CN112676053A - Open biological deodorizing device - Google Patents

Open biological deodorizing device Download PDF

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Publication number
CN112676053A
CN112676053A CN202110103184.4A CN202110103184A CN112676053A CN 112676053 A CN112676053 A CN 112676053A CN 202110103184 A CN202110103184 A CN 202110103184A CN 112676053 A CN112676053 A CN 112676053A
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frame
blocks
rod
fixing
rods
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CN202110103184.4A
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CN112676053B (en
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刘家平
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

Abstract

The invention relates to a biological deodorization device, in particular to an open type biological deodorization device. The invention provides a movable open type biological deodorization device, wherein a sprinkler head can swing to enlarge a deodorization range. The present invention provides such an open biological deodorization device comprising: the bottom of the frame is rotatably provided with three rollers; the spraying mechanisms are arranged on the two sides of the frame; the other side of the frame is provided with a driving mechanism, and the spraying mechanism is matched with the driving mechanism; the placing mechanism is arranged in the middle of the frame, and the driving mechanism is matched with the placing mechanism. The biological agent is added into the placing mechanism, the biological agent in the placing mechanism is transported to the spraying mechanism through the downward movement of the driving mechanism, and the biological agent is sprayed out from the spraying mechanism to deodorize the target pollutants.

Description

Open biological deodorizing device
Technical Field
The invention relates to a biological deodorization device, in particular to an open type biological deodorization device.
Background
The biological deodorization mainly utilizes microorganisms to deodorize, and substances with odor are converted through the physiological metabolism of the microorganisms, so that target pollutants are effectively decomposed and removed, and the purpose of treating the odor is achieved. The malodorous gas not only has serious influence on the ecological environment, but also has great harm to the health of human bodies, and can cause central nerves to generate obstacles and pathological changes to cause chronic diseases and acute diseases. The research on the investigation, test and standard of malodorous gas pollution is carried out in the 80 th century in China, and the research on the deodorization technology is carried out from the 90 th century in 20 th century.
The existing deodorization spraying device can not effectively decompose and remove odor target pollutants, and the deodorization device is fixed and has a smaller deodorization range. Therefore, it is desirable to provide an open type bio-deodorizing device, which is movable and has a sprinkler head capable of swinging to widen a deodorizing range, for solving the above problems.
Disclosure of Invention
In order to overcome the defects that the existing deodorization spraying device can not effectively decompose and remove malodorous target pollutants, and the deodorization device is fixed and has a small deodorization range, the technical problem of the invention is as follows: provides a movable biological deodorization device with a spraying head capable of swinging to enlarge the deodorization range.
The technical scheme is as follows: an open biological deodorization apparatus comprising: the bottom of the frame is rotatably provided with three rollers; the spraying mechanisms are arranged on the two sides of the frame; the other side of the frame is provided with a driving mechanism, and the spraying mechanism is matched with the driving mechanism; the placing mechanism is arranged in the middle of the frame, and the driving mechanism is matched with the placing mechanism.
More preferably, the spraying mechanism includes: the first guide rods are arranged on two sides of the frame; the two first guide rods are both provided with a first sliding block in a sliding manner; the two first sliding blocks are provided with first bearing seats on the back sides; the two first bearing seats are provided with the spraying heads through the supporting rods; and first elastic pieces are arranged between one sides of the two first guide rods and one sides of the two first sliding blocks.
More preferably, the drive mechanism includes: the hydraulic cylinders are symmetrically arranged on the other side of the frame; piston rods are arranged in the two hydraulic cylinders in a sliding manner; the first fixing rod is arranged between the two piston rods; the water outlet pipes are arranged at the bottoms of the two hydraulic cylinders; the water inlet pipe is arranged between the side walls of the two hydraulic cylinders; the water barrel cover is arranged on the water inlet pipe; the one-way valve is arranged on the water inlet pipe and the water outlet pipe.
More preferably, the placing mechanism includes: the two sides of the middle part of the frame are provided with the second guide rods; the two second guide rods are provided with second sliding blocks in a sliding manner; the other ends of the two second sliding blocks are provided with limiting blocks; the second elastic pieces are arranged between one side of the two limiting blocks and the side walls of the two sides of the frame; the water tank is arranged on the frame between the two limiting blocks, the water tank cover is positioned at the top of the water tank, and the water inlet pipe is positioned in the water tank.
More preferably, the method further comprises: the two piston rods are provided with a first fixing rod on one side opposite to the other side; the bottom ends of the two second fixing rods are respectively provided with a first wedge-shaped block; the frame at the side edge of the hydraulic cylinder is provided with a third guide rod, two ends of the third guide rod are provided with fixed blocks, and the two fixed blocks are connected with two sides of the frame; the first fixing block is arranged on the side wall of the frame at the side edge of the third guide rod; the first fixing block is provided with a first guide rod; the two ends of the fourth guide rod are both provided with third sliding blocks in a sliding manner, and the two first wedge-shaped blocks are matched with the two third sliding blocks; third elastic pieces are arranged between the two third sliding blocks and the two fixed blocks; one ends of the two third sliding blocks, which are close to the first guide rod, are provided with first racks; the second bearing seats are arranged on the first guide rods at the lower parts of the two first sliding blocks; the two second bearing blocks are respectively provided with a support rod, one end of each support rod, which is close to the first rack, is respectively provided with a first gear, and the two first gears are meshed with the two first racks; the other end of the supporting rod is provided with a second gear; the side walls of the two first sliding blocks close to one side of the second gear are provided with second fixed blocks; and the bottoms of the two second fixing blocks are provided with second racks, and the two second racks are meshed with the two second gears.
More preferably, the method further comprises: the two sides of the tops of the two first guide rods are provided with second wedge-shaped blocks; the two sides of the two sprinkler heads are respectively provided with a third fixed rod, and the four third fixed rods are matched with the four second wedge-shaped blocks; the supporting rods on the two first bearing blocks are provided with third fixed blocks at one ends close to the hydraulic cylinder; the bottoms of the two third fixed blocks are provided with fourth fixed rods; the fifth fixing rods are arranged on one sides, close to the hydraulic cylinder, of the two first sliding blocks; and a fourth elastic piece is arranged between the two fourth fixing rods and the two fifth fixing rods.
More preferably, the method further comprises: a fourth fixed block is arranged between the frames at the lower parts of the two hydraulic cylinders; the cylinder is arranged on the fourth fixed block, and a telescopic rod is arranged in the cylinder in a sliding manner; the middle part of the first fixed rod is provided with a fifth fixed block, and the fifth fixed block is connected with a telescopic rod of the air cylinder; handles are symmetrically arranged on the upper parts of the frame at the opposite sides of the two hydraulic cylinders.
More preferably, the first elastic member, the second elastic member, the third elastic member and the fourth elastic member are all springs.
The invention has the beneficial effects that: 1. the biological agent is added into the placing mechanism, the biological agent in the placing mechanism is transported to the spraying mechanism through the downward movement of the driving mechanism, and the biological agent is sprayed out from the spraying mechanism to deodorize the target pollutants.
2. The spray head moves up and down, so that the biological agent can be sprayed in a wider range, and target pollutants are effectively decomposed and removed.
3. The biological agent can be transported into the sprinkler head by the piston rod sliding up and down in the hydraulic cylinder.
4. When the biological agent is transported to the spraying head, the spraying head can be driven to move up and down, and the spraying area is enlarged.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the spraying mechanism of the present invention.
Fig. 3 is a schematic perspective view of the driving mechanism of the present invention.
Fig. 4 is a schematic perspective view of the placement mechanism of the present invention.
FIG. 5 is a schematic view of a first partial body structure according to the present invention.
FIG. 6 is a schematic view of a second partial body structure according to the present invention.
Fig. 7 is a perspective view of a third embodiment of the present invention.
Wherein the figures include the following reference numerals: 1 vehicle frame, 2 rollers, 3 spraying mechanism, 31 first guide rod, 32 first slide block, 33 first bearing seat, 34 spraying head, 35 first elastic component, 4 driving mechanism, 41 hydraulic cylinder, 42 piston rod, 43 first fixing rod, 44 water outlet pipe, 45 water inlet pipe, 46 water barrel cover, 47 one-way valve, 5 placing mechanism, 51 second guide rod, 52 second slide block, 53 limiting block, 54 second elastic component, 55 water tank, 6 second fixing rod, 7 first wedge block, 8 third guide rod, 9 first fixing block, 10 fourth guide rod, 11 third slide block, 12 third elastic component, 13 first rack, 14 second bearing seat, 15 first gear, 16 second gear, 17 second fixing block, 18 second rack, 19 second wedge block, 20 third fixing rod, 21 third fixing block, 22 fourth fixing rod, 23 fifth fixing rod, 24 fourth elastic component, 25 fourth fixing block, 26 air cylinder, 27 fifth fixed block, 28 handle.
Detailed Description
Embodiments of the present invention will be described below with reference to the drawings.
Example 1
As shown in fig. 1, an open type biological deodorization device comprises a frame 1, rollers 2, spraying mechanisms 3, driving mechanisms 4 and a placing mechanism 5, wherein the three rollers 2 are rotatably arranged at the bottom of the frame 1, the spraying mechanisms 3 are respectively arranged at the front side and the rear side of the frame 1, the driving mechanism 4 is arranged at the left side of the frame 1, the spraying mechanisms 3 are matched with the driving mechanisms 4, the placing mechanism 5 is arranged in the middle of the frame 1, and the driving mechanisms 4 are matched with the placing mechanism 5.
When needs carry out biological deodorization to the target pollutant, the staff promotes frame 1 to target pollutant place earlier, frame 1 removes and drives 2 rotations of gyro wheel, the staff adds the biological agent afterwards and places mechanism 5, the staff upwards stimulates actuating mechanism 4 subsequently, actuating mechanism 4 upwards moves, and then transport biological agent to actuating mechanism 4 in, the staff presses actuating mechanism 4 downwards again, actuating mechanism 4 moves down transports biological agent to spraying mechanism 3, biological agent carries out the deodorization from the 3 blowout of spraying mechanism to the target pollutant, frame 1 removes and can add and carry out the deodorization to the large target pollutant scope. The device has simple structure and convenient operation.
Example 2
As shown in fig. 2, 3 and 4, based on embodiment 1, the spraying mechanism 3 includes a first guide rod 31, a first slider 32, a first bearing seat 33, a spraying head 34 and a first elastic member 35, the first guide rod 31 is disposed on both front and rear sides of the frame 1, the first slider 32 is slidably disposed on both the first guide rods 31, the first bearing seat 33 is disposed on one side of each of the two first sliders 32 facing away from the frame, the spraying head 34 is disposed on each of the two first bearing seats 33 through a support rod, and the first elastic member 35 is disposed between one side of each of the two first guide rods 31 and one side of each of the two first sliders 32.
When biological deodorization is needed to be carried out on target pollutants, a worker firstly pushes the vehicle frame 1 to the position of the target pollutants, the vehicle frame 1 moves to drive the roller 2 to rotate, then the worker adds a biological agent into the placing mechanism 5, then the worker pulls the driving mechanism 4 upwards, the driving mechanism 4 moves upwards, further the biological agent is conveyed into the driving mechanism 4, then the worker presses the driving mechanism 4 downwards, the driving mechanism 4 moves downwards to convey the biological agent into the spraying head 34, another worker pushes the first sliding block 32 upwards, the first sliding block 32 slides upwards on the first guide rod 31, the first elastic piece 35 is compressed, the first sliding block 32 slides upwards to drive the spraying head 34 to move upwards, the worker loosens the first sliding block 32, the first elastic piece 35 resets to drive the first sliding block 32 to slide downwards on the first guide rod 31 to reset, first slider 32 slides downward to move sprinkler head 34 downward. Repeating the above actions, the spray head moves up and down, and the biological agent can be sprayed in a wider range, so that the target pollutants are effectively decomposed and removed.
Actuating mechanism 4 is including pneumatic cylinder 41, piston rod 42, first dead lever 43, outlet pipe 44, inlet tube 45, water drum lid 46 and check valve 47, frame 1 left side symmetry is provided with pneumatic cylinder 41, equal slidingtype piston rod 42 that is provided with in two pneumatic cylinders 41, be provided with first dead lever 43 between two piston rods 42, two pneumatic cylinder 41 bottoms all are provided with outlet pipe 44, be provided with inlet tube 45 between two pneumatic cylinder 41 lateral walls, be provided with water drum lid 46 on the inlet tube 45, inlet tube 45 all is provided with check valve 47 with outlet pipe 44.
When biological deodorization is needed to be carried out on target pollutants, a worker firstly pushes the vehicle frame 1 to the position of the target pollutants, the vehicle frame 1 moves to drive the roller 2 to rotate, then the worker adds a biological agent into the placing mechanism 5, then the worker upwards pulls the first fixing rod 43, the first fixing rod 43 upwards moves to drive the piston rod 42 to upwards slide in the hydraulic cylinder 41, the piston rod 42 upwards slides to transport the biological agent in the placing mechanism 5 into the hydraulic cylinder 41 through the water inlet pipe 45, the worker then downwards presses the first fixing rod 43, the first fixing rod 43 downwards moves to drive the piston rod 42 to downwards slide in the hydraulic cylinder 41, the piston rod 42 downwards slides to transport the biological agent in the hydraulic cylinder 41 into the sprinkler head 34 through the water outlet pipe 44, and the biological agent is sprayed out of the sprinkler head 34 to carry out deodorization on the target pollutants. The device has simple structure, and can transport biological agent to the spray head 34 for deodorizing the target pollutant.
Place mechanism 5 including second guide arm 51, second slider 52, stopper 53, second elastic component 54 and water tank 55, both sides all are provided with second guide arm 51 around the position in frame 1, all the slidingtype is provided with second slider 52 on two second guide arms 51, two second slider 52 other ends all are provided with stopper 53, all be provided with second elastic component 54 between the lateral wall of two stopper 53 one sides and frame 1 both sides, be provided with water tank 55 on the frame 1 between two stopper 53, water tank lid 46 is located water tank 55 top, inlet tube 45 is located water tank 55.
When the vehicle frame 1 moves to the position of the target pollutant, a worker pulls the second sliding block 52 in a back direction, the second sliding block 52 slides in a back direction on the second guide rod 51, the second elastic part 54 is stretched, the second sliding block 52 slides in the back direction to drive the limiting block 53 to move in the back direction and not clamp the water tank 55, at the moment, the worker takes out the water tank 55 and adds the biological agent into the water tank 55, after the biological agent is added, the worker puts back the water tank 55, the second elastic part 54 resets to drive the second sliding block 52 to slide in the second guide rod 51 in a relative direction, the second sliding block 52 slides in the relative direction to drive the limiting block 53 to move in the relative direction to clamp the water tank 55, and the device is simple in structure and capable of adding the biological agent.
Example 3
As shown in fig. 1, 5, 6 and 7, the device further comprises a second fixing rod 6, a first wedge 7, a third guide rod 8, a first fixing block 9, a fourth guide rod 10, a third slide block 11, a third elastic member 12, a first rack 13, a second bearing seat 14, a first gear 15, a second gear 16, a second fixing block 17 and a second rack 18, wherein the second fixing rod 6 is arranged on one side of each of two piston rods 42 facing away from the second fixing rod, the first wedge 7 is arranged at the bottom end of each of the two second fixing rods 6, the third guide rod 8 is arranged on the frame 1 on the side of the hydraulic cylinder 41, the fixing blocks are arranged at the front end and the rear end of the third guide rod 8, the two fixing blocks are connected with the front side and the rear side of the frame 1, the first fixing block 9 is arranged on the side wall of the frame 1 on the side of the third guide rod 8, the fourth guide rod 10 is arranged at the two ends of the fourth guide, two first wedges 7 and two third sliders 11 cooperate, all be provided with third elastic component 12 between two third sliders 11 and two fixed blocks, two third slider 11 right-hand members all are provided with first rack 13, all be provided with second bearing frame 14 on the first guide arm 31 of two first sliders 32 bottoms, two second bearing frame 14 all are provided with branch, the branch left end all is provided with first gear 15, two gears and two first rack 13 intermeshing, second gear 16 has all been put to the branch right-hand member, all be provided with second fixed block 17 on two first slider 32 lateral walls that are close to second gear 16 one side, two second fixed block 17 bottoms all are provided with second rack 18, two second rack 18 and two second gear 16 intermeshing.
The piston rod 42 slides downwards in the hydraulic cylinder 41 to drive the second fixing rod 6 to move downwards, the second fixing rod 6 moves downwards to drive the first wedge block 7 to move downwards to extrude the third slide block 11, the third slide block 11 slides backwards on the fourth guide rod 10, the third elastic part 12 is compressed, the third slide block 11 slides backwards to drive the first rack 13 to move backwards to be meshed with the first gear 15, the first gear 15 rotates to drive the second gear 16 to rotate to be meshed with the second rack 18, the second rack 18 moves upwards to drive the first slide block 32 to move upwards on the first guide rod 31, the first slide block 32 moves upwards to drive the sprinkler 34 to move upwards, the first elastic part 35 is compressed, when the piston rod 42 slides upwards in the hydraulic cylinder 41 to drive the second fixing rod 6 to move upwards, the second fixing rod 6 moves upwards to drive the first wedge block 7 to move upwards to not to extrude the third slide block 11, the third elastic part 12 resets to drive the third sliding block 11 to slide and reset oppositely on the fourth guide rod 10, the third sliding block 11 slides oppositely to drive the first rack 13 to move oppositely to be meshed with the first gear 15, the first gear 15 rotates to drive the second gear 16 to rotate to be meshed with the second rack 18, the second rack 18 moves downwards, the first elastic part 35 resets to drive the first sliding block 32 to move downwards on the first guide rod 31, and the first sliding block 32 moves downwards to drive the sprinkler head 34 to move downwards. The device has simple structure, and can drive the spray head 34 to move up and down while conveying the biological agent to the spray head 34.
The novel spraying device is characterized by further comprising a second wedge-shaped block 19, a third fixing rod 20, a third fixing block 21, a fourth fixing rod 22, a fifth fixing rod 23 and a fourth elastic piece 24, wherein the second wedge-shaped block 19 is arranged on the left side and the right side of the top of each of the two first guide rods 31, the third fixing rod 20 is arranged on the left side and the right side of the top of each of the two spraying heads 34, the four third fixing rods 20 are matched with the four second wedge-shaped blocks 19, the third fixing block 21 is arranged at the left end of each of the supporting rods on the two first bearing seats 33, the fourth fixing rod 22 is arranged at the bottom of each of the two third fixing blocks 21, the fifth fixing rod 23 is arranged on the left side of each of the two first sliding blocks 32, and the fourth.
The sprinkler 34 moves upward to drive the third fixing rod 20 to contact with the second wedge-shaped block 19 and extrude the third fixing rod 20 downward, the third fixing rod 20 moves downward to drive the sprinkler 34 to rotate downward on the first bearing seat 33, the sprinkler 34 rotates downward to drive the third fixing rod 21 to rotate upward, the third fixing rod 21 rotates upward to drive the fourth fixing rod 22 to move upward, the fourth elastic element 24 is compressed, the sprinkler 34 moves downward to drive the third fixing rod 20 to be separated from the second wedge-shaped block 19, the fourth elastic element 24 resets to drive the fourth fixing rod 22 to move downward, the fourth fixing rod 22 moves downward to drive the third fixing rod 21 to rotate downward, and the third fixing rod 21 rotates downward to drive the sprinkler 34 to rotate upward on the first bearing seat 33. The device has simple structure, and can rotate the spray head 34 up and down to increase the spray area.
The hydraulic frame is characterized by further comprising a fourth fixing block 25, an air cylinder 26, a fifth fixing block 27 and a handle 28, the fourth fixing block 25 is arranged between the frame 1 at the bottoms of the two hydraulic cylinders 41, the air cylinder 26 is arranged on the fourth fixing block 25, an expansion rod is arranged in the air cylinder 26 in a sliding mode, the fifth fixing block 27 is arranged in the middle of the first fixing rod 43 and connected with the expansion rod of the air cylinder 26, and the handle 28 is symmetrically arranged on the upper portion of the frame 1 on one side, opposite to the two hydraulic cylinders 41, of the two opposite.
When biological deodorization is required to be carried out on target pollutants, a worker pushes the vehicle frame 1 to move to the position of the target pollutants through the handle 28, the vehicle frame 1 moves to drive the roller 2 to rotate, then the worker controls the air cylinder 26, the telescopic rod of the air cylinder 26 extends to drive the first fixing rod 43 to move upwards, the first fixing rod 43 moves upwards to drive the piston rod 42 to slide upwards in the hydraulic cylinder 41, the piston rod 42 slides upwards to transport biological agents in the placement mechanism 5 into the hydraulic cylinder 41 through the water inlet pipe 45, when the telescopic rod of the air cylinder 26 is shortened to drive the first fixing rod 43 to move downwards, the first fixing rod 43 moves downwards to drive the piston rod 42 to slide downwards in the hydraulic cylinder 41, the piston rod 42 slides downwards to transport the biological agent in the hydraulic cylinder 41 to the sprinkler head 34 through the water outlet pipe 44, and the biological agent is sprayed out of the sprinkler head 34 to deodorize target pollutants. The device has simple structure, and can automatically slide the piston rod 42 up and down in the hydraulic rod.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (8)

1. An open biological deodorization apparatus, comprising:
the bicycle frame comprises a frame (1), wherein three rollers (2) are rotatably arranged at the bottom of the frame (1);
the spraying mechanism (3) is arranged on both sides of the frame (1);
the spraying device comprises a driving mechanism (4), wherein the driving mechanism (4) is arranged on the other side of the frame (1), and the spraying mechanism (3) is matched with the driving mechanism (4);
the placing mechanism (5) is arranged in the middle of the frame (1), and the driving mechanism (4) is matched with the placing mechanism (5).
2. An open biological deodorization device as claimed in claim 1, wherein the spraying means (3) comprises:
the first guide rod (31) is arranged on each of two sides of the frame (1);
the first sliding blocks (32) are arranged on the two first guide rods (31) in a sliding manner;
the two first sliding blocks (32) are respectively provided with a first bearing seat (33) at one side back to the other side;
the two first bearing seats (33) are provided with the sprinkler heads (34) through supporting rods;
first elastic pieces (35) are arranged between one sides of the two first guide rods (31) and one sides of the two first sliding blocks (32).
3. An open biological deodorization apparatus as claimed in claim 2, wherein the drive mechanism (4) comprises:
the hydraulic cylinders (41) are symmetrically arranged on the other side of the frame (1);
the piston rods (42) are arranged in the two hydraulic cylinders (41) in a sliding manner;
a first fixing rod (43), wherein the first fixing rod (43) is arranged between the two piston rods (42);
water outlet pipes (44) are arranged at the bottoms of the two hydraulic cylinders (41);
a water inlet pipe (45) is arranged between the side walls of the two hydraulic cylinders (41);
the water barrel cover (46) is arranged on the water inlet pipe (45);
the one-way valve (47), the water inlet pipe (45) and the water outlet pipe (44) are all provided with the one-way valve (47).
4. An open biological deodorization apparatus as claimed in claim 3, wherein the placement means (5) comprises:
the two sides of the middle part of the frame (1) are provided with second guide rods (51);
the second sliding blocks (52) are arranged on the two second guide rods (51) in a sliding manner;
the other ends of the two second sliding blocks (52) are provided with limiting blocks (53);
the second elastic piece (54) is arranged between one side of each of the two limiting blocks (53) and the side wall of each of the two sides of the frame (1);
the water tank (55) is arranged on the frame (1) between the two limiting blocks (53), the water tank cover (46) is positioned at the top of the water tank (55), and the water inlet pipe (45) is positioned in the water tank (55).
5. An open biological deodorization apparatus as recited in claim 4, further comprising:
the two piston rods (42) are provided with a second fixed rod (6) at the back side;
the bottom ends of the first wedge-shaped blocks (7) and the two second fixing rods (6) are respectively provided with the first wedge-shaped blocks (7);
a third guide rod (8), wherein the frame (1) at the side edge of the hydraulic cylinder (41) is provided with the third guide rod (8), two ends of the third guide rod (8) are respectively provided with a fixed block, and the two fixed blocks are respectively connected with two sides of the frame (1);
the first fixing block (9) is arranged on the side wall of the frame (1) at the side edge of the third guide rod (8);
the fourth guide rod (10) is arranged on the first fixing block (9);
the third sliding blocks (11) are arranged at two ends of the fourth guide rod (10) in a sliding mode, and the two first wedge-shaped blocks (7) are matched with the two third sliding blocks (11);
third elastic pieces (12) are arranged between the two third sliding blocks (11) and the two fixed blocks;
one ends of the two third sliding blocks (11) close to the first guide rod (31) are respectively provided with a first rack (13);
the second bearing seats (14) are arranged on the first guide rods (31) at the lower parts of the two first sliding blocks (32);
the two second bearing blocks (14) are respectively provided with a supporting rod, one end of each supporting rod, which is close to the first rack (13), is respectively provided with the first gear (15), and the two first gears are meshed with the two first racks (13);
a second gear (16) is arranged at the other end of the supporting rod;
the side walls of the two first sliding blocks (32) close to one side of the second gear (16) are respectively provided with a second fixed block (17);
the bottom parts of the second racks (18) and the two second fixed blocks (17) are respectively provided with the second racks (18), and the two second racks (18) are meshed with the two second gears (16).
6. An open biological deodorization apparatus as recited in claim 5, further comprising:
the two sides of the tops of the two first guide rods (31) are respectively provided with a second wedge-shaped block (19);
the two sides of the two sprinkler heads (34) are respectively provided with a third fixing rod (20), and the four third fixing rods (20) are matched with the four second wedge-shaped blocks (19);
the third fixed blocks (21) are arranged at one ends, close to the hydraulic cylinder (41), of the supporting rods on the two first bearing blocks (33);
the bottoms of the two third fixed blocks (21) are respectively provided with a fourth fixed rod (22);
the fifth fixing rods (23) are arranged on one sides, close to the hydraulic cylinder (41), of the two first sliding blocks (32);
and fourth elastic pieces (24) are arranged between the two fourth fixing rods (22) and the two fifth fixing rods (23).
7. An open biological deodorization apparatus as recited in claim 6, further comprising:
a fourth fixed block (25), wherein the fourth fixed block (25) is arranged between the frame (1) at the lower part of the two hydraulic cylinders (41);
the cylinder (26) is arranged on the fourth fixing block (25), and a telescopic rod is arranged in the cylinder (26) in a sliding manner;
the middle part of the first fixing rod (43) is provided with a fifth fixing block (27), and the fifth fixing block (27) is connected with a telescopic rod of the cylinder (26);
the handles (28) are symmetrically arranged on the upper part of the frame (1) at one side of the two hydraulic cylinders (41) opposite to each other.
8. An open biological deodorization device as claimed in claim 7, wherein said first (35), second (54), third (12) and fourth (24) elastic members are springs.
CN202110103184.4A 2021-01-26 2021-01-26 Open biological deodorizing device Active CN112676053B (en)

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CN112676053B CN112676053B (en) 2022-02-18

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113399406A (en) * 2021-06-17 2021-09-17 许炎豪 Test tube cleaning device for biotechnology experiments

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CN208657566U (en) * 2018-07-20 2019-03-29 杭州之江市政建设有限公司 A kind of municipal administration gardens water injector
CN211756093U (en) * 2020-07-13 2020-10-27 蔡嘉慧 Disinfection sprinkler is used in epidemic prevention
CN111990376A (en) * 2020-08-21 2020-11-27 乔金贺 Pesticide sprinkler
CN112243984A (en) * 2020-10-15 2021-01-22 廖龙福 Agricultural movable pesticide spraying device

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