CN211329125U - High-efficient powder agitated vessel - Google Patents

High-efficient powder agitated vessel Download PDF

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Publication number
CN211329125U
CN211329125U CN201922381466.1U CN201922381466U CN211329125U CN 211329125 U CN211329125 U CN 211329125U CN 201922381466 U CN201922381466 U CN 201922381466U CN 211329125 U CN211329125 U CN 211329125U
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stirring
cylinder
barrel
screw rod
driving
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CN201922381466.1U
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Chinese (zh)
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彭道林
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Guangdong East Science And Technology Co ltd
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Guangdong East Science And Technology Co ltd
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Abstract

The utility model relates to a plastic production facility technical field, concretely relates to high-efficient powder agitated vessel, including the support, be fixed in agitator, bung and the stirring subassembly at support middle part, the stirring subassembly includes horizontal stirring subassembly and circulation stirring subassembly, horizontal stirring subassembly is including passing the bung just stretches into drum, equipartition in the agitator drum stirring leaf all around and with the horizontal agitator motor that the drum transmission is connected, circulation stirring subassembly include stirring screw rod, guide through-hole, be located bulk cargo cover, roating seat, two at least bearings of bung below and the circulation agitator motor who is connected with the stirring screw rod transmission, this high-efficient powder agitated vessel stirring is efficient, and is fast, can be fast with the powder misce bene.

Description

High-efficient powder agitated vessel
Technical Field
The utility model relates to a plastic production facility technical field, concretely relates to high-efficient powder agitated vessel.
Background
The mixer is a mechanical device for uniformly mixing two or more materials by using mechanical force, gravity and the like. The conventional mixers are classified into four major types, i.e., gas and low viscosity liquid mixers, medium and high viscosity liquid and paste mixing machines, thermoplastic material mixers, and powder and granular solid material mixing machines. The plastic material toner is a colored powder substance, and in the production process of plastic parts, plastic products need to be heated and injection-molded into various colors due to various requirements, and in order to ensure that the plastic toner has strong adhesive force with the plastic products and uniform printing and dyeing colors, the color powder needs to be mixed or mixed with other additives to change the chemical properties of the plastic products.
Disclosure of Invention
In order to overcome the shortcoming and the deficiency that exist among the prior art, the utility model aims to provide a high-efficient powder agitated vessel, this high-efficient powder agitated vessel stirring efficiency is high, and is fast, can be fast with the powder misce bene.
The purpose of the utility model is realized through the following technical scheme: a high-efficiency powder stirring device comprises a support, a stirring barrel fixed in the middle of the support, a barrel cover and a stirring assembly, wherein the stirring assembly comprises a horizontal stirring assembly and a circulating stirring assembly, the horizontal stirring assembly comprises a barrel penetrating through the barrel cover and extending into the stirring barrel, stirring blades uniformly distributed on the periphery of the barrel and a horizontal stirring motor in transmission connection with the barrel, the circulating stirring assembly comprises a stirring screw rod, a material guide through hole, a bulk material cover positioned below the barrel cover, a rotating seat, at least two bearings and a circulating stirring motor in transmission connection with the stirring screw rod, the rotating seat is arranged at the bottom of the stirring barrel and positioned under the barrel, the stirring screw rod is sleeved in the barrel and can rotate relative to the barrel, the lower end of the stirring screw rod extends out of the lower end of the barrel, the lower end of the stirring screw rod is spliced with the rotating seat and can rotate relative to the rotating seat, the material mixing device is characterized in that at least two bearings are arranged alternately and sleeved outside the upper end of the mixing screw rod, the bearing sleeves are arranged inside the cylinder, the material guide through holes are formed in the upper section side wall surface of the cylinder, the material dispersing cover is sleeved outside the upper end of the cylinder, the material dispersing cover is of an umbrella-shaped or cone-shaped structure, the material guide through holes are located below the bearings and located inside the material dispersing cover, the material mixing device further comprises a material discharging assembly, and the material discharging assembly comprises at least one material discharging hole formed in the bottom of the mixing barrel, a material conveying pipe communicated with the material discharging hole, a material discharging pump arranged on the material conveying pipe and an electric valve arranged between the material discharging hole and the material conveying pipe.
The barrel cover comprises a barrel cover body and a cylinder, wherein the barrel cover body is provided with a barrel opening, the upper end of the cylinder is sleeved in the barrel cover body, and the upper end of the cylinder is sleeved in the rotating sleeve.
The upper end of the cylinder is sleeved with a driven wheel, and the driven wheel is in transmission connection with the output end of the horizontal stirring motor through a reduction gear set.
The output end of the circulating stirring motor is connected with the upper end of the stirring screw rod through a coupling.
The stirring device comprises at least two guide posts arranged in the vertical direction of the support, at least two sliding blocks sleeved outside the guide posts, a transverse plate connected between the sliding blocks, a connecting post fixed between the transverse plate and the barrel cover, and a driving assembly used for driving the sliding blocks to slide up and down.
The driving assembly comprises a driving cylinder fixed at the top of the support, a connecting seat fixed at the top of the transverse plate, and a connecting rod fixed between the output end of the driving cylinder and the connecting seat.
Wherein, contact inductive switches are arranged right above and below the sliding block.
Wherein, still include portable skip car, be provided with the loading hopper on the portable skip car, the discharge end of loading hopper is connected with the loading pump, and the discharge end of loading pump is connected with the filling tube, the discharge gate of filling tube is located the top of agitator.
The device comprises a horizontal stirring motor, a circulating stirring motor, a discharge pump, an electric valve, a driving cylinder, a contact type induction switch and a charging pump, and is characterized by further comprising a control box fixed on the side face of the support, wherein the control box is electrically connected with the horizontal stirring motor, the circulating stirring motor, the discharge pump, the electric valve, the driving cylinder, the contact type induction switch and the charging pump respectively.
The utility model discloses an in-service use, circulation agitator motor drive stirring screw rotates, the powder of agitator bottom is brought into the drum by stirring screw, and from the blowout of guide through-hole, the spun powder hits scattered the agitator of getting back to after the bulk cargo cover, thereby horizontal agitator motor drive drum rotates and drives stirring leaf stirring agitator powder all around, so reciprocal, circulate the stirring with the powder fast, stirring speed is fast, high mixing efficiency, after the stirring is accomplished, stop the stirring, open the motorised valve and start the discharge pump, the powder is through the discharge opening, discharge behind conveying pipeline and the discharge pump.
The beneficial effects of the utility model reside in that: the utility model discloses stir efficiently, it is fast, can be fast with the powder misce bene.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the stirring assembly of the present invention.
The reference signs are: the device comprises a support 1, a stirring barrel 2, a barrel cover 3, a barrel 4, a stirring blade 5, a horizontal stirring motor 6, a stirring screw 7, a material guide through hole 8, a bulk material cover 9, a rotary seat 10, a bearing 11, a circulating stirring motor 12, a discharge hole 13, a material conveying pipe 14, a discharge pump 15, an electric valve 16, a rotary sleeve 17, a driven wheel 18, a coupler 19, a guide pillar 20, a slide block 21, a transverse plate 22, a connecting column 23, a driving cylinder 24, a connecting seat 25, a connecting rod 26, a contact type induction switch 27, a feeding trolley 28, a feeding hopper 29, a feeding pump 30, a feeding pipe 31, a control box 32 and a speed reduction gear set 33.
Detailed Description
In order to facilitate understanding of those skilled in the art, the present invention will be further described with reference to the following examples and accompanying fig. 1-2, which are not intended to limit the present invention.
Referring to fig. 1-2, an efficient powder stirring apparatus comprises a support 1, a stirring barrel 2 fixed in the middle of the support 1, a barrel cover 3, and a stirring assembly, wherein the stirring assembly comprises a horizontal stirring assembly and a circular stirring assembly, the horizontal stirring assembly comprises a barrel 4 penetrating through the barrel cover 3 and extending into the stirring barrel 2, stirring blades 5 uniformly distributed around the barrel 4, and a horizontal stirring motor 6 in transmission connection with the barrel 4, the circular stirring assembly comprises a stirring screw 7, a material guiding through hole 8, a bulk material cover 9 positioned below the barrel cover 3, a rotating base 10, at least two bearings 11, and a circular stirring motor 12 in transmission connection with the stirring screw 7, the rotating base 10 is arranged at the bottom of the stirring barrel 2 and is positioned right below the barrel 4, the stirring screw 7 is sleeved in the barrel 4 and can rotate relative to the barrel 4, the lower end of the stirring screw 7 extends out of the lower end of the cylinder 4, the lower end of the stirring screw 7 is inserted into the rotating seat 10 and can rotate relative to the rotating seat 10, the at least two bearings 11 are arranged alternately and sleeved outside the upper end of the stirring screw 7, the bearing 11 is sleeved in the cylinder 4, the material guiding through hole 8 is opened on the side wall surface of the upper section of the cylinder 4, the bulk cargo cover 9 is sleeved outside the upper end of the cylinder 4, the bulk cargo cover 9 is of an umbrella-shaped or cone-shaped structure, the material guiding through hole 8 is positioned below the bearing 11, the material guiding through hole 8 is positioned in the material scattering cover 9, the material scattering device also comprises a discharging component, the discharging component comprises at least one discharging hole 13 arranged at the bottom of the stirring barrel 2, a conveying pipeline 14 communicated with the discharging hole 13, a discharging pump 15 arranged on the conveying pipeline 14, and an electric valve 16 arranged between the discharging hole 13 and the conveying pipeline 14.
Specifically, the bulk cargo cover 9 is fixed to the cylinder 4 and can rotate along with the cylinder 4, the stirring screw 7 is detachably connected with the rotating seat 10, and the plurality of material guiding through holes 8 are uniformly distributed in the cylinder 4 in a circle.
The barrel cover further comprises a rotating sleeve 17 fixed on the upper surface of the barrel cover 3, and the upper end of the cylinder 4 is sleeved in the rotating sleeve 17. In particular, the cylinder 4 is fixed to the lid 3 by means of a rotating sleeve 17.
The upper end of the cylinder 4 is sleeved with a driven wheel 18, and the driven wheel 18 is in transmission connection with the output end of the horizontal stirring motor 6 through a reduction gear set 33.
Wherein, the output end of the circulating stirring motor 12 is connected with the upper end of the stirring screw 7 through a coupling 19.
The stirring device comprises at least two guide posts 20 arranged along the vertical direction of the bracket 1, at least two sliding blocks 21 sleeved outside the guide posts 20, a transverse plate 22 connected between the sliding blocks 21, a connecting post 23 fixed between the transverse plate 22 and the barrel cover 3, and a driving assembly for driving the sliding blocks 21 to slide up and down. In actual use, the barrel cover 3 moves upwards and opens the stirring barrel 2 so as to clean and feed the stirring barrel 2 and the stirring blades 5.
Wherein, the driving assembly comprises a driving cylinder 24 fixed on the top of the bracket 1, a connecting seat 25 fixed on the top of the cross plate 22, and a connecting rod 26 fixed between the output end of the driving cylinder 24 and the connecting seat 25. Specifically, the number of the driving assemblies is two, and the two driving assemblies are arranged at intervals. Specifically, the driving cylinder 24 drives the connecting seat 25 to move upwards, so as to drive the transverse plate 22 to slide upwards, so that the barrel cover 3 and the stirring component are driven to move upwards through the connecting column 23, and the stirring screw 7 is separated from the rotating seat 10.
Wherein, contact inductive switches 27 are arranged right above and below the sliding block 21. In the actual use process, the slide block 21 touches any contact type induction switch 27, and the driving air cylinder 24 stops running instantly.
Wherein, still including portable skip 28, be provided with loading hopper 29 on the portable skip 28, the discharge end of loading hopper 29 is connected with charge pump 30, and the discharge end of charge pump 30 is connected with filling tube 31, the discharge gate of filling tube 31 is located the top of agitator 2.
The device also comprises a control box 32 fixed on the side surface of the bracket 1, wherein the control box 32 is electrically connected with the horizontal stirring motor 6, the circulating stirring motor 12, the discharging pump 15, the electric valve 16, the driving cylinder 24, the contact type induction switch 27 and the charging pump 30 respectively.
The above-mentioned embodiment is the utility model discloses the implementation of preferred, in addition, the utility model discloses can also realize by other modes, not deviating from the utility model discloses any obvious replacement is all within the protection scope under the prerequisite of design.

Claims (9)

1. The utility model provides a high-efficient powder agitated vessel, includes the support, is fixed in agitator, bung and the stirring subassembly at support middle part, its characterized in that: the stirring assembly comprises a horizontal stirring assembly and a circulating stirring assembly, the horizontal stirring assembly comprises a cylinder penetrating through the barrel cover and extending into the stirring barrel, stirring blades uniformly distributed around the cylinder and a horizontal stirring motor in transmission connection with the cylinder, the circulating stirring assembly comprises a stirring screw rod, a material guide through hole, a bulk material cover positioned below the barrel cover, a rotating seat, at least two bearings and a circulating stirring motor in transmission connection with the stirring screw rod, the rotating seat is arranged at the bottom of the stirring barrel and positioned right below the cylinder, the stirring screw rod is sleeved in the cylinder and can rotate relative to the cylinder, the lower end of the stirring screw rod extends out of the lower end of the cylinder, the lower end of the stirring screw rod is spliced with the rotating seat and can rotate relative to the rotating seat, and the at least two bearings are alternately arranged and sleeved outside the upper end of the stirring screw rod, and the bearing housing is located within the drum, the guide through hole is seted up in the upper segment lateral wall face of drum, the bulk cargo cover is located outside the upper end of drum and the bulk cargo cover is umbrella type or tapered structure, the guide through hole is located under the bearing and the guide through hole is located within the bulk cargo cover, still includes ejection of compact subassembly, the ejection of compact subassembly is including seting up in at least one discharge opening of agitator bottom, the conveying pipeline of communicating with the discharge opening, set up in the delivery pump of conveying pipeline and set up the motorised valve between discharge opening and conveying pipeline.
2. The high-efficiency powder stirring equipment as claimed in claim 1, wherein: the barrel cover further comprises a rotating sleeve fixed on the upper surface of the barrel cover, and the upper end of the cylinder is sleeved in the rotating sleeve.
3. The high-efficiency powder stirring equipment as claimed in claim 1, wherein: the upper end of the cylinder is sleeved with a driven wheel, and the driven wheel is in transmission connection with the output end of the horizontal stirring motor through a reduction gear set.
4. The high-efficiency powder stirring equipment as claimed in claim 1, wherein: the output end of the circulating stirring motor is connected with the upper end of the stirring screw rod through a coupling.
5. The high-efficiency powder stirring equipment as claimed in claim 1, wherein: the stirring barrel is characterized by further comprising a driving device for driving the barrel cover to move upwards and opening the stirring barrel, wherein the driving device comprises at least two guide posts arranged along the vertical direction of the support, at least two sliding blocks sleeved outside the guide posts, a transverse plate connected between the sliding blocks, a connecting post fixed between the transverse plate and the barrel cover and a driving assembly used for driving the sliding blocks to slide up and down.
6. The high-efficiency powder stirring equipment as claimed in claim 5, wherein: the driving assembly comprises a driving cylinder fixed at the top of the support, a connecting seat fixed at the top of the transverse plate, and a connecting rod fixed between the output end of the driving cylinder and the connecting seat.
7. The high-efficiency powder stirring equipment as claimed in claim 6, wherein: contact inductive switches are arranged right above and below the sliding block.
8. The high-efficiency powder stirring equipment as claimed in claim 1, wherein: still include portable skip, be provided with the loading hopper on the portable skip, the discharge end of loading hopper is connected with the loading pump, and the discharge end of loading pump is connected with the filling tube, the discharge gate of filling tube is located the top of agitator.
9. An efficient powder stirring device as defined in claim 7 or 8, wherein: the device is characterized by further comprising a control box fixed on the side face of the support, wherein the control box is electrically connected with the horizontal stirring motor, the circulating stirring motor, the discharge pump, the electric valve, the driving cylinder, the contact type induction switch and the feeding pump respectively.
CN201922381466.1U 2019-12-26 2019-12-26 High-efficient powder agitated vessel Active CN211329125U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922381466.1U CN211329125U (en) 2019-12-26 2019-12-26 High-efficient powder agitated vessel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922381466.1U CN211329125U (en) 2019-12-26 2019-12-26 High-efficient powder agitated vessel

Publications (1)

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CN211329125U true CN211329125U (en) 2020-08-25

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112121664A (en) * 2020-09-09 2020-12-25 江西澳科新材料科技有限公司 Tungsten alloy compounding device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112121664A (en) * 2020-09-09 2020-12-25 江西澳科新材料科技有限公司 Tungsten alloy compounding device

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