High-efficiency cooling mixed reaction kettle for C5 resin production

CN224807400UActive Publication Date: 2026-09-29PUYANG BINDER CHEM CO LTD
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Patent Information

Application Number
CN202522028403.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-09-29
Estimated Expiration
2035-09-22

AI Technical Summary

Technical Problem

[0003]在对C5进行生产加工过程中,需要使用反应釜作为反应容器,但是,现在所使用的反应釜,大多采用水冷进行降温,降温手段较为单一,使得整套设备的降温效果不好,基于此,本申请提出了一种C5树脂生产用的高效降温混合反应釜,可解决上述问题

Benefits of technology

该C5树脂生产用的高效降温混合反应釜,在釜体的外侧安装有外侧筒,使釜体的釜壁形成双层结构,二者之间形成冷却空间,可其空间内加注蓄冷剂,可实现釜体的全方位降温,同时,在外侧筒的筒壁上安装有多个均匀阵列的风冷管,其通过多个连接管连通,多个连接管的下方与散热扇座连通,在散热扇座上的两侧安装有散热扇,由其可实现冷空气在多个风冷管内循环流动,减缓蓄冷剂的升温速度,本装置通过使用两种降温方式,可大大提高降温效果,满足使用的需要。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to C5 resin production technical field, especially a kind of efficient cooling mixed reaction kettle for C5 resin production, including kettle body, the outside of kettle body kettle wall is equipped with outside cylinder, interval is left between the two, form cooling space, the cooling space is filled with cold accumulator, multiple evenly arrayed air-cooled pipes are installed on the cylinder wall of outside cylinder, multiple between the air-cooled pipe are all communicated by multiple connecting pipes.The utility model has the advantages that outside cylinder is installed on the outside of kettle body, the kettle wall of kettle body forms double-layer structure, forms cooling space, can its space is filled with cold accumulator, the omnidirectional cooling of kettle body can be realized, multiple evenly arrayed air-cooled pipes are installed on the cylinder wall of outside cylinder, it is communicated by multiple connecting pipes, multiple connecting pipes are communicated with the radiating fan seat below, radiating fan is installed on both sides on the radiating fan seat, and it can realize that cold air circulates in multiple air-cooled pipes, the temperature rising speed of cold accumulator is slowed down.
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Description

Technical Field

[0001] This utility model relates to the field of C5 resin production technology, and in particular to a high-efficiency cooling mixing reactor for C5 resin production. Background Technology

[0002] C5 petroleum resin is a petroleum derivative composed of five-carbon olefins and other hydrocarbons. It is typically a yellow to pale yellow solid with viscous and soft properties. C5 petroleum resin is an important industrial raw material, widely used in adhesives, coatings, printing inks, paints, rubber, and other fields. C5 petroleum resin is produced from olefins generated by the cracking of petroleum or natural gas through fractionation, polymerization, and polymer chemical reactions. Its molecular structure possesses high functionality and active sites, enabling it to perform various functions and properties in different application fields.

[0003] In the production and processing of C5 resin, a reaction vessel is required as a reaction container. However, most of the reaction vessels currently in use use water cooling for cooling, which is a relatively simple cooling method and results in poor cooling effect of the entire equipment. Based on this, this application proposes a high-efficiency cooling mixing reaction vessel for C5 resin production, which can solve the above problems. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide a high-efficiency cooling mixing reactor for C5 resin production.

[0005] The purpose of this utility model is achieved through the following technical solution: a high-efficiency cooling mixing reactor for C5 resin production, comprising a reactor body, an outer cylinder installed on the outer side of the reactor body wall, with a gap between the two to form a cooling space, the cooling space being filled with a refrigerant, a plurality of uniformly arrayed air-cooling pipes installed on the cylinder wall of the outer cylinder, the plurality of air-cooling pipes being connected to each other through a plurality of connecting pipes, the lower part of the plurality of connecting pipes being connected to a heat dissipation fan base, a plurality of heat dissipation fans installed on both sides of the heat dissipation fan base, which are divided into two groups, the two groups of heat dissipation fans being installed in different directions.

[0006] Optionally, a water outlet cylinder with a water outlet valve is installed above the outer side of the outer cylinder, and a water inlet cylinder with a water inlet valve is installed below the outer side of the outer cylinder.

[0007] Optionally, the outer surface of the heat sink is provided with assembly holes around its perimeter, and the outer ends of the multiple connecting pipes are respectively installed in the multiple assembly holes.

[0008] Optionally, a partition is installed in the middle of the interior of the heat sink fan base.

[0009] Optionally, both sides of the partition are equipped with cover plates for sealing, and each of the two cover plates has multiple mounting slots, in which multiple cooling fans are respectively installed.

[0010] This utility model has the following advantages: This high-efficiency cooling mixing reactor for C5 resin production features an outer cylinder installed on the outside of the reactor body, creating a double-layer structure with a cooling space between the two layers. A refrigerant can be added to this space, achieving all-around cooling of the reactor body. Simultaneously, multiple uniformly arrayed air-cooling pipes are installed on the outer cylinder wall, connected by multiple connecting pipes. The lower part of these connecting pipes connects to a heat dissipation fan base, on which heat dissipation fans are installed on both sides. This allows cool air to circulate within the multiple air-cooling pipes, slowing down the heating rate of the refrigerant. By using two cooling methods, this device significantly improves the cooling effect, meeting the application requirements. Attached Figure Description

[0011] Figure 1 This is a first-view schematic diagram of the overall structure of this utility model; Figure 2 This is a second-view schematic diagram of the overall structure of this utility model; Figure 3 In this utility model Figure 1 Internal structure diagram; Figure 4 This is a schematic diagram of the overall structure of the vessel body in this utility model; Figure 5 In this utility model Figure 4 Internal structure diagram; Figure 6 This is a schematic diagram of the overall structure of the heat sink bracket in this utility model.

[0012] In the diagram: 1-Bottle body, 2-Outlet valve, 3-Inlet valve, 4-Cooling fan holder, 5-Cooling fan, 6-Outer cylinder, 7-Air cooling pipe, 8-Connecting pipe, 9-Outlet cylinder, 10-Inlet cylinder, 11-Assembly hole, 12-Cover plate, 13-Mounting groove, 14-Baffle plate. Detailed Implementation

[0013] The present invention will be further described below with reference to the accompanying drawings, but the scope of protection of the present invention is not limited to the following description.

[0014] like Figures 1 to 6As shown, a high-efficiency cooling mixing reactor for C5 resin production includes a reactor body 1. An outer cylinder 6 is installed on the outer side of the reactor body 1, with a gap between them to form a cooling space. The cooling space is filled with a refrigerant. Multiple uniformly arrayed air-cooling pipes 7 are installed on the cylinder wall of the outer cylinder 6. The multiple air-cooling pipes 7 are connected to each other by multiple connecting pipes 8. The lower part of the multiple connecting pipes 8 is connected to a heat dissipation fan base 4. Multiple heat dissipation fans 5 are installed on both sides of the heat dissipation fan base 4, which are divided into two groups with different installation directions.

[0015] As an optional technical solution of this utility model, a water outlet cylinder 9 is installed above the outer side of the outer cylinder 6, and a water outlet valve 2 is installed on it. A water inlet cylinder 10 is installed below the outer side of the outer cylinder 6, and a water inlet valve 3 is installed on it. This facilitates the circulation of the refrigerant in the cooling space and allows for control of the filling process.

[0016] As an optional technical solution of this utility model, assembly holes 11 are provided around the outer surface of the heat sink 4. The outer ends of multiple connecting pipes 8 are respectively installed in multiple assembly holes 11, which makes it easy to combine the connecting pipes 8 with the heat sink 4. In order to improve the sealing effect, a sealing element can be added in the assembly hole 11.

[0017] As an optional technical solution of this utility model, a partition 14 is installed in the middle of the heat sink 4, which can separate the internal space of the heat sink 4 to achieve air circulation.

[0018] As an optional technical solution of this utility model, both sides of the partition 14 are equipped with cover plates 12 for sealing. Multiple mounting slots 13 are opened on both cover plates 12, and multiple cooling fans 5 are respectively installed in multiple mounting slots 13. This facilitates the installation of cooling fans and enables the flow of cold air through two sets of cooling fans 5.

[0019] In summary, the features, assembly method, usage process, and functions of each component in this utility model are as follows: An outer cylinder 6 is installed on the outside of the vessel body 1, forming a double-layer structure on the vessel wall of the vessel body 1. A cooling space is formed between the two layers, and a refrigerant can be added into the space to achieve all-round cooling of the vessel body 1. At the same time, multiple uniformly arrayed air-cooling pipes 7 are installed on the cylinder wall of the outer cylinder 6, which are connected by multiple connecting pipes 8. The lower part of the multiple connecting pipes 8 is connected to the heat dissipation fan base 4. Heat dissipation fans 5 are installed on both sides of the heat dissipation fan base 4, which can realize the circulation of cold air in the multiple air-cooling pipes 7, slowing down the heating rate of the refrigerant. By using two cooling methods, this device can greatly improve the cooling effect and meet the needs of use.

[0020] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A high-efficiency cooling mixing reactor for C5 resin production, characterized in that: The vessel includes a vessel body (1), on which an outer cylinder (6) is installed on the outer side of the vessel wall, with a gap between them to form a cooling space. The cooling space is filled with a refrigerant. Multiple uniformly arrayed air-cooling pipes (7) are installed on the cylinder wall of the outer cylinder (6). The multiple air-cooling pipes (7) are connected to each other by multiple connecting pipes (8). The lower part of the multiple connecting pipes (8) is connected to a heat dissipation fan base (4). Multiple heat dissipation fans (5) are installed on both sides of the heat dissipation fan base (4), which are divided into two groups. The installation directions of the two groups of heat dissipation fans (5) are different.

2. The high-efficiency cooling mixing reactor for C5 resin production according to claim 1, characterized in that: An outlet cylinder (9) is installed above the outer side of the outer cylinder (6), and an outlet valve (2) is installed on it. An inlet cylinder (10) is installed below the outer side of the outer cylinder (6), and an inlet valve (3) is installed on it.

3. The high-efficiency cooling mixing reactor for C5 resin production according to claim 1, characterized in that: Assembly holes (11) are provided around the outer surface of the heat sink (4), and the outer ends of the multiple connecting pipes (8) are respectively installed in the multiple assembly holes (11).

4. The high-efficiency cooling mixing reactor for C5 resin production according to claim 1, characterized in that: A partition (14) is installed in the middle of the heat sink (4).

5. The high-efficiency cooling mixing reactor for C5 resin production according to claim 4, characterized in that: Both sides of the partition (14) are equipped with cover plates (12) for sealing. Multiple mounting slots (13) are provided on both cover plates (12), and multiple cooling fans (5) are respectively installed in multiple mounting slots (13).