CN215923796U - Feeding device for producing wear-resistant thermos bottle plastic shell - Google Patents

Feeding device for producing wear-resistant thermos bottle plastic shell Download PDF

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Publication number
CN215923796U
CN215923796U CN202122175606.7U CN202122175606U CN215923796U CN 215923796 U CN215923796 U CN 215923796U CN 202122175606 U CN202122175606 U CN 202122175606U CN 215923796 U CN215923796 U CN 215923796U
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CN
China
Prior art keywords
storage tank
feeding
motor
wear
feeding device
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Expired - Fee Related
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CN202122175606.7U
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Chinese (zh)
Inventor
张帆
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Anhui Union Home Appliances Co ltd
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Anhui Union Home Appliances Co ltd
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Priority to CN202122175606.7U priority Critical patent/CN215923796U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a feeding device for producing a plastic shell of a wear-resistant thermos bottle, which comprises a feeding platform, a storage tank, a feeding hole, an anti-blocking mechanism, a constant-speed quantitative feeding mechanism and a lifting mechanism, wherein the storage tank is arranged on one side of the feeding platform; the stirring rod is driven to rotate through the rotating shaft, so that the plastic particles at the bottom of the storage tank are prevented from being accumulated to cause blockage, constant-speed quantitative feeding is realized through rotation of the rotary vane screw, the threaded sleeve drives the supporting rod to move through rotation of the screw to realize lifting of the discharge port, the application range is wider, the fixed block and the rotating block are matched to rotate to enable the discharge slideway to discharge materials in multiple directions, and the application range is wider.

Description

Feeding device for producing wear-resistant thermos bottle plastic shell
Technical Field
The utility model relates to the technical field of feeding equipment, in particular to a feeding device for producing a plastic shell of a wear-resistant vacuum flask.
Background
The plastic casing of the thermos bottle is mainly made of polyethylene or polypropylene and is added with a plurality of organic solvents. The plastic bottle widely uses Polyester (PET), Polyethylene (PE) and polypropylene (PP) as raw materials, is added with corresponding organic solvent, is heated at high temperature, and passes through a plastic mold to form a plastic shell through blow molding, extrusion blowing or injection molding;
the existing feeding device is easy to mix impurities during feeding to influence the injection molding effect, plastic particles are easy to accumulate in a hopper to block to influence normal feeding of the device, the existing feeding device cannot accurately control the feeding quantity during manual feeding, and the existing feeding device is generally fixed in height and cannot be suitable for the conditions of different heights.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems, the utility model aims to provide a feeding device for producing a wear-resistant thermos bottle plastic shell, the feeding device for producing the wear-resistant thermos bottle plastic shell drives a stirring rod to rotate through a rotating shaft, so that plastic particles at the bottom of a storage tank are prevented from being accumulated to cause blockage, constant-speed quantitative feeding is realized through rotation of a rotary vane screw, a threaded sleeve drives a supporting rod to displace through rotation of the screw to realize lifting of a discharge port, the application range is wider, a discharge slideway can discharge materials in multiple directions through matching rotation of a fixed block and a rotating block, and the application range is wider.
In order to realize the purpose of the utility model, the utility model is realized by the following technical scheme: the utility model provides a loading attachment is used in production of wear-resisting thermos plastic casing, includes material loading platform, storage tank, feed inlet, prevents blockking up mechanism, at the uniform velocity quantitative feeding mechanism and elevating system, material loading bench one side is equipped with the storage tank, one side is equipped with the feed inlet on the storage tank, storage tank one side is other to be equipped with at the uniform velocity quantitative feeding mechanism, material loading bench opposite side is equipped with elevating system, prevent blockking up the mechanism and include pivot, puddler and first motor, be equipped with the pivot in the storage tank, the pivot lower extreme encircles fixedly and is equipped with the puddler, the pivot top is equipped with first motor drive and rotates.
The further improvement lies in that: the uniform-speed quantitative feeding mechanism comprises a feeding pipe, a rotary vane screw, a second motor, a discharging port and a discharging port rotating mechanism, wherein the feeding pipe is arranged beside one side of the storage tank, the rotary vane screw is arranged in the feeding pipe, the second motor is arranged outside the upper end of the feeding pipe to drive the rotary vane screw to rotate, the discharging port is arranged below the upper end of the feeding pipe, and the discharging port rotating mechanism is arranged below the discharging port.
The further improvement lies in that: discharge gate slewing mechanism includes fixed block, turning block, ejection of compact slide, ring gear, third motor and gear, the discharge gate below is equipped with the fixed block, fixed block below normal running fit is equipped with the turning block, the fixed ejection of compact slide that is equipped with in turning block below, the fixed ring gear that is equipped with in the turning block outside, the fixed third motor that is equipped with in fixed block one side, the connection of third motor output is equipped with the gear, gear and ring gear meshing transmission.
The further improvement lies in that: the lifting mechanism comprises a driving bin, a screw rod, a threaded sleeve, a supporting rod and a fourth motor, the driving bin is arranged on the other side of the feeding table, the screw rod is arranged in the driving bin, the threaded sleeve is sleeved on the screw rod, the supporting rod is arranged on the threaded sleeve, the fourth motor is arranged outside one end of the driving bin and drives the screw rod to rotate, and the supporting rod is hinged to the upper end of the feeding pipe.
The further improvement lies in that: the lower end of the feeding pipe is hinged to the feeding platform, the lower end of the storage tank is communicated with the lower end of the feeding pipe and provided with a hose, and the lower end of the storage tank is provided with an electromagnetic valve.
The utility model has the beneficial effects that: the stirring rod is driven to rotate through the rotating shaft, so that the plastic particles at the bottom of the storage tank are prevented from being accumulated to cause blockage, constant-speed quantitative feeding is realized through rotation of the rotary vane screw, the threaded sleeve drives the supporting rod to move through rotation of the screw to realize lifting of the discharge port, the application range is wider, the fixed block and the rotating block are matched to rotate to enable the discharge slideway to discharge materials in multiple directions, and the application range is wider.
Drawings
FIG. 1 is a front sectional view of embodiment 1 of the present invention;
FIG. 2 is an enlarged cross-sectional view taken at A of the present invention;
FIG. 3 is a three-dimensional schematic view of a constant velocity quantitative feeding mechanism of the present invention;
fig. 4 is a front sectional view of embodiment 2 of the present invention.
Wherein: 1. a feeding table; 2. a material storage tank; 3. a feed inlet; 4. a rotating shaft; 5. a stirring rod; 6. a first motor; 7. feeding pipes; 8. a rotary vane screw; 9. a second motor; 10. a discharge port; 11. a fixed block; 12. rotating the block; 13. a discharge chute; 14. a toothed ring; 15. a third motor; 16. a gear; 17. a driving bin; 18. a screw; 19. a threaded sleeve; 20. a support bar; 21. a fourth motor; 22. a hose; 23. an electromagnetic valve; 24. screening a screen; 25. a universal wheel; 26. a handle.
Detailed Description
In order to further understand the present invention, the following detailed description will be made with reference to the following examples, which are only used for explaining the present invention and are not to be construed as limiting the scope of the present invention.
Example 1:
according to fig. 1, 2, 3 show, the embodiment provides a loading attachment is used in production of wear-resisting thermos plastic casing, including material loading platform 1, storage tank 2, feed inlet 3, prevent blockking up the mechanism, at the uniform velocity quantitative feeding mechanism and elevating system, one side is equipped with the storage tank on the material loading platform 1, one side is equipped with feed inlet 3 on the storage tank 2, the other quantitative feeding mechanism at the uniform velocity that is equipped with in storage tank 2 one side, the opposite side is equipped with elevating system on the material loading platform 1, prevent blockking up the mechanism and include pivot 4, puddler 5 and first motor 6, be equipped with pivot 4 in the storage tank 2, 4 lower extremes of pivot encircle fixedly and are equipped with puddler 5, pivot 4 top is equipped with the drive of first motor 6 and rotates, drive puddler 5 through pivot 4 and rotate, prevent that storage tank 2 bottom plastic granules from piling up and leading to blockking up.
At uniform velocity quantitative feeding mechanism includes material loading pipe 7, spiral leaf screw rod 8, second motor 9, discharge gate 10 and discharge gate slewing mechanism, the other material loading pipe 7 that is equipped with in storage tank 1 one side, be equipped with spiral leaf screw rod 8 in the material loading pipe 7, it drives spiral leaf screw rod 8 and rotates to be equipped with second motor 9 outside the material loading pipe 7 upper end, material loading pipe 7 upper end below is equipped with discharge gate 10, discharge gate 10 below is equipped with discharge gate slewing mechanism, rotate through spiral leaf screw rod 8 and realize at uniform velocity quantitative feeding, the coarse problem of artifical material loading accuse volume has been solved.
The discharge port rotating mechanism comprises a fixed block 11, a rotating block 12, a discharge slideway 13, a toothed ring 14, a third motor 15 and a gear 16, the fixed block 11 is arranged below the discharge port 10, the rotating block 12 is arranged below the fixed block 11 in a rotating fit manner, the discharge slideway 13 is fixedly arranged below the rotating block 12, the toothed ring 14 is fixedly arranged on the outer side of the rotating block 12, the third motor 15 is fixedly arranged on one side of the fixed block 11, the gear 16 is connected to the output end of the third motor 15, the gear 16 is in meshing transmission with the toothed ring 14, the discharge slideway 13 can discharge in multiple directions through the matching rotation of the fixed block 11 and the rotating block 12, and the application range is wider.
Elevating system includes drive bin 17, screw rod 18, threaded sleeve 19, bracing piece 20 and fourth motor 21, the opposite side is equipped with drive bin 17 on the material loading platform 1, be equipped with screw rod 18 in the drive bin 17, the cover is equipped with threaded sleeve 19 on the screw rod 18, be equipped with bracing piece 20 on the threaded sleeve 19, drive bin 17 one end is equipped with fourth motor 21 drive screw rod 18 outward and rotates, bracing piece 20 is connected with material loading pipe 7 upper end is articulated, it realizes the storage mouth and goes up and down to rotate to make threaded sleeve 19 drive bracing piece 20 displacement through screw rod 18, application scope is wider.
The lower extreme of material loading pipe 7 is connected with material loading platform 1 is articulated, and 2 lower extremes of storage tank are equipped with hose 22 with the 7 lower extremes of material loading pipe through connection, and 2 lower extremes of storage tank are equipped with solenoid valve 23, make storage tank 2 can the ration ejection of compact through solenoid valve 23, have solved the inaccurate problem of artifical material loading accuse volume.
Example 2:
according to the feeding device for producing the plastic shell of the wear-resistant vacuum bottle, as shown in fig. 4, a screen 24 is arranged at the joint of the feeding port 3 and the storage tank 2, and impurities can be prevented from entering the storage tank 2 through the screen 24 to influence the injection molding quality.
The bottom of the feeding table 1 is provided with the universal wheel 25, one side of the feeding table is provided with the handle 26, the device can be quickly moved through the handle 26 and the universal wheel 25, and the problems of time and labor waste caused by manual carrying are solved.
When plastic particles are poured into the feeding device for producing the plastic shell of the wear-resistant vacuum bottle, impurities in the plastic particles are screened out by the screen mesh, when plastic particles in the material storage tank are accumulated to cause blockage, the first motor is started to drive the rotating shaft to rotate, so that the stirring rod synchronously rotates to dredge an accumulation area, when in feeding, the electromagnetic valve is opened, plastic particles enter the feeding pipe through the hose, the second motor is started to drive the rotary vane screw to rotate, the uniform feeding is carried out, the electromagnetic valve is closed after a certain amount is reached, when the direction of the discharging port needs to be adjusted, the third motor is started to drive the gear to rotate, the gear is meshed with the gear ring to drive the discharging slideway to be adjusted to a proper position, when the height of the discharge hole needs to be adjusted, the fourth motor is started to drive the screw rod to rotate so as to enable the threaded sleeve and the support rod to displace, so that one end of the feeding pipe is lifted, when the device needs to be moved, the handle is held to push the device, so that the feeding table is driven by the universal wheels to move.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (5)

1. A feeding device for producing a plastic shell of a wear-resistant vacuum bottle is characterized in that: including material loading platform (1), storage tank (2), feed inlet (3), prevent blockking up mechanism, at the uniform velocity ration feed mechanism and elevating system, one side is equipped with the storage tank on material loading platform (1), one side is equipped with feed inlet (3) on storage tank (2), storage tank (2) one side is other to be equipped with at the uniform velocity ration feed mechanism, the opposite side is equipped with elevating system on material loading platform (1), prevent blockking up the mechanism and include pivot (4), puddler (5) and first motor (6), be equipped with pivot (4) in storage tank (2), pivot (4) lower extreme encircles fixedly and is equipped with puddler (5), pivot (4) top is equipped with first motor (6) drive and rotates.
2. A feeding device for producing a plastic casing of a wear-resistant vacuum flask as claimed in claim 1, wherein: the uniform-speed quantitative feeding mechanism comprises a feeding pipe (7), a rotary vane screw (8), a second motor (9), a discharging port (10) and a discharging port rotating mechanism, wherein the feeding pipe (7) is arranged beside one side of the storage tank (2), the rotary vane screw (8) is arranged in the feeding pipe (7), the second motor (9) is arranged outside the upper end of the feeding pipe (7) to drive the rotary vane screw (8) to rotate, the discharging port (10) is arranged below the upper end of the feeding pipe (7), and the discharging port rotating mechanism is arranged below the discharging port (10).
3. A feeding device for producing a plastic casing of a wear-resistant vacuum flask as claimed in claim 2, wherein: discharge gate slewing mechanism includes fixed block (11), turning block (12), ejection of compact slide (13), ring gear (14), third motor (15) and gear (16), discharge gate (10) below is equipped with fixed block (11), fixed block (11) below normal running fit is equipped with turning block (12), fixed ejection of compact slide (13) that are equipped with in turning block (12) below, fixed ring gear (14) that are equipped with in turning block (12) outside, fixed block (11) one side is fixed and is equipped with third motor (15), third motor (15) output is connected and is equipped with gear (16), gear (16) and ring gear (14) meshing transmission.
4. A feeding device for producing a plastic casing of a wear-resistant vacuum flask as claimed in claim 1, wherein: elevating system includes drive storehouse (17), screw rod (18), threaded sleeve (19), bracing piece (20) and fourth motor (21), the opposite side is equipped with drive storehouse (17) on material loading platform (1), be equipped with screw rod (18) in drive storehouse (17), the cover is equipped with threaded sleeve (19) on screw rod (18), be equipped with bracing piece (20) on threaded sleeve (19), it rotates to be equipped with fourth motor (21) driving screw (18) outside drive storehouse (17) one end, bracing piece (20) and material loading pipe (7) upper end are articulated to be connected.
5. A feeding device for producing a plastic casing of a wear-resistant vacuum flask as claimed in claim 2, wherein: the lower end of the feeding pipe (7) is hinged to the feeding platform (1), the lower end of the storage tank (2) is connected with the lower end of the feeding pipe (7) in a penetrating mode and provided with a hose (22), and the lower end of the storage tank (2) is provided with an electromagnetic valve (23).
CN202122175606.7U 2021-09-09 2021-09-09 Feeding device for producing wear-resistant thermos bottle plastic shell Expired - Fee Related CN215923796U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122175606.7U CN215923796U (en) 2021-09-09 2021-09-09 Feeding device for producing wear-resistant thermos bottle plastic shell

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122175606.7U CN215923796U (en) 2021-09-09 2021-09-09 Feeding device for producing wear-resistant thermos bottle plastic shell

Publications (1)

Publication Number Publication Date
CN215923796U true CN215923796U (en) 2022-03-01

Family

ID=80419546

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122175606.7U Expired - Fee Related CN215923796U (en) 2021-09-09 2021-09-09 Feeding device for producing wear-resistant thermos bottle plastic shell

Country Status (1)

Country Link
CN (1) CN215923796U (en)

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Granted publication date: 20220301