CN214399003U - Special carbon plate automatic filling device of people's air defense filter - Google Patents
Special carbon plate automatic filling device of people's air defense filter Download PDFInfo
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- CN214399003U CN214399003U CN202120259149.7U CN202120259149U CN214399003U CN 214399003 U CN214399003 U CN 214399003U CN 202120259149 U CN202120259149 U CN 202120259149U CN 214399003 U CN214399003 U CN 214399003U
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- fixing frame
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- air defense
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Abstract
The utility model relates to a civil air defense field discloses a special carbon plate automatic loading device of civil air defense filter, all be equipped with tip conveyer on first shaking table and the second shaking table, be equipped with first mount on the first shaking table, be equipped with first powder nozzle on the first mount, be equipped with the second mount on the second shaking table, be equipped with second powder nozzle on the second mount, be equipped with middle support and feed bin support between first shaking table and the second shaking table, be equipped with transfer conveyer in the middle support, be equipped with the storage hopper on the feed bin support, the storage hopper lower extreme is equipped with the discharging pipe, the discharging pipe is connected with first conveying pipe and second conveying pipe, first conveying pipe links to each other through first connecting pipe with first powder nozzle, second conveying pipe links to each other through the second connecting pipe with second powder nozzle. The carbon powder can be filled and compacted for multiple times, the efficiency is higher, and the compactness of the carbon powder is improved.
Description
Technical Field
The utility model relates to a people's air defense field especially relates to a special carbon plate automatic filling device of people's air defense filter.
Background
The civil air defense engineering needs to ensure the breathing requirements of personnel in the engineering and the air quality of the engineering, and a large amount of dust exists in the air introduced from the outside of the engineering and needs to be filtered. A carbon plate for filtration is generally provided in the cartridge. The carbon plate can be filled with active carbon in the production process, and the active carbon mainly plays a role in adsorption in the carbon plate. The traditional filling mode usually adopts manual filling, and after the manual filling is completed by using a tool, the carbon powder in the carbon box is tamped or jolted by using the tool, so that the traditional filling mode is time-consuming, labor-consuming and very inconvenient. Because the activated carbon powder filled in the empty carbon box needs to reach a certain compactness requirement, if the carbon box is not fully filled, the weight of the carbon powder in the carbon box generates larger deviation, and the filtering effect is indirectly influenced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a special carbon plate automatic filling device of people's air defense filter to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme: an automatic carbon plate filling device special for a civil air defense filter comprises a first vibrating table and a second vibrating table, wherein end conveying devices are arranged on the first vibrating table and the second vibrating table respectively, a first fixing frame is arranged on the first vibrating table, a first powder nozzle is embedded in the upper end of the first fixing frame, a second fixing frame is arranged on the second vibrating table, a second powder nozzle is embedded in the upper end of the second fixing frame, an intermediate support is arranged between the first vibrating table and the second vibrating table, a transfer conveying device is arranged on the intermediate support, a bin support is arranged above the intermediate support, a storage hopper is arranged on the bin support, a discharge pipe is arranged at the lower end of the storage hopper, a partition plate is arranged in the discharge pipe and divides the discharge pipe into a first discharge passage and a second discharge passage, the first discharge passage is connected with a first conveying pipe, the first conveying pipe is connected with a first connecting pipe communicated with the first powder nozzle, the second discharging channel is connected with a second conveying pipe, and the second conveying pipe is connected with a second connecting pipe communicated with the second powder nozzle. The carbon box is filled with the carbon powder twice continuously and tamped, and the carbon powder is filled and tamped for multiple times, which is beneficial to improving the compactness of the carbon powder.
Preferably, the transfer conveying device is a conveying roller way or a conveying belt. And conveying the carbon boxes at the first fixing frame to the second fixing frame through the transfer conveying device.
Preferably, the end conveying device is a conveying roller way or a conveying belt. The cartridge is transported to a predetermined position by an end conveyor.
Preferably, a vacuum pump is arranged at the upper end of the material storage hopper. The vacuum pump is used for pumping the activated carbon placed in the pumping pool into the storage hopper.
Preferably, one end of the first conveying pipe, which is far away from the first powder nozzle, is provided with a first air inlet nozzle, one end of the first conveying pipe, which is far away from the first air inlet nozzle, is provided with a first ball valve, and a first feeding pipe is arranged on the first conveying pipe between the first air inlet nozzle and the first ball valve. The first ball valve controls the discharge of powder, and the first air inlet nozzle blows air to the first conveying pipe to convey carbon powder to the first powder nozzle.
Preferably, a second air inlet nozzle is arranged at one end, away from the second powder nozzle, of the second conveying pipe, a second ball valve is arranged at one end, away from the second air inlet nozzle, of the second conveying pipe, and a second feeding pipe is arranged between the second air inlet nozzle and the second ball valve on the second conveying pipe. And the second ball valve controls the discharge of the powder, and the second air inlet nozzle blows air to the second conveying pipe to convey the carbon powder to the second powder nozzle.
Preferably, a first electric push rod is arranged on the first fixing frame, the first electric push rod is connected with a first baffle, a first photoelectric switch is arranged on the side face of the first fixing frame, and the first photoelectric switch is electrically connected with the first electric push rod. The first electric push rod is controlled through the first photoelectric switch, and the first baffle is controlled through the first electric push rod to move so as to block the empty carbon box from moving.
Preferably, a first sliding block is arranged on the first baffle, a first guide rail is horizontally arranged on the inner wall of the first fixing frame, and the first sliding block is arranged on the first guide rail in a sliding manner. The first baffle is stably moved through the matching of the first sliding block and the first guide rail.
Preferably, a second electric push rod is arranged on the second fixing frame, the second electric push rod is connected with a second baffle, a second photoelectric switch is arranged on the side face of the first fixing frame, and the second photoelectric switch is electrically connected with the second electric push rod. And the second photoelectric switch controls the second electric push rod, and the second electric push rod controls the second baffle to move so as to block the empty carbon box.
Preferably, a second sliding block is arranged on the second baffle, a second guide rail is horizontally arranged on the inner wall of the second fixing frame, and the second sliding block is arranged on the second guide rail in a sliding manner. And the second baffle plate stably moves through the matching of the second sliding block and the second guide rail.
The utility model has the advantages that: the carbon powder can be filled and compacted for multiple times, the efficiency is higher, and the compactness of the carbon powder is improved.
Drawings
The figures further illustrate the invention, but the embodiments in the figures do not constitute any limitation of the invention.
Fig. 1 is a schematic structural view of an automatic carbon plate loading device for a civil air defense filter according to an embodiment of the present invention.
The labels in the figure are: the device comprises a first vibrating table 1, a second vibrating table 2, a middle support 3, a bin support 4, a transfer conveying device 5, a storage hopper 6, a discharge pipe 7, a partition plate 71, a first fixing frame 8, a second fixing frame 9, a first conveying pipe 10, a first connecting pipe 12, a second conveying pipe 11 and a second connecting pipe 13.
Detailed Description
The following detailed description of the embodiments of the present invention will be made with reference to the accompanying drawings. It is to be understood that the description of the embodiments herein is for purposes of illustration and explanation only and is not intended to limit the invention.
It will be understood that when an element is referred to as being "secured to" or "disposed on" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or intervening elements may also be present.
In the present invention, unless otherwise specified, the terms of orientation such as "up, down, left, and right" used generally refer to up, down, left, and right as shown in fig. 1. "inner and outer" refer to the inner and outer portions of a particular contour. "distal and proximal" refer to distal and proximal relative to a component.
As shown in fig. 1, an automatic carbon plate loading device for a civil air defense filter provided in an embodiment of the present invention includes a first vibration table 1 and a second vibration table 2, wherein both the first vibration table 1 and the second vibration table 2 are provided with end portion conveying devices, the first vibration table 1 is provided with a first fixing frame 8, the upper end of the first fixing frame 8 is embedded with a first powder nozzle, the second vibration table 2 is provided with a second fixing frame 9, the upper end of the second fixing frame 9 is embedded with a second powder nozzle, an intermediate frame 3 is arranged between the first vibration table 1 and the second vibration table 2, the intermediate frame 3 is provided with a transfer conveying device 5, a stock bin support 4 is arranged above the intermediate frame 3, the stock bin support 4 is provided with a stock hopper 6, the lower end of the stock hopper 6 is provided with a discharge pipe 7, a partition plate 71 is arranged in the discharge pipe 7, the partition plate 71 divides the discharge pipe 7 into a first discharge channel and a second discharge channel, the first discharge channel is connected with a first conveying pipe 10, the first conveying pipe 10 is connected with a first connecting pipe 12 communicated with a first powder nozzle, the second discharge channel is connected with a second conveying pipe 11, and the second conveying pipe 11 is connected with a second connecting pipe 13 communicated with a second powder nozzle. The carbon box is filled with the carbon powder twice continuously and tamped, and the carbon powder is filled and tamped for multiple times, which is beneficial to improving the compactness of the carbon powder.
The transfer conveying device 5 is a conveying roller way or a conveying belt. The carbon boxes at the first fixing frame 8 are conveyed to the second fixing frame 9 through the transfer conveying device 5.
The end part conveying device is a conveying roller way or a conveying belt. The cartridge is transported to a predetermined position by an end conveyor.
And a vacuum pump is arranged at the upper end of the material storage hopper 6. The vacuum pump is used for pumping the activated carbon placed in the pumping pool into the storage hopper.
One end of the first conveying pipe 10, which is far away from the first powder nozzle, is provided with a first air inlet nozzle, one end of the first conveying pipe 10, which is far away from the first air inlet nozzle, is provided with a first ball valve, and a first feeding pipe is arranged on the first conveying pipe 10 between the first air inlet nozzle and the first ball valve. The first ball valve controls the discharge of powder, and the first air inlet nozzle blows air to the first conveying pipe 10 to convey carbon powder to the first powder nozzle.
And a second air inlet nozzle is arranged at one end, away from the second powder nozzle, of the second conveying pipe 11, a second ball valve is arranged at one end, away from the second air inlet nozzle, of the second conveying pipe 11, and a second feeding pipe is arranged between the second air inlet nozzle and the second ball valve on the second conveying pipe 11. The discharge of the powder is controlled by a second ball valve, and the second air inlet nozzle blows air to the second conveying pipe 11 to convey the carbon powder to the second powder nozzle.
The improved photoelectric switch is characterized in that a first electric push rod is arranged on the first fixing frame 8, the first electric push rod is connected with a first baffle, a first photoelectric switch is arranged on the side face of the first fixing frame 8, and the first photoelectric switch is electrically connected with the first electric push rod. The first electric push rod is controlled through the first photoelectric switch, and the first baffle is controlled through the first electric push rod to move so as to block the empty carbon box from moving. The piston rod of the first electric push rod extends to enable the first baffle to move, and the carbon box passes through the first baffle.
One end of the first baffle is connected with a piston rod of the first electric push rod, a first sliding block is arranged at the other end of the first baffle, a first guide rail is horizontally arranged on the inner wall of the first fixing frame 8, and the first sliding block is arranged on the first guide rail in a sliding mode. The first baffle is stably moved through the matching of the first sliding block and the first guide rail.
And a second electric push rod is arranged on the second fixing frame 9 and connected with a second baffle, and a second photoelectric switch is arranged on the side surface of the first fixing frame 8 and electrically connected with the second electric push rod. And the second photoelectric switch controls the second electric push rod, and the second electric push rod controls the second baffle to move so as to block the empty carbon box. And the piston rod of the second electric push rod extends to enable the second baffle plate to move, so that the carbon box passes through the second baffle plate.
One end of the second baffle is connected with a piston rod of the second electric push rod, a second sliding block is arranged at the other end of the second baffle, a second guide rail is horizontally arranged on the inner wall of the second fixing frame 9, and the second sliding block is arranged on the second guide rail in a sliding mode. And the second baffle plate stably moves through the matching of the second sliding block and the second guide rail.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is 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, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (10)
1. The utility model provides a special carbon plate automatic filling device of people's air defense filter which characterized in that: the device comprises a first vibrating table and a second vibrating table, wherein end conveying devices are arranged on the first vibrating table and the second vibrating table respectively, a first fixing frame is arranged on the first vibrating table, a first powder nozzle is embedded at the upper end of the first fixing frame, a second fixing frame is arranged on the second vibrating table, a second powder nozzle is embedded at the upper end of the second fixing frame, an intermediate support is arranged between the first vibrating table and the second vibrating table, a transfer conveying device is arranged on the intermediate support, a bin support is arranged above the intermediate support, a storage hopper is arranged on the bin support, a discharge pipe is arranged at the lower end of the storage hopper, a partition plate is arranged in the discharge pipe and divides the discharge pipe into a first discharge passage and a second discharge passage, the first discharge passage is connected with a first conveying pipe, and the first conveying pipe is connected with a first connecting pipe communicated with the first powder nozzle, the second discharging channel is connected with a second conveying pipe, and the second conveying pipe is connected with a second connecting pipe communicated with a second powder nozzle.
2. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 1, wherein: the transfer conveying device is a conveying roller way or a conveying belt.
3. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 1, wherein: the end part conveying device is a conveying roller way or a conveying belt.
4. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 1, wherein: the upper end of the storage hopper is provided with a vacuum pump.
5. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 1, wherein: the powder spraying device is characterized in that one end, far away from the first powder nozzle, of the first conveying pipe is provided with a first air inlet nozzle, one end, far away from the first air inlet nozzle, of the first conveying pipe is provided with a first ball valve, and a first feeding pipe is arranged between the first air inlet nozzle and the first ball valve on the first conveying pipe.
6. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 1, wherein: and a second air inlet nozzle is arranged at one end, far away from the second powder nozzle, of the second conveying pipe, a second ball valve is arranged at one end, far away from the second air inlet nozzle, of the second conveying pipe, and a second feeding pipe is arranged between the second air inlet nozzle and the second ball valve on the second conveying pipe.
7. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 1, wherein: the first fixing frame is provided with a first electric push rod, the first electric push rod is connected with a first baffle, a first photoelectric switch is arranged on the side face of the first fixing frame, and the first photoelectric switch is electrically connected with the first electric push rod.
8. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 7, wherein: the first baffle is provided with a first sliding block, the inner wall of the first fixing frame is horizontally provided with a first guide rail, and the first sliding block is arranged on the first guide rail in a sliding mode.
9. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 1, wherein: the second fixing frame is provided with a second electric push rod, the second electric push rod is connected with a second baffle, a second photoelectric switch is arranged on the side face of the first fixing frame, and the second photoelectric switch is electrically connected with the second electric push rod.
10. The automatic carbon plate filling device special for the civil air defense filter as claimed in claim 9, wherein: and a second sliding block is arranged on the second baffle, a second guide rail is horizontally arranged on the inner wall of the second fixing frame, and the second sliding block is arranged on the second guide rail in a sliding manner.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120259149.7U CN214399003U (en) | 2021-01-29 | 2021-01-29 | Special carbon plate automatic filling device of people's air defense filter |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120259149.7U CN214399003U (en) | 2021-01-29 | 2021-01-29 | Special carbon plate automatic filling device of people's air defense filter |
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Publication Number | Publication Date |
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CN214399003U true CN214399003U (en) | 2021-10-15 |
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CN202120259149.7U Active CN214399003U (en) | 2021-01-29 | 2021-01-29 | Special carbon plate automatic filling device of people's air defense filter |
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CN (1) | CN214399003U (en) |
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2021
- 2021-01-29 CN CN202120259149.7U patent/CN214399003U/en active Active
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