CN209423498U - A kind of the mixture of airstream and strength equipment - Google Patents

A kind of the mixture of airstream and strength equipment Download PDF

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Publication number
CN209423498U
CN209423498U CN201822254542.8U CN201822254542U CN209423498U CN 209423498 U CN209423498 U CN 209423498U CN 201822254542 U CN201822254542 U CN 201822254542U CN 209423498 U CN209423498 U CN 209423498U
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CN
China
Prior art keywords
air inlet
mixer core
mixing cone
cone
abutted flange
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Application number
CN201822254542.8U
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Chinese (zh)
Inventor
王纯立
张拓
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Kunshan Bo Tai Da Da Packing Equipment Co Ltd
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Kunshan Bo Tai Da Da Packing Equipment Co Ltd
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Abstract

The utility model discloses a kind of the mixture of airstream and strength equipment, including mixing cone and the mixer core for being located at mixing cone lower port, discharge port component is connected with below mixer core, the upper port for mixing cone is connected by upper abutted flange with container, and upper abutted flange is equipped with compressed air inlet port;Mixer core is connected by lower abutted flange with mixing cone, lower abutted flange is sheathed on the outside of mixer core, the side of lower abutted flange is equipped with cavity air inlet, and one end of cavity air inlet is connected with the second air inlet pipe, and the other end is connected by mixer core with the inner cavity for mixing cone;The lower part of discharge port component is equipped with a discharge nozzle, is connected with blowdown pipe on discharge nozzle.In use, be not provided with the mixing plants such as any blade and screw rod in whole device, the material mixing in entire mixing cone is adjusted by the air inlet of different location completely, mixes more thorough, sufficiently, while being not in that material is hardened and the phenomenon that bond.

Description

A kind of the mixture of airstream and strength equipment
Technical field
The utility model relates generally to the technical field of material mixing, in particular to a kind of the mixture of airstream and strength equipment especially relates to And a kind of pair of various materials are blown using compressed air come mixed equipment.
Background technique
Currently, the material mixing equipment in market, general that the setting Stirrings such as blade or ribbon in container is used to set The standby mixing to carry out material, mixing effect is undesirable, and it is insufficient often to generate stirring, at the same material be easy in blade or It bonds on person's ribbon, makes troubles to the different material of following process, it is also necessary to sufficiently be cleaned, while bonding can also Causing the component for putting into material and the combination for generating material, there is a certain error, cannot achieve and is accurately stirred.
Therefore, it is badly in need of wanting one kind that can be thoroughly mixed the mixing apparatus of material in the market, and prevents materials from bonding.
Summary of the invention
The purpose of this utility model is to provide a kind of improved the mixture of airstream and strength equipment, it can overcome two kinds in the prior art The above material undercompounding, material are easy the deficiency of bonding.
The purpose of this utility model can be realized by following technical proposals: a kind of the mixture of airstream and strength equipment, feature exist In, including mixing cone and the mixer core for being located at mixing cone lower port, it is connected with discharge port component below mixer core, The upper port of mixing cone is connected by upper abutted flange with container, and upper abutted flange is equipped with compressed air inlet port, air inlet One end be connected with the first air inlet pipe, the other end of air inlet is connected with mixing cone with the joint face of container;Mixer core is logical It crosses down abutted flange to be connected with mixing cone, lower abutted flange is sheathed on the outside of mixer core, and the side of lower abutted flange is set Have cavity air inlet, one end of cavity air inlet is connected with the second air inlet pipe, the other end by mixer core with mix cone Inner cavity is connected;The lower part of discharge port component is equipped with a discharge nozzle, is connected with blowdown pipe on discharge nozzle.
Preferably, upper abutted flange is equipped with a circle seal groove, and seal groove lower part is connected with a circular air drain, air drain bottom Portion is connected with compressed air inlet port, flows to annular guiding compressed air along air drain, the side of air drain is equipped with several A gas nozzle, gas nozzle is connected with the inner cavity of mixing cone, to form ring-type clockwise or counter-clockwise in composite cone body Cyclone;The middle part of lower acting flange is equipped with the core cavity to place mixer core, core cavity and the inner cavity phase for mixing cone Connection.
Further, in an angle, the range of angle is 35--55 degree to the inner side edge shape of gas nozzle and air drain;Mix cone Upper end is greater than lower end, and the diameter of upper end is 1.3--2.5 times of lower end diameter.
Further, the cylindrical structure of mixer core, lateral wall are equipped with the c-type card slot of a circle indent, and mixer core is logical It crosses c-type card slot to be connected with the inner sidewall of lower abutted flange, c-type card slot is connected with cavity air inlet, and mixer core is equipped with The stomata of several oblique cuttings, stomata are connected with c-type card slot, to generate rising cyclone, so that rising cyclone and cyclic annular cyclone It crosses to form longitudinal cyclone at upper abutted flange.
Further, the side wall of mixer core is equipped with 4-12 stomata, the central axes formation 25- of stomata and mixer core 40 degree of angle, the quantity of gas nozzle are 2-4 times of stomata quantity.
Compared with the existing technology, the technical solution of the utility model further includes many in addition to the improvement of overall technical architecture Improvement in terms of details, specifically, having the advantages that
1, improvement project described in the utility model, mixing cone lower port are equipped with mixer core, the lower section of mixer core It is connected with discharge port component, the upper port for mixing cone is connected by upper abutted flange with container, and mixer core passes through lower docking Flange is connected with mixing cone, and the mixing plants such as any blade and screw rod are not provided in whole device, pass through different location completely Air inlet adjust the material mixing in entire mixing cone, mix more thorough, abundant, while being not in that material is hardened The phenomenon that with bonding;
2, in the technical solution of the utility model, upper abutted flange is equipped with a circle seal groove, and seal groove lower part is connected with The side of one circular air drain, air drain is equipped with several gas nozzles, to be formed clockwise or counter-clockwise in composite cone body Cyclic annular cyclone, clutch core be equipped with several oblique cuttings stomata, stomata is connected with c-type card slot, to generate rising cyclone, It crosses to form longitudinal cyclone at upper abutted flange with cyclic annular cyclone so that rising cyclone, it is right due to generating three kinds of cyclones simultaneously The high speed that material stir up and down is vigorously mixed, and mixing efficiency is high, and effect is good;
3, the lower part of the discharge port component of the utility model is equipped with a discharge nozzle, is connected with blowdown pipe on discharge nozzle, so that It discharges more unimpeded, improves the efficiency of conveying;
4, the utility model topology layout is reasonable, and using effect is good, the convenient high speed of hybrid mode, while device structure letter It is single, easy to process and maintenance.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model.
Fig. 2 is the another structural schematic diagram of the utility model.
Fig. 3 is the structural schematic diagram that the utility model mixes cone.
Fig. 4 is the another structural schematic diagram that the utility model mixes cone.
Fig. 5 is the top view of Fig. 3.
Fig. 6 is the portion the A enlarged diagram in Fig. 3.
Fig. 7 is the structural schematic diagram of the utility model mixer core.
Fig. 8 is the top view of Fig. 7.
Fig. 9 is the another structural schematic diagram of the utility model mixer core.
Figure 10 is the structural schematic diagram of the utility model discharge port component.
Figure 11 is the another structural schematic diagram of the utility model discharge port component.
Figure 12 is the cyclone situation schematic diagram of utility model works state.
It is marked in figure as follows:
1 mixing cone, abutted flange, 3 lower abutted flanges, 4 mixer cores, 5 discharge port components, 6 first air inlet pipe, 7 on 2 Second air inlet pipe, 8 blowdown pipes, 9 containers;
21 seal grooves, 22 air drains, 23 gas nozzles, 24 compressed air inlet ports;
31 cavity air inlets, 32 core cavitys;
41 stomatas, 42 c-type card slots;
51 discharge nozzles, 52 valves;
61 first air valves;
71 second air valves.
Specific embodiment
Specific embodiment of the present utility model is described in detail below in conjunction with attached drawing, becomes apparent from those skilled in the art How ground understanding practices the utility model.Although describing the utility model in conjunction with its preferred embodiment, these Embodiment only illustrates, rather than limits the scope of the utility model.
As shown in Figure 1, a kind of the mixture of airstream and strength equipment, difference with the prior art are, including mix cone 1 and be located at The mixer core 4 of cone lower port is mixed, is connected with discharge port component 5 below mixer core, the upper port for mixing cone is logical It crosses abutted flange 2 to be connected with container, upper abutted flange is equipped with compressed air inlet port, and one end of compressed air inlet port connects There is the first air inlet pipe 6, the other end of compressed air inlet port is connected with mixing cone with the joint face of container;Mixer core passes through Lower abutted flange 3 is connected with mixing cone, and lower abutted flange is sheathed on the outside of mixer core, and the side of lower abutted flange is equipped with Cavity air inlet, one end of cavity air inlet are connected with the second air inlet pipe 7, the other end by mixer core with mix the interior of cone Chamber is connected;The lower part of discharge port component is equipped with a discharge nozzle, is connected with blowdown pipe 8 on discharge nozzle.
Upper abutted flange is equipped with a circle seal groove 21, and seal groove lower part is connected with a circular air drain 22, air drain bottom It is connected with compressed air inlet port 24, is flowed to annular guiding compressed air along air drain, the side of air drain is equipped with several A gas nozzle 23, gas nozzle is connected with the inner cavity of mixing cone, to form ring clockwise or counter-clockwise in composite cone body Shape cyclone;The middle part of lower acting flange is equipped with the core cavity to place mixer core, core cavity and the inner cavity for mixing cone It is connected.
Further, in an angle, the range of angle is 35--55 degree to the inner side edge shape of gas nozzle and air drain;Mix cone Upper end is greater than lower end, and the diameter of upper end is 1.3--2.5 times of lower end diameter.
The side wall of mixer core is equipped with 4-12 stomata, the folder of the central axes formation 25-40 degree of stomata and mixer core Angle, the quantity of gas nozzle are 2-4 times of stomata quantity.
In use, the upper and lower side of mixing cone is respectively equipped with the first air inlet pipe and the second air inlet pipe, pass through upper abutted flange Interior air drain, gas nozzle structure form cyclic annular cyclone in composite cone body to be made further through c-type card slot, the air hole structure in mixer core The second air inlet pipe enter compressed air is formed in composite cone body rise cyclone, when cyclic annular cyclone with rising cyclone meet when, Violent high-speed stirred is carried out to material, while forming longitudinal cyclone again, under the comprehensive function of three kinds of cyclones, to mixing cone Three-dimensional stirring mode of the interior material shape at solid, good mixing effect, while efficiently, the bonding that will not generate any material is existing As.
In one embodiment, upper abutted flange is equipped with a circle seal groove, the seal groove above abutted flange and container phase Gasket is placed when connecing, and plays the role of sealing.Seal groove lower part is connected with a circular air drain, and air drain bottom and compression are empty Gas air inlet is connected, and the depth of air drain is 3-7mm, is uniformly flowed to annular guiding compressed air along air drain, The side of air drain is equipped with several gas nozzles, and the quantity of gas nozzle is 12, and gas nozzle is connected with the inner cavity of mixing cone, to mixed Close the cyclic annular cyclone formed in cone clockwise or counter-clockwise;The middle part of lower acting flange is equipped with the core to place mixer core Body cavity, core cavity are connected with the inner cavity of mixing cone.
Further, in an angle, the range of angle is 43 degree to the inner side edge shape of gas nozzle and air drain;Mix the upper end of cone Portion is greater than lower end, and the diameter of upper end is 2 times of lower end diameter.The cylindrical structure of mixer core, lateral wall are equipped with The c-type card slot of one circle indent, the bottom of c-type card slot is in arc-shaped or triangular shape here, and the bottom of triangular shape is conducive to compress Effectively pouring in mixer core for air, is further poured in stomata, is formed effectively upper rotational gas flow, mixer core and is passed through c-type Card slot is connected with the inner sidewall of lower abutted flange, and c-type card slot is connected with cavity air inlet, and mixer core is equipped with several The stomata of oblique cutting, stomata are connected with c-type card slot, to generate rising cyclone, so that rising cyclone with cyclic annular cyclone upper right Cross to form longitudinal cyclone at acting flange, three kinds of cyclones here are respectively acting on mixing cone upper and lower part and side, in order into One step increases the effect of cyclone mixing, and the cyclic annular cyclone that the rising cyclone and gas nozzle that stomata generates generate is rectangular on the contrary, making object Material mixing is more thorough.
In another embodiment, upper abutted flange is equipped with a circle seal groove, and seal groove lower part is connected with an annular shape Air drain, air drain bottom are connected with compressed air inlet port, flow to annular guiding compressed air along air drain, the side of air drain Portion is equipped with several gas nozzles, and the quantity of gas nozzle is 18, and gas nozzle is connected with the inner cavity of mixing cone, in composite cone body Form cyclic annular cyclone clockwise or counter-clockwise;The middle part of lower acting flange is equipped with the core cavity to place mixer core, Core cavity is connected with the inner cavity of mixing cone.In an angle, the range of angle is 50 to the inner side edge shape of gas nozzle and air drain Degree;The upper end for mixing cone is greater than lower end, and the diameter of upper end is 1.8 times of lower end diameter.
Further, the side wall of mixer core is equipped with 6 stomatas, the folder of the central axes formation 35 of stomata and mixer core Angle, the quantity of gas nozzle are 3 times of stomata quantity.Specifically, wherein on the inside of C-shaped channel upper shoulder have it is several counterclockwise or clockwise Obliquely stomata (with mix cone " gas nozzle it is oppositely oriented), when for ventilating formed one counterclockwise or clockwise it is oblique On cyclone (because being influenced by earth geostrophic deviating force, the equipment in the Northern Hemisphere has inertia addition using cyclone counterclockwise;South half The equipment of ball then needs to process stomata clockwise);C-channel is then the annular air channel passed through by stomata, is installed under " mixing cone " After in the core cavity at end, an annular gas tank for stomata gas supply can be formed.
It is connected between discharge port component is of one mind with mixing by a valve, discharge port component includes taper siphunculus and is located at cone Discharge nozzle below shape siphunculus, discharge nozzle are bend pipe, and bending angle is 85-100 degree, preferably 100 degree, are convenient for discharging, blowdown pipe It is connected with discharge nozzle, the angle of blowdown pipe and horizontal plane is 3-8 degree, is conducive to that material is further pushed to discharge.
First air inlet pipe is equipped with the first air valve, and the first air inlet pipe is a bend pipe, and the angle of bending is 95 degree, bend pipe it is upper Port is connected with compressed air inlet port, to provide upward compressed air to compressed air inlet port;In second air inlet pipe Equipped with the second air valve, the second air inlet pipe is a straight tube, to provide the compressed air of horizontal direction to mixer core.First air inlet Pipe is connect with the upper flange air drain for mixing cone, is opened, is closed to air valve cycle alternation when use, providing pulsed pressure for gas nozzle Contracting air;Second air inlet pipe is connect with the lower flange cavity of mixing cone, and air valve is persistently opened when use, is provided continuously for stomata Compressed air;Discharging elbow outlet it is reversed be equipped with blowdown pipe, open, close to air valve cycle alternation when use, being bend pipe Outlet provides impulsive compressional air.
Specifically, which is designed to bearing structure, is installed on tankage bottom.It, will before use The discharge port valve of bottom is closed, and several powders or particle to be mixed are poured into container.
When mixer works, the second air inlet pipe inputs continued compression air, passes through several oblique gas above mixer core Hole forms a cyclone (Northern Hemisphere equipment) continued upward counterclockwise in mixer bottom, powder is driven to be held counterclockwise Continuous rotation upwards;1 input pulse formula compressed air of air inlet pipe, through several circumferential gas nozzles of cone top, at the top of mixer A clockwise circumferential pulse cyclone is formed, powder is driven to carry out clockwise discontinuously circumferential rotation;In two kinds of different rotation directions The intersection of cyclone also can generate the interrupted cyclone an of longitudinal direction, by the powder of lower layer in container near each circumferential gas nozzle It constantly swaps and stir-fries with the powder on upper layer, and achieve the effect that be vigorously mixed that (its working effect, which is similar to, has added circulation The roller washing machine of pump).
After mixing is completed, the first, second air inlet pipe is turned off, and discharge port valve is opened, and is sent by close phase, vacuum is inhaled The modes such as material, by the material mixed by discharge port output, blowdown pipe input pulse formula compressed air at this time, to discharge port direction Auxiliary is blown, and is accelerated discharging speed and is prevented discharging blockage.
It should be pointed out that can also have a variety of transformation and the implementation of remodeling for the utility model through absolutely proving Scheme, it is not limited to the specific embodiment of above embodiment.Above-described embodiment as just the utility model explanation, and It is not limitations of the present invention.In short, the protection scope of the utility model should include those for ordinary skill It obviously converts or substitutes and retrofit for personnel, and be determined by the appended claims.

Claims (5)

1. a kind of the mixture of airstream and strength equipment, which is characterized in that including mixing cone and being located at the mixer core of mixing cone lower port, Discharge port component is connected with below mixer core, the upper port for mixing cone is connected by upper abutted flange with container, upper right Acting flange is equipped with compressed air inlet port, and one end of compressed air inlet port is connected with the first air inlet pipe, compressed air inlet port The other end be connected with mixing cone with the joint face of container;Mixer core is connected by lower abutted flange with mixing cone, under Abutted flange is sheathed on the outside of mixer core, and the side of lower abutted flange is equipped with cavity air inlet, one end of cavity air inlet It is connected with the second air inlet pipe, the other end is connected by mixer core with the inner cavity for mixing cone;The lower part of discharge port component is equipped with One discharge nozzle is connected with blowdown pipe on discharge nozzle.
2. a kind of the mixture of airstream and strength equipment according to claim 1, which is characterized in that upper abutted flange is equipped with a circle sealing Slot, seal groove lower part are connected with a circular air drain, and air drain bottom is connected with compressed air inlet port, are oriented to annular Compressed air is flowed along air drain, and the side of air drain is equipped with several gas nozzles, and gas nozzle is connected with the inner cavity of mixing cone, to Cyclic annular cyclone clockwise or counter-clockwise is formed in composite cone body;The middle part of lower acting flange is equipped with to place mixer core Core cavity, core cavity with mixing cone inner cavity be connected.
3. a kind of the mixture of airstream and strength equipment according to claim 2, which is characterized in that the inner side edge of gas nozzle and air drain forms one A angle, the range of angle are 35--55 degree;The upper end for mixing cone is greater than lower end, and the diameter of upper end is that lower end is straight 1.3--2.5 times of diameter.
4. a kind of the mixture of airstream and strength equipment according to claim 2, which is characterized in that the cylindrical structure of mixer core, Lateral wall is equipped with the c-type card slot of a circle indent, and mixer core is connected by c-type card slot with the inner sidewall of lower abutted flange, c-type Card slot is connected with cavity air inlet, and mixer core is equipped with the stomata of several oblique cuttings, and stomata is connected with c-type card slot, uses Rise cyclone to generate, crosses to form longitudinal cyclone at upper abutted flange with cyclic annular cyclone so that rising cyclone.
5. a kind of the mixture of airstream and strength equipment according to claim 4, which is characterized in that the side wall of mixer core is equipped with 4-12 The central axes of a stomata, stomata and mixer core form the angle of 25-40 degree, and the quantity of gas nozzle is 2-4 times of stomata quantity.
CN201822254542.8U 2018-12-29 2018-12-29 A kind of the mixture of airstream and strength equipment Active CN209423498U (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111943158A (en) * 2020-08-24 2020-11-17 朱泽波 Mechanical process flow for extracting ammonium magnesium phosphate from brine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111943158A (en) * 2020-08-24 2020-11-17 朱泽波 Mechanical process flow for extracting ammonium magnesium phosphate from brine

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Inventor after: Wang Chunli

Inventor after: Zhang Tuo

Inventor after: Wang Xirui

Inventor before: Wang Chunli

Inventor before: Zhang Tuo