Cooling device for heat treatment of non-ferrous metal plates

By designing a cooling device that facilitates loading and unloading, heat dissipation adjustment, and temperature detection, the problem of inconsistent manual judgment of cooling time during the heat treatment of non-ferrous metals has been solved, achieving automated and precise cooling control.

CN224047444UActive Publication Date: 2026-03-27SHANGHAI HENGHUI ALUMINUM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing technologies, the cooling process after heat treatment of non-ferrous metals relies on manual judgment, resulting in inconsistent cooling times and a lack of automation and temperature detection capabilities.

Method used

A cooling device for heat treatment of non-ferrous metal sheets was designed, which includes a structure for easy loading and unloading, a heat dissipation adjustment structure and a temperature detection structure. The support column and the snap-fit ​​block facilitate loading and unloading, the cooling fan and the cooling water pipe are used for heat dissipation adjustment, and the temperature sensor is used for temperature detection.

Benefits of technology

It has enabled automated loading and unloading, heat dissipation regulation, and temperature detection in the heat treatment process of non-ferrous metal sheets, improving the efficiency and accuracy of the cooling process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling device for heat treatment of non-ferrous metal plates, which comprises a cooling box, an in-box groove is arranged in the cooling box, a lower moving groove is arranged on an inner base of the in-box groove, a base plate is mounted in the in-box groove, a support column is mounted at the top end of the base plate, and a support is mounted at the bottom end of the support column. A containing frame is installed at the top end of the supporting column body, a clamping block is arranged at the bottom of the base disc, and a supporting base is installed at the bottom of the cooling box. By arranging the structure facilitating feeding and discharging, during use, the supporting column body is pulled to drive the clamping block at the bottom end of the base plate and the lower moving groove in the inner groove of the box to slide, the base plate is pulled out of the inner groove of the box, non-ferrous metal is placed on the placing frame, the placing frame is rotated through the supporting column body and the base plate, and the non-ferrous metal is placed on the placing frame. And then the base plate is pushed into the inner tank through the clamping blocks, so that the function of facilitating feeding and discharging is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cooling device technical field, concretely is a cooling device for non -ferrous metal plate heat treatment. BACKGROUND

[0002] Non -ferrous metal refers to non -ferrous metal, is the collective title of all metals except iron, manganese, chromium, metal heat treatment is to place metal workpiece in certain medium heating, heat preservation, cooling, through the change metal material surface or internal organization structure to control its performance process method, heat treatment is the very important step in metal material processing, heat treatment can change the physical and mechanical properties of metal material, improve its hardness, strength, toughness and other performances.

[0003] In non -ferrous metal heat treatment, will need to cool the material after heat treatment, in the process of cooling also will divide quick cooling and slow cooling, the time of different non -ferrous metal cooling will also be different, the common cooling demand is by staff self -judgment. Therefore, we propose a kind of cooling device for non -ferrous metal plate heat treatment to improve the above problems. INVENTION CONTENTS

[0004] The utility model discloses a cooling device for non -ferrous metal plate heat treatment to solve the problems in the background art.

[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of cooling device for non -ferrous metal plate heat treatment, including cooling box, the inside of the cooling box is provided with box-in groove, the inside base of the box-in groove is opened with lower moving groove, the inside of the box-in groove is installed with base disc, the top of the base disc is installed with support column body, the top of the support column body is installed with placing rack, the bottom of the base disc is provided with clamping block.

[0006] As a further technical scheme of the utility model, the clamping block of the base disc bottom and the lower moving groove in the box-in groove are clamped, the base disc is slid by clamping block and lower moving groove, to drive the base disc to slide in the box-in groove, the placing rack is rotated by support column body and base disc.

[0007] As a further technical scheme of the utility model, the top of the cooling box is installed with upper heat dissipation net, the top of the cooling box is installed with heat dissipation fan, the inside of the cooling box is opened with top heat dissipation hole, the rear end of the cooling box is opened with rear embedding groove, the inside of the rear embedding groove is installed with porous heat dissipation plate, the inside of the porous heat dissipation plate is installed with heat dissipation water pipe, the rear end of the porous heat dissipation plate is inlaid with inlay fan.

[0008] As a further technical scheme of the utility model, the inner tank groove in the cooling box is communicated with the upper heat dissipation net through the top heat dissipation hole, and the heat dissipation fan is inlaid at the top end of the cooling box.

[0009] As a further technical scheme of the utility model, the porous heat dissipation plate is inlaid at the rear end of the cooling box through the rear embedding groove, the heat dissipation water pipe is inserted in the inside of the porous heat dissipation plate, and the inlaid fan is inlaid at the rear end of the porous heat dissipation plate.

[0010] As a further technical scheme of the utility model, the side of the cooling box is provided with a tank door, the front end of the tank door is provided with a sliding groove, the inside of the sliding groove is provided with a clamping block, the front end of the clamping block is provided with a temperature sensor, the rear end of the tank door is provided with an operation screen, the bottom of the operation screen is provided with a connecting socket, the rear end of the tank door is provided with a control button, the rear end of the tank door is provided with an outer moving groove, the inside of the outer moving groove is provided with a fixing knob, the inside of the inner tank groove is provided with a heat dissipation hole plate, and the bottom of the cooling box is provided with a supporting base.

[0011] As a further technical scheme of the utility model, the sliding groove is communicated with the tank door and the outer moving groove, and the clamping block moves on the sliding groove to drive the fixing knob to move in the outer moving groove.

[0012] As a further technical scheme of the utility model, the temperature sensor is clamped at the front end of the clamping block, and the lead of the temperature sensor is connected with the connecting socket through the clamping block and the fixing knob.

[0013] Compared with the prior art, the cooling device for non-ferrous metal plate heat treatment has the advantages that the cooling device not only realizes the functions of convenient feeding and discharging, heat dissipation adjustment and temperature detection.

[0014] (1) By setting the convenient feeding and discharging structure, the utility model has the advantages that when in use, the supporting column body is pulled to drive the clamping block at the bottom end of the base disc to slide in the lower moving groove in the inner tank groove, the base disc is pulled out from the inner tank groove to place the non-ferrous metal on the placing rack, the placing rack is rotated with the base disc through the supporting column body, convenient feeding and discharging are realized, and then the base disc is pushed into the inner tank groove through the clamping block, so that the convenient feeding and discharging function is realized.

[0015] (2) By setting the heat adjustment structure, the utility model has the advantages that: when using, according to the cooling demand of non-ferrous metal, the cooling box top end heat dissipation fan is started, the air in the cooling box inside tank inside is taken out through the top heat dissipation hole through the heat dissipation fan, so that the upper heat dissipation net of cooling box top end emits hot air, carries out slow cooling, and when fast cooling, the inner embedded fan inside the porous heat dissipation plate embedded behind the cooling box is started, and the cooling liquid is injected into the heat dissipation water pipe, so that the non-ferrous metal in the cooling box tank inside is cooled, thereby realizing the heat adjustment function;

[0016] (3) By setting the temperature detection structure, the utility model has the advantages that: when using, the temperature sensor is installed on the clamping block inserted in the sliding groove opened in the front end of the tank door, then the wire of the temperature sensor is inserted into the clamping block and the fixed knob, and is connected with the connecting socket at the bottom of the operation screen at the rear end of the tank door, the temperature measured by the temperature sensor can be conveniently seen, the fixed knob is moved on the outer moving groove to drive the clamping block to move on the sliding groove, and the temperature measurement direction of the temperature sensor to the tank groove inside is adjusted, thereby realizing the temperature detection function. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a front view structure schematic diagram of the utility model;

[0018] Figure 2 It is a side view sectional structure schematic diagram of the utility model;

[0019] Figure 3 It is a front view enlarged structure schematic diagram of the buffer spring of the utility model;

[0020] Figure 4 It is a Figure 1 It is a sectional enlarged structure schematic diagram of the utility model at A.

[0021] In the drawing: 1, cooling box;2, upper heat dissipation net;3, heat dissipation fan;4, top heat dissipation hole;5, placing rack;6, heat dissipation hole plate;7, support column body;8, tank groove;9, base disc;10, support base;11, tank door;12, temperature sensor;13, clamping block;14, sliding groove;15, clamping block;16, lower moving groove;17, operation screen;18, control button;19, fixed knob;20, connecting socket;21, outer moving groove;22, porous heat dissipation plate;23, heat dissipation water pipe;24, rear embedding groove;25, inner embedded fan. DETAILED DESCRIPTION

[0022] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.

[0023] Embodiment: Please refer to Figures 1-4 The cooling device for non-ferrous metal plate heat treatment comprises a cooling box 1, a box inner groove 8 is arranged in the cooling box 1, a lower moving groove 16 is arranged in the inner base of the box inner groove 8, a base disc 9 is arranged in the box inner groove 8, a support column body 7 is arranged at the top of the base disc 9, a placing rack 5 is arranged at the top of the support column body 7, and a clamping block 15 is arranged at the bottom of the base disc 9.

[0024] The clamping block 15 at the bottom of the base disc 9 is clamped with the lower moving groove 16 in the box inner groove 8, the base disc 9 slides with the lower moving groove 16 through the clamping block 15, so as to drive the base disc 9 to slide in the box inner groove 8, and the placing rack 5 rotates with the base disc 9 through the support column body 7.

[0025] Specifically, as shown in Figure 1 and Figure 2 , the upper and lower feeding structure is arranged, the support column body 7 is pulled during use, the clamping block 15 at the bottom end of the base disc 9 is driven to slide with the lower moving groove 16 in the box inner groove 8, the base disc 9 is pulled out from the box inner groove 8, the non-ferrous metal is placed on the placing rack 5, the placing rack 5 rotates with the base disc 9 through the support column body 7, the upper and lower feeding is facilitated, then the base disc 9 is pushed into the box inner groove 8 through the clamping block 15, and the upper and lower feeding function is realized.

[0026] The upper heat dissipation net 2 is arranged at the top of the cooling box 1, the heat dissipation fan 3 is arranged at the top of the cooling box 1, the top heat dissipation hole 4 is arranged in the cooling box 1, the rear embedding groove 24 is arranged at the rear end of the cooling box 1, the porous heat dissipation plate 22 is arranged in the rear embedding groove 24, the heat dissipation water pipe 23 is arranged in the porous heat dissipation plate 22, and the embedded fan 25 is embedded at the rear end of the porous heat dissipation plate 22.

[0027] The box inner groove 8 in the cooling box 1 is communicated with the upper heat dissipation net 2 through the top heat dissipation hole 4, the heat dissipation fan 3 is embedded at the top of the cooling box 1, the porous heat dissipation plate 22 is embedded at the rear end of the cooling box 1 through the rear embedding groove 24, the heat dissipation water pipe 23 is inserted in the porous heat dissipation plate 22, and the embedded fan 25 is embedded at the rear end of the porous heat dissipation plate 22.

[0028] Specifically, as shown in Figure 1 and Figure 4As shown, by setting the heat dissipation adjusting structure, in use, according to the cooling requirement of non-ferrous metal, the heat dissipation fan 3 at the top end of the cooling box 1 is started, the air inside the inner tank groove 8 in the cooling box 1 is drawn out through the top heat dissipation hole 4 by the heat dissipation fan 3, so that the upper heat dissipation net 2 at the top end of the cooling box 1 dissipates hot air, slow cooling is carried out, and in rapid cooling, the inner embedded fan 25 embedded in the porous heat dissipation plate 22 behind the cooling box 1 is started, and cooling liquid is injected into the heat dissipation water pipe 23, so as to accelerate the heat dissipation of the non-ferrous metal in the inner tank groove 8 in the cooling box 1, thereby realizing the heat dissipation adjusting function. When the fan 25 works, the porous structure of the porous heat dissipation plate 22 will not block the blowing of the fan into the cooling box 1.

[0029] The side of the cooling box 1 is provided with a tank door 11, the front end of the tank door 11 is provided with a sliding groove 14, the sliding groove 14 is provided with a clamping block 13, the front end of the clamping block 13 is provided with a temperature sensor 12, the rear end of the tank door 11 is provided with an operation screen 17, the bottom of the operation screen 17 is provided with a connection socket 20, the rear end of the tank door 11 is provided with a control button 18, the rear end of the tank door 11 is provided with an outer moving groove 21, the outer moving groove 21 is provided with a fixed knob 19, the inside of the tank groove 8 is provided with a heat dissipation hole plate 6, and the bottom of the cooling box 1 is provided with a supporting base 10.

[0030] The sliding groove 14 is communicated with the tank door 11 and the outer moving groove 21, the clamping block 13 moves on the sliding groove 14 to drive the fixed knob 19 to move in the outer moving groove 21, the temperature sensor 12 is clamped at the front end of the clamping block 13, and the wire of the temperature sensor 12 is connected with the connection socket 20 through the clamping block 13 and the fixed knob 19;

[0031] Specifically, as shown in Figure 1 and Figure 3 By setting the temperature detection structure, in use, the temperature sensor 12 is installed on the clamping block 13 inserted in the sliding groove 14 opened at the front end of the tank door 11, then the wire of the temperature sensor 12 is inserted through the clamping block 13 and the fixed knob 19 to be connected with the connection socket 20 at the bottom of the operation screen 17 at the rear end of the tank door 11, so as to facilitate the observation of the temperature measured by the temperature sensor 12, and the fixed knob 19 is moved on the outer moving groove 21 to drive the clamping block 13 to move on the sliding groove 14, so as to adjust the temperature measurement direction of the temperature sensor 12 to the inside of the tank groove 8, thereby realizing the temperature detection function.

[0032] Working principle: the utility model discloses first pull the supporting column 7 to drive the clamping block 15 of bottom end of base disc 9 and the lower moving groove 16 inside the box groove 8 slide, the base disc 9 is extracted from the inside of box groove 8, to place the non-ferrous metal on the placing rack 5 on the top end of base disc 9, the placing rack 5 is rotated through supporting column 7 and base disc 9, conveniently carry out the feeding and discharging, then the base disc 9 is pushed into the inside of box groove 8 through clamping block 15, then temperature sensor 12 is installed into the clamping block 13 of the slide groove 14 inside the front end of box door 11, then the wire of temperature sensor 12 is connected through clamping block 13 and fixed knob 19 inside and the connecting socket 20 at the bottom of operation screen 17 at the rear end of box door 11, the fixed knob 19 is moved on the outer moving groove 21 to drive clamping block 13 to move on slide groove 14, adjust the temperature measurement direction of temperature sensor 12 to the inside of box groove 8, then the front end of cooling tank 1 is covered to box door 11, according to the cooling demand of non-ferrous metal, the cooling fan 3 at the top end of cooling tank 1 is started, the air in the inside of box groove 8 in the inside of cooling tank 1 is extracted through the top heat dissipation hole 4 through cooling fan 3, and the embedded fan 25 in the inside of the porous heat dissipation plate 22 embedded in the rear of cooling tank 1 is started, and the cooling liquid is injected into the inside of the heat dissipation water pipe 23, accelerates the heat dissipation of the non-ferrous metal in the inside of the box groove 8 in the cooling tank 1, and the temperature of the non-ferrous metal measured by temperature sensor 12 can be seen through the operation screen 17 on the box door 11.

[0033] It is apparent for those skilled in the art that the utility model is not limited to the details of the above exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or essential characteristics of the utility model. Therefore, the embodiments should be regarded as exemplary and non-restrictive in any respect, and the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A cooling device for heat treatment of non-ferrous sheet material, comprising a cooling box (1), characterized in that: The inside of the cooling box (1) is provided with an inner tank groove (8), the inner bottom of the inner tank groove (8) is provided with a lower moving groove (16), the inner tank groove (8) is provided with a bottom disc (9), the top end of the bottom disc (9) is provided with a supporting column (7), the top end of the supporting column (7) is provided with a placing rack (5), and the bottom of the bottom disc (9) is provided with a clamping block (15).

2. Cooling device according to claim 1, characterized in that The clamping block (15) at the bottom of the bottom disc (9) is clamped with the lower moving groove (16) in the inner tank groove (8), and the bottom disc (9) slides with the lower moving groove (16) through the clamping block (15), so as to drive the bottom disc (9) to slide in the inner tank groove (8).

3. The cooling device of claim 1, wherein: The top end of the cooling box (1) is provided with an upper heat dissipation net (2), the top end of the cooling box (1) is provided with a heat dissipation fan (3), the inside of the cooling box (1) is provided with a top heat dissipation hole (4), the rear end of the cooling box (1) is provided with a rear embedding groove (24), the inside of the rear embedding groove (24) is provided with a porous heat dissipation plate (22), the inside of the porous heat dissipation plate (22) is provided with a heat dissipation water pipe (23), and the rear end of the porous heat dissipation plate (22) is embedded with an embedded fan (25).

4. Cooling device according to claim 3, characterized in that: The inner tank groove (8) in the cooling box (1) is communicated with the upper heat dissipation net (2) through the top heat dissipation hole (4), and the heat dissipation fan (3) is embedded in the top end of the cooling box (1).

5. Cooling device according to claim 3, characterized in that: The porous heat dissipation plate (22) is embedded in the rear end of the cooling box (1) through the rear embedding groove (24), the heat dissipation water pipe (23) is inserted in the inside of the porous heat dissipation plate (22), and the embedded fan (25) is embedded in the rear end of the porous heat dissipation plate (22).

6. The cooling device of claim 1, wherein: One side of the cooling box (1) is provided with a tank door (11), the front end of the tank door (11) is provided with a sliding groove (14), the inside of the sliding groove (14) is provided with a clamping block (13), the front end of the clamping block (13) is provided with a temperature sensor (12), the rear end of the tank door (11) is provided with an operation screen (17), the bottom of the operation screen (17) is provided with a connecting socket (20), the rear end of the tank door (11) is provided with a control button (18), the rear end of the tank door (11) is provided with an outer moving groove (21), the inside of the outer moving groove (21) is provided with a fixed knob (19), the inside of the inner tank groove (8) is provided with a heat dissipation hole plate (6), and the bottom of the cooling box (1) is provided with a supporting base (10).

7. Cooling device according to claim 6, characterized in that The sliding groove (14) is communicated with the tank door (11) and the outer moving groove (21), and the clamping block (13) moves on the sliding groove (14) to drive the fixed knob (19) to move in the outer moving groove (21).

8. Cooling device according to claim 6, characterized in that The temperature sensor (12) is clamped at the front end of the clamping block (13), and the lead wire of the temperature sensor (12) is connected with the connecting socket (20) through the clamping block (13) and the fixed knob (19).