed in the corresponding positions of the baffle and the first annular groove, a first spring is arranged between the, a plurality of water holes are formed in the positions, corresponding to the second annular groove, of the blocking pieces, and a second spring is arranged between the blocking pieces and the second annular groove; the utility model discloses an in the air pump sent into oxygen water tank, through the filtration and the washing of the water in the water tank, get into the gas tube to drive the gas tube downstream by the cylinder and oxygenate in to the storage bottle, the oxygen that obtains is cleaner, and the oxygenation finishes the back first spring and promotes baffle rebound and seal the inlet port, and the second spring promotes the separation blade downstream and seals the apopore, avoids the oxygen in the bottle to be contaminated.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is an enlarged view of a portion I of FIG. 1;
FIG. 3 is a schematic structural view of a storage bottle according to an embodiment of the present invention;
FIG. 4 is an enlarged view of a portion III of FIG. 3;
FIG. 5 is an enlarged view of a portion IV of FIG. 3;
FIG. 6 is a schematic view of the thin tube of the present invention inserted into the air inlet hole;
fig. 7 is a partial enlarged view of a portion ii in fig. 1.
In the figure: 1-a bottom plate; 2-a vertical plate; 3-a top plate; 4-a cylinder; 5-an inflation tube; 6-thin tube; 7-air outlet holes; 8, an air pump; 9-an air inlet pipe; 10-a water tank; 11-a connecting tube; 12-a storage bottle; 121-bottle body; 122-a bottle stopper; 13-an air intake; 14-a first annular groove; 15-a baffle; 16-air holes; 17-a first spring; 18-water outlet; 19-a drain hole; 20-a second annular groove; 21-a baffle plate; 22-water hole; 23-a second spring; 24-a mounting cavity; 25-a through hole; 26-a locking post; 27-locking groove; 28-a stop block; 29-a third spring; 30-a limiting block; 31-a cover; 32-a filter screen; 33-connecting a hose; 34-a groove; 35-a sealing ring; 36-a first gasket; 37-second gasket 37.
Detailed Description
As shown in fig. 1 to 7, the oxygen collecting device for municipal garden engineering comprises a bottom plate 1, wherein a vertical plate 2 is fixedly mounted on the bottom plate 1, a top plate 3 is fixedly mounted on the vertical plate 2, an air cylinder 4 with a downward output end is fixedly mounted on the top plate 3, an inflation tube 5 with a closed upper end is fixedly mounted at the output end of the air cylinder 4, an air inlet is arranged on one side of the inflation tube 5, a thin tube 6 with a closed lower end is fixedly connected to the lower end of the inflation tube 5, a plurality of air outlet holes 7 are further formed in the outer side of the lower end of the thin tube 6, and the inflation tube 5 is communicated with the thin tube 6; the air pump is characterized by further comprising an air pump 8, wherein an air inlet end of the air pump 8 is connected with an air inlet pipe 9; the air pump is characterized by further comprising a sealed water tank 10, a connecting pipe 11 is connected between the air outlet end of the air pump 8 and the water tank 10, the lower end of the connecting pipe 11 extends below the liquid level of the water tank 10, and a connecting hose 33 is connected between the upper end of the water tank 10 and the air inlet of the inflation pipe 5; the device is characterized by further comprising a storage bottle 12, a groove 34 matched with the storage bottle 12 is formed in the bottom plate 1, the groove 34 is located right below the thin tube 6, and a clamping device is arranged between the groove 34 and the storage bottle 12;
the storage bottle 12 comprises a bottle body 121, water is filled in the bottle body 121, a bottle stopper 122 is arranged on the bottle body 121, an air inlet 13 matched with the thin tube 6 is arranged on the bottle stopper 122, a coaxial first annular groove 14 is arranged in the air inlet 13, a baffle plate 15 is movably arranged in the first annular groove 14 up and down, a plurality of air holes 16 extending up and down are arranged at the corresponding positions of the baffle plate 15 and the first annular groove 14, and a first spring 17 is arranged between the lower side of the baffle plate 15 and the first annular groove 14; the bottom of the bottle body 121 is provided with a water outlet hole 18 extending up and down, a water outlet hole 19 is arranged at a position corresponding to the water outlet hole 18 on the bottom plate 1, the water outlet hole 18 is provided with a second annular groove 20, a blocking piece 21 is movably arranged in the second annular groove 20 up and down, a plurality of water holes 22 extending up and down are arranged at positions corresponding to the blocking piece 21 and the second annular groove 20, and a second spring 23 is arranged between the blocking piece 21 and the second annular groove 20.
Clamping device is including being located two installation cavities 24 in bottom plate 1, two installation cavity 24 sets up relatively the both sides of recess 34, installation cavity 24 is equipped with inwards extending and communicates the through-hole 25 of recess 34, movable mounting has locking post 26 in the through-hole 25, the inner of locking post 26 is equipped with the arcwall face, be equipped with on the bottle 121 with the arcwall face assorted locking groove 27 of locking post 26, the outer end fixed mounting of locking post 26 has dog 28, the outside of dog 28 with be equipped with third spring 29 between the installation cavity 24.
The thin tube 6 is also fixedly provided with a limiting block 30, and when the limiting block 30 is attached to the upper end of the bottle stopper 122, the air outlet 7 extends into the first annular groove 14.
The air inlet end of the air inlet pipe 9 is also fixedly provided with a funnel-shaped cover body 31, and the cover body 31 is also provided with a filter screen 32.
And a sealing ring 35 is arranged on the side wall of the air inlet hole 13.
The upper wall of the first annular groove 14 is provided with a first gasket 36.
The lower wall of said second annular groove 20 is provided with a second gasket 37.
The method comprises the following steps: the storage bottle 12 is first inserted into the groove 34 and the locking post 26 is snapped into the locking groove 27; then the air pump 8 sends oxygen into the water tank 10 through the connecting pipe 11, the filter screen can block large impurities such as branches and fallen leaves, and the oxygen enters the gas-filled pipe 5 through the connecting hose 33 after the water in the water tank 10 is filtered and washed; then the cylinder 4 drives the inflation tube 5 to move downwards to enable the thin tube 6 to be inserted into the air inlet 13 and enable the air outlet 7 to enter the first annular groove 14, oxygen enters the first annular groove 14 of the air inlet 13 from the inflation tube 5 through the thin tube 6 and the air outlet 7 and then enters the bottle body 121 through the air hole 16, air pressure in the bottle body 121 is increased, the baffle 21 is pushed to move downwards, water in the bottle body 121 flows out of the bottle body 121 through the water outlet hole 18 and the water hole 22, after the water in the bottle body 121 is completely drained, the cylinder 4 drives the inflation tube 5 to move upwards to enable the thin tube 6 to be pulled out of the air inlet 9, the baffle 15 is pushed by the first spring 17 to move upwards to seal the air inlet 13, the baffle 21 is pushed by the second spring 23 to move downwards to seal the water outlet hole 18, then the storage bottle 12 is taken down and replaced by a new.
The basic principles, main features and advantages of the present 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 (7)

1. The utility model provides an oxygen collection device for municipal garden engineering which characterized in that: the air cylinder is characterized by comprising a bottom plate, wherein a vertical plate is fixedly mounted on the bottom plate, a top plate is fixedly mounted on the vertical plate, an air cylinder with a downward output end is fixedly mounted on the top plate, an inflation tube with a closed upper end is fixedly mounted at the output end of the air cylinder, an air inlet is formed in one side of the inflation tube, a thin tube with a closed lower end is fixedly connected to the lower end of the inflation tube, a plurality of air outlet holes are further formed in the outer side of the lower end of the thin tube, and the inflation tube is communicated; the air pump is also included, and the air inlet end of the air pump is connected with an air inlet pipe; the air pump is characterized by further comprising a sealed water tank, a connecting pipe is connected between the air outlet end of the air pump and the water tank, the lower end of the connecting pipe extends below the liquid level of the water tank, and a connecting hose is connected between the upper end of the water tank and the air inlet; the storage bottle is characterized by further comprising a storage bottle, a groove matched with the storage bottle is formed in the bottom plate and is located right below the thin tube, and a clamping device is arranged between the groove and the storage bottle;
the storage bottle comprises a bottle body, water is filled in the bottle body, a bottle stopper is arranged on the bottle body, an air inlet matched with the thin tube is arranged on the bottle stopper, a coaxial first annular groove is formed in the air inlet, a baffle is movably arranged in the first annular groove from top to bottom, a plurality of air holes extending from top to bottom are formed in the positions, corresponding to the first annular groove, of the baffle, and a first spring is arranged between the lower side of the baffle and the first annular groove; the bottom of the bottle body is provided with a water outlet hole extending up and down, a water outlet hole is formed in the position, corresponding to the water outlet hole, of the bottom plate, a second annular groove is formed in the water outlet hole, a blocking piece is movably mounted in the second annular groove up and down, a plurality of water holes extending up and down are formed in the position, corresponding to the second annular groove, of the blocking piece, and a second spring is arranged between the blocking piece and the second annular groove.
2. The oxygen collection device for municipal garden engineering of claim 1, wherein: clamping device is including being located two installation cavities in the bottom plate, two the installation cavity sets up relatively the both sides of recess, the installation cavity is equipped with the inside through-hole that extends and communicate the recess, movable mounting has the locking post in the through-hole, the inner of locking post is equipped with the arcwall face, be equipped with on the bottle with the arcwall face assorted locking groove of locking post, the outer end fixed mounting of locking post has the dog, the outside of dog with be equipped with the third spring between the installation cavity.
3. The oxygen collection device for municipal garden engineering of claim 1, wherein: the thin tube is fixedly provided with a limiting block, and when the limiting block is attached to the upper end of the bottle stopper, the air outlet hole extends into the first annular groove.
4. The oxygen collection device for municipal garden engineering of claim 1, wherein: the other end of the air inlet pipe is fixedly provided with a funnel-shaped cover body, and the cover body is further provided with a filter screen.
5. The oxygen collection device for municipal garden engineering of claim 1, wherein: and a sealing ring is arranged on the side wall of the air inlet.
6. The oxygen collection device for municipal garden engineering of claim 1, wherein: and a first sealing gasket is arranged on the upper wall of the first annular groove.
7. The oxygen collection device for municipal garden engineering of claim 1, wherein: and a second sealing gasket is arranged on the lower wall of the second annular groove.
CN202020396994.4U 2020-03-25 2020-03-25 Oxygen collection device for municipal garden engineering Active CN212292801U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020396994.4U CN212292801U (en) 2020-03-25 2020-03-25 Oxygen collection device for municipal garden engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020396994.4U CN212292801U (en) 2020-03-25 2020-03-25 Oxygen collection device for municipal garden engineering

Publications (1)

Publication Number Publication Date
CN212292801U true CN212292801U (en) 2021-01-05

Family

ID=73959933

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020396994.4U Active CN212292801U (en) 2020-03-25 2020-03-25 Oxygen collection device for municipal garden engineering

Country Status (1)

Country Link
CN (1) CN212292801U (en)

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