CN212154005U - Pipeline centralized control stand column - Google Patents

Pipeline centralized control stand column Download PDF

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Publication number
CN212154005U
CN212154005U CN202020069265.8U CN202020069265U CN212154005U CN 212154005 U CN212154005 U CN 212154005U CN 202020069265 U CN202020069265 U CN 202020069265U CN 212154005 U CN212154005 U CN 212154005U
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China
Prior art keywords
pipeline
gas
chamber
water
workshop
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Application number
CN202020069265.8U
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Chinese (zh)
Inventor
张言志
廖祖宋
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Ningxia Xige Winery Co ltd
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Ningxia Xige Winery Co ltd
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Priority to CN202020069265.8U priority Critical patent/CN212154005U/en
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Abstract

The application discloses concentrated control stand of pipeline, including the stand case, divide into first cavity and second cavity through the baffle in the stand incasement, be equipped with the block terminal in the first cavity, be equipped with a plurality of sockets on the lateral wall of first cavity, through block terminal and socket, concentrate on the stand case with the transmission of electricity part in the workshop, all electrical equipment get the electricity in the workshop and all pass through the stand case, realize the centralized control to transmission of electricity line in the workshop. The gas pipeline and the water pipeline are arranged in the second chamber, the gas transmission part and the water transmission part in the production workshop can be concentrated on the upright post box, and all the electric equipment in the production workshop can take gas and water through the upright post box, so that the centralized control of the gas pipeline and the water pipeline in the production workshop is realized. The utility model provides a pipeline centralized control stand can make the electrical equipment in the workshop all concentrate through the pipeline centralized control stand of this application and get the ability to solve each way electric pipeline and place mixed and disorderly, be not convenient for manage's problem in the workshop.

Description

Pipeline centralized control stand column
Technical Field
The application relates to the technical field of pipeline arrangement, in particular to a pipeline centralized control stand column.
Background
In a production workshop of wine, a plurality of electric pipelines for auxiliary production are arranged, and the common electric pipelines comprise a power transmission line, a gas transmission pipeline and a water transmission pipeline.
At present, the installation and layout of electric pipelines are not planned in a unified way, and in the using process, the arrangement of each electric pipeline has the problem of disordered placement, on one hand, the unified management of electric equipment in a generation workshop is influenced, the production efficiency is influenced, and on the other hand, the safety risk exists when partial lines (such as a water conveying pipeline and a power transmission line) are in direct contact.
SUMMERY OF THE UTILITY MODEL
The application provides a control stand is concentrated to pipeline to in solving current grape wine workshop, arranging of each way electric pipeline exists places in a jumble, is unfavorable for the problem of management.
The application provides a pipeline centralized control stand column, which comprises a rectangular stand column box, wherein a partition plate is arranged in the stand column box, the partition plate divides the interior of the stand column box into a first cavity and a second cavity, a distribution box is arranged in the first cavity, and a plurality of sockets which are connected with the distribution box are arranged on the outer side wall of the first cavity;
a plurality of gas pipelines are arranged in the second chamber, two ends of each gas pipeline penetrate through the outer side wall of the second chamber and extend to the outside of the second chamber, one extending end of each gas pipeline is used for connecting a gas supply source, and the other extending end of each gas pipeline is used for connecting electrical equipment needing gas supply;
the water body pipeline is arranged in the second cavity, two ends of the water body pipeline penetrate through the outer side wall of the second cavity and extend to the outside of the second cavity, one extending end of the water body pipeline is used for being connected with a water body supply source, and the other extending end of the water body pipeline is used for being connected with electrical equipment needing water body supply.
Optionally, the power distribution box outputs different powers to the outlets, the power output by the power distribution box including 220V 16A, 380V 16A, and 380V 32A.
Optionally, a plurality of leakage protection switches are arranged on the outer side wall of the first cavity, and each leakage protection switch is correspondingly connected with one socket.
Optionally, a gas control valve is arranged on the pipeline for connecting one end of the electrical equipment on the gas pipeline.
Optionally, a water control valve is arranged on the water pipeline for connecting one end of the electrical equipment.
Optionally, the number of the gas pipelines is 2, and the gas pipelines are respectively a first gas pipeline and a second gas pipeline.
Optionally, the outer wall of the pillar box is provided with a hanging lug.
The application provides a concentrated control stand of pipeline, including the stand case, divide into first cavity and second cavity through the baffle in the stand incasement, be equipped with the block terminal in the first cavity, be equipped with a plurality of sockets all of being connected with the block terminal on the lateral wall of first cavity, through block terminal and socket, will transmit electricity the part with the workshop in transmit electricity on the stand case, all electrical equipment's in the workshop get the electricity and all pass through the stand case, realized the centralized control to transmission line in the workshop. The gas pipeline and the water pipeline are arranged in the second chamber, the gas pipeline and the water pipeline are used for concentrating the gas transmission part and the water transmission part in the production workshop on the upright post box, and the gas taking and the water taking of all electrical equipment in the production workshop are all performed through the upright post box, so that the centralized control of the gas pipeline and the water pipeline in the production workshop is realized.
The utility model provides a pipeline centralized control stand makes the electrical equipment in the workshop all concentrate through the pipeline centralized control stand of this application and gets the ability to solve each way electric pipeline and place mixed and disorderly, be not convenient for manage's problem in the workshop. In addition, the electric pipelines in the workshop are generated to be managed in a unified manner, so that the operation of workers is facilitated, and the working efficiency is improved; the distribution of the electric pipelines in the production workshop is simpler, the cost input of water, electricity and gas pipelines is reduced, and the cleanliness in the production workshop can be improved.
Drawings
In order to more clearly explain the technical solution of the present application, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious to those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic view of the internal structure of the central control column for pipeline according to the present application;
FIG. 2 is a left side view of the central control column for pipelines according to the present application;
fig. 3 is a left side view of the pipeline centralized control column of the present application.
The reference numerals in fig. 1-3 refer to: 100-upright post box, 110-first chamber, 111-distribution box, 112-socket, 113-leakage protection switch, 120-second chamber, 121-gas pipeline, 1211-first gas pipeline, 1212-second gas pipeline, 122-gas control valve, 123-water body pipeline, 124-water control valve, 125-hanging lug and 130-clapboard.
Detailed Description
The application provides a pipeline centralized control stand, makes the electric pipeline in the workshop all concentrate through the pipeline centralized control stand of this application and get the ability (including getting the electricity, getting gas and getting water) to each way electric pipeline places mixed and disorderly, the problem of being not convenient for manage in the solution workshop.
Fig. 1 is the internal structure schematic diagram of this application pipeline centralized control stand, fig. 2 is the left side view of this application pipeline centralized control stand, combine fig. 1 and fig. 2 to show, pipeline centralized control stand includes a rectangular stand case 100, stand case 100 is used for carrying out centralized management to the electric pipeline in the workshop, during the in-service use, if leakage transmission line takes place the contact with the water leakage pipeline, will cause the electric power accident, will cause the damage to the electrical equipment in the workshop when serious. In order to avoid such accidents, in the present application, a partition plate 130 is disposed in the pillar box 100, the partition plate 130 divides the interior of the pillar box 100 into a first chamber 110 and a second chamber 120, a power transmission line is disposed in the first chamber 110, and a water and gas transmission pipeline is disposed in the second chamber 120. That is, the partition 130 completely isolates the power transmission line from the water and gas transmission pipelines, so that the direct contact between the power transmission line and the water and gas transmission pipelines is directly avoided, and the occurrence of power accidents is avoided.
In this application, set up block terminal 111 in first cavity 110, be equipped with a plurality of sockets 112 that all are connected with block terminal 111 on the lateral wall of first cavity 110. The number of the sockets 112 can be adjusted by those skilled in the art according to actual needs, such as 3, 5, or 7, and the like, which all fall within the scope of the present application.
The distribution box 111 is connected to an external power source, converts the electric energy of the external power source into electric energy with different powers, and transmits the electric energy to the corresponding sockets 112, in this example, the power output by the distribution box 111 includes 220V 16A, 380V 16A, and 380V 32A. In this example, the outer sidewall of the first chamber 110 is provided with 4 sockets 112, and the output power of each socket 112 from top to bottom is 380V 16A, 380V 32A, 220V 16A. In particular, the socket 112 with the appropriate power may be selected according to the actual power of the electrical device. It should be noted that the implementation process of the distribution box 111 outputting different powers to the socket 112 is the prior art and will not be described herein.
In order to prevent the electrical leakage phenomenon of the socket 112, in this example, a plurality of electrical leakage protection switches 113 are disposed on the outer side wall of the first chamber 110, the number of the electrical leakage protection switches 113 is the same as that of the socket 112, and each electrical leakage protection switch 113 is correspondingly connected to one socket 112.
The utility model provides a pipeline centralized control stand shows in to transmission line's centralized control: when the electrical equipment in the production workshop needs to use electric energy, the socket 112 on the column box 100 is used for getting electricity, so that the centralized control of the power transmission line in the production workshop is realized.
A plurality of gas pipelines 121 are arranged in the second chamber 120, two ends of each gas pipeline 121 penetrate through the outer side wall of the second chamber 120 and extend to the outside of the second chamber 120, one extending end of each gas pipeline 121 is used for connecting a gas supply source, and the other extending end of each gas pipeline 121 is used for connecting electrical equipment needing gas supply. It should be noted that, a person skilled in the art can set the number of the gas pipes 121 according to the actual needs of the production plant, for example, if the production plant needs compressed air, 1 gas pipe 121 is set in the second chamber 120; for another example, if the production shop requires compressed air, nitrogen and carbon dioxide, 3 gas pipes 121 are disposed in the second chamber 120. In this example, the number of the gas pipes 121 is 2, and the gas pipes are a first gas pipe 1211 and a second gas pipe 1212, respectively, the first gas pipe 1211 is used for conveying compressed air, and the second gas pipe 1212 is used for conveying nitrogen or carbon dioxide.
In order to facilitate the control of the gas in the gas pipeline 121, in the present application, a gas control valve 122 is disposed on the pipeline for connecting one end of the electrical device on the gas pipeline 121. When the gas supply device is used, the gas pipeline 121 and the electrical equipment needing gas supply are connected through the external pipeline, the gas control valve 122 is opened, gas in a gas supply source sequentially passes through the gas pipeline 121 and the external pipeline in the column box 100 to enter the electrical equipment needing gas supply, and the gas control valve 122 is closed to stop gas supply to the electrical equipment.
The utility model provides a pipeline centralized control stand shows in gas transmission pipeline's centralized control: when the electrical equipment in the production workshop needs to use gas, the gas is taken through the gas pipeline 121 on the upright post box 100, so that the centralized control of the gas pipeline in the production workshop is realized.
Be equipped with water pipeline 123 in the second chamber 120, water pipeline 123's both ends all pass second chamber 120 lateral wall, extend to the outside of second chamber 120, and one of water pipeline 123 stretches out the end and is used for connecting the water supply source, and another of water pipeline 123 stretches out the end and is used for connecting the electrical equipment that needs the water to supply with. In order to facilitate the control of the water in the water pipeline 123, in the present application, a water control valve 124 is disposed on the pipeline on the water pipeline 123 for connecting one end of the electrical device. During the use, through external pipeline connection water body pipeline 123 with the electric water equipment that needs the water supply, open water control valve 124, the water in the water supply source loops through water body pipeline 123 in column case 100, external pipeline, gets into the electric water equipment that needs the water supply, closes water control valve 124, then stops the water supply to electric water equipment.
The utility model provides a pipeline centralized control stand shows in to the centralized control of conduit: when the electrical equipment in the production workshop needs to use water, water is taken through the water pipeline 123 on the upright post box 100, so that the centralized control of the water pipeline in the production workshop is realized. To facilitate management of the external pipes, the stud case 100 is provided with a hanging lug 125 on the outer wall thereof, as shown in fig. 3. The used external pipeline can be hung on the hanging lug 125, and the external pipeline can be arranged.
The application provides a concentrated control stand of pipeline, including the stand case, divide into first cavity and second cavity through the baffle in the stand incasement, be equipped with the block terminal in the first cavity, be equipped with a plurality of sockets on the lateral wall of first cavity, through block terminal and socket, with the transmission of electricity part on the stand case in the workshop, all electrical equipment's in the workshop get the electricity and all pass through the stand case, realized the centralized control to transmission of electricity line in the workshop. The gas pipeline and the water pipeline are arranged in the second chamber, the gas pipeline and the water pipeline are used for concentrating the gas transmission part and the water transmission part in the production workshop on the upright post box, and the gas taking and the water taking of all electrical equipment in the production workshop are all performed through the upright post box, so that the centralized control of the gas pipeline and the water pipeline in the production workshop is realized.
The utility model provides a pipeline centralized control stand can make the electrical equipment in the workshop all concentrate through the pipeline centralized control stand of this application and get the ability (including getting the electricity, getting gas and getting water) to solve each way electric pipeline and place mixed and disorderly, be not convenient for the problem of management in the workshop. In addition, the electric pipelines in the workshop are generated to be managed in a unified manner, so that the operation of workers is facilitated, and the working efficiency is improved; the distribution of the electric pipelines in the production workshop is simpler, the cost input of water, electricity and gas pipelines is reduced, and the cleanliness in the production workshop can be improved.
The above-described embodiments of the present application do not limit the scope of the present application.

Claims (7)

1. The pipeline centralized control upright post is characterized by comprising an upright post box (100), wherein a partition plate (130) is arranged in the upright post box (100), the partition plate (130) divides the interior of the upright post box (100) into a first chamber (110) and a second chamber (120), a distribution box (111) is arranged in the first chamber (110), and a plurality of sockets (112) which are connected with the distribution box (111) are arranged on the outer side wall of the first chamber (110);
a plurality of gas pipelines (121) are arranged in the second chamber (120), two ends of each gas pipeline (121) penetrate through the outer side wall of the second chamber (120) and extend to the outside of the second chamber (120), one extending end of each gas pipeline (121) is used for connecting a gas supply source, and the other extending end of each gas pipeline (121) is used for connecting electrical equipment needing gas supply;
a water body pipeline (123) is arranged in the second chamber (120), two ends of the water body pipeline (123) penetrate through the outer side wall of the second chamber (120) and extend to the outside of the second chamber (120), one extending end of the water body pipeline (123) is used for being connected with a water body supply source, and the other extending end of the water body pipeline (123) is used for being connected with electrical equipment needing water body supply.
2. The line concentration control column according to claim 1, wherein the distribution box (111) outputs different powers to the socket (112), and the power output by the distribution box (111) comprises 220V 16A, 380V 16A and 380V 32A.
3. The central control post for pipelines according to claim 1, characterized in that a plurality of earth leakage protection switches (113) are disposed on the outer side wall of the first chamber (110), and each earth leakage protection switch (113) is connected to one corresponding socket (112).
4. The central control post for pipelines according to claim 1, characterized in that the gas control valve (122) is arranged on the pipe for connecting one end of the electrical equipment on the gas pipe (121).
5. The pipeline centralized control upright post of claim 1, wherein a water control valve (124) is arranged on the pipeline on one end of the water body pipeline (123) for connecting with electrical equipment.
6. The central control column for pipelines according to claim 1, characterized in that the number of gas pipes (121) is 2, respectively a first gas pipe (1211) and a second gas pipe (1212).
7. The pipeline centralized control post according to claim 1, characterized in that the outer wall of the post box (100) is provided with a hanging lug (125).
CN202020069265.8U 2020-01-13 2020-01-13 Pipeline centralized control stand column Active CN212154005U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020069265.8U CN212154005U (en) 2020-01-13 2020-01-13 Pipeline centralized control stand column

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020069265.8U CN212154005U (en) 2020-01-13 2020-01-13 Pipeline centralized control stand column

Publications (1)

Publication Number Publication Date
CN212154005U true CN212154005U (en) 2020-12-15

Family

ID=73707970

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020069265.8U Active CN212154005U (en) 2020-01-13 2020-01-13 Pipeline centralized control stand column

Country Status (1)

Country Link
CN (1) CN212154005U (en)

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