CN217221244U - Uniform discharging and stirring device for sintered flux - Google Patents

Uniform discharging and stirring device for sintered flux Download PDF

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Publication number
CN217221244U
CN217221244U CN202220972460.0U CN202220972460U CN217221244U CN 217221244 U CN217221244 U CN 217221244U CN 202220972460 U CN202220972460 U CN 202220972460U CN 217221244 U CN217221244 U CN 217221244U
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plate
mixing
flitch
material receiving
stirring
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CN202220972460.0U
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Chinese (zh)
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戴宪民
花如峰
陈建军
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Shandong Taishan Welding Materials Co ltd
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Shandong Taishan Welding Materials Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

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Abstract

The utility model relates to a sintering solder flux is with even ejection of compact agitating unit, including a jar body and install and connect flitch and lower flitch on jar internal and upper and lower setting, connect flitch and lower flitch to be the back taper structure on going up, connect the middle part of flitch and lower flitch all to set up the feed-through hole on going up, the (mixing) shaft vertically runs through connect flitch and lower flitch feed-through hole and extend to the below of lower flitch, install the stirring tooth on the (mixing) shaft that is located lower flitch below; an upper material mixing plate is arranged on the stirring shaft above the upper material receiving plate, and a lower material mixing plate is arranged on the stirring shaft above the lower material receiving plate; a material scattering plate is arranged on the stirring shaft between the upper material receiving plate and the lower material receiving plate, and the material scattering plate is of a conical structure; the bottom of the tank body is provided with a material distribution plate, and a spiral discharging mechanism is arranged below the material distribution plate. Through the utility model discloses the raw materials mixing time spent is short, and the raw materials after the mixing passes through the discharge gate and lasts even ejection of compact, and work efficiency is high, and the raw materials mixing is effectual, makes product quality stability good.

Description

Uniform discharging and stirring device for sintered flux
Technical Field
The utility model relates to a sintered flux production technical field especially relates to sintered flux is with even ejection of compact agitating unit.
Background
The sintered flux is a high-quality, high-efficiency, energy-saving and environment-friendly flux, and is prepared by dry mixing various mineral powder raw materials according to a certain proportion, adding a water glass solution, stirring, granulating, drying, sintering and the like. When carrying out raw materials dry-mixing through current agitating unit at present, generally pour different raw materials into the agitator tank, then stir, because the mobility of raw materials powder is relatively poor, need stir for a long time, stir with long time, influence production efficiency, even long-time stirring, still have the inhomogeneous problem of stirring, influence product quality's stability.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to prior art not enough, provide sintered flux with even ejection of compact agitating unit.
The utility model is realized by the following technical scheme, the uniform discharging stirring device for the sintered flux is provided, which comprises a tank body, an upper material receiving plate and a lower material receiving plate which are arranged in the tank body from top to bottom, wherein the upper material receiving plate and the lower material receiving plate are both in inverted cone structures, the middle parts of the upper material receiving plate and the lower material receiving plate are both provided with material through holes, a stirring shaft vertically penetrates through the material through holes of the upper material receiving plate and the lower material receiving plate and extends to the lower part of the lower material receiving plate, and stirring teeth are arranged on the stirring shaft positioned below the lower material receiving plate; an upper material mixing plate is arranged on the stirring shaft above the upper material receiving plate, and a lower material mixing plate is arranged on the stirring shaft above the lower material receiving plate; a material scattering plate is arranged on the stirring shaft between the upper material receiving plate and the lower material receiving plate, and the material scattering plate is of a conical structure; the bottom of the tank body is provided with a material distribution plate, and a spiral discharging mechanism is arranged below the material distribution plate.
Preferably, go up the flitch subsides and connect flitch upper surface and slant setting at last, go up the flitch and be a plurality of, a plurality of flitchs of going up the mixture use the (mixing) shaft to arrange as central array, and every flitch of going up the mixture all is connected with the agitator shaft through last connecting rod. The stirring shaft rotates to drive the upper material mixing plate to rotate along the surface of the upper material receiving plate, and materials on the upper material receiving plate are mixed.
Preferably, a plurality of feed inlets are arranged at the top of the tank body. The raw materials pass through the feed inlet and get into the jar internal, and the limit feeding is simultaneously through last compounding board compounding, and the compounding is effectual.
Preferably, lower mixing plate pastes under flitch upper surface and slant setting, and lower mixing plate is a plurality of, and a plurality of lower mixing plates use the (mixing) shaft to arrange as central array, and every lower mixing plate all is connected with the agitator shaft through connecting rod down. The stirring shaft rotates to drive the lower material mixing plate to rotate along the surface of the lower material mixing plate, and materials on the lower material mixing plate are mixed.
Preferably, in order to improve the raw material mixing effect, install the striker plate that can receive raw materials weight effect displacement from top to bottom in the logical material hole department of connecing the flitch last, fixed striker sleeve on the striker plate.
Preferably, the striker plate is fixed with the bracing piece that transversely sets up, the bracing piece with connect on and install vertical spring between the flitch, striker plate and striker sleeve cover just do not influence the rotation of (mixing) shaft outside the (mixing) shaft.
The material baffle is blocked in the through hole in the natural state of the spring, and along with the increase of the raw materials, the raw materials overcome the elastic force of the spring to press the material baffle downwards, so that the material baffle moves downwards, and the raw materials fall.
Preferably, for the convenient blanking, the striker plate is middle high, and the tip is low.
Preferably, an insertion hole is provided at the top of the can body. When the raw materials on the upper material receiving plate are required to fall completely (when production is finished), the insertion hole is opened, the ejector rod is inserted into the insertion hole, and the material blocking plate is pressed downwards through external force to enable the raw materials to fall completely.
Preferably, the upper end of the stirring shaft extends out of the tank body and is connected with a driving motor. The driving motor action drives the (mixing) shaft and rotates, and the (mixing) shaft rotates and drives and goes up mixing material board and lower mixing material board and rotate along the (mixing) shaft and realize the compounding, and the (mixing) shaft drives the stirring tooth simultaneously and realizes the raw materials stirring, makes the raw materials further mix.
Preferably, the distributing plate is of an inverted cone structure, the small discharging holes are uniformly distributed in the distributing plate, and the distributing plate is located below the stirring teeth.
Preferably, spiral discharge mechanism sets up the discharge gate including the pivot of horizontal setting and installing the heliciform blade in the pivot in jar body bottom one side. The uniformly mixed raw materials are uniformly discharged from a discharge hole through a spiral discharging mechanism. The rotating shaft is connected with the motor, and the motor provides power to drive the spiral discharging mechanism to uniformly discharge materials.
The utility model has the advantages that:
the raw materials are uniformly mixed while feeding through the utility model, the time for mixing is short, the uniformly mixed raw materials are continuously and uniformly discharged through the discharge port, and the working efficiency is high; the raw material mixing effect is good, the product quality stability is improved, and the product quality is favorably improved.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic diagram of the structure of the upper mixing plate of the utility model;
shown in the figure:
1. the jar body, 2, go up and connect the flitch, 3, lower flitch, 4, (mixing) shaft, 5, stirring tooth, 6, go up the flitch that mixes, 7, go up the connecting rod, 8, feed inlet, 9, lower flitch that mixes, 10, lower connecting rod, 11, bulk cargo board, 12, striker plate, 13, striker sleeve, 14, bracing piece, 15, spring, 16, patchhole, 17, cloth board, 18, unloading aperture, 19, pivot, 20, heliciform blade, 21, discharge gate.
Detailed Description
In order to clearly illustrate the technical features of the present solution, the present solution is explained below by way of specific embodiments.
As shown in fig. 1, the utility model discloses a jar body 1 and install and connect flitch 2 and lower flitch 3 on jar internal and upper and lower setting, on connect flitch 2 and lower flitch 3 to be the back taper structure, all set up the material passing hole at the middle part that connects flitch 2 and lower flitch 3 at last. The stirring shaft 4 vertically runs through the material passing holes of the upper material receiving plate 2 and the lower material receiving plate 3 and extends to the lower part of the lower material receiving plate 3, and stirring teeth 5 are arranged on the stirring shaft 4 below the lower material receiving plate 3.
Install material mixing plate 6 on the (mixing) shaft 4 of connecing flitch 2 top at last, as shown in fig. 1, 2, go up material mixing plate 6 and paste and connect flitch 2 upper surface and slant setting on, it is a plurality of to go up material mixing plate 6, a plurality of material mixing plate 6 of going up use (mixing) shaft 4 to arrange as central array, every material mixing plate 6 of going up all is connected with (mixing) shaft 4 through last connecting rod 7, material mixing plate 6 rotates along the last 2 surface rotations of connecing flitch on the (mixing) shaft 4 rotation drive, will go up the material that connects on the flitch 2 and carry out the compounding. 1 top of the jar body sets up a plurality of feed inlet 8, and the raw materials passes through feed inlet 8 and gets into jar body 1 in, and the limit feeding limit is through 6 compounding of last compounding board, and the compounding is effectual.
Connect flitch 9 under the installation on (mixing) shaft 4 of flitch 3 top under, down flitch 9 pastes and sets up at flitch 3 upper surface and slant under, and lower flitch 9 is a plurality of, and a plurality of lower flitchs 9 of mixing use (mixing) shaft 4 to arrange as central array, and every lower flitch 9 of mixing is all connected with (mixing) shaft 4 through connecting rod 10 down, and (mixing) shaft 4 rotates and drives down flitch 9 and rotate along flitch 3 surfaces under, will connect the material on the flitch 3 down and carry out the compounding.
Install bulk cargo board 11 on the (mixing) shaft 4 between last flitch 2 and the lower flitch 3 of connecing, bulk cargo board 11 is the toper structure. The raw materials fall on the bulk cargo board 11 through the material passing hole of the upper material receiving board 2 after being mixed by the upper material mixing board 6, fall on the lower material receiving board 3 through the dispersion of the bulk cargo board 11, and then are further mixed by the lower material mixing board 9.
In this embodiment, in order to improve raw materials compounding effect, can receive the striker plate 12 of raw materials weight effect displacement from top to bottom in the through-put hole department installation that connects flitch 2 last, fixed striker sleeve 13 on striker plate 12, striker plate 12 is fixed with the bracing piece 14 of horizontal setting, bracing piece 14 with connect on and install vertical spring 15 between the flitch 2, striker plate 12 and striker sleeve 13 cover just do not influence the rotation of (mixing) shaft 4 outside (mixing) shaft 4, keep off striker plate 12 in the through-put hole under the spring 15 natural state, increase along with the raw materials, the raw materials overcomes spring 15 elasticity and pushes down striker plate 12, makes striker plate 12 move down to make the raw materials whereabouts. In order to facilitate blanking, the material baffle 12 is high in the middle and low in the end. An insertion hole 16 is provided at the top of the can body 1, and when it is necessary to drop all the raw materials on the upper material receiving plate 2 (when the production is finished), the insertion hole 16 is opened, a push rod is inserted into the insertion hole 16, and the striker plate 12 is pressed down by an external force, so that all the raw materials drop.
The upper end of (mixing) shaft 4 stretches out jar body 1 and is connected with driving motor, and driving motor action drives (mixing) shaft 4 and rotates, and (mixing) shaft 4 rotates and drives mixing plate 6 and lower mixing plate 9 and rotates along (mixing) shaft 4 and realize the compounding, and (mixing) shaft 4 drives stirring tooth 5 simultaneously and realizes the raw materials stirring, makes the raw materials further mix.
Set up cloth plate 17 in jar body 1 bottom, cloth plate 17 is the back taper structure, equipartition unloading aperture 18 on cloth plate 17, cloth plate 17 is located the below of stirring tooth 5, at the below installation spiral discharging mechanism of cloth plate 17, spiral discharging mechanism sets up discharge gate 21 in jar body 1 bottom one side including the pivot 19 of horizontal setting and install the heliciform blade 20 in pivot 19, makes the even raw materials of mixing at discharge gate 21 even ejection of compact through spiral discharging mechanism. The rotating shaft 19 is connected with the motor, and the motor provides power to drive the spiral discharging mechanism to uniformly discharge materials.
During the specific use, the raw materials gets into jar body 1 back, fall on to connecing flitch 2, carry out the compounding through last compounding board 6, limit feeding limit compounding, along with the increase of raw materials volume, striker plate 12 moves down, the raw materials of being tentatively mixed falls to on the bulk cargo board 11 through the material hole that leads to on flitch 2, then fall to under on flitch 3 again, through the further compounding of lower compounding board 9, the limit compounding falls to under flitch 3 below through the material hole that leads to on the flitch 3 down, stir 5 the stirring of stirring tooth again. The uniformly stirred raw materials fall into the spiral discharging mechanism through the distributing plate 17, and are uniformly discharged through the discharging port 21.
The raw materials are uniformly mixed while feeding through the utility model, the time for mixing is short, the uniformly mixed raw materials are continuously and uniformly discharged through the discharge port 21, and the working efficiency is high; the raw material mixing effect is good, the product quality stability is improved, and the product quality is favorably improved.
Of course, the above description is not limited to the above examples, and technical features of the present invention that are not described in the present application may be implemented by or using the prior art, and are not described herein again; the above embodiments and drawings are only used for illustrating the technical solutions of the present invention and are not intended to limit the present invention, and the present invention has been described in detail with reference to the preferred embodiments, and those skilled in the art should understand that changes, modifications, additions or substitutions made by those skilled in the art within the spirit of the present invention should also belong to the protection scope of the claims of the present invention.

Claims (9)

1. Sintering flux is with even ejection of compact agitating unit, its characterized in that: the stirring shaft vertically penetrates through the material passing holes of the upper material receiving plate and the lower material receiving plate and extends to the lower part of the lower material receiving plate, and stirring teeth are arranged on the stirring shaft positioned below the lower material receiving plate; an upper material mixing plate is arranged on the stirring shaft above the upper material receiving plate, and a lower material mixing plate is arranged on the stirring shaft above the lower material receiving plate; a material scattering plate is arranged on the stirring shaft between the upper material receiving plate and the lower material receiving plate, and the material scattering plate is of a conical structure; the bottom of the tank body is provided with a material distribution plate, and a spiral discharging mechanism is arranged below the material distribution plate.
2. The homogeneous discharge stirring apparatus for sintered flux according to claim 1, wherein: go up the flitch subsides and connect flitch upper surface and slant setting at last, go up the flitch and be a plurality of, go up a plurality of flitchs and use the (mixing) shaft to arrange as central array, go up the flitch and all be connected with the stirring shaft through last connecting rod on every.
3. The homogeneous discharge stirring apparatus for sintered flux according to claim 1, wherein: the top of the tank body is provided with a plurality of feed inlets.
4. The homogeneous discharging stirring device for the sintered flux according to claim 1, wherein: lower mixing plate pastes down flitch upper surface and slant setting, and lower mixing plate is a plurality of, and a plurality of lower mixing plates use the (mixing) shaft to arrange as central array, and every lower mixing plate all is connected with the agitator shaft through connecting rod down.
5. The homogeneous discharging stirring device for the sintered flux according to claim 1, wherein: and a material blocking plate which can move up and down under the action of the weight of the raw materials is arranged at the material through hole of the upper material receiving plate, and a material blocking sleeve is fixed on the material blocking plate.
6. The homogeneous discharging stirring device for the sintered flux according to claim 5, wherein: the striker plate is fixed with the supporting rod which is transversely arranged, a vertical spring is arranged between the supporting rod and the upper material receiving plate, and the striker plate and the material blocking sleeve are sleeved outside the stirring shaft without influencing the rotation of the stirring shaft.
7. The homogeneous discharging stirring device for the sintered flux according to claim 1, wherein: the upper end of the stirring shaft extends out of the tank body and is connected with a driving motor.
8. The homogeneous discharging stirring device for the sintered flux according to claim 1, wherein: the distributing plate is of an inverted cone structure, the distributing plate is uniformly provided with small discharging holes, and the distributing plate is located below the stirring teeth.
9. The homogeneous discharging stirring device for the sintered flux according to claim 1, wherein: spiral discharge mechanism sets up the discharge gate including the pivot of horizontal setting and installing in the epaxial heliciform blade of commentaries on classics in jar body bottom one side.
CN202220972460.0U 2022-04-25 2022-04-25 Uniform discharging and stirring device for sintered flux Active CN217221244U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220972460.0U CN217221244U (en) 2022-04-25 2022-04-25 Uniform discharging and stirring device for sintered flux

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220972460.0U CN217221244U (en) 2022-04-25 2022-04-25 Uniform discharging and stirring device for sintered flux

Publications (1)

Publication Number Publication Date
CN217221244U true CN217221244U (en) 2022-08-19

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ID=82820485

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220972460.0U Active CN217221244U (en) 2022-04-25 2022-04-25 Uniform discharging and stirring device for sintered flux

Country Status (1)

Country Link
CN (1) CN217221244U (en)

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