Polymorphic mixing core

By designing coarse and fine mixing units in a multi-state mixing core, the liquid is progressively divided, solving the problem of insignificant mixing effect in existing dynamic mixers and significantly improving the liquid mixing effect.

CN223747357UActive Publication Date: 2026-01-02GUANGZHOU HONGXIN INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520072176.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2026-01-02
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

Existing dynamic mixers have poor mixing effects and complex structures, which can easily cause damage to the machine.

Method used

Design a multi-state mixing core, comprising a coarse mixing unit and a fine mixing unit. The coarse mixing unit consists of several vertically connected rotor blades, and the fine mixing unit consists of several vertically connected slitting units. The liquid is progressively divided through staggered slitting blocks and liquid channels.

Benefits of technology

By combining coarse mixing units and fine mixing units, the liquid is gradually divided into increasingly smaller units, significantly improving the liquid mixing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dynamic mixer accessories, and particularly discloses a multi-state mixing core which is provided with a coarse mixing unit and a fine mixing unit, the coarse mixing unit comprises a plurality of rotor wings which are sequentially connected up and down, and the fine mixing unit comprises a plurality of slitting units which are sequentially connected up and down. Liquid is guided into the mixer and sequentially flows downwards from the upper end of the coarse mixing unit, the coarse mixing unit is used for sequentially cutting the liquid, the liquid is sequentially divided into a plurality of small units, and then the fine mixing unit is used for cutting the liquid units cut by the coarse mixing unit. By arranging the coarse mixing unit and the fine mixing unit, the liquid unit divided by the coarse mixing unit is divided into finer liquid units again, so that the liquid is convenient to mix, and the coarse mixing unit and the fine mixing unit are arranged to sequentially divide the liquid, so that the liquid can be sequentially divided into the finer liquid units, and the mixing of different liquids is more convenient. Therefore, the liquid mixing effect is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to dynamic mixer accessory technical field, especially in a kind of multi-state mixing core. BACKGROUND

[0002] Current in chemical industry, mixer is very common key component, mixer is divided into dynamic mixer and static mixer, static mixer has fast response, can work continuously, but static mixer has the malady of bad mixing effect, so in the equipment that the mixing effect is required higher, dynamic mixer is mostly used, for dynamic mixer, some mixing cylinders can be guaranteed by substantial shaking The mixing of multi-component liquid material, in this way, the machine structure is complex, secondly, it will cause the impact on the whole machine, so most dynamic mixers adopt the effect of dynamic mixing by rotating mixing core so that the stirring blade on mixing core is realized;

[0003] But the mixing core of the present is all through setting multiple identical mixing units to carry out the division mixing of liquid, so the liquid mixing effect is not obvious.

[0004] In view of the defects existing in the prior art, it is urgent to develop a multi-state mixing core capable of quickly improving liquid mixing effect.

[0005] The technical problem to be solved by the present application is to design a multi-state mixing core capable of quickly improving liquid mixing effect. UTILITY MODEL CONTENT

[0006] In order to overcome the deficiencies of the prior art, the purpose of the utility model is to provide a multi-state mixing core capable of quickly improving liquid mixing effect.

[0007] The technical scheme adopted by the utility model is: a multi-state mixing core, comprising a coarse mixing unit and a fine mixing unit, the fine mixing unit comprises a plurality of rotary blades connected in sequence for cutting liquid, the coarse mixing unit comprises a plurality of cutting units connected in sequence for cutting liquid, and the cutting unit comprises cutting blocks arranged in cross.

[0008] In some embodiments, the rotary blade comprises an upper cutting part and a lower connecting part, and the lower connecting part and the upper cutting part between adjacent rotary blades are connected.

[0009] In some embodiments, the rotary blade is provided with a liquid flow channel, the liquid flow channel is S-shaped, and the lower end of the liquid flow channel corresponds to the upper cutting part of the adjacent rotary blade.

[0010] In some embodiments, the lower connecting part and the upper cutting part between adjacent rotary blades are connected in staggered arrangement.

[0011] In some embodiments, the lowermost rotor blade of the coarse mixing unit is connected to the uppermost slitting unit of the fine mixing unit.

[0012] In some embodiments, the connecting strip is provided with a slitting strip and an insertion block connected thereto respectively, and the slitting strip is located at both ends of the connecting strip respectively.

[0013] In some embodiments, the insertion block is located at both sides of the connecting strip respectively, each slitting block comprises two insertion blocks, and the two insertion blocks are arranged in a splayed manner.

[0014] In some embodiments, each slitting unit comprises two slitting blocks, and the insertion blocks on the two slitting blocks are locked to each other.

[0015] The utility model discloses have the following technical effects: through being equipped with coarse mixing unit and fine mixing unit, coarse mixing unit includes a plurality of rotor blades that connect in turn, and fine mixing unit includes a plurality of slitting units that connect in turn, when needing to mix liquid, liquid is introduced into the mixer, and the liquid flows down in turn from the upper end of the coarse mixing unit, the coarse mixing unit carries out slitting to the liquid gradually, makes liquid in turn divide into a plurality of small units, and then fine mixing unit carries out division to the liquid unit that the coarse mixing unit has slit again, makes the liquid unit that the coarse mixing unit has divided again be divided into more small liquid unit, thereby facilitating the mixing between liquid, so through being equipped with the above-mentioned coarse mixing unit and fine mixing unit and dividing liquid in turn, liquid can be divided into small liquid unit in turn, thereby facilitating the mixing between different liquids more, and further greatly improve liquid mixing effect. BRIEF DESCRIPTION OF DRAWINGS

[0016] Fig. 1 It is a structure schematic view of the multi-state hybrid core of the utility model;

[0017] Fig. 2 It is a structure schematic view of the coarse mixing unit of the multi-state hybrid core of the utility model;

[0018] Fig. 3 It is a structure schematic view of the slitting unit in the fine mixing unit of the multi-state hybrid core of the utility model.

[0019] Correspondence between the reference signs and names in the drawing is as follows: 1, coarse mixing unit;2, fine mixing unit;10, rotor blade;20, slitting unit;21, slitting block;100, upper slitting part;101, lower connecting part;102, liquid flow channel;210, connecting strip;211, slitting strip;212, insertion block. DETAILED DESCRIPTION

[0020] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0021] Please refer to Figs. 1-3 The present application provides a technical scheme: a multi-state mixing core, comprising a coarse mixing unit 1 and a fine mixing unit 2, the coarse mixing unit 1 comprises a plurality of upper and lower connected rotor blades 10, wherein the rotor blade 10 comprises an upper cutting part 100 and a lower connecting part 101, the upper and lower adjacent rotor blades 10 are connected through the lower connecting part 101 and the upper cutting part 100, thereby realizing the connection between the upper and lower adjacent rotor blades 10, since the multi-state mixing core is used in the mixer, the rotor blade 10 is provided with a liquid flow channel 102, the liquid flow channel 102 is arranged in S type, since the lower connecting part 101 and the upper cutting part 100 between the upper and lower adjacent rotor blades 10 are staggered and connected, it is equivalent to that the lower connecting part 101 and the upper cutting part 100 between the adjacent rotor blades 10 intersect but are not coincident, so the lower end outlet of the liquid flow channel 102 is arranged corresponding to the upper cutting part 100 of the adjacent rotor blade 10 below, since the lower connecting part 101 and the upper cutting part 100 between each upper and lower adjacent rotor blade 10 are staggered and connected, when the liquid flows out from the liquid flow channel 102 on the rotor blade 10, the liquid can be just divided by the upper cutting part 100 on the next rotor blade 10, thereby forming a relatively small liquid unit, and the divided liquid unit flows into the liquid flow channel 102 on the next rotor blade 10 again, thereby continuing to flow down, and then continuing to be divided by the upper cutting part 100 on the next rotor blade 10, thereby continuing to divide the divided liquid unit, which is equivalent to dividing the liquid from 1 to 2, 2 to 4, …, thereby realizing gradually dividing the liquid into smaller and smaller liquid units, facilitating the mixing of different liquids.

[0022] The fine mixing unit 2 comprises a plurality of slitting units 20 connected in sequence from top to bottom, wherein each slitting unit 20 comprises two slitting blocks 21 arranged in cross with each other, the rotary blade 10 at the lower end of the coarse mixing unit 1 is connected with the slitting unit 20 at the upper end of the fine mixing unit 2, so as to realize the connection and fixation between the coarse mixing unit 1 and the fine mixing unit 2, wherein the slitting block 21 comprises a connecting strip 210, the connecting strip 210 is provided with a slitting strip 211 and an insertion block 212 connected thereto respectively, wherein the slitting strip 211 is located at two ends of the connecting strip 210 respectively, but the slitting strips 211 on the same connecting strip 210 are not located at the same side, and the insertion block 212 is located at two sides of the connecting strip 210 respectively, each slitting block 21 comprises two insertion blocks 212, the two insertion blocks 212 are arranged in an eight-character shape on the connecting strip 210, and the insertion blocks 212 on the two slitting blocks 21 in each slitting unit 20 are limited and locked with each other, so as to keep the stability between the two slitting blocks 21, when the liquid is divided into a plurality of small liquid units in the coarse mixing unit 1 and then flows into the fine mixing unit 2, the slitting strip 211 and the insertion block 212 can further divide the divided liquid units, so as to form smaller liquid units, and the mixing between different liquids is facilitated.

[0023] The working principle of the utility model is: through being equipped with the coarse mixing unit 1 and the fine mixing unit 2, the coarse mixing unit 1 comprises a plurality of rotary blades 10 connected in sequence from top to bottom, the fine mixing unit 2 comprises a plurality of slitting units 20 connected in sequence from top to bottom, when the liquid needs to be mixed, the liquid is introduced into the mixer, the liquid flows from the upper end of the coarse mixing unit 1 downwards in sequence, the coarse mixing unit 1 divides the liquid in sequence, so that the liquid is divided into a plurality of small units, then the fine mixing unit 2 further divides the liquid units divided by the coarse mixing unit 1, so that the liquid units divided by the coarse mixing unit 1 are further divided into smaller liquid units, so as to facilitate the mixing between liquids, through being equipped with the above-mentioned coarse mixing unit 1 and fine mixing unit 2, the liquid is divided in sequence, so that the liquid can be divided into small liquid units in sequence, so as to facilitate the mixing between different liquids, and the liquid mixing effect is improved greatly.

[0024] Finally, it should be noted that the above is only the preferred examples of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application are described in detail, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the present application.

Claims

1. A poly-state hybrid core, characterized by, The coarse mixing unit comprises several rotary blades connected in sequence for cutting liquid, and the fine mixing unit comprises several cutting units connected in sequence for cutting liquid, and the cutting unit comprises cutting blocks arranged in cross.

2. The poly-state hybrid core of claim 1, wherein, The rotary blade comprises an upper cutting part and a lower connecting part, and the lower connecting part and the upper cutting part are connected between adjacent rotary blades.

3. The poly-state hybrid core of claim 2, wherein, The rotary blade is provided with a liquid flow channel, and the liquid flow channel is in an S shape, and the lower end of the liquid flow channel corresponds to the upper cutting part of the adjacent rotary blade.

4. The poly-state hybrid core of claim 2, wherein, The lower connecting part and the upper cutting part are connected in cross between adjacent rotary blades.

5. The poly-state hybrid core of claim 1, wherein, The lowermost rotary blade in the coarse mixing unit is connected with the uppermost cutting unit in the fine mixing unit.

6. The poly-state hybrid core of claim 1, wherein, The cutting block comprises a connecting strip, the connecting strip is provided with a cutting strip and an insertion block connected thereto respectively, and the cutting strip is located at both ends of the connecting strip and not on the same side.

7. The poly-state hybrid core of claim 6, wherein, The insertion block is located on both sides of the connecting strip, each cutting block comprises two insertion blocks, and the two insertion blocks are arranged in an eight-shaped manner.

8. The multi-state hybrid core of claim 6, wherein, Each cutting unit comprises two cutting blocks, and the insertion blocks on the two cutting blocks are locked in position with each other.