CN213180888U - Sampling device for ecological treatment of printing and dyeing sewage - Google Patents

Sampling device for ecological treatment of printing and dyeing sewage Download PDF

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Publication number
CN213180888U
CN213180888U CN202022154047.7U CN202022154047U CN213180888U CN 213180888 U CN213180888 U CN 213180888U CN 202022154047 U CN202022154047 U CN 202022154047U CN 213180888 U CN213180888 U CN 213180888U
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storage barrel
cover
main body
cylinder
rubber plug
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CN202022154047.7U
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卢妍
徐洪文
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Huaiyin Normal University
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Huaiyin Normal University
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Abstract

A sampling device for ecological treatment of printing and dyeing sewage belongs to the field of sewage sampling devices. The movable device comprises a rubber plug I, a connecting rod, a top plate, a pull ring, a cover II and a rubber plug II; the lower end of the connecting rod is fixedly connected with a rubber plug I, the upper end of the connecting rod is fixedly connected with a top plate, and the connecting rod is provided with threads; the rubber plug I is provided with a communicating hole; the communicating hole is L-shaped and is communicated with the bottom surface and the side surface of the rubber plug I; the upper end of the cover II is fixedly connected with a pull ring, the center of the bottom surface of the cover II is provided with a threaded hole, the center of the top surface of the cover II is provided with a round hole, and the round hole is communicated with the threaded hole; the top plate is in sliding fit with the round hole at the top end of the cover II; the cover II is in threaded connection with the storage barrel main body; the cover I is in threaded fit with a liquid inlet at the lower end of the storage barrel main body. The device not only can sample the sewage, but also can directly divide the sewage into portions, and has simple operation and time saving.

Description

Sampling device for ecological treatment of printing and dyeing sewage
Technical Field
The utility model relates to a sampling device for printing and dyeing sewage ecological treatment belongs to sewage sampling device field.
Background
The sewage produced in the production of some enterprises often contains some chemical or toxic elements, and if the sewage is directly discharged, the sewage can destroy the water environment in the nature, so the sewage can be discharged after being treated. After treatment or in the treatment process, the sewage is often required to be sampled and detected to observe whether the sewage treatment achieves the treatment effect.
Although the sampling device that uses at present can carry out the sewage sample, but sewage detection often needs carry out the multinomial test, and ordinary sampling equipment can not carry out the operation of share with sewage, so lead to still need to carry out the share in the laboratory after the sample, very troublesome.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a sampling device for printing and dyeing sewage ecological treatment for solving can not directly carry out the branch after the sewage sample and be used for detecting to the trouble problem of laboratory branch operation.
The utility model realizes the above purpose, and the technical scheme of taking is as follows:
a sampling device for ecological treatment of printing and dyeing sewage comprises a storage barrel, a movable device and a cover I; the storage barrel comprises a storage barrel main body, a liquid inlet, a cylinder and a plurality of baffles; the top end of the storage barrel main body is hollow, and a liquid inlet is formed in the bottom end of the storage barrel main body; the cylinder is fixedly connected to the inner bottom end of the storage barrel main body, the cylinder is coaxial with the storage barrel main body, and a plurality of through holes radially penetrating through the cylinder are uniformly distributed at the bottom end of the cylinder; a plurality of sliding chutes I parallel to the central axis of the cylinder are uniformly distributed on the outer circular surface of the cylinder; a circular groove is formed in the bottom end of the storage barrel main body; the circular groove is positioned in the cylinder, and the diameter of the circular groove is equal to the inner diameter of the cylinder; a plurality of sliding chutes II parallel to the central shaft of the storage barrel main body are uniformly distributed on the inner wall of the storage barrel main body; each baffle is in sliding fit with the sliding chute I and the sliding chute II;
the movable device comprises a rubber plug I, a connecting rod, a top plate, a pull ring, a cover II and a rubber plug II; the lower end of the connecting rod is fixedly connected with a rubber plug I, the upper end of the connecting rod is fixedly connected with a top plate, and the connecting rod is provided with threads; the rubber plug I is provided with a communicating hole; the communicating hole is L-shaped and is communicated with the bottom surface and the side surface of the rubber plug I; the upper end of the cover II is fixedly connected with a pull ring, the center of the bottom surface of the cover II is provided with a threaded hole, the center of the top surface of the cover II is provided with a round hole, and the round hole is communicated with the threaded hole; the top plate is in sliding fit with the round hole at the top end of the cover II; the connecting rod is in threaded fit with a threaded hole at the bottom end of the cover II; the rubber plug II is in sliding fit with the connecting rod, and a vertical through hole is formed in the rubber plug II and is communicated with the cylinder;
the rubber plug I is in sliding fit with the cylinder and the circular groove; the rubber plug II is in sliding fit with the storage barrel main body; the cover II is in threaded connection with the storage barrel main body; the cover I is in threaded fit with a liquid inlet at the lower end of the storage barrel main body.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses can not only sample sewage, can directly carry out the share, easy operation, save time with sewage at this device moreover.
Drawings
FIG. 1 is a front view of a sampling device for ecological treatment of dyeing wastewater in accordance with the present invention;
FIG. 2 is a front view of a storage barrel of the sampling device for ecological treatment of dyeing wastewater of the present invention;
FIG. 3 is a top view of a storage barrel of the sampling device for ecological treatment of dyeing wastewater of the present invention;
FIG. 4 is a front view of the movable device of the sampling device for ecological treatment of dyeing wastewater of the present invention;
FIG. 5 is a top view of the movable device of the sampling device for ecological treatment of dyeing wastewater of the present invention;
FIG. 6 is a schematic view showing the water pumping state of the sampling device for ecological treatment of dyeing wastewater of the present invention;
FIG. 7 is a schematic view of the sewage portioning state of the sampling device for ecological treatment of dyeing sewage of the present invention;
FIG. 8 is a schematic diagram showing the movement state of the sampling device for ecological treatment of dyeing wastewater of the present invention.
Detailed Description
The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiment of the present invention, and it is obvious that the described embodiment is only a part of the embodiments of the present invention, rather than all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the protection scope of the present invention based on the embodiments of the present invention.
The first embodiment is as follows: as shown in figures 1-8, the embodiment describes a sampling device for ecological treatment of printing and dyeing wastewater, which comprises a storage barrel 1, a movable device 2 and a cover I3; the storage barrel 1 comprises a storage barrel main body 1-1, a liquid inlet 1-2, a cylinder 1-4 and a plurality of baffles 1-6; the top end of the storage barrel main body 1-1 is hollow, and a liquid inlet 1-2 is formed in the bottom end of the storage barrel main body 1-1; the cylinder 1-4 is fixedly connected to the inner bottom end of the storage barrel main body 1-1, the cylinder 1-4 is coaxial with the storage barrel main body 1-1, and a plurality of through holes 1-5 radially penetrating through the cylinder 1-4 are uniformly distributed at the bottom end of the cylinder 1-4; a plurality of chutes I1-7 parallel to the central axis of the cylinder 1-4 are uniformly distributed on the outer circular surface of the cylinder 1-4; the bottom end of the storage barrel main body 1-1 is provided with a circular groove 1-3; the circular groove 1-3 is positioned inside the cylinder 1-4, and the diameter of the circular groove 1-3 is equal to the inner diameter of the cylinder 1-4; a plurality of sliding chutes II 1-8 parallel to the central axis of the storage barrel main body 1-1 are uniformly distributed on the inner wall of the storage barrel main body 1-1; each baffle plate 1-6 is in sliding fit with the sliding groove I1-7 and the sliding groove II 1-8;
the movable device 2 comprises a rubber plug I2-1, a connecting rod 2-3, a top plate 2-4, a pull ring 2-5, a cover II 2-6 and a rubber plug II 2-7; the lower end of the connecting rod 2-3 is fixedly connected with a rubber plug I2-1, the upper end of the connecting rod 2-3 is fixedly connected with a top plate 2-4, and the connecting rod 2-3 is provided with threads; the rubber plug I2-1 is provided with a communicating hole 2-2; the communicating hole 2-2 is L-shaped, and the communicating hole 2-2 is communicated with the bottom surface and the side surface of the rubber plug I2-1; the upper end of the cover II 2-6 is fixedly connected with a pull ring 2-5, the center of the bottom surface of the cover II 2-6 is provided with a threaded hole, the center of the top surface of the cover II 2-6 is provided with a round hole, and the round hole is communicated with the threaded hole; the top plate 2-4 is in sliding fit with a round hole at the top end of the cover II 2-6; the connecting rod 2-3 is in threaded fit with a threaded hole at the bottom end of the cover II 2-6; the rubber plug II 2-7 is in sliding fit with the connecting rod 2-3, and a vertical through hole is formed in the rubber plug II 2-7 and is communicated with the cylinder 1-4;
the rubber plug I2-1 is in sliding fit with the cylinder 1-4 and the circular groove 1-3; the rubber plug II 2-7 is in sliding fit with the storage barrel main body 1-1; the cover II 2-6 is in threaded connection with the storage barrel body 1-1; the cover I3 is in threaded fit with a liquid inlet 1-2 at the lower end of the storage barrel main body 1-1.
The second embodiment is as follows: as shown in fig. 1-8, the present embodiment is further described with respect to the first embodiment, the heights of the baffles 1-6 and the cylinders 1-4 are the same, and the heights of the baffles 1-6 and the cylinders 1-4 are smaller than the height of the storage barrel body 1-1. So that the rubber plug II 2-7 can enter the storage barrel main body 1-1 to facilitate sealing.
The third concrete implementation mode: as shown in figures 1-8, the present embodiment is further described with respect to the first embodiment, when the rubber plug I2-1 moves into the circular groove 1-3, the bottom end of the communication hole 2-2 communicates with the liquid inlet 1-2, and the side surface of the communication hole 2-2 communicates with a through hole 1-5. Is convenient for the device to discharge sewage
The fourth concrete implementation mode: as shown in fig. 1-8, this embodiment is further described with respect to the first embodiment, and the volume of the cylinder 1-4 is equal to the volume of the space between the cylinder 1-4 and the storage barrel body 1-1. The phenomenon that the height of the communicating hole 2-2 on the rubber plug I2-1 is higher than that of the through hole 1-5 due to excessive sewage is avoided.
The fifth concrete implementation mode: as shown in fig. 1 to 8, this embodiment is further explained for the first embodiment, and the central angle between two adjacent sliding chutes i 1 to 7 is equal to the central angle between two adjacent sliding chutes ii 1 to 8. The convenient baffle 1-6 is matched with the sliding chute I1-7 and the sliding chute II 1-8.
The sixth specific implementation mode: as shown in fig. 1 to 8, this embodiment is further described as a first embodiment, and a through hole 1-5 is provided between any two adjacent sliding chutes i 1-7. The sewage after portioning is convenient to be discharged.
The seventh embodiment: as shown in FIGS. 1-8, the embodiment is further explained for the first embodiment, the chutes I1-7 and the chutes II 1-8 are equal in number, and the number of the chutes I1-7 and the chutes II 1-8 is less than ten.
The specific implementation mode is eight: as shown in fig. 1-8, this embodiment is further described with respect to the first embodiment, and the outer sides of the baffles 1-6 are wrapped with rubber pads. When the baffle plates 1-6 are matched with the sliding chutes I1-7 and the sliding chutes II 1-8, the gaps are sealed, and sewage among the baffle plates 1-6 is prevented from flowing mutually.
The utility model discloses a theory of operation is: when the device is used for pumping water, the cover I3 is opened, the rubber plug II 2-7 is pressed into the storage barrel main body 1-1, the rubber plug II 2-7 is matched with the storage barrel main body 1-1 and the sliding chute II 1-8, the through hole on the rubber plug II 2-7 is communicated with the cylinder II 1-4 at the moment, the rubber plug II 2-7 is pressed by hand, the rubber plug II 2-7 is ensured to be always positioned in the storage barrel main body 1-1, then the pull ring 2-5 is pulled upwards, the pull ring 2-5 drives the cover II 2-6, the cover II 2-6 drives the connecting rod 2-3 to move upwards through the top plate 2-4, the connecting rod 2-3 drives the rubber plug I2-1 to move upwards, the rubber plug I2-1 moves upwards to pump sewage into the cylinder 1-4 through the water inlet 1-2 by negative pressure, because the upper end of the gap between the cylinder 1-4 and the storage barrel main body 1-1 is sealed by the rubber plug II 2-7, no air enters the cylinder 1-4 through the gap between the cylinder 1-4 and the storage barrel main body 1-1 and the through hole 1-5, so that sewage can be smoothly pumped into the cylinder 1-4, and when the rubber plug I2-1 moves to the top end of the cylinder 1-4, the sampling work is finished; when sewage needs to be portioned, the cover I3 is covered on the liquid inlet 1-2, then a hand for pressing the rubber plug II 2-7 is loosened, the cover II 2-6 is pushed downwards, the cover II 2-6 drives the connecting rod 2-3 to further drive the rubber plug I2-1 to move downwards, as the cover I3 is in threaded connection with the liquid inlet 1-2 and the rubber plug II 2-7 is in sliding fit with the storage barrel main body 1-1, when the cover II 2-6 is pressed downwards, the rubber plug II 2-7 is jacked up by air pressure to be separated from the storage barrel main body 1-1, the sewage enters a gap between the cylinder 1-4 and the storage barrel main body 1-1 through the through hole 1-5 until the rubber plug II 2-7 moves to the lowest end, the operation of portioning of the sewage is completed, and a plurality of baffle plates 1-6 can be respectively inserted into corresponding chutes I1-7, In the chutes II 1-8, the sewage is divided into different parts; when the storage barrel moves, the cover II 2-6 is rotated, so that the cover II 2-6 is connected to the top end of the outer side of the storage barrel main body 1-1 through threads, the carrying is convenient, and meanwhile, sewage can be prevented from spilling; when sewage needs to be poured out, the cover II 2-6 is rotated to be separated from the storage barrel main body 1-1, then the rubber plug I2-1 is rotated to enable the opening in the side face of the communicating hole 2-2 to be communicated with the corresponding through hole 1-5, then the cover I3 is opened, the top end of the sewage is the same as the atmospheric pressure at the bottom end of the liquid inlet 1-2, and the sewage flows into the container through the communicating hole 2-2 and the liquid inlet 1-2 under the action of gravity, so that the operation is completed.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other forms of embodiment without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (8)

1. The utility model provides a sampling device for ecological treatment of printing and dyeing sewage which characterized in that: the sampling device for the ecological treatment of the printing and dyeing sewage comprises a storage barrel (1), a movable device (2) and a cover I (3); the storage barrel (1) comprises a storage barrel main body (1-1), a liquid inlet (1-2), a cylinder (1-4) and a plurality of baffles (1-6); the top end of the storage barrel main body (1-1) is hollow, and a liquid inlet (1-2) is formed in the bottom end of the storage barrel main body (1-1); the cylinder (1-4) is fixedly connected to the inner bottom end of the storage barrel main body (1-1), the cylinder (1-4) is coaxial with the storage barrel main body (1-1), and a plurality of through holes (1-5) radially penetrating through the cylinder (1-4) are uniformly distributed at the bottom end of the cylinder (1-4); a plurality of chutes I (1-7) parallel to the central axis of the cylinder (1-4) are uniformly distributed on the outer circular surface of the cylinder (1-4); a round groove (1-3) is arranged at the bottom end of the storage barrel main body (1-1); the circular groove (1-3) is positioned inside the cylinder (1-4), and the diameter of the circular groove (1-3) is equal to the inner diameter of the cylinder (1-4); a plurality of sliding chutes II (1-8) parallel to the central shaft of the storage barrel main body (1-1) are uniformly distributed on the inner wall of the storage barrel main body (1-1); each baffle (1-6) is in sliding fit with the sliding groove I (1-7) and the sliding groove II (1-8);
the movable device (2) comprises a rubber plug I (2-1), a connecting rod (2-3), a top plate (2-4), a pull ring (2-5), a cover II (2-6) and a rubber plug II (2-7); the lower end of the connecting rod (2-3) is fixedly connected with a rubber plug I (2-1), the upper end of the connecting rod (2-3) is fixedly connected with a top plate (2-4), and the connecting rod (2-3) is provided with threads; the rubber plug I (2-1) is provided with a communicating hole (2-2); the communicating hole (2-2) is L-shaped, and the communicating hole (2-2) is communicated with the bottom surface and the side surface of the rubber plug I (2-1); the upper end of the cover II (2-6) is fixedly connected with a pull ring (2-5), the center of the bottom surface of the cover II (2-6) is provided with a threaded hole, the center of the top surface of the cover II (2-6) is provided with a round hole, and the round hole is communicated with the threaded hole; the top plate (2-4) is in sliding fit with a round hole at the top end of the cover II (2-6); the connecting rod (2-3) is in threaded fit with a threaded hole at the bottom end of the cover II (2-6); the rubber plug II (2-7) is in sliding fit with the connecting rod (2-3), and a vertical through hole is formed in the rubber plug II (2-7) and communicated with the cylinder (1-4);
the rubber plug I (2-1) is in sliding fit with the cylinder (1-4) and the circular groove (1-3); the rubber plug II (2-7) is in sliding fit with the storage barrel main body (1-1); the cover II (2-6) is in threaded connection with the storage barrel main body (1-1); the cover I (3) is in threaded fit with a liquid inlet (1-2) at the lower end of the storage barrel main body (1-1).
2. The sampling device for ecological treatment of printing and dyeing wastewater as claimed in claim 1, wherein: the heights of the baffle plates (1-6) and the cylinders (1-4) are the same, and the heights of the baffle plates (1-6) and the cylinders (1-4) are smaller than the height of the storage barrel body (1-1).
3. The sampling device for ecological treatment of printing and dyeing wastewater as claimed in claim 1, wherein: when the rubber plug I (2-1) moves into the circular groove (1-3), the bottom end of the communicating hole (2-2) is communicated with the liquid inlet (1-2), and the side surface of the communicating hole (2-2) is communicated with one through hole (1-5).
4. The sampling device for ecological treatment of printing and dyeing wastewater as claimed in claim 2, characterized in that: the volume of the cylinder (1-4) is equal to the volume of a gap between the cylinder (1-4) and the storage barrel main body (1-1).
5. The sampling device for ecological treatment of printing and dyeing wastewater as claimed in claim 1, wherein: the central angle between the two adjacent sliding chutes I (1-7) is equal to the central angle between the two adjacent sliding chutes II (1-8).
6. The sampling device for ecological treatment of printing and dyeing wastewater as claimed in claim 5, wherein: a through hole (1-5) is formed between any two adjacent sliding grooves I (1-7).
7. The sampling device for ecological treatment of printing and dyeing wastewater according to claim 6, characterized in that: the number of the sliding chutes I (1-7) and the number of the sliding chutes II (1-8) are equal, and the number of the sliding chutes I (1-7) and the number of the sliding chutes II (1-8) are less than ten.
8. The sampling device for ecological treatment of printing and dyeing wastewater as claimed in claim 1, wherein: rubber pads are wrapped on the outer sides of the baffles (1-6).
CN202022154047.7U 2020-09-27 2020-09-27 Sampling device for ecological treatment of printing and dyeing sewage Active CN213180888U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022154047.7U CN213180888U (en) 2020-09-27 2020-09-27 Sampling device for ecological treatment of printing and dyeing sewage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022154047.7U CN213180888U (en) 2020-09-27 2020-09-27 Sampling device for ecological treatment of printing and dyeing sewage

Publications (1)

Publication Number Publication Date
CN213180888U true CN213180888U (en) 2021-05-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022154047.7U Active CN213180888U (en) 2020-09-27 2020-09-27 Sampling device for ecological treatment of printing and dyeing sewage

Country Status (1)

Country Link
CN (1) CN213180888U (en)

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