CN211225496U - Supplementary activated carbon dosing system suction powdered carbon's device - Google Patents

Supplementary activated carbon dosing system suction powdered carbon's device Download PDF

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Publication number
CN211225496U
CN211225496U CN201922084550.7U CN201922084550U CN211225496U CN 211225496 U CN211225496 U CN 211225496U CN 201922084550 U CN201922084550 U CN 201922084550U CN 211225496 U CN211225496 U CN 211225496U
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China
Prior art keywords
carbon
carbon powder
suction head
barrel
powdered
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CN201922084550.7U
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Chinese (zh)
Inventor
欧阳剑峰
李永贤
蔡振鹏
李文豪
梁俊晖
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Foshan Xijiang Water Supply Co ltd
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Foshan Xijiang Water Supply Co ltd
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Abstract

The utility model discloses a device for assisting an active carbon adding system to suck carbon powder, which comprises a carbon powder package placing barrel for placing cut active carbon powder packages, a fixed clamp and a suction head isolation barrel, wherein the fixed clamp is of a circular ring structure, the fixed clamp is sleeved on the top surface of the carbon powder package placing barrel and is used for clamping the cut active carbon powder packages, and the suction head isolation barrel is vertically arranged in the carbon powder package placing barrel and is inserted into a carbon powder pile in the carbon powder package placing barrel; the utility model discloses a set up the powdered carbon package and place the bucket in the powdered carbon package and fixed through fixed clamp, then to the powdered carbon stack that the powdered carbon package was placed in the bucket insert the suction head and keep apart the bucket, the rethread suction head is kept apart the bucket and is inhaled powdered carbon, so need not directly to insert the powdered carbon stack that the great powdered carbon package in space placed the bucket with the suction head and aspirate powdered carbon, blockked up by the powdered carbon wrapping bag when the powdered carbon suction head of having avoided active carbon dosing system aspirates powdered carbon, and is easy and simple to handle.

Description

Supplementary activated carbon dosing system suction powdered carbon's device
Technical Field
The utility model belongs to the technical field of the mechanical skill and specifically relates to a supplementary activated carbon dosing system device of suction powdered carbon.
Background
The novel active carbon adding system improves the dust problem in the original manual adding of carbon powder by using a vacuum suction method and reduces the labor input for feeding, the system generally has two methods for feeding the active carbon into an active carbon bin, one method is to directly connect with an active carbon tank car for vacuum suction, and the method basically does not generate dust and is the most ideal method; the other method is to use an activated carbon suction head of a dosing system for feeding, which aims at bagged activated carbon, but if the suction head is directly inserted into the bag for suction, the bag is sucked to the position near the suction head to block the suction head, so that feeding cannot be continued, the bagged activated carbon can only be unpacked and then placed upside down on the ground or in a container for suction, and thus, a large amount of dust can be generated in operation.
The unit that can use tank car transport active carbon and supply goods in the market is difficult to find, and most active carbon dosing system use unit can only use bagged active carbon to utilize dosing system's active carbon suction head material loading, if not the supporting dosing system of auxiliary device to use, then the raise dust problem still exists.
SUMMERY OF THE UTILITY MODEL
To the deficiency of the prior art, the utility model aims to provide an easy operation, can not produce the device of supplementary active carbon dosing system suction powdered carbon that the raise dust blockked up.
In order to achieve the above purpose, the utility model provides a scheme does: the utility model provides a supplementary activated carbon dosing system suction powdered carbon's device, places bucket, fixed clamp and suction head isolation bucket including the powdered carbon package that is used for placing the active carbon powder package after cutting, fixed clamp is the circle annular structure, this fixed clamp suit in the powdered carbon package is placed the bucket top surface and is used for pressing from both sides the active carbon powder package after cutting, the suction head is kept apart the bucket vertical set up in the powdered carbon package is placed in the bucket and is inserted the powdered carbon package and place the powdered carbon in the bucket and pile, the suction head is kept apart the bucket top and is opened there is a top surface opening, and this suction head is kept apart the bucket bottom and is opened there is a bottom surface opening, simultaneously it has a plurality of powdered carbon suction hole, a plurality of to open on the lower lateral wall of suction head isolation bucket the equal interval in powdered carbon suction hole arrange and every powdered carbon suction hole all run through to inside the suction head isolation bucket.
The utility model has the advantages that: effectively guarantee the normal clear of powdered carbon suction work, the utility model discloses in at first through set up powdered carbon package in the powdered carbon package is placed the bucket and fixed through fixed clamp, then to powdered carbon stack insert the suction head isolation bucket in the bucket of powdered carbon package, the rethread suction head inhales powdered carbon in the suction head isolation bucket, so need not directly to place the powdered carbon stack in the bucket with the great powdered carbon package in suction head insert space and aspirate powdered carbon, blockked up by the powdered carbon wrapping bag when having avoided the powdered carbon suction head suction powdered carbon of active carbon dosing system, and is easy and simple to handle, take up an area of few, and effectively reduce the raise dust of aspiration powdered carbon in-process, do benefit to the health of operational environment and keep a public place clean, reduce the health injury to operating personnel.
Further, the diameter of the carbon powder suction hole was 25 mm. The utility model adopts the above structure after, make the aperture specification size in powdered carbon suction hole moderate, the powdered carbon flow that the bucket was placed to the control powdered carbon package flows in the suction head and keeps apart the flow of bucket to thereby guarantee that the speed that powdered carbon flowed in can not be too fast or too slow influence the normal suction powdered carbon work of suction head.
Further, the carbon powder bag placing barrel is of a cylindrical structure. After the structure is adopted in the utility model, the barrel is placed with the charcoal powder package and is set up to cylindrical structure, is favorable to the setting of active carbon powder package.
Further, the suction head isolation barrel is of a cylindrical structure. After the structure is adopted in the utility model, the suction head isolation barrel is set to be a cylindrical structure, so that the cylindrical structure of the barrel is placed corresponding to the carbon powder package, and the barrel is placed to be better matched with the carbon powder package.
Drawings
Fig. 1 is an overall structure diagram of the present invention.
Fig. 2 is an exploded view of the present invention.
Wherein, 1 is a carbon powder package placing barrel, 2 is a fixed hoop, 3 is a suction head isolating barrel, 31 is a carbon powder suction hole, 32 is an opening on the top surface, and 33 is an opening on the bottom surface.
Detailed Description
The invention will be further described with reference to the following specific embodiments:
referring to fig. 1 to 2, a device for assisting an activated carbon dosing system in sucking carbon powder comprises a carbon powder package placing barrel 1 for placing a cut activated carbon powder package, a fixing clamp 2 and a suction head isolation barrel 3, wherein the fixing clamp 2 is of a circular structure, the fixing clamp 2 is sleeved on the top surface of the carbon powder package placing barrel 1 and used for clamping the cut activated carbon powder package, the suction head isolation barrel 3 is vertically arranged in the carbon powder package placing barrel 1 and inserted into a carbon powder stack in the carbon powder package placing barrel 1, the top surface of the suction head isolation barrel 3 is provided with a suction head top surface opening 32, the bottom surface of the suction head isolation barrel 3 is provided with a bottom surface opening 33, meanwhile, the lower half side wall of the suction head isolation barrel 3 is provided with a plurality of carbon powder suction holes 31, the carbon powder suction holes 31 are arranged at equal intervals, and each carbon powder suction hole 31 penetrates through the inside the suction head isolation barrel 3.
Wherein the diameter of the carbon powder suction hole 31 is 25 mm. The aperture of the carbon powder suction hole 31 is set to be 25mm, the aperture size is moderate, the flow speed of the carbon powder flowing into the suction head isolation barrel 3 from the carbon powder package placing barrel 1 cannot be too fast or too slow, dust can not be generated in the carbon powder flowing process and the carbon powder suction process due to the fact that the aperture of the carbon powder suction hole 31 is too large, and the situation that the suction head cannot timely supplement the carbon powder from the carbon powder package placing barrel 1 after the carbon powder is sucked in the suction head isolation barrel 3 due to the fact that the aperture of the carbon powder suction hole 31 is too small can be avoided, and the suction efficiency of the carbon powder is affected.
The carbon powder package placing barrel 1 is of a cylindrical structure. The suction head isolation barrel 3 is of a cylindrical structure.
The specific working process of this embodiment is as follows: firstly, cutting an opening of an activated carbon powder bag, then cutting the activated carbon powder bag into a carbon powder bag placing barrel 1, enabling the opening of the activated carbon powder bag to face downwards or incline downwards to enable the activated carbon powder to continuously flow out of the opening of the activated carbon powder bag, then placing at least one edge of the activated carbon powder bag on the edge of the top surface of the carbon powder bag placing barrel 1, covering a fixing clamp 2, and clamping the activated carbon powder bag on the edge of the top surface of the carbon powder bag placing barrel 1 by the fixing clamp 2; after the activated carbon powder flows out of the activated carbon powder bag, the activated carbon powder bag placing barrel 1 is gradually filled, then the suction head isolation barrel 3 is vertically inserted into the activated carbon powder bag placing barrel 1, and the activated carbon powder flows into the suction head isolation barrel 3 from the carbon powder suction hole 31 of the suction head isolation barrel 3 and the bottom surface opening 33 of the suction head isolation barrel 3 until the carbon powder stacking surfaces of the activated carbon powder bag placing barrel 1 and the suction head isolation barrel 3 are flush; finally inserting a carbon powder suction head of the activated carbon adding system from an opening 32 on the top surface of the suction head isolation barrel 3, sucking the carbon powder in the suction head isolation barrel 3, and feeding the carbon powder in the carbon powder bag placing barrel 1 into the suction head isolation barrel 3 for carbon powder supplement along with the continuous suction of the carbon powder in the suction head isolation barrel 3, while continuously discharging the carbon powder of the activated carbon powder bag for carbon powder supplement to the carbon powder bag placing barrel 1; therefore, the whole carbon powder supplement and carbon powder suction process can not generate dust, and the carbon powder suction head of the activated carbon adding system is prevented from being blocked by a carbon powder packaging bag when sucking the carbon powder.
The above-described embodiments are merely preferred embodiments of the present invention, which are not intended to limit the present invention in any way. Those skilled in the art can make further changes and modifications to the invention, or modify equivalent embodiments to equivalent variations, without departing from the scope of the invention. Therefore, the content of the technical scheme of the utility model, according to the equivalent change made by the idea of the utility model, should be covered in the protection scope of the utility model.

Claims (4)

1. The utility model provides a supplementary activated carbon dosing system draws device of powdered carbon which characterized in that: comprises a carbon powder package placing barrel (1) for placing cut activated carbon powder packages, a fixed clamp (2) and a suction head isolation barrel (3), wherein the fixed clamp (2) is of a circular structure, the fixed hoop (2) is sleeved on the top surface of the carbon powder bag placing barrel (1) and is used for clamping the cut activated carbon powder bag, the suction head isolation barrel (3) is vertically arranged in the carbon powder package placing barrel (1) and is inserted into the carbon powder pile in the carbon powder package placing barrel (1), the top surface of the suction head isolation barrel (3) is provided with a top surface opening (32), this suction head isolation barrel (3) bottom surface is opened has a bottom surface opening (33), simultaneously it has a plurality of powdered carbon suction hole (31) to open on the lower half lateral wall of suction head isolation barrel (3), a plurality of powdered carbon suction hole (31) are arranged and every powdered carbon suction hole (31) all run through to inside suction head isolation barrel (3).
2. The device for assisting the activated carbon dosing system in sucking carbon powder as claimed in claim 1, wherein: the diameter of the carbon powder suction hole (31) is 25 mm.
3. The device for assisting the activated carbon dosing system in sucking carbon powder as claimed in claim 1, wherein: the carbon powder bag placing barrel (1) is of a cylindrical structure.
4. The device for assisting the activated carbon dosing system in sucking carbon powder as claimed in claim 1, wherein: the suction head isolation barrel (3) is of a cylindrical structure.
CN201922084550.7U 2019-11-28 2019-11-28 Supplementary activated carbon dosing system suction powdered carbon's device Active CN211225496U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922084550.7U CN211225496U (en) 2019-11-28 2019-11-28 Supplementary activated carbon dosing system suction powdered carbon's device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922084550.7U CN211225496U (en) 2019-11-28 2019-11-28 Supplementary activated carbon dosing system suction powdered carbon's device

Publications (1)

Publication Number Publication Date
CN211225496U true CN211225496U (en) 2020-08-11

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112079150A (en) * 2020-08-25 2020-12-15 芜湖飞尚非金属材料有限公司 Bentonite storage tank blowing dust collecting system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112079150A (en) * 2020-08-25 2020-12-15 芜湖飞尚非金属材料有限公司 Bentonite storage tank blowing dust collecting system

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