CN214915594U - High-speed continuous material mixing equipment - Google Patents

High-speed continuous material mixing equipment Download PDF

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CN214915594U
CN214915594U CN202120651522.3U CN202120651522U CN214915594U CN 214915594 U CN214915594 U CN 214915594U CN 202120651522 U CN202120651522 U CN 202120651522U CN 214915594 U CN214915594 U CN 214915594U
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helical blade
stirring
feed cylinder
discharge opening
axis body
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不公告发明人
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Abstract

The utility model relates to the technical field of material mixing, in particular to a high-speed and continuous material mixing device, which comprises a frame, a material mixing machine arranged on the frame and a first stirring and conveying unit; the oil-water mixing device comprises an oil containing part, a water containing part, a peristaltic pump unit, an emulsifier, a power pump and an atomizing nozzle, wherein the peristaltic pump unit pumps oil contained in the oil containing part and water contained in the water containing part into the emulsifier to be emulsified to form emulsion, the power pump pumps the emulsion in the emulsifier out and forms atomized liquid through the atomizing nozzle to be sprayed into a material mixing machine to be mixed with materials, and the material mixing machine mixes and stirs the materials and the atomized liquid sprayed by the atomizing nozzle; realize the accurate ratio of profit with the help of the peristaltic pump unit, utilize the emulgator to make the more even of profit emulsification, realize the even blowout of atomizing of water oil mixture with the help of power pump, atomizer, no granule realizes profit material three's homogeneous mixing with the material machine, and conveying unit automatic output misce bene's material promotes mixing efficiency and mixing yield.

Description

High-speed continuous material mixing equipment
Technical Field
The utility model relates to a material mixing technique field especially discloses a high-speed, continuous equipment of kneading material.
Background
In the manufacturing process of food, for example, in the manufacturing process of vermicelli, various raw materials (such as starch, rice, oil and the like) are required to be uniformly stirred to form a mixture, and then the mixture is made into vermicelli.
SUMMERY OF THE UTILITY MODEL
In order to overcome the shortcoming and the not enough that exist among the prior art, the utility model aims to provide a high-speed, continuous and material equipment utilizes the emulgator to make the more even of profit emulsification, realizes the even blowout of atomizing of profit mixture with the help of power pump, atomizer, and no granule promotes the mixed feed efficiency of material.
In order to achieve the purpose, the utility model discloses a high-speed, continuous material mixing device, which comprises a frame, a material mixing machine and a first stirring and conveying unit, wherein the material mixing machine and the first stirring and conveying unit are arranged on the frame; still including setting up the oil piece of holding in the frame, hold the water piece, the peristaltic pump unit, the emulgator, the power pump, atomizer, the peristaltic pump unit is used for holding the oil that the oil piece was held and is established with holding the water pump that the piece held and go into the emulgator and carry out emulsification treatment and form the emulsion, the power pump is used for taking out the emulsion in the emulgator and forms the atomized liquid spraying via atomizer and to mix with the material in the material machine, and the material machine is used for mixing stirring material and atomizer spun atomized liquid.
The feeding machine comprises a feeding machine body, a feeding hole, a reverse spiral blade, a first discharge hole, a first support, a first feeding barrel, a first stirring conveying unit and a second stirring conveying unit, wherein the feeding machine body comprises a first support arranged in the frame, the first feeding barrel is arranged in the first support, a first shaft body arranged on the first feeding barrel in a rotating mode is used for driving a first driving piece rotating the first shaft body, the first spiral blade is arranged on the outer side of the first shaft body and located in the first feeding barrel, the reverse spiral blade is arranged in the feeding hole and the first discharge hole, the spiral direction of the first spiral blade is opposite to the spiral direction of the reverse spiral blade, the first spiral blade stirs and conveys materials input by the feeding hole, the first discharge hole is located between the first spiral blade and the reverse spiral blade, and the materials after the first spiral blade is stirred are conveyed to the first stirring conveying unit through the first discharge hole.
The material mixing machine also comprises a stirring helical blade which is arranged on the first shaft body and is positioned between the first helical blade and the reverse helical blade, wherein the stirring helical blade comprises a plurality of stirring blades which extend and are arranged along the length direction of the first shaft body and are arranged around the central axis of the first shaft body; first helical blade's spiral direction is the same with stirring helical blade's spiral direction, and first helical blade carries the material of feed port input to stirring helical blade and stirs the mixture, and reverse helical blade mixes blade cooperation with the stirring and is used for carrying the material after stirring helical blade to first stirring unit via first discharge opening.
Wherein, feed port, first discharge opening are located the both ends of first feed cylinder respectively, and feed port, first discharge opening arrange along the length direction of first axis body, and the feed port is located the top of first feed cylinder, and first discharge opening is located the below of first feed cylinder.
Wherein, still including setting up in a plurality of stirring vertical bars in the first axis body outside, the setting is extended along the radial direction of first axis body to the stirring vertical bar, and a plurality of stirring vertical bars are arranged and are set up around the central axis of first axis body along the length direction of first axis body.
Wherein, first stirring conveying unit is including setting up in the frame and being located the second feed cylinder with the material machine below, rotate the second shaft body that sets up in the second feed cylinder, be used for driving second shaft body pivoted second driving piece, set up the second helical blade in the second shaft body outside, first discharge opening and the upper end intercommunication of the one end of second feed cylinder, the lower extreme of the other end of second feed cylinder disposes the second discharge opening.
Wherein, still including setting up in the second stirring conveying unit of frame, second stirring conveying unit has and sets up in the frame and lie in the third feed cylinder of first stirring conveying unit below, rotate the third axis body that sets up in the third feed cylinder, be used for driving third axis body pivoted third driving piece, set up in the third helical blade in the third axis body outside, the pitch of second helical blade is greater than third helical blade's pitch, the upper end intercommunication of the one end of second discharge opening and third feed cylinder, the lower extreme of the other end of third feed cylinder disposes the third discharge opening.
The second stirring and conveying unit further comprises a second discharging driving lever arranged on the outer side of the third shaft body, and the third discharging hole is used for exposing the second discharging driving lever.
Wherein, the frame is stretched out suddenly to the one end of third feed cylinder, and the third discharge opening is located the one end that the third feed cylinder stretches out the frame suddenly, receives the workbin and is used for accomodating the discharged material of third discharge opening.
The utility model has the advantages that: realize the accurate ratio of profit with the help of the peristaltic pump unit, utilize the emulgator to make the more even of profit emulsification, realize the even blowout of atomizing of water oil mixture with the help of power pump, atomizer, no granule realizes profit material three's homogeneous mixing with the material machine, and conveying unit automatic output misce bene's material promotes mixing efficiency and mixing yield.
Drawings
Fig. 1 is a front view of the present invention;
FIG. 2 is a schematic layout view of the oil container, the water container, the peristaltic pump unit, the emulsifier, the power pump and the atomizer of the present invention;
fig. 3 is a right side view of the present invention;
fig. 4 is a front view of the material mixing machine of the present invention.
The reference numerals include:
1-frame 2-material mixer 3-first stirring and conveying unit
4-first charging barrel 5-first shaft body 6-first helical blade
7-reverse helical blade 8-feed opening 9-first discharge opening
11-stirring blade 12-stirring straight bar 13-first discharging deflector rod
14-second shaft body 15-second helical blade 16-second discharge hole
17-second stirring and conveying unit 18-third shaft body 19-third helical blade
21-third discharge hole 22-second discharge deflector rod 111-oil containing piece
112-water containing part 113-peristaltic pump unit 114-emulsifier
115, power pump 116 and atomizer.
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 drawings, which are not intended to limit the present invention.
Referring to fig. 1 to 4, the present invention provides a high-speed, continuous material mixing device, which comprises a frame 1, a material mixing machine 2 and a first stirring and conveying unit 3, which are installed on the frame 1, wherein the material mixing machine 2 is located above the first stirring and conveying unit 3, and the material mixed by the material mixing machine 2 rapidly enters the first stirring and conveying unit 3 by the aid of the auxiliary action of gravity.
Still including setting up oil piece 111, water piece 112 of holding of 1 in the frame, peristaltic pump unit 113, emulgator 114, power pump 115, atomizer 116, peristaltic pump unit 113 is used for holding the oil that oil piece 111 was held to the appearance and holds the water pump that water piece 112 was held to the appearance and go into the emulgator 114 and carry out emulsification treatment and form the emulsion, thereby it is even to fully mix the profit, power pump 115 is used for taking out the emulsion in the emulgator 114 and forms the atomized liquid spraying via atomizer 116 and arrive and fully mix with the material in the feeder 2, and the feeder 2 is used for mixing stirring material and atomizer 116 spun atomized liquid.
Realize the accurate supply of profit with the help of peristaltic pump unit 113, emulsifier 114 makes the more even of profit emulsification, power pump 115 makes profit emulsion spout via atomizer 116 atomizing, atomizer 116 makes the emulsion of oil-water mixture be the atomizing state blowout and to the material in the material machine 2, the emulsion can not be the graininess and fall on the material with material machine 2, promote the homogeneity of material and profit, avoid material and oil-water mixture uneven and caking, the automatic transport of blending material is realized to first stirring conveying unit 3, promote the mixing efficiency and the mixing yield of material.
And the material machine 2 comprises a first support arranged on the frame 1, a first material barrel 4 arranged on the first support, a first shaft body 5 rotatably arranged in the first material barrel 4, a first driving piece for driving the first shaft body 5 to rotate, a first helical blade 6 and a reverse helical blade 7 which are arranged outside the first shaft body 5 and positioned in the first material barrel 4, and a feeding hole 8 and a first discharging hole 9 which are arranged on the first material barrel 4.
First helical blade 6, reverse helical blade 7 arranges the setting along the length direction of first axis body 5, the screw direction of first helical blade 6 is opposite with reverse helical blade 7's screw direction, first helical blade 6 stirs and carries the material of 8 inputs of feed port, first discharge opening 9 is located between first helical blade 6 and the reverse helical blade, first helical blade 6, the material after reverse helical blade 7 cooperation stirs first helical blade 6 is carried to first stirring conveying unit 3 via first discharge opening 9, the material of avoiding first helical blade 6 to carry piles up in the position at reverse helical blade 7 place and the ejection of compact is bad.
The first helical blade 6 stirs and conveys the material input from the feed port 8, the first discharge port 9 is positioned between the mixing helical blade and the reverse helical blade 7, and the first helical blade 6 and the reverse helical blade 7 are matched to convey the material stirred by the first helical blade 6 to the first stirring and conveying unit 3 through the first discharge port 9; with the help of the cooperation of first helical blade 6, reverse helical blade 7 avoid piling up in first feed cylinder 4 with the material after material machine 2 stirring mixes for the material is discharged fast, promotes the mixed feed efficiency of material.
The material mixing machine 2 further comprises a stirring helical blade which is arranged on the first shaft body 5 and is positioned between the first helical blade 6 and the reverse helical blade 7, the first discharging hole 9 is positioned between the stirring helical blade and the reverse helical blade 7, the stirring helical blade comprises a plurality of stirring blades 11, and the stirring blades 11 extend and are arranged along the length direction of the first shaft body 5 and are arranged around the central axis of the first shaft body 5; be formed with the clearance of stepping down between two adjacent stirring vane 11, at 5 pivoted in-process of first axis body, take place to cut the stirring in the first feed cylinder 4 with the material of 11 conflicts of stirring vane, the material of not conflicting with stirring vane 11 each other, promote the mixed yield of material.
The spiral direction of first helical blade 6 is the same with stirring helical blade's spiral direction, and first helical blade 6 is carried the material of feed port 8 input to stirring helical blade and is stirred the mixture, and reverse helical blade 7 mixes blade cooperation with the stirring and is used for carrying the material after stirring helical blade stirs to first stirring unit via first discharge opening 9.
The feeding hole 8 and the first discharging hole 9 are respectively located at two ends of the first material cylinder 4, which are far away from each other, the feeding hole 8 and the first discharging hole 9 are arranged along the length direction of the first shaft body 5, the feeding hole 8 is located above the first material cylinder 4, and the first discharging hole 9 is located below the first material cylinder 4. First helical blade 6 mixes and moves along the length direction of first axis body 5 with stirring helical blade drive material in first feed cylinder 4, and with the help of the position overall arrangement of feed port 8, first discharge opening 9, the mixing of extension material in first feed cylinder 4 is long, promotes the mixed yield of material.
Still including setting up a plurality of stirring vertical bars 12 in the first axis body 5 outside, stirring vertical bar 12 is the linear strip, and stirring vertical bar 12 extends the setting along the radial direction of first axis body 5, and a plurality of stirring vertical bars 12 arrange and set up around the central axis of first axis body 5 along the length direction of first axis body 5. A plurality of stirring vertical bars 12 all are located the position of the first axis body 5 at stirring helical blade place, and first helical blade 6 carries the material to stirring vertical bar 12 and stirring helical blade's first feed cylinder 4 in later, with the help of the cooperation of a plurality of stirring vertical bars 12, promotes the stirring mixing efficiency and the stirring mixing yield to the material.
The discharging device further comprises a plurality of first discharging driving levers 13 arranged on the outer side of the first shaft body 5, the first discharging driving levers 13 surround the central axis of the first shaft body 5 to form an annular array, and the first discharging holes 9 are used for exposing the first discharging driving levers 13. With the help of the structural design of first ejection of compact driving lever 13, can drive first ejection of compact driving lever 13 and rotate when first axis body 5 rotates, with the help of the centrifugal force of first ejection of compact driving lever 13 effect on the material for the material is discharged via first discharge opening 9 fast, promotes the discharging efficiency of material.
First stirring conveying unit 3 sets up in frame 1 and is located the second feed cylinder with material machine 2 below including the installation, rotate the second shaft body 14 that sets up in the second feed cylinder, a second driving piece for driving second shaft body 14 pivoted, set up second helical blade 15 on the second shaft body 14 outside, the upper end intercommunication of the one end of first discharge opening 9 and second feed cylinder, the pitch of second helical blade 15 is greater than stirring helical blade's pitch, and the pitch of second helical blade 15 is greater than reverse helical blade 7's pitch, the lower extreme of the other end of second feed cylinder disposes second discharge opening 16, the aperture of second discharge opening 16 is greater than the aperture of first discharge opening 9.
By means of the structural layout of the second spiral blade 15 and the second discharge hole 16, the materials input into the first discharge hole 9 of the material mixing machine 2 can be rapidly moved and conveyed along the length direction of the second material cylinder, and can be rapidly discharged through the second discharge hole 16, the problem that the materials output from the material mixing machine 2 are stacked in the second material cylinder and are not conveyed well is avoided, and high-speed and continuous conveying of the materials is guaranteed.
Still including the installation setting second stirring conveying element 17 in frame 1, second stirring conveying element 17 has the third feed cylinder that sets up in frame 1 and be located first stirring conveying element 3 below, rotate the third axis body 18 that sets up in the third feed cylinder, a third driving piece for driving third axis body 18 pivoted, set up the third helical blade 19 on the third axis body 18 outside, the pitch of second helical blade 15 is greater than the pitch of third helical blade 19, second discharge opening 16 communicates with the upper end of the one end of third feed cylinder, the lower extreme of the other end of third feed cylinder disposes third discharge opening 21.
The material output by the second helical blade 15 is compressed and extruded by the third helical blade 19, so that the compactness of the material is ensured, the breakage of subsequent processing caused by over-loose of the material is avoided, and the material can be stably and continuously manufactured into required articles.
The second stirring and conveying unit 17 further includes a second discharging shifting lever 22 disposed on the outer side of the third shaft 18, and the third discharging hole 21 is used for exposing the second discharging shifting lever 22. The third shaft body 18 drives the second discharging driving lever 22 to rotate together when rotating, and the acting force exerted on the material when the second discharging driving lever 22 rotates enables the material to be discharged quickly through the third discharging hole 21, so that the conveying efficiency of the material is improved.
One end of the third charging barrel extends out of the rack 1, the third discharging hole 21 is located at one end of the third charging barrel extending out of the rack 1, and the material receiving box is used for receiving materials discharged from the third discharging hole 21.
The above description is only for the preferred embodiment of the present invention, and for those skilled in the art, there are variations on the detailed description and the application scope according to the idea of the present invention, and the content of the description should not be construed as a limitation to the present invention.

Claims (9)

1. A high-speed continuous material mixing device comprises a rack, a material mixing machine and a first stirring and conveying unit, wherein the material mixing machine and the first stirring and conveying unit are arranged on the rack; the method is characterized in that: the oil-water mixing device comprises a rack, and is characterized by further comprising an oil containing part and a water containing part which are arranged on the rack, a peristaltic pump unit, an emulsifier, a power pump and an atomizing spray head, wherein the peristaltic pump unit is used for pumping oil contained in the oil containing part and water contained in the water containing part into the emulsifier for emulsification treatment to form emulsion, the power pump is used for pumping the emulsion in the emulsifier out and forming atomized liquid through the atomizing spray head to be sprayed into a material mixing machine to be mixed with materials, and the material mixing machine is used for mixing and stirring the materials and the atomized liquid sprayed by the atomizing spray head; still including setting up in a plurality of first ejection of compact driving levers in the first axis body outside, a plurality of first ejection of compact driving levers are the annular array around the central axis of first axis body, and first discharge opening is used for revealing first ejection of compact driving lever.
2. The high speed, continuous compounding apparatus of claim 1, wherein: and the material machine is including setting up in the first support of frame, set up in the first feed cylinder of first support, rotate the first axis body that sets up on first feed cylinder, a driving piece for driving first axis body pivoted, set up in the first axis body outside and be located the first helical blade of first feed cylinder, reverse helical blade, set up in the feed port and the first discharge opening of first feed cylinder, first helical blade's spiral direction is opposite with reverse helical blade's spiral direction, first helical blade stirs and carries the material of feed port input, first discharge opening is located between first helical blade and the reverse helical blade, first helical blade, the material after reverse helical blade cooperation stirs first helical blade is carried to first stirring conveying element via first discharge opening.
3. The high speed, continuous compounding apparatus of claim 1, wherein: the material mixing machine also comprises a stirring helical blade which is arranged on the first shaft body and is positioned between the first helical blade and the reverse helical blade, the stirring helical blade comprises a plurality of stirring blades, and the stirring blades extend and are arranged along the length direction of the first shaft body and are arranged around the central axis of the first shaft body; first helical blade's spiral direction is the same with stirring helical blade's spiral direction, and first helical blade carries the material of feed port input to stirring helical blade and stirs the mixture, and reverse helical blade mixes blade cooperation with the stirring and is used for carrying the material after stirring helical blade to first stirring unit via first discharge opening.
4. The high speed, continuous compounding apparatus of claim 1, wherein: the feed hole and the first discharge hole are respectively located at two ends of the first material cylinder, the feed hole and the first discharge hole are arranged along the length direction of the first shaft body, the feed hole is located above the first material cylinder, and the first discharge hole is located below the first material cylinder.
5. The high speed, continuous compounding apparatus of claim 1, wherein: still including setting up in a plurality of stirring vertical bars in the first axis body outside, the setting is extended along the radial direction of first axis body to the stirring vertical bar, and a plurality of stirring vertical bars are arranged and are set up around the central axis of first axis body along the length direction of first axis body.
6. The high speed, continuous compounding apparatus of claim 1, wherein: first stirring conveying unit is including setting up in the frame and being located the second feed cylinder with the material machine below, rotating the second shaft body that sets up in the second feed cylinder, be used for driving second shaft body pivoted second driving piece, set up in the second helical blade of second shaft body outside, the upper end intercommunication of the one end of first discharge opening and second feed cylinder, the lower extreme of the other end of second feed cylinder disposes the second discharge opening.
7. The high speed, continuous compounding apparatus of claim 6, wherein: still including setting up in the second stirring conveying unit of frame, second stirring conveying unit has and sets up in the frame and is located the third feed cylinder of first stirring conveying unit below, rotate the third axis body that sets up in the third feed cylinder, be used for driving third axis body pivoted third driving piece, set up in the third helical blade in the third axis body outside, the pitch of second helical blade is greater than third helical blade's pitch, the upper end intercommunication of the one end of second discharge opening and third feed cylinder, the lower extreme of the other end of third feed cylinder disposes the third discharge opening.
8. The high speed, continuous compounding apparatus of claim 7, wherein: the second stirring and conveying unit further comprises a second discharging driving lever arranged on the outer side of the third shaft body, and the third discharging hole is used for exposing the second discharging driving lever.
9. The high speed, continuous compounding apparatus of claim 7, wherein: one end of the third charging barrel extends out of the rack, the third discharging hole is located at one end, extending out of the rack, of the third charging barrel, and the material receiving box is used for receiving materials discharged from the third discharging hole.
CN202120651522.3U 2021-03-30 2021-03-30 High-speed continuous material mixing equipment Active CN214915594U (en)

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Application Number Priority Date Filing Date Title
CN202120651522.3U CN214915594U (en) 2021-03-30 2021-03-30 High-speed continuous material mixing equipment

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Application Number Priority Date Filing Date Title
CN202120651522.3U CN214915594U (en) 2021-03-30 2021-03-30 High-speed continuous material mixing equipment

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Publication Number Publication Date
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CN202120651522.3U Active CN214915594U (en) 2021-03-30 2021-03-30 High-speed continuous material mixing equipment

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114887512A (en) * 2022-04-29 2022-08-12 天华化工机械及自动化研究设计院有限公司 High-efficient mixing conveyer of powder granule

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114887512A (en) * 2022-04-29 2022-08-12 天华化工机械及自动化研究设计院有限公司 High-efficient mixing conveyer of powder granule

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