CN215038630U - Residual air recovery system of concrete building block - Google Patents

Residual air recovery system of concrete building block Download PDF

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Publication number
CN215038630U
CN215038630U CN202120225169.2U CN202120225169U CN215038630U CN 215038630 U CN215038630 U CN 215038630U CN 202120225169 U CN202120225169 U CN 202120225169U CN 215038630 U CN215038630 U CN 215038630U
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China
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filtering
pipe
air
cooling
residual air
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CN202120225169.2U
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Chinese (zh)
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陈文琪
陈伟
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Huangshi Jianfu Environmental Protection New Material Co ltd
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Huangshi Jianfu Environmental Protection New Material Co ltd
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Abstract

The utility model belongs to the technical field of the concrete block production technique and specifically relates to indicate a concrete block's residual air recovery system, including intake pipe, filter equipment, cooling device and exhaust apparatus, filter equipment set up in the intake pipe with between the cooling device, exhaust apparatus install in cooling device's output, the intake pipe can be dismantled and be provided with the air discharge fan, the blast pipe is used for absorbing the residual air and passes through the residual air the intake pipe transmits to filter equipment filters, cooling device is used for absorbing the heat of the residual air after filtering, exhaust apparatus is used for discharging the residual air after the cooling to the external world. The utility model discloses a can dismantle and be provided with the air discharge fan, the staff can regularly wash and maintain after pulling down the air discharge fan, thereby guaranteed the utility model discloses to the absorptive effect of residual air.

Description

Residual air recovery system of concrete building block
Technical Field
The utility model belongs to the technical field of the concrete block production technique and specifically relates to indicate a concrete block's residual air recovery system.
Background
After the concrete block is formed, the concrete block needs to be autoclaved to improve the performance, the strength and the like. However, after the steam pressure is performed, the residual gas inevitably carries some impurities, and the direct discharge of the residual gas from the natural world certainly causes pollution, so that the residual gas needs to be recovered and treated before the discharge.
Present residual air recovery system, its structure is mostly fixed, has leaded to absorbing the structure that residual air used after the live time has been long, has influenced the absorption effect because of the surface adhesion has the attachment that the one deck is thicker to cost great manpower and materials just can accomplish when leading to needing to wash, obviously promoted the cost
Disclosure of Invention
The utility model discloses problem to prior art provides a concrete block's residual air recovery system, can pull down the air discharge fan fast and wash and maintain.
In order to solve the technical problem, the utility model discloses a following technical scheme:
the utility model provides a pair of concrete block's residual air recovery system, including intake pipe, filter equipment, cooling device and exhaust apparatus, filter equipment set up in the intake pipe with between the cooling device, exhaust apparatus install in cooling device's output, the intake pipe can be dismantled and be provided with the air discharge fan, the blast pipe is used for absorbing the residual air and transmits the residual air to filter equipment through the intake pipe and filters, cooling device is used for absorbing the heat of the residual air after filtering, exhaust apparatus is used for discharging the residual air after cooling to the external world; the exhaust device comprises an exhaust pipe and an exhaust pump, the exhaust pipe is communicated with the filtering device, and the exhaust pump is used for discharging the filtered gas in the filtering device to the outside.
Furthermore, the air inlet pipe is provided with an installation position, two sides of the installation position are respectively provided with a sliding groove, two sides of the exhaust fan are respectively provided with a sliding strip, and the sliding strips are in one-to-one corresponding sliding connection with the sliding grooves; the top and the bottom of the exhaust fan are respectively provided with a mounting plate, and the mounting plates are connected with the exhaust pipe through screws.
Furthermore, the top of installation position is provided with the jam plate, the air discharge fan is located between two jam plates, two mounting panels all with the connection can be dismantled to the air discharge fan, and two jam plates are located between two mounting panels, and jam plate and mounting panel pass through screwed connection one by one.
Furthermore, the filtering device comprises a filtering shell, two partition plates are arranged in the filtering shell at intervals, the two partition plates are used for dividing the filtering shell into a first filtering chamber, a second filtering chamber and a third filtering chamber which are sequentially arranged, the first filtering chamber, the second filtering chamber and the third filtering chamber are respectively filled with filtering media with sequentially increased filtering precision, and the first filtering chamber and the third filtering chamber are respectively provided with an air inlet and an air outlet; the partition plate is provided with air holes.
Furthermore, the first filter chamber, the second filter chamber and the third filter chamber are respectively provided with a door.
Furthermore, cooling device includes cooling tube and circulating pump, the cooling tube around locating filter shell's periphery, the both ends of cooling tube respectively with the both ends intercommunication of circulating pump, the cooling tube loading has coolant.
The utility model has the advantages that: the utility model discloses a can dismantle and be provided with the air discharge fan, the staff can regularly wash and maintain after pulling down the air discharge fan, thereby guaranteed the utility model discloses to the absorptive effect of residual air.
Drawings
Fig. 1 is a schematic view of the present invention.
Fig. 2 is a top view of the installation position of the present invention with the installation plate hidden.
Fig. 3 is a schematic view of the exhaust fan of the present invention.
Fig. 4 is a schematic view of the mounting plate and the locking plate at the top of the present invention.
Fig. 5 is an internal schematic view of the filtering apparatus of the present invention.
Reference numerals: 1-inlet pipe, 2-filter equipment, 3-cooling device, 4-exhaust device, 5-exhaust fan, 11-installation position, 12-chute, 13-locking plate, 21-filter shell, 22-partition plate, 23-first filter chamber, 24-second filter chamber, 25-third filter chamber, 26-stop door, 31-cooling pipe, 32-circulating pump, 41-exhaust pipe, 42-exhaust pump, 51-slide bar, 52-installation plate.
Detailed Description
In order to facilitate understanding of those skilled in the art, the present invention will be further described with reference to the following examples and drawings, which are not intended to limit the present invention. The present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 1 to 5, the utility model provides a pair of concrete block's residual air recovery system, including intake pipe 1, filter equipment 2, cooling device 3 and exhaust apparatus 4, filter equipment 2 set up in intake pipe 1 with between the cooling device 3, exhaust apparatus 4 install in cooling device 3's output, intake pipe 1 can be dismantled and be provided with air discharge fan 5.
The exhaust device 4 comprises an exhaust pipe 41 and an exhaust pump 42, the exhaust pipe 41 is communicated with the filter device 2, and the exhaust pump 42 is used for discharging the filtered gas in the filter device 2 to the outside. Since the filtered and cooled residual air meets the environmental protection requirement, the residual air is discharged by the exhaust pump 42.
The blast pipe 41 is used for absorbing residual gas and transmitting the residual gas to the filter device 2 through the air inlet pipe 1, the cooling device 3 is used for absorbing heat of the residual gas after filtration, and the exhaust device 4 is used for discharging the residual gas after cooling to the outside.
The utility model discloses communicate with the pressure cooking device, through 5 back of inhaling of air discharge fan the inside gas of the device, filter to filter equipment 2 through intake pipe 1 guide, then absorb heat through cooling device 3, discharge the residual air after filtering and cooling to the external world by exhaust apparatus 4 at last, reached the effect that the residual air was retrieved and was handled. Furthermore, the utility model discloses an exhaust fan 5 can dismantle the setting, and the staff of being convenient for pulls down and maintains or change it to guarantee that exhaust fan 5 can not influence the effect of absorbing the residual air because of having too much attachment attached to.
In this embodiment, the air inlet pipe 1 is provided with an installation position 11, two sides of the installation position 11 are respectively provided with a sliding groove 12, two sides of the exhaust fan 5 are respectively provided with a sliding strip 51, and the sliding strips 51 are in one-to-one corresponding sliding connection with the sliding grooves 12; the top and the bottom of the exhaust fan 5 are respectively provided with a mounting plate 52, and the mounting plate 52 is in screw connection with the exhaust pipe 41. Namely, the exhaust fan 5 is installed by sliding the slide bar 51 into the sliding groove 12, so that the accurate positioning of the installation is ensured, and the installation plate 52 is connected with the exhaust pipe 41 through screws, thereby facilitating the subsequent disassembly.
Specifically, the top of installation position 11 is provided with jam plate 13, air discharge fan 5 is located between two jam plates 13, two mounting panels 52 all with air discharge fan 5 can dismantle the connection, and two jam plates 13 are located between two mounting panels 52, and jam plate 13 passes through screwed connection with mounting panel 52 one by one. The locking plate 13 and the mounting plate 52 form a double-layer structure, so that a good sealing effect is achieved, the phenomenon of air leakage at the mounting position 11 is avoided, and the environment pollution is avoided. The mating relationship between the top mounting plate 52 and the lock plate 13 is shown in fig. 4, while the bottom approach need only be reversed. When the exhaust fan 5 is dismounted, the mounting plate 52 at the bottom is separated from the exhaust fan 5, and then the screw between the top mounting plate and the locking plate 13 is screwed, so that the mounting plate 52 is lifted up after the top mounting plate and the locking plate are separated, the exhaust fan 5 can be communicated and picked up together, and the effect of quick dismounting is achieved.
In this embodiment, the filtering device 2 includes a filtering shell 21, two partition plates 22 are arranged at intervals in the filtering shell 21, the two partition plates 22 are used for respectively dividing the filtering shell 21 into a first filtering chamber 23, a second filtering chamber 24 and a third filtering chamber 25 which are sequentially arranged, the first filtering chamber 23, the second filtering chamber 24 and the third filtering chamber 25 are respectively filled with filtering media with sequentially increased filtering precision, and the first filtering chamber 23 and the third filtering chamber 25 are respectively provided with an air inlet and an air outlet; the partition plate 22 is provided with ventilation holes. Namely the utility model discloses a three filter chamber increases filter fineness with this, for example is provided with garrulous stone, cotton and active carbon respectively, has realized tertiary filterable effect, has guaranteed to absorb the impurity in the residual air as far as possible for the emission of residual air accords with the environmental protection requirement.
Specifically, the first filtering chamber 23, the second filtering chamber 24 and the third filtering chamber 25 are respectively provided with a door 26, which is convenient for a worker to open for replacing the filtering medium.
In this embodiment, the cooling device 3 includes a cooling pipe 31 and a circulating pump 32, the cooling pipe 31 is wound around the periphery of the filter shell 21, two ends of the cooling pipe 31 are respectively communicated with two ends of the circulating pump 32, and the cooling pipe 31 is loaded with a cooling medium. The cooling medium may be water or a refrigerant, and is used to circulate the circulating pump 32 along the inside of the cooling pipe 31 wound around the filter casing 21 and absorb heat from the residual air inside the filter casing 21, thereby achieving a cooling effect.
The above description is only for the preferred embodiment of the present invention, and the present invention is not limited to the above description, and although the present invention is disclosed in the preferred embodiment, it is not limited to the above description, and any person skilled in the art can make some changes or modifications to equivalent embodiments without departing from the scope of the present invention, but all the technical solutions of the present invention are within the scope of the present invention.

Claims (6)

1. The utility model provides a concrete block's residual air recovery system which characterized in that: including intake pipe, filter equipment, cooling device and exhaust apparatus, filter equipment set up in the intake pipe with between the cooling device, exhaust apparatus install in cooling device's output, exhaust apparatus includes blast pipe and air discharge pump, the blast pipe with the filter equipment intercommunication, the air discharge pump be used for the right gas emission after the filtration in the filter equipment is to the external world, the intake pipe can be dismantled and be provided with the air discharge fan, the blast pipe is used for absorbing the residual gas and passes through the residual gas the intake pipe transmits extremely filter equipment filters, cooling device is used for absorbing the heat of the residual gas after filtering, exhaust apparatus is used for discharging the residual gas after the cooling to the external world.
2. The concrete block residual air recovery system according to claim 1, wherein: the air inlet pipe is provided with an installation position, two sides of the installation position are respectively provided with a sliding groove, two sides of the exhaust fan are respectively provided with a sliding strip, and the sliding strips are in one-to-one corresponding sliding connection with the sliding grooves; the top and the bottom of the exhaust fan are respectively provided with a mounting plate, and the mounting plates are connected with the exhaust pipe through screws.
3. The concrete block residual air recovery system according to claim 2, wherein: the top of installation position is provided with the jam plate, the air discharge fan is located between two jam plates, two mounting panels all with the connection can be dismantled to the air discharge fan, and two jam plates are located between two mounting panels, and jam plate and mounting panel pass through screwed connection one by one.
4. The concrete block residual air recovery system according to claim 1, wherein: the filtering device comprises a filtering shell, two partition plates are arranged in the filtering shell at intervals and used for dividing the filtering shell into a first filtering chamber, a second filtering chamber and a third filtering chamber which are sequentially arranged, filtering media with sequentially increased filtering precision are respectively filled in the first filtering chamber, the second filtering chamber and the third filtering chamber, and an air inlet and an air outlet are respectively formed in the first filtering chamber and the third filtering chamber; the partition plate is provided with air holes.
5. The concrete block residual air recovery system according to claim 4, wherein: the first filter chamber, the second filter chamber and the third filter chamber are respectively provided with a shutter.
6. The concrete block residual air recovery system according to claim 4, wherein: the cooling device comprises a cooling pipe and a circulating pump, the cooling pipe is wound on the periphery of the filter shell, two ends of the cooling pipe are respectively communicated with two ends of the circulating pump, and a cooling medium is loaded on the cooling pipe.
CN202120225169.2U 2021-01-27 2021-01-27 Residual air recovery system of concrete building block Active CN215038630U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120225169.2U CN215038630U (en) 2021-01-27 2021-01-27 Residual air recovery system of concrete building block

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120225169.2U CN215038630U (en) 2021-01-27 2021-01-27 Residual air recovery system of concrete building block

Publications (1)

Publication Number Publication Date
CN215038630U true CN215038630U (en) 2021-12-07

Family

ID=79252962

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120225169.2U Active CN215038630U (en) 2021-01-27 2021-01-27 Residual air recovery system of concrete building block

Country Status (1)

Country Link
CN (1) CN215038630U (en)

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