CN216826064U - Raw materials loading attachment is used in production of waterborne gloss oil - Google Patents

Raw materials loading attachment is used in production of waterborne gloss oil Download PDF

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Publication number
CN216826064U
CN216826064U CN202220313748.7U CN202220313748U CN216826064U CN 216826064 U CN216826064 U CN 216826064U CN 202220313748 U CN202220313748 U CN 202220313748U CN 216826064 U CN216826064 U CN 216826064U
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gloss oil
motor
rotating shaft
pipe
raw material
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CN202220313748.7U
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杨戈
李学军
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Changsha Duote New Material Co ltd
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Changsha Duote New Material Co ltd
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Abstract

The utility model discloses a raw materials loading attachment is used in production of waterborne gloss oil, including handling case and filter mechanism, the top of handling the case is equipped with the charge door, the inner chamber of handling the case is equipped with the stirring chamber, handle the left side of case and install first motor, and the right side of first motor is connected with first pivot, the surface mounting of first pivot has the puddler, and the below of puddler distributes and have the conveying pipeline for filter raw and other materials filter mechanism distributes in the below of conveying pipeline. This raw materials loading attachment is used in waterborne gloss oil production not only can carry out abundant mixing stirring to the material at the material loading in-process of raw and other materials and handle, is convenient for subsequent utilization to the material, can carry out the filter layer to the material after the mixing processing simultaneously and handle, and then can effectually prevent to mix impurity in the raw and other materials after the mixture, is brought into in the middle of the subsequent production process, and then influences the quality that the waterborne gloss oil was come out in the follow-up production, influences subsequent result of use.

Description

Raw materials loading attachment is used in production of waterborne gloss oil
Technical Field
The utility model relates to a waterborne gloss oil production technical field specifically is a raw materials loading attachment is used in waterborne gloss oil production.
Background
The water-based varnish mainly comprises three main agents, a solvent and an auxiliary agent, has the characteristics of no color, no odor, strong transparency, no toxicity, no organic volatile matter, low cost, wide source and the like, and is incomparable with other solvent-based varnishes. With the rapid and steady development of economy, people pay more and more attention to the printing and decoration of covers of food packages, books and magazines, calendars, pictures, medicine boxes and cigarette packets, and the water-based gloss oil is applied to the surface of the package, so that the surface of the package has good glossiness, wear resistance and chemical resistance, and is economical and sanitary. A feeding device is needed when the water-based gloss oil is produced.
General loading attachment in market can not carry out the mixing stirring processing to the material well when carrying out material loading processing to raw and other materials, and then influences subsequent production of waterborne gloss oil, can not carry out filtration processing to raw and other materials simultaneously when the material loading, brings the impurity that mixes inside the raw and other materials into subsequent production process easily, influences the quality of waterborne gloss oil, for this reason, we propose such a raw and other materials loading attachment for production of waterborne gloss oil.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a raw materials loading attachment is used in production of waterborne gloss oil to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a raw material feeding device for water-based gloss oil production comprises a processing box and a filtering mechanism, wherein a feeding port is arranged at the top of the processing box, an inner cavity of the processing box is provided with a stirring cavity, a first motor is installed on the left side of the processing box, the right side of the first motor is connected with a first rotating shaft, a stirring rod is installed on the outer surface of the first rotating shaft, a conveying pipe is distributed below the stirring rod and used for filtering raw materials, the filtering mechanism is distributed below the conveying pipe and comprises a moving frame, a filtering net, a connecting block, a guide rod and a buffer spring, the filtering net is installed in the inner cavity of the moving frame, the connecting block is installed on the left side of the moving frame, the guide rod is connected to the inner side of the connecting block, the buffer spring is connected to the outer surface of the guide rod, an eccentric wheel is connected to the bottom of the moving frame, and a moving groove is formed in the inner side wall of the processing box, the bottom of handling the case is equipped with the heating bath, and the inner chamber in heating bath is equipped with the hot plate, the top distribution of hot plate has heat conduction baffle.
Further, the right side of handling the case is connected with the connecting pipe, and the other end of connecting pipe is connected with the material loading pipe, the second motor is installed at the top of material loading pipe, and the bottom of second motor is connected with the second pivot, the surface connection of second pivot has helical blade, the top right side of material loading pipe is equipped with the bin outlet, the front surface mounting who handles the case has the window, and the below of window distributes and has the third motor.
Furthermore, the puddler equidistance distributes in the surface of first pivot, and puddler and first pivot are the vertical form and distribute.
Furthermore, the movable frame is connected with the guide rod in a sliding mode through the connecting block, and the connecting block and the guide rod are vertically distributed.
Furthermore, the connecting blocks are symmetrically distributed along the vertical central line of the movable frame, and the diameter of the inner side of each connecting block is matched with the diameter of the outer side of each guide rod.
Furthermore, the diameter size of the outer side of the heating plate is matched with the diameter size of the inner side of the heating groove, and the heating plate and the heat conduction partition plate are distributed in a parallel shape.
Furthermore, the feeding pipe is communicated with the treatment box through a connecting pipe, and the whole feeding pipe is cylindrical.
The utility model provides a raw materials loading attachment is used in production of waterborne gloss oil possesses following beneficial effect: the raw material feeding device for the water-based gloss oil production adopts the mutual matching among a plurality of mechanisms, not only can fully mix and stir materials in the feeding process of the raw materials, and is convenient for subsequent utilization of the materials, but also can carry out filter layer treatment on the materials after mixing treatment, so that impurities can be effectively prevented from being mixed in the mixed raw materials and being brought into the subsequent production process, the quality of the water-based gloss oil produced in the subsequent production process is further influenced, the subsequent use effect is influenced, the bottom of the treatment box can be rapidly heated by the arranged heating plate and the heat conduction partition plate, and further the phenomenon that the mixed materials are kept still at the bottom of the treatment box for a long time to cause internal structure solidification, and further the subsequent feeding treatment is influenced can be effectively prevented;
1. the utility model discloses a combined use between the first motor that sets up and the puddler, can add the material of coming in to the charge door and carry out effectual mixing stirring and handling, thereby can make and obtain abundant mixture between the material, utilize first motor can drive first pivot and rotate thereupon, then get off in the effect of pivot and drive the puddler and rotate thereupon, and when the charge door adds raw and other materials, raw and other materials fall into the inside in stirring chamber, and later by carrying out abundant mixing stirring and handling under the rotation effect of puddler, come raw and other materials to carry out mixing and handling with this, thereby improve subsequent production efficiency.
2. The utility model discloses a filtering mechanism who sets up can carry out effectual filtration to the raw and other materials after mixing, and then can prevent that the inside of raw and other materials from mixing impurity, be brought into in the middle of the subsequent production process, and then influence the quality that follow-up production came out waterborne gloss oil, utilize the second motor to drive the eccentric wheel and rotate thereupon, then because the eccentric wheel laminates with the bottom of removing the frame mutually, so can drive the removal frame at top when the eccentric wheel rotates and carry out the up-and-down motion thereupon, then drive inside filter screen and carry out synchronous motion thereupon under the effect that removes the frame, and then can effectually carry out abundant filtration to the raw and other materials after mixing, and when removing the frame when longitudinal motion, the connecting block that utilizes the setting can move along the guide bar, and then improve the stability when removing the frame and removing.
3. The utility model discloses a second motor that sets up, the combined use of second pivot and helical blade support, can realize the material loading of raw and other materials and handle, thereby reduce artificial working strength, improve the production efficiency of whole waterborne gloss oil, can drive the second pivot and rotate thereupon when second motor during operation, then drive helical blade and rotate thereupon under the effect of second pivot, and because helical blade wholly is the heliciform, so can drive the raw and other materials that the connecting pipe input came in when helical blade rotates and carry out the material loading and handle, then discharge through the bin outlet, realize automatic material loading with this and handle.
Drawings
FIG. 1 is a schematic view of the overall structure of a raw material feeding device for producing water-based gloss oil according to the present invention;
FIG. 2 is a schematic front view of the raw material feeding device for producing water-based gloss oil according to the present invention;
fig. 3 is the utility model discloses a raw materials loading attachment's filter mechanism structure sketch map is used in production of waterborne gloss oil.
In the figure: 1. a treatment tank; 2. a feed inlet; 3. a stirring chamber; 4. a first motor; 5. a first rotating shaft; 6. A stirring rod; 7. a delivery pipe; 8. a filtering mechanism; 801. moving the frame; 802. a filter screen; 803. connecting blocks; 804. a guide bar; 805. a buffer spring; 9. an eccentric wheel; 10. a moving groove; 11. a heating tank; 12. heating plates; 13. a thermally conductive spacer; 14. a connecting pipe; 15. feeding pipes; 16. a second motor; 17. A second rotating shaft; 18. a helical blade; 19. a discharge outlet; 20. a window; 21. a third motor.
Detailed Description
Referring to fig. 1, the present invention provides a technical solution: a raw material feeding device for water-based gloss oil production comprises a processing box 1 and a filtering mechanism 8, wherein a feeding port 2 is arranged at the top of the processing box 1, a stirring cavity 3 is arranged in an inner cavity of the processing box 1, a first motor 4 is installed on the left side of the processing box 1, a first rotating shaft 5 is connected to the right side of the first motor 4, the first rotating shaft 5 can be driven by the first motor 4 to rotate along with the first rotating shaft, a stirring rod 6 is driven by the first rotating shaft 5 to rotate along with the first rotating shaft, a stirring rod 6 is installed on the outer surface of the first rotating shaft 5, a material conveying pipe 7 is distributed below the stirring rod 6, the stirring rods 6 are equidistantly distributed on the outer surface of the first rotating shaft 5, the stirring rods 6 and the first rotating shaft 5 are vertically distributed, and when the stirring rods 6 rotate along with the first rotating shaft 5, raw materials added in are stirred and mixed;
referring to fig. 1 and 3, a filtering mechanism 8 for filtering raw materials is disposed below a material conveying pipe 7, the filtering mechanism 8 includes a moving frame 801, a filtering net 802, a connecting block 803, a guiding rod 804 and a buffering spring 805, the filtering net 802 is disposed in an inner cavity of the moving frame 801, the moving frame 801 is slidably connected to the guiding rod 804 through the connecting block 803, the connecting block 803 and the guiding rod 804 are disposed in a vertical shape, the mixed raw materials can be filtered by the filtering net 802, the connecting block 803 is disposed on a left side of the moving frame 801, the guiding rod 804 is connected to an inner side of the connecting block 803, the connecting block 803 is symmetrically disposed along a vertical center line of the moving frame 801, a diameter of an inner side of the connecting block 803 is matched with a diameter of an outer side of the guiding rod 804, the buffering spring 805 is connected to an outer surface of the guiding rod 804, and the buffering spring 805 is compressed when the connecting block 803 moves along with the moving frame 801, further enabling the buffer spring 805 to deform, then improving the stability of the movable frame 801 when moving by using a reverse acting force generated by the deformation of the buffer spring 805, connecting the bottom of the movable frame 801 with an eccentric wheel 9, arranging a movable groove 10 on the inner side wall of the treatment box 1, arranging a heating groove 11 on the bottom of the treatment box 1, arranging a heating plate 12 in an inner cavity of the heating groove 11, adapting the diameter size of the outer side of the heating plate 12 to the diameter size of the inner side of the heating groove 11, arranging the heating plate 12 and a heat-conducting partition plate 13 in a parallel manner, generating heat when the heating plate 12 is electrified and heated, and then transmitting the heat to the inner cavity of the treatment box 1 through the heat-conducting partition plate 13, thereby preventing the mixed materials from standing and solidifying for a long time, and distributing the heat-conducting partition plate 13 above the heating plate 12;
referring to fig. 1 and 2, a connecting pipe 14 is connected to the right side of the processing box 1, a feeding pipe 15 is connected to the other end of the connecting pipe 14, the feeding pipe 15 is connected to the processing box 1 through the connecting pipe 14, the feeding pipe 15 is integrally cylindrical, the processed raw material can be input to the bottom of the feeding pipe 15 through the connecting pipe 14, a second motor 16 is installed at the top of the feeding pipe 15, a second rotating shaft 17 is connected to the bottom of the second motor 16, the second rotating shaft 17 can be driven to rotate by the second motor 16, then the helical blade 18 is driven to rotate by the second rotating shaft 17, so as to feed the raw material, the helical blade 18 is connected to the outer surface of the second rotating shaft 17, a discharge opening 19 is formed at the right side of the top of the feeding pipe 15, a window 20 is installed on the front surface of the processing box 1, and a third motor 21 is distributed below the window 20, the eccentric wheel 9 can be driven by the third motor 21 to rotate along with the third motor.
In summary, when the raw material feeding device for producing water-based gloss oil is used, firstly, according to the structure shown in fig. 1, raw materials are added into the stirring cavity 3 through the feeding port 2, then the first motor 4 is started, the first motor 4 is utilized to drive the first rotating shaft 5 to rotate along with the first rotating shaft 5, the stirring rod 6 is rotated along with the first rotating shaft 5, so that the raw materials in the stirring cavity 3 are fully mixed and stirred by the stirring rod 6, and then the raw materials subjected to mixing and stirring are input to the upper part of the filtering mechanism 8 through the material conveying pipe 7;
then according to the structure shown in fig. 1, 2 and 3, after the raw materials are mixed and stirred, the third motor 21 is started, the eccentric wheel 9 is driven to rotate along with the third motor 21, then the top of the eccentric wheel 9 is attached to the bottom of the moving frame 801, when the eccentric wheel 9 rotates, the moving frame 801 is driven to move up and down along with the rotation of the eccentric wheel 9, so as to drive the filter screen 802 inside the moving frame 801 to move synchronously along with the filter screen 802, then the mixed raw materials are filtered by the shaking of the filter screen 802, when the moving frame 801 moves longitudinally, the connecting blocks 803 on both sides are driven to move along with the eccentric wheel 9, so that the connecting blocks 803 move longitudinally along the guide rods 804, so as to improve the stability when the moving frame 801 moves, and when the connecting blocks 803 move, the buffer springs 805 are compressed, so as to deform the buffer springs 805, generating reverse acting force, enabling the filtered materials to fall into the bottom of the treatment box 1, then electrifying the heating plate 12 for heating to generate heat, and transmitting the generated heat to the inner cavity of the treatment box 1 through the heat-conducting partition plate 13, further heating the standing raw materials, and preventing the raw materials from standing and solidifying for a long time;
finally, according to the structure shown in fig. 1 and 2, the processed raw material is input into the feeding pipe 15 through the connecting pipe 14, then the second motor 16 is started, the second rotating shaft 17 is driven to rotate by the second motor 16, then the helical blade 18 is driven to rotate by the second rotating shaft 17, and the helical blade 18 is integrally helical, so that the raw material is driven to be fed when the helical blade 18 rotates, and then the raw material is discharged through the discharge port 19, and therefore automatic feeding processing is achieved.

Claims (7)

1. The raw material feeding device for producing the water-based gloss oil is characterized by comprising a processing box (1) and a filtering mechanism (8), wherein a feeding port (2) is arranged at the top of the processing box (1), a stirring cavity (3) is arranged in an inner cavity of the processing box (1), a first motor (4) is installed on the left side of the processing box (1), a first rotating shaft (5) is connected to the right side of the first motor (4), a stirring rod (6) is installed on the outer surface of the first rotating shaft (5), a material conveying pipe (7) is distributed below the stirring rod (6), the filtering mechanism (8) for filtering raw materials is distributed below the material conveying pipe (7), the filtering mechanism (8) comprises a moving frame (801), a filtering net (802), a connecting block (803), a guide rod (804) and a buffer spring (805), the filtering net (802) is installed in an inner cavity of the moving frame (801), remove the left side of frame (801) and install connecting block (803), and the inboard of connecting block (803) is connected with guide bar (804), the surface connection of guide bar (804) has buffer spring (805), the bottom of removing frame (801) is connected with eccentric wheel (9), the inside wall of handling case (1) is equipped with shifting chute (10), the bottom of handling case (1) is equipped with heating tank (11), and the inner chamber of heating tank (11) is equipped with hot plate (12), the top distribution of hot plate (12) has heat conduction baffle (13).
2. The raw material feeding device for producing the water-based gloss oil as claimed in claim 1, wherein a connecting pipe (14) is connected to the right side of the processing box (1), the other end of the connecting pipe (14) is connected with a feeding pipe (15), a second motor (16) is installed at the top of the feeding pipe (15), the bottom of the second motor (16) is connected with a second rotating shaft (17), the outer surface of the second rotating shaft (17) is connected with a spiral blade (18), a discharge hole (19) is formed in the right side of the top of the feeding pipe (15), a window (20) is installed on the front surface of the processing box (1), and a third motor (21) is distributed below the window (20).
3. The raw material feeding device for producing the water-based gloss oil according to claim 1, wherein the stirring rods (6) are equidistantly distributed on the outer surface of the first rotating shaft (5), and the stirring rods (6) are vertically distributed with the first rotating shaft (5).
4. The raw material feeding device for producing the water-based gloss oil according to claim 1, wherein the moving frame (801) is slidably connected with the guide rod (804) through a connecting block (803), and the connecting block (803) and the guide rod (804) are vertically distributed.
5. The raw material feeding device for producing the water-based gloss oil according to claim 1, wherein the connecting blocks (803) are symmetrically distributed along a vertical central line of the moving frame (801), and the inside diameter of the connecting blocks (803) is matched with the outside diameter of the guide rods (804).
6. The raw material feeding device for producing the water-based gloss oil according to claim 1, wherein the diameter of the outer side of the heating plate (12) is matched with the diameter of the inner side of the heating groove (11), and the heating plate (12) and the heat conducting partition plate (13) are distributed in parallel.
7. The raw material feeding device for producing the water-based gloss oil as claimed in claim 2, wherein the feeding pipe (15) is communicated with the treatment tank (1) through a connecting pipe (14), and the feeding pipe (15) is cylindrical as a whole.
CN202220313748.7U 2022-02-16 2022-02-16 Raw materials loading attachment is used in production of waterborne gloss oil Active CN216826064U (en)

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CN202220313748.7U CN216826064U (en) 2022-02-16 2022-02-16 Raw materials loading attachment is used in production of waterborne gloss oil

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Application Number Priority Date Filing Date Title
CN202220313748.7U CN216826064U (en) 2022-02-16 2022-02-16 Raw materials loading attachment is used in production of waterborne gloss oil

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116617888A (en) * 2023-05-05 2023-08-22 南京照扬文化传媒有限公司 Printing ink recovery processing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116617888A (en) * 2023-05-05 2023-08-22 南京照扬文化传媒有限公司 Printing ink recovery processing device

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