CN218084068U - Automatic feeding device for extruder - Google Patents
Automatic feeding device for extruder Download PDFInfo
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- CN218084068U CN218084068U CN202221767590.7U CN202221767590U CN218084068U CN 218084068 U CN218084068 U CN 218084068U CN 202221767590 U CN202221767590 U CN 202221767590U CN 218084068 U CN218084068 U CN 218084068U
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Abstract
The utility model relates to the field of automatic feeding devices, in particular to an automatic feeding device for an extruder, which comprises a base, an inclined shell, a lifting piece, a lifting driving piece, a connecting plate, a transmission device, a driving wheel, a driving motor, a material returning plate and a material discharging pipe; the top of the base is connected with the inclined shell; the inner wall of the top of the base is connected with a lifting driving piece; the output end of the lifting driving piece is connected with the lifting piece; the inner wall of the inclined shell is connected with the lifting piece in a sliding way; a supporting slope is arranged on the top of the lifting piece; the supporting slope inclines towards the connecting plate. The utility model discloses a driven mode goes up and down can make this device realize the process of marching type pay-off simultaneously pay-off in the middle of, can arrange the raw materials in order naturally through transmission's transmission process, can pass through the feed back board scope slope casing with slope or incorrect raw materials inside through the feed back board to realized the screening to the raw materials when this device realizes the material loading.
Description
Technical Field
The utility model relates to an automatic material conveying device technical field especially relates to an automatic material conveying device for extruder.
Background
At present, the bio-based fully degradable sheet is mainly applied to the fields of high-grade disposable food packaging containers, disposable medical appliances, industrial and electronic product inner holders, cosmetics, health products, gifts, toy inner holders and the like; the bio-based full-degradable master batch is mainly applied to the fields of blow molding of various high-grade plastic adhesive tapes, food packaging films and industrial product packaging films, injection molding, various tableware such as disposable knives, forks, spoons and chopsticks, disposable appliances of hotels and the like. The biobased fully decomposed sheet is characterized in that: high light transmittance, smooth and bright surface, good physical and mechanical strength, corrosion resistance, weather resistance and self-extinguishing property, no water ripple on the surface and the like. At present to the production facility of biobased complete decomposition sheet including the extruder, the extruder can produce various biobased complete decomposition sheets according to the sample and the standard colour chip that provide, in the in-process of feeding in raw material to the extruder, in order to reach continuously, evenly feed in raw material, improve work efficiency's purpose, generally adopt automatic material conveying device to feed in the production process, but automatic material conveying device among the prior art fixes on the base at present, can't adjust the longitudinal distance between spiral delivery pipe's discharge gate and the extruder, lead to being connected incompletely between discharge gate and the extruder, cause the leakproofness poor, the unstable scheduling problem of ejection of compact.
Chinese patent with publication number CN204702132U discloses an automatic feeding device for extruder, including base, storage case, material loading motor and extruder, be equipped with the electric cabinet on the storage case, be equipped with the auger delivery pipe on the storage case, be equipped with screw propulsion device in the auger delivery pipe, screw propulsion device connects the material loading motor, is equipped with the discharge gate on the auger delivery pipe, and the extruder, its characterized in that are connected to the discharge gate: the base is provided with first supporting rods, a cross rod is connected between every two transversely adjacent first supporting rods in a sliding mode, and the first supporting rods are provided with sliding rails which can reduce pollution to materials; simultaneously the utility model discloses can last, evenly feed in raw material, improve advantages such as work efficiency.
However, the above-mentioned known solutions have the following disadvantages: carry out automatic pay-off through the structure of spiral feed rod in the above-mentioned scheme and produced strict restriction to the shape and the size of raw materials, thereby the raw materials produces wearing and tearing easily in the middle of loose process simultaneously and leads to the production effect to reduce.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the technical problem who exists in the background art, the utility model provides an automatic material conveying device for extruder, the utility model discloses a transmission mode can make this device realize the process of marching type pay-off and pay-off in the middle of simultaneously, can arrange the raw materials in order through transmission's transmission process nature, can pass through inside the feed back board scope slope casing with slope or incorrect raw materials through the feed back board to realized the screening to the raw materials when this device realizes the material loading.
The utility model provides an automatic feeding device for an extruder, which comprises a base, an inclined shell, a lifting piece, a lifting driving piece, a connecting plate, a transmission device, a driving wheel, a driving motor, a material returning plate and a discharging pipe;
the top of the base is connected with the inclined shell; the inner wall of the top of the base is connected with a lifting driving piece; the output end of the lifting driving piece is connected with the lifting piece; the inner wall of the inclined shell is connected with the lifting piece in a sliding way; a supporting slope is arranged on the top of the lifting piece; the supporting slope inclines towards the connecting plate; the connecting plate is connected with the side surface of the transmission device in a sliding way; the side surface of the transmission device is in transmission connection with the driving wheel; the driving wheel is connected with the output end of the driving motor; the bottom of the driving motor is connected with the top of the base; one end of the transmission device, which is far away from the driving wheel, is connected with the discharge pipe; the side surface of the transmission device is contacted with the feed back plate; the side surface of the material return plate is connected with the connecting plate; the bottom of the connecting plate is connected with the base; the return plate inclines towards the inclined shell direction; the inclined shell inclines towards the direction of the lifting piece.
Preferably, the base is provided with a plurality of groups of fixing threaded holes, and the fixing threaded holes are formed around the base.
Preferably, a vibration device is arranged inside the inclined shell and connected with the top of the base.
Preferably, a sliding rail is arranged on the side face of the inclined shell, a sliding block is arranged on the side face of the lifting piece, and the sliding block is connected with the sliding rail in a sliding mode.
Preferably, a conveying belt is arranged on the transmission device and is in transmission connection with the driving wheel, a blocking piece is arranged on the side face of the transmission device and is perpendicular to the conveying belt.
Preferably, the side surface of the discharge pipe is provided with an inclined plate, and the inclined plate faces the direction of the feed back plate.
Preferably, the feed back plate is provided with a wear-resistant layer.
Preferably, the bottom of the connecting plate is provided with a sliding limiting part, and the sliding limiting part is in contact with the top of the lifting part.
The above technical scheme of the utility model has following profitable technological effect:
the utility model discloses a driven mode goes up and down can make this device realize the process of marching type pay-off and pay-off in the middle of the process again simultaneously, can arrange the raw materials naturally through transmission's transmission process, can pass through the feed back board scope slope casing with slope or incorrect raw materials inside through the feed back board, thereby realized the screening to the raw materials when this device realizes the material loading, the structure through the lift piece can be quantitative at every turn take out the raw materials, the structure of slope casing simultaneously can make when the lift piece descends to the bottommost, carry out the material loading for the lift piece automatically.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of an automatic feeding device for an extruder according to the present invention;
fig. 2 is a schematic structural diagram of a discharging pipe in an automatic feeding device for an extruder according to the present invention;
fig. 3 is a front view of an automatic feeding device for an extruder according to the present invention;
reference numerals: 1. a base; 2. tilting the housing; 3. a lifting member; 4. a lifting drive member; 5. supporting the slope; 6. a connecting plate; 7. a transmission device; 8. a driving wheel; 9. a drive motor; 10. a material returning plate; 11. and (4) a discharge pipe.
Detailed Description
Example one
As shown in fig. 1-3, the utility model provides an automatic feeding device for an extruder, which comprises a base 1, an inclined shell 2, a lifting member 3, a lifting driving member 4, a connecting plate 6, a transmission device 7, a driving wheel 8, a driving motor 9, a material returning plate 10 and a material discharging pipe 11;
the top of the base 1 is connected with the inclined shell 2; the inner wall of the top of the base 1 is connected with a lifting driving piece 4; the output end of the lifting driving piece 4 is connected with the lifting piece 3; the inner wall of the inclined shell 2 is connected with the lifting piece 3 in a sliding way; a supporting slope 5 is arranged on the top of the lifting piece 3; the supporting slope 5 inclines towards the connecting plate 6; the connecting plate 6 is connected with the side surface of the transmission device 7 in a sliding way; the side surface of the transmission device 7 is in transmission connection with the driving wheel 8; the driving wheel 8 is connected with the output end of the driving motor 9; the bottom of the driving motor 9 is connected with the top of the base 1; one end of the transmission device 7 far away from the driving wheel 8 is connected with the discharge pipe 11; the side surface of the transmission device 7 is contacted with the return plate 10; the side surface of the material return plate 10 is connected with the connecting plate 6; the bottom of the connecting plate 6 is connected with the base 1; the return plate 10 inclines towards the inclined shell 2; the inclined shell 2 inclines towards the direction of the lifting piece 3; a plurality of groups of fixing threaded holes are arranged on the base 1, and the fixing threaded holes are arranged on the periphery of the base 1; a transmission belt is arranged on the transmission device 7 and is in transmission connection with the driving wheel 8, a blocking piece is arranged on the side surface of the transmission device 7 and is vertical to the transmission belt; the side surface of the discharge pipe is provided with an inclined plate, and the inclined plate faces the direction of the material return plate 10; the return plate 10 is provided with a wear-resistant layer; the bottom of the connecting plate 6 is provided with a sliding limiting part which is contacted with the top of the lifting part 3.
In this embodiment, can make this device reduce to the required restriction of raw materials shape through this device, thereby make this device can be compatible the raw materials pay-off of different lower belt shapes, the practicality of this device has been guaranteed, when this device is in operating condition, through placing the raw materials inside slope casing 2, can be in the middle of the periodic lift process of lifting member 3, the raw materials of fixed quantity of lift that can be quantitative, when the raw materials enters into transmission 7 upper surfaces through connecting plate 6, can effectually transmit the raw materials to discharging pipe 11 through the combination of action wheel 8 and driving motor 9, can effectually arrange in the middle of the driven process the raw materials, thereby make the raw materials of slope unevenness carry out the feed back through material return plate 10, thereby make this device carry out automated screening.
Example two
As shown in fig. 2-3, compared with the first embodiment, in the present embodiment, the automatic feeding device for an extruder is provided with a vibration device inside the inclined casing 2, and the vibration device is connected to the top of the base 1; the side surface of the inclined shell 2 is provided with a slide rail, the side surface of the lifting piece 3 is provided with a slide block, and the slide block is connected with the slide rail in a sliding way.
The utility model discloses an in the embodiment, this device pan feeding efficiency of vibrator can effectual improvement, can effectually improve the sliding stability of this device through the slider.
The embodiments of the present invention have been described in detail with reference to the drawings, but the present invention is not limited thereto, and various changes can be made without departing from the gist of the present invention within the knowledge of those skilled in the art.
Claims (8)
1. An automatic feeding device for an extruder is characterized by comprising a base (1), an inclined shell (2), a lifting piece (3), a lifting driving piece (4), a connecting plate (6), a transmission device (7), a driving wheel (8), a driving motor (9), a material returning plate (10) and a material discharging pipe (11);
the top of the base (1) is connected with the inclined shell (2); the inner wall of the top of the base (1) is connected with a lifting driving piece (4); the output end of the lifting driving piece (4) is connected with the lifting piece (3); the inner wall of the inclined shell (2) is connected with the lifting piece (3) in a sliding way; a supporting slope (5) is arranged on the top of the lifting piece (3); the supporting slope (5) inclines towards the connecting plate (6); the connecting plate (6) is connected with the side surface of the transmission device (7) in a sliding way; the side surface of the transmission device (7) is in transmission connection with the driving wheel (8); the driving wheel (8) is connected with the output end of the driving motor (9); the bottom of the driving motor (9) is connected with the top of the base (1); one end of the transmission device (7) far away from the driving wheel (8) is connected with the discharge pipe (11); the side surface of the transmission device (7) is contacted with the material return plate (10); the side surface of the material return plate (10) is connected with the connecting plate (6); the bottom of the connecting plate (6) is connected with the base (1); the material return plate (10) inclines towards the direction of the inclined shell (2); the inclined shell (2) inclines towards the direction of the lifting piece (3).
2. The automatic feeding device for the extruder according to claim 1, wherein a plurality of groups of fixing threaded holes are arranged on the base (1), and the fixing threaded holes are arranged around the base (1).
3. The automatic feeding device for the extruders according to claim 1, characterized in that the inclined casing (2) is internally provided with a vibration device, which is connected to the top of the base (1).
4. The automatic feeding device for the extruder according to claim 1, wherein a sliding rail is arranged on the side surface of the inclined shell (2), and a sliding block is arranged on the side surface of the lifting member (3), and the sliding block is slidably connected with the sliding rail.
5. The automatic feeding device for the extruder according to claim 1, wherein the transmission device (7) is provided with a conveyor belt, the conveyor belt is in transmission connection with the driving wheel (8), and the side surface of the transmission device (7) is provided with a blocking part which is perpendicular to the conveyor belt.
6. An automatic feeding device for an extruder according to claim 1, wherein an inclined plate is provided on a side surface of the discharge pipe, the inclined plate being directed toward the return plate (10).
7. An automatic feeding device for extruders according to claim 1 characterized in that the return plate (10) is provided with a wear resistant layer.
8. The automatic feeding device for the extruder according to claim 1, wherein the connecting plate (6) is provided at the bottom with a slide stopper which is in contact with the top of the elevating member (3).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221767590.7U CN218084068U (en) | 2022-07-11 | 2022-07-11 | Automatic feeding device for extruder |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221767590.7U CN218084068U (en) | 2022-07-11 | 2022-07-11 | Automatic feeding device for extruder |
Publications (1)
Publication Number | Publication Date |
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CN218084068U true CN218084068U (en) | 2022-12-20 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202221767590.7U Active CN218084068U (en) | 2022-07-11 | 2022-07-11 | Automatic feeding device for extruder |
Country Status (1)
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CN (1) | CN218084068U (en) |
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2022
- 2022-07-11 CN CN202221767590.7U patent/CN218084068U/en active Active
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