CN209870793U - Invariable micelle filling equipment of unloading volume - Google Patents

Invariable micelle filling equipment of unloading volume Download PDF

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Publication number
CN209870793U
CN209870793U CN201920023588.0U CN201920023588U CN209870793U CN 209870793 U CN209870793 U CN 209870793U CN 201920023588 U CN201920023588 U CN 201920023588U CN 209870793 U CN209870793 U CN 209870793U
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CN
China
Prior art keywords
blanking
fixed
movable
rotating roller
storage barrel
Prior art date
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Expired - Fee Related
Application number
CN201920023588.0U
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Chinese (zh)
Inventor
小林胜
罗家华
梁兆儒
小林澪慧
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Zhuhai Youxiang Environmental Protection Technology Co Ltd
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Zhuhai Youxiang Environmental Protection Technology Co Ltd
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Priority to CN201920023588.0U priority Critical patent/CN209870793U/en
Application granted granted Critical
Publication of CN209870793U publication Critical patent/CN209870793U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Filling Or Emptying Of Bunkers, Hoppers, And Tanks (AREA)

Abstract

The utility model relates to the field of production of regenerated rubber particles, in particular to a rubber particle filling device with constant blanking amount, which comprises a storage barrel, a blanking hopper, a sealing seat, a conveying belt and a material guide plate; a horizontal fixed baffle plate is fixed at the bottom of the storage barrel, a plurality of fixed blanking holes are uniformly formed in the fixed baffle plate, and a plurality of movable blanking holes which are identical to the fixed blanking holes and correspond to the fixed blanking holes one by one are formed in the movable baffle plate; a rotating roller with a cylindrical structure is coaxially arranged in the sealing cavity; an outward blanking groove is arranged on the arc-shaped side wall of the rotating roller. The utility model discloses a lower silo can the ration collect the micelle raw materials that falls down of the rotatory roller that sets up and above that to the below is sent into in the rotation, parts the raw materials, collects different volume through the rotational speed of difference, only need adjust rotational speed just can obtain when needing invariable, need not weigh the raw materials of every one, labour saving and time saving.

Description

Invariable micelle filling equipment of unloading volume
Technical Field
The utility model relates to a regeneration micelle production field specifically is a invariable micelle filling equipment of unloading volume.
Background
At present, the regeneration of plastics is carried out by crushing, cleaning, removing impurities, sorting and other processes on recovered waste plastics, and then preparing into regenerated colloidal particles for use. In the packing link, at first need irritate the package to the reclaimed rubber grain, traditional irritate the package work and need the workman a spoon pack into the bag, weigh repeatedly, waste time and energy and inefficiency.
The automatic sack filling machine for reclaimed rubber particles disclosed in the chinese patent (publication No. CN 207826615U) adopts a emptying device consisting of a feeding hopper communicated with a storage cylinder, a measuring cavity for storing, measuring and storing quantitative reclaimed rubber particles and a discharge hopper with an inverted trapezoidal structure, and clamping mechanisms for clamping and fixing packaging bags are respectively arranged at two sides of the discharge hopper, so that automatic quantitative sack filling of reclaimed rubber particles can be realized, and the automatic sack filling machine is suitable for packaging bags with different specifications, and has high working efficiency and strong universality. But when carrying out the micelle and measuring through measuring separately micelle weight at every turn, work is loaded down with trivial details, is unfavorable for the high-efficient operation of equipment to use, consequently, needs to improve the mode of weighing of micelle, solves above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a micelle filling equipment of unloading volume invariant 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 colloidal particle filling device with constant blanking amount comprises a storage barrel, a blanking hopper, a sealing seat, a conveying belt and a material guide plate; the bottom of the storage barrel is communicated with a blanking hopper, a sealing seat is fixed at the bottom of the blanking hopper, and a conveying belt is horizontally arranged below the sealing seat and used for conveying the weighed raw materials out; a circle of inclined guide plates are arranged on the side wall of the bottom of the storage barrel, and the lower ends of the guide plates are flush with the edge of the inner wall of the blanking hopper, so that the raw materials in the storage barrel can be completely immersed into the blanking hopper, and fall down; a horizontal fixed baffle plate is fixed at the bottom of the storage barrel, a plurality of fixed blanking holes are uniformly formed in the fixed baffle plate, and the fixed blanking holes are of a long strip-shaped structure, so that raw materials can easily fall from the fixed blanking holes; the lower surface of the fixed striker plate is provided with a movable striker plate which is horizontally and slidably connected with the fixed striker plate, the movable striker plate and the fixed striker plate can be connected through a sliding chute and sliding block structure, so that the movable striker plate is attached to the lower surface of the fixed striker plate to move in the horizontal direction, the movable striker plate is provided with a plurality of movable blanking holes which are identical to the fixed blanking holes and correspond to the fixed blanking holes one by one, the movable blanking holes can be superposed with the fixed blanking holes, so that the raw material above falls into the lower part through the fixed blanking holes and the movable blanking holes, and when the fixed blanking holes and the movable blanking holes are staggered, the raw material above cannot fall down to play a role of blocking; a horizontal cylindrical sealing cavity is arranged in the sealing seat, a feed opening is arranged at the upper end of the sealing cavity and communicated with the bottom of the feeding hopper, a blanking opening is arranged at the bottom of the sealing cavity, raw materials in the sealing cavity are sent out of the sealing seat, and a cylindrical rotating roller is coaxially arranged in the sealing cavity; the arc-shaped side wall of the rotating roller is provided with 1-2 feeding chutes which are symmetrically arranged when two feeding chutes are arranged, the distance between the feeding chutes is ensured to be large enough, and the feeding chutes are rotated to the lower part along with the feeding chutes when the feeding chutes are rotated to the upper part.
Further: the distance between the rotating roller and the inside of the sealing cavity is less than 0.5mm, and the distance is less than the particle size of the raw materials, so that the raw materials are prevented from falling through gaps.
Further: the central shaft of the rotating roller is connected with a driving motor through a transmission to drive the rotating roller to rotate, so that the rotating speed of the rotating roller is changed.
Further: a vertical poking rod is further arranged in the blanking hopper, a horizontal rotating shaft is fixed in the middle of the poking rod, the rotating shaft is rotatably connected with the inner wall of the blanking hopper through a bearing, the poking rod can rotate in the vertical direction, a steel cable is fixedly connected to the upper end of the poking rod, the other end of the steel cable is connected to a movable material baffle plate, the poking rod swings to pull the movable material baffle plate to move to one side, the fixed blanking hole is communicated with the movable blanking hole when the poking rod is located at the vertical position, the upper raw material can fall down, the lower end of the poking rod downwards penetrates through the blanking hole and extends into the sealing cavity, the blanking groove extends into the blanking groove when the blanking groove faces the blanking hole, and the poking rod inclines when the blanking groove does not; a reset mechanism is fixedly connected to one side of the movable striker plate, so that the movable striker plate can be quickly restored to the original position after rotating, and the reset effect is achieved.
Further: the reset mechanism comprises a shell, a connecting rod, a sliding block and a reset spring, wherein the sliding block horizontally moves in the shell, the connecting rod is fixedly connected to the sliding block, the other end of the connecting rod is fixed to the movable material baffle, the reset spring is fixedly connected to the other side of the sliding block, the sliding block is supported through the reset spring, the reset spring is compressed when the sliding block moves rightwards, and the sliding block is pushed to reset leftwards through the reset spring after force is removed.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model can quantitatively collect the falling colloidal particle raw materials through the arranged rotating roller and the blanking groove on the rotating roller, and rotationally feed the raw materials to the lower part, so that the raw materials are separated, different quantities are collected through different rotating speeds, the raw materials can be obtained only by adjusting the rotating speed when the quantity is constant, and the raw materials of each part do not need to be weighed, thereby saving time and labor; the raw materials are timely prevented from falling down by the driving of the poke rod in the blanking process, the effect of separation is achieved, the blanking is not continued from the upper side, and the collected raw materials are more accurate.
Drawings
Fig. 1 is a schematic structural diagram of a constant blanking amount colloidal particle filling device.
Fig. 2 is an enlarged schematic view of a in fig. 1.
Fig. 3 is a schematic structural diagram of a movable baffle plate in the colloidal particle filling equipment with constant blanking quantity.
Fig. 4 is a schematic structural diagram of a reset mechanism in the colloidal particle filling equipment with constant blanking amount.
In the figure: 1-storage bucket, 2-blanking hopper, 3-seal seat, 4-conveying belt, 5-guide plate, 6-fixed baffle plate, 7-movable baffle plate, 8-reset mechanism, 9-rotating roller, 10-blanking groove, 11-blanking opening, 12-blanking opening, 13-poking rod, 14-rotating shaft, 15-steel cable, 16-fixed blanking hole, 17-movable blanking hole, 81-shell, 82-connecting rod, 83-sliding block and 84-reset spring.
Detailed Description
Example 1
Referring to the drawings, in the embodiment of the present invention, a colloidal particle filling apparatus with a constant feeding amount includes a storage barrel 1, a feeding hopper 2, a sealing seat 3, a conveying belt 4 and a material guide plate 5; the bottom of the storage barrel 1 is communicated with a discharging hopper 2, a sealing seat 3 is fixed at the bottom of the discharging hopper 2, and a conveying belt 4 is horizontally arranged below the sealing seat 3 and used for conveying the weighed raw materials out; a circle of inclined guide plates 5 are arranged on the side wall of the bottom of the storage vat 1, and the lower ends of the guide plates 5 are flush with the edge of the inner wall of the blanking hopper 2, so that raw materials in the storage vat 1 can be completely immersed into the blanking hopper 2, and the raw materials fall down.
A horizontal fixed material baffle 6 is fixed at the bottom of the material storage barrel 1, a plurality of fixed blanking holes 16 are uniformly formed in the fixed material baffle 6, and the fixed blanking holes 16 are of a strip-shaped structure, so that raw materials can easily fall from the fixed blanking holes 16; be provided with a level rather than sliding connection's activity striker plate 7 at the lower surface of fixed striker plate 6, can be through spout slider structural connection between activity striker plate 7 and the fixed striker plate 6, make activity striker plate 7 paste the lower surface of fixed striker plate 6 and move on the horizontal direction, set up the removal unloading hole 17 of a plurality of and the same one-to-one of fixed unloading hole 16 on activity striker plate 7, removal unloading hole 17 can coincide with fixed unloading hole 16, make the raw materials of top pass through fixed unloading hole 16, removal unloading hole 17 falls into the below, and when fixed unloading hole 16 staggers with removal unloading hole 17, the raw materials of top just can not fall down, play the effect of blocking.
A horizontal sealing cavity with a cylindrical structure is arranged in the sealing seat 3, a feed opening 11 is formed in the upper end of the sealing cavity and communicated with the bottom of the feeding hopper 2, a blanking opening 12 is formed in the bottom of the sealing cavity to send raw materials in the sealing cavity out of the sealing seat 3, a rotating roller 9 with a cylindrical structure is coaxially arranged in the sealing cavity, the distance between the rotating roller 9 and the inside of the sealing cavity is smaller than 0.5mm and smaller than the particle size of the raw materials, the raw materials are prevented from falling through a gap, a central shaft of the rotating roller 9 is connected with a driving motor through a transmission to drive the rotating roller 9 to rotate, and the rotating speed of the rotating roller 9 is changed; the arc-shaped side wall of the rotating roller 9 is provided with 1-2 outward blanking grooves 10, the blanking grooves 10 are symmetrically arranged when the number of the blanking grooves is two, the distance between the two blanking grooves is large enough, and when the blanking groove 10 rotates to the upper side, falling raw materials enter the blanking groove 10 and rotate to the lower side along with the blanking groove 10.
Example 2
In the above scheme, a vertical poking rod 13 is further arranged in the blanking hopper 2, a horizontal rotating shaft 14 is fixed in the middle of the poking rod 13, the rotating shaft 14 is rotatably connected with the inner wall of the blanking hopper 2 through a bearing, so that the poking rod 13 can rotate in the vertical direction, a steel cable 15 is fixedly connected to the upper end of the poking rod 13, the other end of the steel cable 15 is connected to the movable material baffle plate 7, the poking rod 13 swings to pull the movable material baffle plate 7 to move towards one side, when the poking rod 13 is located at the vertical position, the fixed blanking hole 16 is communicated with the movable blanking hole 17, the upper raw material can fall down, the lower end of the poking rod 13 downwards penetrates through the blanking opening 11 and extends into the sealing cavity, when the blanking opening 10 faces the blanking opening 11, the poking rod 13 inclines when the blanking opening 10 does not face the blanking opening 11; a reset mechanism 8 is fixedly connected to one side of the movable striker plate 7, so that the movable striker plate 7 can be quickly restored to the original position after rotating, and a reset effect is achieved; the reset mechanism 8 comprises a shell 81, a connecting rod 82, a sliding block 83 and a reset spring 84, wherein the sliding block 83 horizontally moves in the shell 81, the connecting rod 82 is fixedly connected to the sliding block 83, the other end of the connecting rod 82 is fixed to the movable striker plate 7, the reset spring 84 is fixedly connected to the other side of the sliding block 83, the sliding block 83 is supported by the reset spring 84, the reset spring 84 is compressed when the sliding block 83 moves rightwards, and the sliding block 83 is pushed to reset leftwards by the reset spring 84 after the force is removed.
When the material storage barrel is used, raw materials are stored in the material storage barrel 1, the rotating roller 9 rotates clockwise, when the blanking groove 10 rotates to the upper part and is opposite to the blanking opening 11, the poke rod 13 rotates to the vertical position and extends into the blanking groove 10, the movable material baffle plate 7 is positioned at the original position, the fixed blanking hole 16 is opposite to the movable blanking hole 17, the upper raw materials fall down through the fixed blanking hole 16 and the movable blanking hole 17 and enter the upward blanking groove 10, the rotating roller 9 continues to rotate, the lower end of the poke rod 13 is pushed by the side wall of the blanking groove 10 to swing rightwards, the upper end of the poke rod 13 pulls the movable material baffle plate 7 leftwards, so that the opposite fixed blanking hole 16 and the movable blanking hole 17 are staggered to block two holes, the movable material baffle plate 7 moving leftwards pushes the sliding block 83 in the reset mechanism 8 to compress the reset spring 84 leftwards, the poke rod 13 always slides on the outer surface of the rotating roller 9 in the rotating process of, and the poke rod 13 is made to be vertical again until the next blanking groove 10 faces the blanking opening 11, so that the falling raw materials are weighed when a batch of raw materials are quantitatively filled, the rotating speed of the rotating roller 9 is adjusted until the falling amount meets the requirement, the raw materials with the same weight can fall down by keeping the constant rotating speed of the rotating roller 9, and each batch of raw materials does not need to be weighed.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (5)

1. A colloidal particle filling device with constant blanking amount comprises a storage barrel (1), a blanking hopper (2), a sealing seat (3), a conveying belt (4) and a material guide plate (5); the bottom of the storage barrel (1) is communicated with a blanking hopper (2), a sealing seat (3) is fixed at the bottom of the blanking hopper (2), a conveying belt (4) is horizontally arranged below the sealing seat (3), a circle of inclined guide plate (5) is arranged on the side wall of the bottom of the storage barrel (1), and the lower end of the guide plate (5) is flush with the edge of the inner wall of the blanking hopper (2), the storage barrel is characterized in that a horizontal fixed baffle plate (6) is fixed at the bottom of the storage barrel (1), a plurality of fixed blanking holes (16) are uniformly formed in the fixed baffle plate (6), and the fixed blanking holes (16) are of a long strip-shaped structure; a movable striker plate (7) which is horizontally connected with the fixed striker plate in a sliding way is arranged on the lower surface of the fixed striker plate (6), and a plurality of movable blanking holes (17) which are the same as the fixed blanking holes (16) and correspond to one another one by one are arranged on the movable striker plate (7); a horizontal cylindrical sealing cavity is arranged in the sealing seat (3), a feed opening (11) communicated with the bottom of the feeding hopper (2) is formed in the upper end of the sealing cavity, a feed opening (12) is formed in the bottom of the sealing cavity, and a cylindrical rotating roller (9) is coaxially arranged in the sealing cavity; an outward blanking groove (10) is arranged on the arc-shaped side wall of the rotating roller (9), and 1-2 blanking grooves (10) are arranged.
2. A constant-blanking-amount billet filling apparatus according to claim 1, wherein: the distance between the rotating roller (9) and the inside of the sealing cavity is less than 0.5 mm.
3. A constant blanking size billet filling apparatus according to claim 1 or 2, wherein: the central shaft of the rotating roller (9) is connected with a driving motor through a transmission.
4. A constant-blanking-amount billet filling apparatus according to claim 3, wherein: a poking rod (13) is arranged in the blanking hopper (2), a horizontal rotating shaft (14) is fixed in the middle of the poking rod (13), a steel cable (15) is fixedly connected to the upper end of the poking rod (13), the other end of the steel cable (15) is connected to the movable material baffle (7), when the poking rod (13) is located at a vertical position, the fixed blanking hole (16) is communicated with the movable blanking hole (17), when the blanking groove (10) faces the blanking opening (11), the lower end of the poking rod (13) downwards penetrates through the blanking opening (11) and extends into the blanking groove (10), when the blanking groove (10) does not face the blanking opening (11), the poking rod (13) slides on the surface of the rotating roller (9), and the poking rod (13) keeps inclining; a reset mechanism (8) is fixedly connected on one side of the movable striker plate (7).
5. A constant-blanking-amount billet filling apparatus according to claim 4, wherein: the reset mechanism (8) comprises a shell (81), a connecting rod (82), a sliding block (83) and a reset spring (84), the sliding block (83) horizontally moves in the shell (81), the connecting rod (82) is fixedly connected to the sliding block (83), the other end of the connecting rod (82) is fixed to the movable material baffle (7), the reset spring (84) is fixedly connected to the other side of the sliding block (83), and the sliding block (83) is supported through the reset spring (84).
CN201920023588.0U 2019-01-08 2019-01-08 Invariable micelle filling equipment of unloading volume Expired - Fee Related CN209870793U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920023588.0U CN209870793U (en) 2019-01-08 2019-01-08 Invariable micelle filling equipment of unloading volume

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920023588.0U CN209870793U (en) 2019-01-08 2019-01-08 Invariable micelle filling equipment of unloading volume

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Publication Number Publication Date
CN209870793U true CN209870793U (en) 2019-12-31

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111707088A (en) * 2020-06-28 2020-09-25 倪立龙 Lithium battery negative electrode material graphite powder preparation processing system
CN114407192A (en) * 2022-01-20 2022-04-29 湖北天腾重型机械股份有限公司 Preparation equipment for reinforcing concrete of underground mine tunnel
CN114604447A (en) * 2022-04-11 2022-06-10 界首市宏达塑业有限公司 Plastic granules partial shipment equipment
CN115229148A (en) * 2022-06-23 2022-10-25 张家港市发力机械有限公司 Multi-cabin cooling hydraulic shear trolley beam

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111707088A (en) * 2020-06-28 2020-09-25 倪立龙 Lithium battery negative electrode material graphite powder preparation processing system
CN114407192A (en) * 2022-01-20 2022-04-29 湖北天腾重型机械股份有限公司 Preparation equipment for reinforcing concrete of underground mine tunnel
CN114604447A (en) * 2022-04-11 2022-06-10 界首市宏达塑业有限公司 Plastic granules partial shipment equipment
CN115229148A (en) * 2022-06-23 2022-10-25 张家港市发力机械有限公司 Multi-cabin cooling hydraulic shear trolley beam
CN115229148B (en) * 2022-06-23 2024-05-24 张家港市发力机械有限公司 Multi-cabin type cooling hydraulic shear trolley beam

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GR01 Patent grant
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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20191231

Termination date: 20210108