CN220835398U - A high-speed mixer that is used for carbon dust processing to use controllable feeding - Google Patents

A high-speed mixer that is used for carbon dust processing to use controllable feeding Download PDF

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Publication number
CN220835398U
CN220835398U CN202322077573.1U CN202322077573U CN220835398U CN 220835398 U CN220835398 U CN 220835398U CN 202322077573 U CN202322077573 U CN 202322077573U CN 220835398 U CN220835398 U CN 220835398U
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CN
China
Prior art keywords
transmission shaft
speed mixer
controllable feeding
carbon powder
powder processing
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CN202322077573.1U
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Chinese (zh)
Inventor
许兴基
张明仿
纪成强
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Handan Aofeng Office Equipment Co ltd
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Handan Aofeng Office Equipment Co ltd
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Abstract

The utility model discloses a high-speed mixer for controllable feeding for carbon powder processing, which comprises a supporting table and a controllable feeding mixing mechanism, wherein the top of the supporting table is provided with the controllable feeding mixing mechanism, and the second fixed block, a second transmission shaft, a tank body, a tank cover, a weighing device, a telescopic plate, a connecting shaft, stirring blades, a connecting pipe, a shell, a mounting plate, a telescopic rod and a discharging pipe are arranged.

Description

A high-speed mixer that is used for carbon dust processing to use controllable feeding
Technical Field
The utility model relates to the technical field of mixer equipment, in particular to a high-speed mixer for controllable feeding for carbon powder processing.
Background
When carbon powder is processed, the feeding needs to be controlled, and mainly in order to ensure uniformity and stability of products, the carbon powder is a very fine material, if the feeding is too much or too fast, the problems of uneven mixing or caking and the like are easily caused, and the high-speed mixer can be used for fully mixing the carbon powder quickly, so that the quality of the products is more stable and reliable.
According to the search of Chinese utility model publication number: CN217795966U discloses a high-speed mixer of carbon dust, including the blending tank, blending tank opening part middle part is equipped with the fixed plate, be equipped with driving motor on the fixed plate, fixed plate both sides hinged joint has the closure plate, blending tank bottom inner wall interval is equipped with a plurality of constant head tanks, the horizontal activity of constant head tank opening part inlays has the arc to push away the flitch, the constant head tank inside is equipped with the flexible sealed tube that meets with the arc to push away the flitch, during mixing, the carbon dust material is led into the blending tank by the mouth that the closure plate opened, stir and mix, in the mixing process, when needing to add other materials, press the switch for electric air pump operation, electric air pump carries out reciprocating inflation and bleeds work, when inflating into flexible sealed tube with the atmospheric pressure through the business turn over trachea, flexible sealed tube is filled and is stretched, drive the arc and push away the flitch and push away the material at edge to the stirring district, when bleeding, flexible sealed tube is retracted, drive the arc and push away the flitch and reset, need not stop the machine, the convenience of mixing work has been improved.
However, when implementing the above technical solution, the following problems exist: the scheme can achieve the aim of improving the convenience of the high-speed mixer in actual use, but can not ensure the uniformity and stability of the product during mixing because the feeding speed can not be controlled, and the problem of caking during discharging can be caused.
Disclosure of utility model
The utility model provides a high-speed mixer for controllable feeding for carbon powder processing, which solves the problems that in the prior art, although the convenience of the high-speed mixer can be improved in actual use, the feeding speed cannot be controlled, the uniformity and stability of a product in mixing cannot be ensured, and caking can be caused in discharging.
The technical scheme of the utility model is as follows: the high-speed mixer comprises a supporting table and a controllable feeding mixing mechanism, wherein a driving mechanism is arranged at the top of the supporting table and comprises a first fixed block, a first transmission shaft, an electric driver and a transmission belt, the controllable feeding mixing mechanism is arranged at the left side of the driving mechanism, and the controllable feeding mixing mechanism comprises a second fixed block, a second transmission shaft, a tank body, a tank cover, a weighing device, a telescopic plate, a connecting shaft, stirring blades, a connecting pipe, a shell, a mounting plate, a telescopic rod and a discharging pipe;
The inside second transmission shaft that is provided with of one end of drive belt, the bottom of second transmission shaft is provided with the second fixed block, the top of second transmission shaft is provided with the jar body, the top of jar body is provided with the cover, the top of cover is provided with the scale, the inside of scale is provided with the expansion plate, the inside of jar body is provided with the connecting axle, the inside of connecting axle is provided with the stirring leaf, the front side connecting pipe of jar body, the outside of connecting pipe is provided with the shell, the front side of shell is provided with the mounting panel, the front side of mounting panel is provided with the telescopic link, the bottom of shell is provided with the discharging pipe.
Preferably, the first fixing block is connected with the first transmission shaft through a clamping groove, the first transmission shaft is in threaded connection with the electric drive machine, and the transmission belt forms a rotary structure through the first transmission shaft and the electric drive machine.
Preferably, the second transmission shaft is connected with the connecting shaft through a clamping groove, and the connecting shaft forms a rotary structure with the transmission belt through the second transmission shaft.
Preferably, the stirring blade is in bolt connection with the connecting shaft, and a rotating structure is formed between the stirring blade and the connecting shaft.
Preferably, the scale is connected with the tank cover through screws, the scale is electrically connected with the expansion plate, and an expansion structure is formed between the scale and the expansion plate.
Preferably, the tank body is connected with the connecting pipe through a clamping groove, and the connecting pipe is tightly attached to the tank body.
Preferably, the mounting plate is connected with the shell through screws, and the size of the mounting plate is matched with that of the shell.
Preferably, the telescopic rod is connected with the mounting plate through a clamping groove, and a sliding structure is formed between the mounting plate and the connecting pipe.
The working principle and the beneficial effects of the utility model are as follows:
Through setting up second fixed block, the second transmission shaft, the jar body, the cover, the scale, the expansion plate, the connecting axle, the stirring leaf, the connecting pipe, the shell, the mounting panel, telescopic link and discharging pipe, the utility model can realize weighing through the scale with the carbon powder that needs processing, when reaching certain measurement, the slip through the expansion plate will, the material is put into the jar body, drive the connecting axle and the stirring leaf of installing on the second transmission through the electric drive machine and rotate, carry out intensive mixing stirring to the carbon powder material, the material after the stirring is accomplished at last, introduce the material from the connecting pipe into the discharging pipe through the slip of telescopic link, just so can control speed and the flow of carbon powder feeding through the scale, guarantee homogeneity and the stability of product, be difficult for leading to the phenomenon that the material caking appears.
Drawings
The utility model will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic view of a back perspective structure of the present utility model;
FIG. 2 is a schematic elevational view of the present utility model;
FIG. 3 is a schematic view of the front perspective structure of the housing of the present utility model;
FIG. 4 is a schematic view of the internal structure of the housing of the present utility model;
In the figure: 1. a support table; 2. a driving mechanism; 201. a first fixed block; 202. a first drive shaft; 203. an electric drive; 204. a transmission belt; 3. a controllable feed mixing mechanism; 301. a second fixed block; 302. a second drive shaft; 303. a tank body; 304. a can lid; 305. a scale; 306. a telescoping plate; 307. a connecting shaft; 308. stirring the leaves; 309. a connecting pipe; 310. a housing; 311. a mounting plate; 312. a telescopic rod; 313. and a discharging pipe.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by one of ordinary skill in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, the present utility model provides a technical scheme of a high-speed mixer for controllable feeding for carbon powder processing, which comprises: the controllable feeding mixing mechanism 3 is arranged at the left side of the driving mechanism 2, and the controllable feeding mixing mechanism 3 comprises a second fixed block 301, a second transmission shaft 302, a tank 303, a tank cover 304, a weighing device 305, a telescopic plate 306, a connecting shaft 307, stirring blades 308, a connecting pipe 309, a shell 310, a mounting plate 311, a telescopic rod 312 and a discharging pipe 313;
The one end inboard of drive belt 204 is provided with second transmission shaft 302, the bottom of second transmission shaft 302 is provided with second fixed block 301, the top of second transmission shaft 302 is provided with jar body 303, the top of jar body 303 is provided with cover 304, the top of cover 304 is provided with scale 305, the inside of scale 305 is provided with expansion plate 306, the inside of jar body 303 is provided with connecting axle 307, the inside of connecting axle 307 is provided with stirring leaf 308, the front side connecting pipe 309 of jar body 303, the outside of connecting pipe 309 is provided with shell 310, the front side of shell 310 is provided with mounting panel 311, the front side of mounting panel 311 is provided with telescopic link 312, the bottom of shell 310 is provided with discharging pipe 313.
When the device is used, carbon powder to be processed is weighed through the weighing device 305, when a certain measurement is achieved, materials are placed into the tank 303 through sliding of the telescopic plate 306, the electric drive 203 drives the connecting shaft 307 and the stirring blade 308 arranged on the second transmission to rotate, the carbon powder materials are fully mixed and stirred, finally, the materials after stirring are finished, the materials are introduced into the discharging pipe 313 from the connecting pipe 309 through sliding of the telescopic rod 312, so that the speed and flow of carbon powder feeding can be controlled through the weighing device 305, uniformity and stability of products are guaranteed, and the phenomenon of material agglomeration is not easy to occur.
Specifically, the first fixing block 201 is connected with the first transmission shaft 202 through a clamping groove, the first transmission shaft 202 is in threaded connection with the electric drive machine 203, the transmission belt 204 forms a rotating structure through the first transmission shaft 202 and the electric drive machine 203, and the electric drive machine 203 is arranged to provide driving force for the whole mechanism.
Specifically, the second transmission shaft 302 is connected to the connection shaft 307 by a slot, the connection shaft 307 forms a rotation structure between the second transmission shaft 302 and the transmission belt 204, and the second transmission shaft 302 is designed to convert the driving force into a rotation force for stirring.
Specifically, the stirring blade 308 is connected to the connecting shaft 307 by a bolt, the stirring blade 308 and the connecting shaft 307 form a rotating structure, and the stirring blade 308 is designed to mix the materials sufficiently.
Specifically, the scale 305 is connected with the tank cover 304 by a screw, the scale 305 is electrically connected with the expansion plate 306, the scale 305 and the expansion plate 306 form an expansion structure, and the design of the scale 305 and the expansion plate 306 is used for controlling the flow and the weight of the materials, so that the phenomenon of agglomeration caused by too fast or too much materials is avoided.
Specifically, the tank 303 is connected to the connecting pipe 309 by a clamping groove, the connecting pipe 309 is tightly attached to the tank 303, and the connecting pipe 309 is designed to lead out the uniformly stirred material from the connecting pipe 309.
Specifically, the mounting plate 311 is connected to the housing 310 by a screw, the mounting plate 311 is matched with the housing 310 in size, and the telescopic rod 312 is conveniently mounted by the design of the mounting plate 311, and meanwhile, the inside of the connecting pipe 309 is conveniently cleaned.
Specifically, the telescopic rod 312 is connected with the mounting plate 311 through a clamping groove, the telescopic rod 312 forms a sliding structure with the connecting pipe 309 through the mounting plate 311, and the design of the telescopic rod 312 is used for conveniently controlling the discharging speed and the discharging flow.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.

Claims (8)

1. The high-speed mixer for the controllable feeding for carbon powder processing comprises a supporting table (1) and a controllable feeding mixing mechanism (3), and is characterized in that a driving mechanism (2) is arranged at the top of the supporting table (1), the driving mechanism (2) comprises a first fixed block (201), a first transmission shaft (202), an electric drive machine (203) and a transmission belt (204), the controllable feeding mixing mechanism (3) is arranged at the left side of the driving mechanism (2), and the controllable feeding mixing mechanism (3) comprises a second fixed block (301), a second transmission shaft (302), a tank body (303), a tank cover (304), a weighing device (305), a telescopic plate (306), a connecting shaft (307), stirring blades (308), a connecting pipe (309), a shell (310), a mounting plate (311), a telescopic rod (312) and a discharging pipe (313);
A second transmission shaft (302) is arranged at the inner side of one end of the transmission belt (204), a second fixed block (301) is arranged at the bottom of the second transmission shaft (302), a tank body (303) is arranged at the top of the second transmission shaft (302), a tank cover (304) is arranged at the top of the tank body (303), a scale (305) is arranged at the top of the tank cover (304), a telescopic plate (306) is arranged in the scale (305), the inside of jar body (303) is provided with connecting axle (307), the inside of connecting axle (307) is provided with stirring leaf (308), the front side connecting pipe (309) of jar body (303), the outside of connecting pipe (309) is provided with shell (310), the front side of shell (310) is provided with mounting panel (311), the front side of mounting panel (311) is provided with telescopic link (312), the bottom of shell (310) is provided with discharging pipe (313).
2. The high-speed mixer for controllable feeding for carbon powder processing according to claim 1, wherein the first fixed block (201) is connected with the first transmission shaft (202) through a clamping groove, the first transmission shaft (202) is connected with the electric driver (203) through threads, and the transmission belt (204) forms a rotating structure with the electric driver (203) through the first transmission shaft (202).
3. The high-speed mixer for the controllable feeding for carbon powder processing according to claim 1, wherein the second transmission shaft (302) is connected with the connecting shaft (307) through a clamping groove, and the connecting shaft (307) forms a rotary structure with the transmission belt (204) through the second transmission shaft (302).
4. The high-speed mixer for the controllable feeding for carbon powder processing according to claim 1, wherein the stirring blade (308) is in bolt connection with the connecting shaft (307), and a rotating structure is formed between the stirring blade (308) and the connecting shaft (307).
5. The high-speed mixer for controllable feeding for carbon powder processing according to claim 1, wherein the scale (305) is connected with the tank cover (304) by a screw, the scale (305) is electrically connected with the expansion plate (306), and the scale (305) and the expansion plate (306) form an expansion structure.
6. The high-speed mixer for the controllable feeding for carbon powder processing according to claim 1, wherein the tank body (303) is connected with the connecting pipe (309) through a clamping groove, and the connecting pipe (309) is tightly attached to the tank body (303).
7. A high speed mixer for controlled feeding for carbon powder processing according to claim 1, characterized in that the mounting plate (311) is screw connected to the housing (310), the mounting plate (311) being sized to match the housing (310).
8. The high-speed mixer for the controllable feeding for carbon powder processing according to claim 1, wherein the telescopic rod (312) is connected with the mounting plate (311) through a clamping groove, and the telescopic rod (312) forms a sliding structure with the connecting pipe (309) through the mounting plate (311).
CN202322077573.1U 2023-08-03 2023-08-03 A high-speed mixer that is used for carbon dust processing to use controllable feeding Active CN220835398U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322077573.1U CN220835398U (en) 2023-08-03 2023-08-03 A high-speed mixer that is used for carbon dust processing to use controllable feeding

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322077573.1U CN220835398U (en) 2023-08-03 2023-08-03 A high-speed mixer that is used for carbon dust processing to use controllable feeding

Publications (1)

Publication Number Publication Date
CN220835398U true CN220835398U (en) 2024-04-26

Family

ID=90785634

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322077573.1U Active CN220835398U (en) 2023-08-03 2023-08-03 A high-speed mixer that is used for carbon dust processing to use controllable feeding

Country Status (1)

Country Link
CN (1) CN220835398U (en)

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