CN215428586U - Film and granular material stirrer - Google Patents
Film and granular material stirrer Download PDFInfo
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- CN215428586U CN215428586U CN202121823327.0U CN202121823327U CN215428586U CN 215428586 U CN215428586 U CN 215428586U CN 202121823327 U CN202121823327 U CN 202121823327U CN 215428586 U CN215428586 U CN 215428586U
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Abstract
The utility model discloses a film and particle stirrer, which belongs to the technical field of glass machinery and comprises a rack, a stirring drum and a driving mechanism, wherein the rack is provided with the stirring drum and the driving mechanism, and the film and particle stirrer is characterized in that: a stirring mechanism is arranged in the stirring cylinder, and a driving mechanism is connected with the stirring mechanism; the stirring mechanism comprises a rotating cylinder, blades, a fixed shaft, a driving bevel gear and a driven bevel gear, wherein the rotating cylinder is provided with a plurality of connecting sleeves, the cavities of the connecting sleeves are communicated with the cavity of the rotating cylinder, and the cavity of the rotating cylinder is in rotating fit with the fixed shaft; two ends of the rotating cylinder are respectively in rotating fit with the rack, and the rack is connected with one end of the fixed shaft; the connecting sleeve is in running fit with the rotating shaft, the outer end of the rotating shaft is connected with the blades, the inner end of the rotating shaft penetrates through the connecting sleeve to be fixedly matched with the driven bevel gears, the fixed shaft is provided with a plurality of driving bevel gears, and the driving bevel gears are meshed with the driven bevel gears. Compared with the prior art have the characteristics that can improve stirring efficiency.
Description
Technical Field
The utility model relates to the technical field of glass machinery, in particular to a film and particle stirrer.
Background
Laminated glass generally requires the use of a film as a raw material in the manufacturing process. In the production process of the film, the film grains are firstly required to be added with various additives and then fully stirred, and then the production and processing processes of heating and melting, rolling and forming, trimming and cutting and the like are carried out to complete the production and processing of the film. Most of the existing stirring devices stir the film grains through the stirring wheel, however, the blade of the stirring wheel is usually fixed, so the stirring efficiency is low, and the time required for stirring is long.
Disclosure of Invention
The utility model aims to provide a film and particle stirrer aiming at the defects of the prior art, and the purpose of improving stirring efficiency through bidirectional rotation of a stirring mechanism is achieved.
The utility model provides a film particle stirrer which comprises a rack, a stirring drum and a driving mechanism, wherein the stirring drum and the driving mechanism are installed on the rack; the method is characterized in that: a stirring mechanism is arranged in the stirring cylinder, and a driving mechanism is connected with the stirring mechanism; the stirring mechanism comprises a rotating cylinder, blades, a fixed shaft, a driving bevel gear and a driven bevel gear, wherein the rotating cylinder is provided with a plurality of connecting sleeves, the cavities of the connecting sleeves are communicated with the cavity of the rotating cylinder, and the cavity of the rotating cylinder is in rotating fit with the fixed shaft; two ends of the rotating cylinder are respectively in rotating fit with the rack, and the rack is connected with one end of the fixed shaft; the connecting sleeve is in running fit with the rotating shaft, the outer end of the rotating shaft is connected with the blades, the inner end of the rotating shaft penetrates through the connecting sleeve to be fixedly matched with the driven bevel gears, the fixed shaft is provided with a plurality of driving bevel gears, and the driving bevel gears are meshed with the driven bevel gears.
An opening is formed in one side of the mixing drum, the opening is hinged to the drum door, and the drum door is connected with the mixing drum through a lock catch.
The two ends of the mixing drum door are respectively provided with a telescopic rod, one end of each telescopic rod is hinged with the mixing drum, and the other end of each telescopic rod is hinged with the drum door.
A fixed sleeve is installed at one end of the rack, and one end of the fixed shaft is connected with the fixed sleeve.
The driving mechanism comprises a motor and a reduction gearbox, the motor is connected with an input shaft of the reduction gearbox, and an output shaft of the reduction gearbox is connected with the rotating cylinder.
Compared with the prior art, the utility model has the following outstanding beneficial effects:
in the working process of the stirring mechanism, the driving mechanism drives the rotating cylinder to rotate, the rotating cylinder drives the blades to rotate around the axis of the rotating cylinder, and meanwhile, the driven bevel gear rotates along the driving bevel gear, so that the driven bevel gear drives the rotating shaft to rotate, and the rotating shaft drives the blades to rotate, so that the blades can rotate around the axis of the rotating cylinder and can also rotate along the axis of the rotating shaft, and the stirring efficiency is greatly improved.
Drawings
Fig. 1 is a schematic structural view of the present invention.
Fig. 2 is a schematic view of the internal structure of the present invention.
Fig. 3 is a schematic structural view of the stirring mechanism of the present invention.
Fig. 4 is a sectional view of a portion a-a in fig. 3.
Detailed Description
The utility model is further described with reference to the drawings and the detailed description.
As shown in fig. 1 and 2, the present invention includes a frame 4, a agitating drum 2, a driving mechanism 1, and an agitating mechanism 3.
The stirring device is characterized in that a stirring drum 2 and a driving mechanism 1 are installed on the frame 4, a stirring mechanism 3 is installed in the stirring drum 2, the driving mechanism 1 is connected with the stirring mechanism 3, and the driving mechanism 1 can drive the stirring mechanism 3 to move.
One side of churn 2 be equipped with the opening, the opening part is articulated with a door 203, be connected through the hasp between a door 203 and the churn 2, telescopic link 204 is installed respectively at the both ends of a 2 section of thick bamboo doors 203 of churn, the one end of telescopic link 204 is articulated with a churn 2, the other end is articulated with a door 203. When the telescopic rod 204 is started, the telescopic rod 204 can drive the barrel door 203 to open.
The upper end of the mixing drum 2 is provided with two feed inlets 202, the lower end is provided with a discharge outlet 201, and the feed inlets 202 and the discharge outlet 201 are respectively provided with a valve.
As shown in fig. 3 and 4, the stirring mechanism 3 includes a rotating cylinder 301, blades 304, a fixed shaft 305, a driving bevel gear 307 and a driven bevel gear 306, the rotating cylinder 301 is provided with a plurality of connecting sleeves 302 uniformly distributed along an axis, a cavity of the connecting sleeve 302 is communicated with a cavity of the rotating cylinder 301, and the rotating cylinder 301 is rotatably matched with the fixed shaft 305 in the cavity thereof, and the matching manner is as follows: the fixed shaft 305 is coupled to the rotary cylinder 301 through a bearing.
Two ends of the rotating cylinder 301 are respectively matched with the rack 4 in a rotating manner, a fixed sleeve 5 is installed at one end of the rack 4, and one end of the fixed shaft 305 is fixedly connected with the fixed sleeve 5.
The connecting sleeve 302 is rotatably matched with the rotating shaft 303, the outer end of the rotating shaft 303 is fixedly connected with the blades 304, the inner end of the rotating shaft passes through the connecting sleeve 302 to be fixedly matched with the driven bevel gear 306, a plurality of driving bevel gears 307 corresponding to the driven bevel gear 306 are mounted on the fixed shaft 305, the driving bevel gears 307 are fixedly matched with the fixed shaft 305, and the driving bevel gears 307 are meshed with the driven bevel gear 306.
The driving mechanism 1 comprises a motor 101 and a reduction gearbox 102, wherein the motor 101 is connected with an input shaft of the reduction gearbox 102, and an output shaft of the reduction gearbox 102 is connected with the rotating cylinder 301.
The operation flow is as follows: when the film mixer is used, film particles and additives are put into the mixing drum 2 from the feeding hole 202, the driving mechanism 1 is started, the driving mechanism 1 drives the mixing mechanism 3 to work, the film particles and the additives are mixed, in the working process of the mixing mechanism 3, the rotating drum 301 drives the blades 304 to rotate around the axis of the rotating drum, simultaneously, the driven bevel gear 306 rotates along the driving bevel gear 307, the driven bevel gear 306 drives the rotating shaft 303 to rotate, the rotating shaft 303 drives the blades 304 to rotate, the blades 304 can rotate around the axis of the rotating drum 301 and can also rotate along the axis of the rotating shaft 303, and after the mixing is finished, the materials are discharged from the outlet of the mixing drum 2.
It should be noted that while the utility model has been described in detail with respect to specific embodiments thereof, it will be apparent to those skilled in the art that various obvious changes can be made therein without departing from the spirit and scope of the utility model.
Claims (5)
1. A film particle stirrer comprises a rack (4), a stirring cylinder (2) and a driving mechanism (1), wherein the stirring cylinder (2) and the driving mechanism (1) are installed on the rack (4), a feeding hole (202) is formed in the upper end of the stirring cylinder (2), and a discharging hole (201) is formed in the lower end of the stirring cylinder; the method is characterized in that: a stirring mechanism (3) is arranged in the stirring cylinder (2), and the driving mechanism (1) is connected with the stirring mechanism (3); the stirring mechanism (3) comprises a rotating cylinder (301), blades (304), a fixed shaft (305), a driving bevel gear (307) and a driven bevel gear (306), wherein the rotating cylinder (301) is provided with a plurality of connecting sleeves (302), the cavities of the connecting sleeves (302) are communicated with the cavity of the rotating cylinder (301), and the cavity of the rotating cylinder (301) is in rotating fit with the fixed shaft (305); two ends of the rotating cylinder (301) are respectively in rotating fit with the rack (4), and the rack (4) is connected with one end of the fixed shaft (305); the connecting sleeve (302) is in rotating fit with the rotating shaft (303), the outer end of the rotating shaft (303) is connected with the blades (304), the inner end of the rotating shaft penetrates through the connecting sleeve (302) to be fixedly matched with the driven bevel gear (306), the fixed shaft (305) is provided with a plurality of driving bevel gears (307), and the driving bevel gears (307) are meshed with the driven bevel gears (306).
2. The film pellet blender of claim 1, wherein: an opening is formed in one side of the mixing drum (2), the opening is hinged to the drum door (203), and the drum door (203) is connected with the mixing drum (2) through a lock catch.
3. The film pellet blender of claim 2, wherein: the two ends of the drum door (203) of the mixing drum (2) are respectively provided with an expansion link (204), one end of the expansion link (204) is hinged with the mixing drum (2), and the other end is hinged with the drum door (203).
4. The film pellet blender of claim 1, wherein: one end of the rack (4) is provided with a fixed sleeve (5), and one end of the fixed shaft (305) is connected with the fixed sleeve (5).
5. The film pellet blender of claim 1, wherein: the driving mechanism (1) comprises a motor (101) and a reduction gearbox (102), the motor (101) is connected with an input shaft of the reduction gearbox (102), and an output shaft of the reduction gearbox (102) is connected with the rotating cylinder (301).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121823327.0U CN215428586U (en) | 2021-08-06 | 2021-08-06 | Film and granular material stirrer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121823327.0U CN215428586U (en) | 2021-08-06 | 2021-08-06 | Film and granular material stirrer |
Publications (1)
Publication Number | Publication Date |
---|---|
CN215428586U true CN215428586U (en) | 2022-01-07 |
Family
ID=80080353
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202121823327.0U Active CN215428586U (en) | 2021-08-06 | 2021-08-06 | Film and granular material stirrer |
Country Status (1)
Country | Link |
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CN (1) | CN215428586U (en) |
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2021
- 2021-08-06 CN CN202121823327.0U patent/CN215428586U/en active Active
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