CN213200849U - Feeding structure for nano methoxy acrylate bactericide - Google Patents

Feeding structure for nano methoxy acrylate bactericide Download PDF

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Publication number
CN213200849U
CN213200849U CN202021759179.6U CN202021759179U CN213200849U CN 213200849 U CN213200849 U CN 213200849U CN 202021759179 U CN202021759179 U CN 202021759179U CN 213200849 U CN213200849 U CN 213200849U
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CN
China
Prior art keywords
pipe
weighing
push rod
exhaust pipe
wall
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Active
Application number
CN202021759179.6U
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Chinese (zh)
Inventor
刘舜舜
孙婷
朱磊磊
童成亮
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Anhui Public Inspection And Research Institute Co ltd
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Anhui Public Inspection And Research Institute Co ltd
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Priority to CN202021759179.6U priority Critical patent/CN213200849U/en
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Abstract

The utility model discloses a throw material structure for nanometer type methoxy acrylate germicide relates to the technical field of germicide, including the weighing bucket, the one end lateral wall of weighing bucket is provided with the push rod that slides and runs through this lateral wall, the other end lateral wall of weighing bucket is provided with the feed liquor pipe that runs through this lateral wall, be provided with first valve and liquid taking pipe on the feed liquor pipe, the one end that the push rod stretched into the weighing bucket is provided with the cock stem, the cock stem is in sliding contact with the inner wall of weighing bucket, be provided with the drain pipe that communicates with the weighing bucket on the circumference wall of weighing bucket, the drain pipe is located the one end that is close to the feed liquor pipe, be provided with catheter and second valve on the drain pipe, be provided with the blast pipe that runs through push rod and cock stem on the push rod; a dial gauge is arranged on the surface of the weighing barrel; the utility model has the advantages of convenient use, prevention of the leakage of the bactericide and the like.

Description

Feeding structure for nano methoxy acrylate bactericide
Technical Field
The utility model relates to a technical field of germicide, in particular to a throw material structure for nanometer type methoxy acrylic ester germicide.
Background
Biocides, also known as biocides, bactericidal algicides, microbicides, and the like, generally refer to chemical agents that are effective in controlling or killing microorganisms, bacteria, fungi, and algae, in aqueous systems. Internationally, it is a general term for agents for controlling various types of pathogenic microorganisms.
The germicide need mix the dilution with water earlier when using, and the normal mode takes out a certain amount of germicide from the staving of germicide earlier, then dilutes the leading-in aquatic of germicide again, and the transfer mode of current germicide is mainly through empting, but this kind of mode easily causes the germicide to leak, consequently this application has set up the mode of throwing of a novel germicide.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a throw material structure for nano-type methoxy acrylate germicide is provided for solve among the prior art that describes in the background art getting of germicide throw the material mode easily cause the problem that germicide leaks.
In order to achieve the above object, the present invention provides the following technical solutions: a feeding structure for a nano methoxy acrylate bactericide comprises a weighing barrel, wherein a push rod which penetrates through the side wall in a sliding manner is arranged on the side wall of one end of the weighing barrel, a liquid inlet pipe which penetrates through the side wall is arranged on the side wall of the other end of the weighing barrel, a first valve and a liquid taking pipe are arranged on the liquid inlet pipe, a plug is arranged at one end, extending into the weighing barrel, of the push rod, the plug is in sliding contact with the inner wall of the weighing barrel, a liquid outlet pipe which is communicated with the weighing barrel is arranged on the circumferential wall of the weighing barrel, the liquid outlet pipe is positioned at one end close to the liquid inlet pipe, a liquid guide pipe and a second valve are arranged on the liquid outlet pipe, and an exhaust pipe which penetrates through the push rod and the plug is arranged; and a dial gauge is arranged on the surface of the weighing barrel.
Preferably: the plane of one side of blast pipe far away from the weighing bucket is provided with the spring, the one end that the blast pipe was kept away from to the spring is connected with the clamp plate, be provided with stifled post on the clamp plate.
Preferably: the blocking column is in a round table shape, the diameter of one face, facing the exhaust pipe, of the blocking column is smaller than the diameter of the inner wall of the exhaust pipe, and the diameter of the face, connected with the pressing plate, of the blocking column is larger than the diameter of the exhaust pipe.
Preferably: the outer wall of one end of the exhaust pipe, which extends out of the push rod, is fixedly provided with a positioning ring, and the pressing plate is provided with a guide rod which penetrates through the positioning ring in a sliding manner.
The beneficial effect of adopting above technical scheme is:
according to the bactericide weighing barrel, the liquid taking pipe on the liquid inlet pipe extends into a bactericide packaging barrel, the liquid guide pipe on the liquid storage pipe extends into diluted water, then the second valve is closed, the exhaust pipe is blocked, the plug is far away from the liquid inlet pipe by pulling the push rod, so that bactericide can be sucked into the weighing barrel, then the first valve is closed, the second valve is opened, the push rod is pushed to return to the original position again, the bactericide in the weighing barrel enters the diluted water, feeding of the bactericide is completed, and leakage cannot be caused;
this application can plug up the blast pipe through what set up blockking up, through when getting into germicide for the first time in the weighing bucket, because feed liquor pipe and get that the liquid pipe is interior to be full of the air at first, consequently the air can fill into the weighing bucket simultaneously with germicide, and the blast pipe through setting up can be under the circumstances that first valve and second valve were closed, with the air escape in the germicide in the weighing bucket.
Drawings
Fig. 1 is a front view of a feeding structure for a nano methoxy acrylate bactericide of the present invention.
Fig. 2 is a schematic structural diagram of a feeding structure for a nano-type methoxy acrylate bactericide of the present invention.
Wherein: weighing barrel 10, plug 11, push rod 12, scale 13, liquid inlet pipe 20, liquid taking pipe 21, first valve 22, liquid outlet pipe 30, liquid guide pipe 31, second valve 33, exhaust pipe 40, positioning ring 41, guide rod 42, pressure plate 43, plug 44 and spring 45.
Detailed Description
Preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
In the embodiment, as shown in fig. 1-2, in the embodiment, a feeding structure for a nano-type strobilurin fungicide comprises a weighing barrel 10, a push rod 12 slidably penetrating through a side wall of one end of the weighing barrel 10 is arranged on a side wall of the other end of the weighing barrel 10, a liquid inlet pipe 20 penetrating through the side wall is arranged on the side wall of the other end of the weighing barrel 10, a first valve 22 and a liquid taking pipe 21 are arranged on the liquid inlet pipe 20, a plug 11 is arranged at one end of the push rod 12 extending into the weighing barrel 10, the plug 11 is in sliding contact with an inner wall of the weighing barrel 10, a liquid outlet pipe 30 communicated with the weighing barrel 10 is arranged on a circumferential wall of the weighing barrel 10, the liquid outlet pipe 30 is located at one end close to the liquid inlet pipe 20, a liquid guide pipe 31 and a second valve 32 are arranged on the liquid outlet pipe 30, and an exhaust pipe 40 penetrating through the push rod 12 and the; the surface of the weighing barrel 10 is provided with a dial gauge 13.
Preferably: a spring 45 is arranged on the plane of one side of the exhaust pipe 40 far away from the weighing barrel 10, one end of the spring 45 far away from the exhaust pipe 40 is connected with a pressure plate 43, and a blocking column 44 is arranged on the pressure plate 43.
Preferably: the blocking column 44 is in a shape of a circular truncated cone, the diameter of one surface, facing the exhaust pipe 40, of the blocking column 44 is smaller than the diameter of the inner wall of the exhaust pipe 40, and the diameter of the surface, connected with the pressing plate 43, of the blocking column 44 is larger than the diameter of the exhaust pipe 40.
Preferably: the outer wall of one end of the exhaust pipe 40 extending out of the push rod 12 is fixedly provided with a positioning ring 41, and the pressing plate 43 is provided with a guide rod 45 which penetrates through the positioning ring 41 in a sliding manner.
The specific implementation manner of this embodiment:
when the application is used, the liquid taking tube 21 is firstly extended into the packing barrel of the bactericide, the liquid guide tube 31 on the liquid outlet tube 30 is extended into the diluted water, then the second valve 33 is closed, the first valve 22 is opened, the pressing plate 43 is pressed so as to block the exhaust pipe 40, then the push rod 12 is pulled to move the plug 11 away from the liquid inlet pipe 20, so that the bactericide can be sucked into the weighing bucket 10, then the first valve 22 is closed again, the pressure plate 43 is released, the plug is far away from the exhaust pipe 40, the push rod 12 is pushed again to exhaust the air in the bactericide, then, pressing plate 43 is pressed again to block exhaust pipe 40, first valve 22 is opened again, then push rod 12 is pushed to make the bactericide continuously enter weighing barrel 10, and the bactericide is observed through dial gauge 13 until the amount of the bactericide reaches the requirement, then, the first valve 22 is closed, the second valve 33 is opened, and the push rod 12 is pushed to discharge the bactericide from the liquid outlet tube 30 and the liquid guide tube 31.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many modifications and improvements can be made without departing from the inventive concept, and all of them belong to the protection scope of the present invention.

Claims (4)

1. A throw material structure for nanometer type methoxy acrylate bactericides, includes the weighing bucket, its characterized in that: a push rod which penetrates through the side wall in a sliding manner is arranged on the side wall of one end of the measuring cylinder, a liquid inlet pipe which penetrates through the side wall is arranged on the side wall of the other end of the weighing cylinder, a first valve and a liquid taking pipe are arranged on the liquid inlet pipe, a plug column is arranged at one end, extending into the weighing cylinder, of the push rod, the plug column is in sliding contact with the inner wall of the weighing cylinder, a liquid outlet pipe which is communicated with the weighing cylinder is arranged on the circumferential wall of the weighing cylinder, the liquid outlet pipe is positioned at one end close to the liquid inlet pipe, a liquid guide pipe and a second valve are arranged on the liquid outlet pipe, and an exhaust pipe which penetrates through the push; and a dial gauge is arranged on the surface of the weighing barrel.
2. The feeding structure for the nano methoxy acrylate bactericide as claimed in claim 1, wherein a spring is disposed on a side plane of the exhaust pipe away from the weighing barrel, one end of the spring away from the exhaust pipe is connected with a pressing plate, and a blocking column is disposed on the pressing plate.
3. The feeding structure for the nano methoxy acrylate bactericide as claimed in claim 2, wherein the blocking column is in the shape of a truncated cone, the diameter of the side of the blocking column facing the exhaust pipe is smaller than the diameter of the inner wall of the exhaust pipe, and the diameter of the side of the blocking column connected with the pressing plate is larger than the diameter of the exhaust pipe.
4. The feeding structure for the nano methoxy acrylate bactericide as claimed in claim 3, wherein a positioning ring is fixedly arranged on the outer wall of one end of the exhaust pipe extending out of the push rod, and a guide rod sliding through the positioning ring is arranged on the pressing plate.
CN202021759179.6U 2020-08-21 2020-08-21 Feeding structure for nano methoxy acrylate bactericide Active CN213200849U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021759179.6U CN213200849U (en) 2020-08-21 2020-08-21 Feeding structure for nano methoxy acrylate bactericide

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021759179.6U CN213200849U (en) 2020-08-21 2020-08-21 Feeding structure for nano methoxy acrylate bactericide

Publications (1)

Publication Number Publication Date
CN213200849U true CN213200849U (en) 2021-05-14

Family

ID=75840890

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021759179.6U Active CN213200849U (en) 2020-08-21 2020-08-21 Feeding structure for nano methoxy acrylate bactericide

Country Status (1)

Country Link
CN (1) CN213200849U (en)

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