Cooling machine capable of increasing flow of circulating cooling water

By setting up an inner chamber and supporting partitions inside the cooler, and using a rapping mechanism to prevent material adhesion, the problem of the cooling water being heated and affecting the cooling effect is solved, thus achieving uniform cooling and efficient temperature reduction of the material.

CN223755658UActive Publication Date: 2026-01-02QINGDAO ZIDENG ELECTRICAL EQUIP
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Patent Information

Application Number
CN202520237106.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2026-01-02
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

The existing cooler has a fixed cooling area. When the cooling water is heated, it affects the cooling effect of other parts, resulting in insufficient cooling of the material.

Method used

A circulating cooling water flow rate booster is designed. By setting an inner chamber and supporting baffles in the inner cylinder, the contact area between the cooling water and the material is increased. A rapping mechanism is set in the inner chamber to use high-frequency vibration to prevent material adhesion and ensure uniform distribution of cooling water.

Benefits of technology

It improves the cooling effect, ensures that the material is cooled evenly in all areas, avoids the reduction of heat exchange area caused by material adhesion, and achieves efficient cooling.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223755658U_ABST
    Figure CN223755658U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of cooling machines, in particular to a circulating cooling water flow increasing cooling machine which comprises a cooling machine body, an outer barrel and an inner barrel which are sleeved with each other are arranged on the cooling machine body, a cooling interlayer is formed between the outer barrel and the inner barrel, an inner bin is fixed in the inner barrel, and an outer bin is fixed in the inner bin. The interior of the inner bin body is communicated with the cooling interlayer, supporting partition plates are evenly arranged in the inner bin body at intervals, a cooling water outlet pipe and a cooling water inlet pipe which are matched with each other in a sleeved mode are arranged in the inner bin body, and drainage branch pipes are evenly arranged on the side face of the cooling water inlet pipe at intervals. According to the circulating cooling water flow increasing cooling machine, the bin body is arranged in the cylinder body, the contact area of cooling water and materials can be increased, the supporting partition plates are arranged in the bin body, the structural strength of the inner bin body is improved, the drainage branch pipes are arranged between the supporting partition plates, the cooling water can be rapidly and evenly distributed in the bin body, and the material cooling effect is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cooling machine technical field, concretely is a circulating cooling water flow promotes cooling machine. BACKGROUND

[0002] The reaction in the reaction kettle is mostly exothermic reaction, can release heat, usually carries out heat exchange cooling treatment through the cooling machine, avoids the additional heat and leads to the reaction temperature rise, prevents the change reaction rate or yield, thereby obtains the expected product quality and output. The cooling machine can solve the current reaction kettle capacity shortage and the discharge temperature problem of being too high.

[0003] The cooling area for heat exchange in the existing cooling machine is certain, therefore if the cooling water is heated after entering, the cooling effect of other parts is affected, leading to insufficient cooling of the material. UTILITY MODEL CONTENTS

[0004] The utility model discloses a circulating cooling water flow promotes cooling machine to solve the cooling area for heat exchange in the cooling machine in the current market is certain, therefore if the cooling water is heated after entering, the cooling effect of other parts is affected, leading to insufficient cooling of the material problem of the above background art.

[0005] To realize above-mentioned purpose, the utility model provides following technical scheme: a circulating cooling water flow promotes cooling machine, including cooling machine main part, be equipped with the outer cylinder and the inner cylinder that mutually cover on cooling machine main part, and the cooling interval is formed between outer cylinder and inner cylinder, fixed with the inner storehouse body in the inner cylinder, and the inner storehouse body inside is linked together with cooling interval, and the inner storehouse body is also evenly spaced and is equipped with the support baffle, be equipped with the cooling water outlet pipe and the cooling water inlet pipe that mutually cover cooperation in the inner storehouse body, and the cooling water inlet pipe side evenly spaced and is equipped with the drainage branch pipe.

[0006] Preferably, the inner wall of the inner cylinder is also welded and fixed with a spiral fin, and the part where the spiral fin is connected with the inner storehouse body is also welded and fixed.

[0007] Preferably, the cooling interval and the inner storehouse body are respectively installed with a rapping mechanism corresponding in position, and at least three channels are provided on the side surface of the inner storehouse body and communicated with the cooling interval.

[0008] Preferably, the cooling water inlet pipe is inserted into the cooling water outlet pipe, and the outer side ends of the cooling water outlet pipe and the cooling water inlet pipe are respectively provided with a cooling water outlet and a cooling water inlet, and the cooling water outlet and the cooling water inlet are close to the discharge end of the cooling machine main body.

[0009] Preferably, the drainage branch pipe is respectively directed to the communication part of the inner storehouse body and the cooling interval, and the drainage branch pipe is penetratingly matched with the cooling water outlet pipe.

[0010] Preferably, the drainage branch pipes are respectively located between the support partitions, and the cooling water outlet pipes penetrate through the support partitions and are communicated with the cooling partition at the other end.

[0011] Compared with the prior art, the circulating cooling water flow promoting cooler has the advantages that: the inner cylinder is provided with the bin body, so that the contact area of the cooling water and the material is increased, the support partition is arranged in the bin body, so that the structural strength of the inner bin body is increased, the drainage branch pipes are arranged between the support partitions, so that the cooling water is uniformly distributed in the bin body quickly, and the material cooling effect is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a structural schematic view of the circulating cooling water flow promoting cooler.

[0013] Figure 2 It is a circulating cooling water flow promoting cooler. Figure 1 It is an enlarged structural schematic view of A in the figure.

[0014] Figure 3 It is a sectional structural schematic view of the circulating cooling water flow promoting cooler.

[0015] In the figure: 1, cooler main body; 2, outer cylinder; 3, inner cylinder; 4, cooling partition; 5, rapping mechanism; 6, spiral blade; 7, cooling water outlet; 8, cooling water inlet; 9, inner bin body; 10, support partition; 11, cooling water outlet pipe; 12, drainage branch pipe; 13, cooling water inlet pipe. DETAILED DESCRIPTION

[0016] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0017] Please refer to Figures 1-3The utility model provides a technical scheme: a circulating cooling water flow promotes cooling machine, including cooling machine main body 1, cooling machine main body 1 is equipped with the mutual sleeve of outer cylinder 2 and inner cylinder 3, and the cooling layer 4 of cooling is formed between outer cylinder 2 and inner cylinder 3, and the inner cylinder 3 is fixed with inner storehouse body 9, and inner storehouse body 9 divides the inner cylinder 3 into several areas, under the condition that not affecting material propulsion, can effectively increase the flow of cooling water, to guarantee cooling effect, inner cylinder 3 inner wall is welded with fixed spiral blade 6, and the part of spiral blade 6 and inner storehouse body 9 is welded fixed, this structure when the overall rotation of cooling machine main body 1, spiral blade 6 can be used for the propulsion processing of material, make material from the feed end of cooling machine main body 1 move to the discharge end, and make material cooling treatment in the propulsion process, the connecting part between inner storehouse body 9, spiral blade 6 and inner cylinder 3 is welded, reduces the health dead angle, and make material can smoothly advance, and inner storehouse body 9 inside and cooling layer 4 are communicated, and inner storehouse body 9 is also evenly spaced and is equipped with support baffle 10, cooling layer 4 and inner storehouse body 9 are installed respectively with the rapping mechanism 5 of corresponding position, and inner storehouse body 9 side is provided at least three with the passageway of cooling layer 4 communication, this structure rapping mechanism 5 can use the strong vibration energy of high frequency acoustic wave and hit inner storehouse body 9 and inner cylinder 3, make the material of adhesion natural drop off, to avoid the area of heat exchange, guarantee cooling efficiency, through the communication of inner storehouse body 9 and cooling layer 4, can make cooling water from inner storehouse body 9 inside move to cooling layer 4 place, inner storehouse body 9 is equipped with the cooling water outlet pipe 11 and cooling water inlet pipe 13 of mutual sleeve cooperation, and cooling water inlet pipe 13 side evenly spaced is equipped with drainage branch pipe 12, cooling water inlet pipe 13 is inserted in cooling water outlet pipe 11, and cooling water outlet pipe 11 and cooling water inlet pipe 13 outside side end are equipped with cooling water outlet 7 and cooling water inlet 8 respectively, and cooling water outlet 7 and cooling water inlet 8 are close to the discharge end of cooling machine main body 1, this structure can make cooling water from the discharge end to the feed end, make material more close to the discharge part, temperature is lower, drainage branch pipe 12 is respectively towards the communication part of inner storehouse body 9 and cooling layer 4, and drainage branch pipe 12 and cooling water outlet pipe 11 through cooperation, this structure can let cooling water enter cooling layer 4 after entering inner storehouse body 9 through drainage branch pipe 12, and in the cooling water flow process, through heat exchange, the temperature of material is handled, cooling water outlet pipe 11 is sleeved in cooling water inlet pipe 13 outside, can play the role of stabilizing the fixed position of drainage branch pipe 12, drainage branch pipe 12 is located between support baffle 10 respectively, and cooling water outlet pipe 11 is penetrated in support baffle 10, and cooling water outlet pipe 11 other end and cooling layer 4 are communicated, this structure can increase the structural strength of inner storehouse body 9 through support baffle 10, and the separation of support baffle 10 to inner storehouse body 9 makes cooling water can enter each area of inner storehouse body 9, ensure the cooling effect of each place, to guarantee efficient cooling treatment.

[0018] Working principle: when using the circulating cooling water flow to promote the cooling machine, first, the cooling machine body 1 rotates over the middle, the outer cylinder 2 and the inner cylinder 3 rotate synchronously, so that the material is pushed to the discharge end through the spiral blade 6, and the cooling machine body 1 is cooled by the external circulating pump to circulate the cooling water, so that the cooling water enters the cooling water inlet pipe 13 from the cooling water inlet 8, then reaches each part of the inner bin body 9 through the drainage branch pipe 12, the supporting partition 10 separates the cooling water, so that the cooling water quickly enters the cooling layer 4, and in the process of cooling water flowing, quickly takes away the heat in the material, realizes the efficient cooling post-processing of the material, then the cooling water in the cooling layer 4 flows into the cooling water outlet pipe 11 port part, then is discharged from the cooling water outlet 7 through the cooling water outlet pipe 11, and the beating mechanism 5 performs high-frequency vibration treatment on the inner cylinder 3 and the inner bin body 9, effectively reduces the adhesion of the material on the inner wall, avoids reducing the cooling effect, so as to complete a series of work.

[0019] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A circulating cooling water flow boosting chiller comprising a chiller body (1), characterized in that: The cooling machine body (1) is provided with an outer cylinder (2) and an inner cylinder (3) which are sleeved with each other, and a cooling layer (4) is formed between the outer cylinder (2) and the inner cylinder (3), the inner cylinder (3) is fixed with an inner bin body (9), the inner bin body (9) is communicated with the cooling layer (4), and the inner bin body (9) is also uniformly and spacedly provided with support partitions (10), the inner bin body (9) is provided with a cooling water outlet pipe (11) and a cooling water inlet pipe (13) which are sleeved and matched with each other, and the cooling water inlet pipe (13) is uniformly and spacedly provided with drainage branch pipes (12) on the side surface.

2. A recirculating cooling water flow boost chiller as claimed in claim 1, wherein: The inner cylinder (3) is also welded with a spiral fin (6) on the inner wall, and the part where the spiral fin (6) is connected with the inner bin body (9) is also welded.

3. A recirculating cooling water flow boost chiller as claimed in claim 1, wherein: The cooling layer (4) and the inner bin body (9) are respectively provided with corresponding rapping mechanisms (5), and the inner bin body (9) is provided with at least three passages which are communicated with the cooling layer (4).

4. A recirculating chiller of the type described in claim 1 wherein: The cooling water inlet pipe (13) is inserted into the cooling water outlet pipe (11), the outer side ends of the cooling water outlet pipe (11) and the cooling water inlet pipe (13) are respectively provided with a cooling water outlet (7) and a cooling water inlet (8), and the cooling water outlet (7) and the cooling water inlet (8) are close to the discharge end of the cooling machine body (1).

5. A recirculating chiller of the type described in claim 1 wherein: The drainage branch pipes (12) are respectively directed to the communication parts of the inner bin body (9) and the cooling layer (4), and the drainage branch pipes (12) are penetrated and matched with the cooling water outlet pipe (11).

6. A recirculating chiller of the type described in claim 1 wherein: The drainage branch pipes (12) are respectively located between the support partitions (10), the cooling water outlet pipe (11) is penetrated in the support partitions (10), and the other end of the cooling water outlet pipe (11) is communicated with the cooling layer (4).