Reaction kettle with rapid cooling function

CN224736274UActive Publication Date: 2026-09-11BAOCHENG JUHUI TECH (WUXI) CO LTD
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Patent Information

Application Number
CN202521456187.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-11
Publication Date
2026-09-11
Estimated Expiration
2035-07-11

AI Technical Summary

Technical Problem

[0005]为了克服现有技术的上述缺陷,本实用新型提供一种具有快速降温功能的反应釜,以解决在现有技术中装置所占面积较大且后期维护操作繁琐的问题

Benefits of technology

[0015]上述方案中,通过启动风机,这时将空气吹入桶体中空腔的内部,随后空气通过导气槽和支脚中的排气槽从防尘网处排出,其中空气会将桶体内壁的热量及通过导热杆从桶体内壁吸收传导的热量进行带走完成冷却,这样便实现了通过热的传导因素对桶体内部进行快速降温。

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a reaction vessel with rapid cooling function, including a barrel body. The inner wall of the barrel body has a cavity. Multiple heat-conducting rods are fixedly connected to the inner wall of the barrel body. A locking pin is rotatably connected to the inner wall of the barrel body. A lower support plate is fixedly connected to the outside of the locking pin. A sliding groove is formed on the inner wall of the lower support plate. A fan is slidably connected to the inner wall of the lower support plate. An air guide groove is formed on the inner wall of the barrel body. Support legs are fixedly connected to the bottom of the barrel body. Exhaust grooves are formed on the inner wall of the support legs. A dustproof net is fixedly connected to the inner wall of the support legs. A fixing pin is rotatably connected to the inner wall of the barrel body. An upper support plate is fixedly connected to the outside of the fixing pin. In this utility model, air carries away the heat from the inner wall of the barrel body, as well as the heat absorbed and conducted from the inner wall of the barrel body through the heat-conducting rods, thus achieving rapid cooling of the interior of the barrel body through heat conduction.
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Description

Technical Field

[0001] This utility model relates to the field of reaction vessel technology, and more specifically, to a reaction vessel with a rapid cooling function. Background Technology

[0002] A reaction vessel is a stainless steel container used for carrying out chemical reactions. It features adjustable temperature, pressure, and stirring speed, providing a stable and controllable environment for the reaction. It is widely used in the chemical, pharmaceutical, and food industries to achieve various complex chemical reactions.

[0003] Publication No. (CN220405605U) discloses a reaction vessel with rapid cooling function, including a reaction vessel, a shell, a cooling structure, and a stirring and mixing structure. The shell is fixedly connected to the outer surface of the reaction vessel, and the cooling structure is installed on the shell. The stirring and mixing structure is installed on the reaction vessel. The cooling structure includes a water storage tank, a fixed pipe, a spray head, a first delivery pump, a first connecting pipe, a second delivery pump, and a second connecting pipe. This application has a cooling structure that allows for rapid cooling of the raw materials processed inside the device, while also enabling the cooling water to be recycled, resulting in greater water savings and better performance. The stirring and mixing structure allows for thorough stirring of the reacting raw materials, leading to a more complete reaction, more uniform stirring, and higher processing efficiency, making it suitable for widespread use.

[0004] However, this type of reactor with rapid cooling function has the following drawbacks: the device occupies a large area and its subsequent maintenance is cumbersome. The large area occupied by the device reduces the space utilization rate of factories, laboratories, and other places. For example, in a limited workshop space, a large reactor will occupy too much space, which will restrict the installation of other equipment and the operating space for personnel, and the cumbersome maintenance will lead to a longer maintenance time. Utility Model Content

[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides a reaction vessel with rapid cooling function to solve the problems of large area occupied by the device and cumbersome maintenance and operation in the prior art.

[0006] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a reaction vessel with rapid cooling function, comprising...

[0007] The barrel has a cavity on its inner wall. Multiple heat-conducting rods are fixedly connected to the inner wall of the barrel. A locking pin is rotatably connected to the inner wall of the barrel. A lower support plate is fixedly connected to the outside of the locking pin. A sliding groove is formed on the inner wall of the lower support plate. A fan is slidably connected to the inner wall of the lower support plate. An air guide groove is formed on the inner wall of the barrel. A support leg is fixedly connected to the bottom of the barrel. An exhaust groove is formed on the inner wall of the support leg. A dustproof net is fixedly connected to the inner wall of the support leg.

[0008] The inner wall of the barrel is rotatably connected to a fixing pin, the outer side of the fixing pin is fixedly connected to an upper support plate, the inner wall of the upper support plate is slidably connected to a clamping plate, the outer side of the clamping plate is fixedly connected to a sliding plate, the end of the clamping plate away from the sliding plate is fixedly connected to a pressure plate, the outer side of the pressure plate is fixedly connected to an elastic element, the inner wall of the lower support plate is provided with a first clamping groove, and the outer side of the fan is provided with a second clamping groove.

[0009] The card plate is externally engaged with the inner wall of the card slot, and the fan is externally detachably connected to the inner wall of the upper support plate.

[0010] The card plate is externally engaged with the inner wall of the card slot two, and the fan is externally slidably connected to the inner wall of the slide groove.

[0011] The outer side of the skateboard is slidably connected to the inner wall of the upper support plate, and the outer side of the upper support plate is in contact with the outer side of the lower support plate.

[0012] The pressure plate is slidably connected to the inner wall of the upper support plate, and the end of the elastic element away from the pressure plate is fixedly connected to the inner wall of the upper support plate.

[0013] The outer side of the upper support plate is in contact with the inner wall of the barrel, and the outer side of the lower support plate is in contact with the inner wall of the barrel.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] In the above scheme, by starting the fan, air is blown into the hollow cavity of the barrel. The air is then discharged from the dust screen through the air guide groove and the exhaust groove in the support leg. The air carries away the heat from the inner wall of the barrel and the heat absorbed and conducted from the inner wall of the barrel through the heat conduction rod, thus achieving rapid cooling of the inside of the barrel through heat conduction.

[0016] In the above solution, the sliding plate moves the card plate, and the pressure plate connected to the card plate squeezes the elastic element. The elastic element deforms and compresses to release space, allowing the card plate to leave the card slot 1 in the lower support plate and the card slot 2 in the fan, no longer engaging and hiding inside the upper support plate. Then, the fan can be quickly disassembled. After flipping the lower and upper support plates, releasing the sliding plate allows the card plate to reset and continue to engage inside the card slot 1 due to the properties of the elastic element. This completes the merging, achieving the effect of sealing and storage, and improving space utilization. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the heat-conducting rod structure of this utility model;

[0019] Figure 3 This is a schematic diagram of the upper support plate structure of this utility model;

[0020] Figure 4 This is a schematic diagram of the lower support plate structure of this utility model;

[0021] Figure 5 This is a schematic diagram of the second slot structure of this utility model;

[0022] Figure 6 This is a schematic diagram of the card plate structure of this utility model.

[0023] [Figure Labels]

[0024] 1. Barrel body; 2. Cavity; 3. Heat-conducting rod; 4. Lower support plate; 5. Locking pin; 6. Slide groove; 7. Fan; 8. Air guide groove; 9. Support leg; 10. Exhaust groove; 11. Dustproof net; 12. Fixing pin; 13. Upper support plate; 14. Locking plate; 15. Slide plate; 16. Pressure plate; 17. Elastic element; 18. Locking groove one; 19. Locking groove two. Detailed Implementation

[0025] To make the technical problems, technical solutions and advantages of this utility model clearer, a detailed description will be given below in conjunction with the accompanying drawings and specific embodiments.

[0026] As attached Figure 1 To be continued Figure 6 An embodiment of this utility model provides a reaction vessel with a rapid cooling function, including...

[0027] The barrel body 1 has a cavity 2 on its inner wall. Multiple heat-conducting rods 3 are fixedly connected to the inner wall of the barrel body 1. A locking pin 5 is rotatably connected to the inner wall of the barrel body 1. A lower support plate 4 is fixedly connected to the outside of the locking pin 5. A sliding groove 6 is opened on the inner wall of the lower support plate 4. A fan 7 is slidably connected to the inner wall of the lower support plate 4. An air guide groove 8 is opened on the inner wall of the barrel body 1. A support leg 9 is fixedly connected to the bottom of the barrel body 1. An exhaust groove 10 is opened on the inner wall of the support leg 9. A dustproof net 11 is fixedly connected to the inner wall of the support leg 9. The barrel 1 serves as the main structure of the reactor, providing space for the internal reaction. The cavity 2 is used to contain air, which, in conjunction with the operation of the blower 7, carries away heat through airflow. The heat-conducting rod 3 can transfer heat from the inner wall of the barrel 1 to the cavity 2, improving heat transfer efficiency. The locking pin 5 allows the lower support plate 4 to be rotatably connected to the inner wall of the barrel 1. The lower support plate 4 is used to support the blower 7. The sliding groove 6 facilitates the installation and sliding of the blower 7. When the blower 7 is working, it blows air into the cavity 2. The air guide groove 8 can guide the airflow. The support leg 9 serves to support the reactor. The exhaust groove 10 is used for air discharge. The dustproof net 11 can prevent dust from entering and ensure clean air.

[0028] A fixing pin 12 is rotatably connected to the inner wall of the barrel 1. An upper support plate 13 is fixedly connected to the outside of the fixing pin 12. A locking plate 14 is slidably connected to the inner wall of the upper support plate 13. A sliding plate 15 is fixedly connected to the outside of the locking plate 14. A pressure plate 16 is fixedly connected to the end of the locking plate 14 away from the sliding plate 15. An elastic element 17 is fixedly connected to the outside of the pressure plate 16. A slot 18 is opened on the inner wall of the lower support plate 4, and a slot 2 19 is opened on the outside of the blower 7. The fixing pin 12 allows the upper support plate 13 to be rotatably connected to the inner wall of the barrel 1. The upper support plate 13 and the lower support plate 4 cooperate to fix the blower 7. The locking plate 14 is used to fix the blower 7. The sliding plate 15 facilitates the operator to move the locking plate 14. The pressure plate 16 is used to connect the elastic element 17. The elastic element 17 deforms when compressed. The slots 18 and 19 are used to engage the locking plate 14 to realize the installation and removal of the blower 7.

[0029] The outer part of the clamping plate 14 is snapped into the inner wall of the clamping slot 18, and the outer part of the fan 7 is detachably connected to the inner wall of the upper support plate 13. The clamping plate 14 is snapped into the clamping slot 18, which can connect the lower support plate 4 and the upper support plate 13, so as to fix the fan 7 and combine the lower support plate 4 and the upper support plate 13 for storage. The fan 7 is detachably connected to the inner wall of the upper support plate 13, which facilitates the maintenance and replacement of the fan 7.

[0030] The outer part of the clamping plate 14 is snapped into the inner wall of the second clamping groove 19, and the outer part of the fan 7 is slidably connected to the inner wall of the slide groove 6. The clamping plate 14 is snapped into the second clamping groove 19, which further strengthens the fixation of the fan 7 and can complete the merging of the lower support plate 4 and the upper support plate 13 to achieve the storage effect. The fan 7 is slidably connected to the inner wall of the slide groove 6, which allows the fan 7 to move within a certain range, making it convenient for installation and disassembly.

[0031] The outer side of the slide plate 15 is slidably connected to the inner wall of the upper support plate 13, and the outer side of the upper support plate 13 is in contact with the outer side of the lower support plate 4. The slide plate 15 is slidably connected to the inner wall of the upper support plate 13, which allows the operator to easily move the card plate 14. The contact between the upper support plate 13 and the lower support plate 4 ensures the sealing of the device and achieves the storage effect.

[0032] The pressure plate 16 is externally slidably connected to the inner wall of the upper support plate 13. The end of the elastic element 17 away from the pressure plate 16 is fixedly connected to the inner wall of the upper support plate 13. The pressure plate 16 is slidably connected to the inner wall of the upper support plate 13, ensuring that the pressure plate 16 can move within a certain range. The elastic element 17 deforms when squeezed, providing space for the movement of the clamping plate 14. When the slide plate 15 is released, the elastic element 17 can reset the clamping plate 14.

[0033] The outer side of the upper support plate 13 contacts the inner wall of the barrel 1, and the outer side of the lower support plate 4 contacts the inner wall of the barrel 1. The contact between the upper support plate 13 and the lower support plate 4 and the inner wall of the barrel 1 ensures the sealing after merging, and at the same time enhances the stability of the device when both are open, so that the fan 7 can work better and achieve the function of rapid cooling.

[0034] The working process of this utility model is as follows:

[0035] First, by starting the fan 7, air is blown into the cavity 2 inside the barrel 1. Then, the air is discharged from the dust screen 11 through the air guide groove 8 and the exhaust groove 10 in the support leg 9. The air will carry away the heat of the inner wall of the barrel 1 and the heat absorbed and conducted from the inner wall of the barrel 1 through the heat conduction rod 3 to complete the cooling. In this way, the interior of the barrel 1 is cooled down quickly by heat conduction.

[0036] The sliding plate 15 can move the card plate 14. At this time, the pressure plate 16 connected to the card plate 14 will squeeze the elastic element 17. The elastic element 17 deforms and compresses to release space, so that the card plate 14 can leave the card slot 18 in the lower support plate 4 and the card slot 2 19 in the fan 7 and no longer be locked and hidden inside the upper support plate 13. Then the fan 7 can be quickly disassembled. After flipping the lower support plate 4 and the upper support plate 13, the sliding plate 15 is released. At this time, the elastic element 17 causes the card plate 14 to reset and continue to be locked inside the card slot 18. In this way, the merging is completed, achieving the effect of sealing and storage, and improving the space utilization rate.

[0037] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.

[0038] Secondly: The accompanying drawings of the embodiments disclosed in this utility model only involve the structures involved in the embodiments disclosed in this utility model. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other.

[0039] In conclusion, the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A reaction kettle with a rapid cooling function, characterized in that, The device includes a barrel body (1), the inner wall of which has a cavity (2), a plurality of heat-conducting rods (3) are fixedly connected to the inner wall of the barrel body (1), a locking pin (5) is rotatably connected to the inner wall of the barrel body (1), a lower support plate (4) is fixedly connected to the outside of the locking pin (5), a sliding groove (6) is opened on the inner wall of the lower support plate (4), a fan (7) is slidably connected to the inner wall of the lower support plate (4), an air guide groove (8) is opened on the inner wall of the barrel body (1), a support foot (9) is fixedly connected to the bottom of the barrel body (1), an exhaust groove (10) is opened on the inner wall of the support foot (9), and a dustproof net (11) is fixedly connected to the inner wall of the support foot (9).

2. The reaction kettle with rapid cooling function according to claim 1, characterized in that, The inner wall of the barrel (1) is rotatably connected to a fixing pin (12), the outer side of the fixing pin (12) is fixedly connected to an upper support plate (13), the inner wall of the upper support plate (13) is slidably connected to a clamping plate (14), the outer side of the clamping plate (14) is fixedly connected to a sliding plate (15), the end of the clamping plate (14) away from the sliding plate (15) is fixedly connected to a pressure plate (16), the outer side of the pressure plate (16) is fixedly connected to an elastic element (17), the inner wall of the lower support plate (4) is provided with a first clamping groove (18), and the outer side of the fan (7) is provided with a second clamping groove (19).

3. The reaction kettle with rapid cooling function according to claim 2, characterized in that, The card plate (14) is externally engaged with the inner wall of the card slot (18), and the fan (7) is externally detachably connected to the inner wall of the upper support plate (13).

4. The reaction kettle with rapid cooling function according to claim 2, characterized in that, The outer part of the card plate (14) is engaged with the inner wall of the card slot (19), and the outer part of the fan (7) is slidably connected to the inner wall of the slide groove (6).

5. The reaction kettle with rapid cooling function according to claim 2, characterized in that, The outer side of the slide plate (15) is slidably connected to the inner wall of the upper support plate (13), and the outer side of the upper support plate (13) is in contact with the outer side of the lower support plate (4).

6. The reaction kettle with rapid cooling function according to claim 2, characterized in that, The pressure plate (16) is slidably connected to the inner wall of the upper support plate (13), and the end of the elastic member (17) away from the pressure plate (16) is fixedly connected to the inner wall of the upper support plate (13).

7. The reaction kettle with rapid cooling function according to claim 2, characterized in that, The outer side of the upper support plate (13) is in contact with the inner wall of the barrel body (1), and the outer side of the lower support plate (4) is in contact with the inner wall of the barrel body (1).

Citation Information

Patent Citations

  • Reaction kettle with rapid cooling function

    CN220405605U