Alkali-free accelerator production reaction kettle

By setting up a support frame and a zoned stirring structure in the reactor, the problems of inconvenient disassembly and material waste in existing reactors are solved, achieving convenient disassembly and improved reaction efficiency.

CN223615901UActive Publication Date: 2025-12-02江西省欧陶科技有限公司
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Patent Information

Application Number
CN202520251860.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-12-02
Estimated Expiration
2035-02-18

AI Technical Summary

Technical Problem

The existing reaction vessel has a stirring device that is not easy to disassemble after processing, and the liquid after it has settled is easily absorbed by the stirring device, resulting in waste of raw materials.

Method used

A structure including a support frame body and a reaction vessel was designed. The support frame is equipped with a support cylinder and a limiting component. The reaction vessel is divided into upper and lower parts. The stirring motor is connected to the stirring and crushing shaft through a partition. The shaft is equipped with various crushing rods and filter holes to achieve convenient disassembly and prevent raw material adsorption.

Benefits of technology

This enables convenient handling of the reactor and improves reaction efficiency, preventing raw materials from adsorbing statically on the stirring device and reducing waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an alkali-free accelerator production reaction kettle, which comprises a reaction kettle body, the reaction kettle body comprises a support frame body and a reaction kettle arranged on the support frame body, the support frame body comprises a support bottom plate, a support cylinder is arranged on the support bottom plate, the reaction kettle is arranged on the support cylinder, and the reaction kettle is arranged on the support cylinder. A sinking placing groove is formed in the supporting bottom plate, the sinking placing groove is used for placing a supporting cylinder, a first limiting component and a second limiting component are arranged on the side wall of the supporting cylinder, the first limiting component and the second limiting component are both zigzag ejector rods, one end of each zigzag ejector rod is fixed to the supporting bottom plate, and the other end of each zigzag ejector rod is fixed to the supporting bottom plate. A first transverse limiting plate and a second transverse limiting plate are arranged on the side wall of the supporting cylinder. The reaction kettle has the beneficial effects that the reaction kettle can be conveniently placed by arranging the supporting cylinder, so that the reaction kettle can be conveniently taken and placed, and meanwhile, the reaction kettle is partitioned, so that the upper part of the reaction kettle stirs and the lower part of the reaction kettle is static, and the reaction effect of the reaction kettle is improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of reaction vessel production, and in particular to a reaction vessel for producing alkali-free quick-setting agents. Background Technology

[0002] Although existing reactor production equipment can stir and rapidly solidify the reactor, it still has defects: 1. The existing reactor is a cavity with an internal stirring device. The stirring device is inconvenient to remove and disassemble after processing. At the same time, the liquid will be absorbed on the stirring device after it has settled, resulting in waste of raw materials. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the prior art by setting a supporting cylindrical tube for convenient placement of the reaction vessel, making the reaction vessel easy to pick up and put down. At the same time, the reaction vessel is divided into sections so that the upper part of the reaction vessel is stirred and the lower part is stationary, which improves the reaction effect of the reaction vessel. This invention is a reaction vessel for the production of alkali-free quick-setting agent.

[0004] The purpose of this utility model is achieved through the following technical solution: a reactor for producing alkali-free quick-setting agent, including a reactor body, the reactor body including a support frame body and a reactor disposed on the support frame body, the support frame body including a support base plate, and a support cylindrical tube provided on the support base plate;

[0005] The supporting cylindrical tube is equipped with a reaction vessel. The supporting base plate is equipped with a sinking placement groove for placing the supporting cylindrical tube. The side wall of the supporting cylindrical tube is equipped with a limiting component one and a limiting component two. Both limiting components one and two are folded top rods, and one end of the folded top rod is fixed to the supporting base plate. The side wall of the supporting cylindrical tube is equipped with a transverse limiting plate one and a transverse limiting plate two. Both transverse limiting plates one and two are equipped with a through hole thread one. The through hole thread one is equipped with a positioning bolt. The side wall of the supporting cylindrical tube is equipped with an annular cavity, and the side wall of the annular cavity is equipped with a heat-conducting plate. The interior of the annular cavity is equipped with a heating resistance wire.

[0006] In the alkali-free quick-setting agent production reactor of this utility model, the top of the supporting cylindrical cylinder is provided with an outlet, the bottom of the sinking placement trough can be provided with a through hole, and the ends of the folded top rods are provided with limiting arc plates, and the ends of the limiting arc plates are provided with flexible components.

[0007] In the alkali-free quick-setting agent production reactor of this utility model, the reactor includes a first part and a second part, and the first part and the second part are integrally formed. The bottom of the second part is provided with a folded pipe, and the folded pipe passes through the supporting cylindrical tube. The diameter of the second part is smaller than the diameter of the first part.

[0008] In the alkali-free quick-setting agent production reactor of this utility model, an annular support component is provided at the bottom of the annular cavity, and the bottom of the second part is placed on the annular support component. The reactor is placed on the supporting cylindrical tube, and a feed branch pipe is provided at the top of the reactor. A partition is provided on the first part, and a stirring motor is provided on the partition. The output shaft of the stirring motor passes through the partition and a stirring and crushing shaft is provided at the end of the output shaft of the stirring motor.

[0009] In the alkali-free quick-setting agent production reactor of this utility model, an arc-shaped partition is provided between the first part and the second part, and a filter hole is provided on the arc-shaped partition. The stirring and crushing shaft includes a horizontal stirring rod, a horizontal stirring rod, and a horizontal stirring rod. A vertical crushing rod is provided between the horizontal stirring rod and the horizontal stirring plate, and an inclined crushing rod is provided between the horizontal stirring plate and the horizontal stirring rod.

[0010] In the alkali-free quick-setting agent production reactor of this utility model, both the vertical crushing rod and the inclined crushing rod are provided with blades, and an annular inclined plate is provided between the vertical crushing rods. The annular inclined plate is located between the first horizontal stirring rod and the second horizontal stirring rod, and the distance between the annular inclined plate and the first horizontal stirring rod, the second horizontal stirring rod and the vertical crushing rod is 5-10cm.

[0011] In the alkali-free quick-setting agent production reactor of this utility model, the horizontal stirring plate is provided with a number of filter holes, and the vertical direction of the filter holes forms an acute angle with the inclined crushing rod.

[0012] This utility model has the following advantages:

[0013] 1. The reaction vessel body of this utility model includes a support frame body and a reaction vessel disposed on the support frame body. The support frame body includes a support base plate, and a support cylinder is provided on the support base plate. The provision of the support cylinder allows for convenient placement of the reaction vessel and enables preheating of the reaction vessel.

[0014] A reaction vessel is mounted on a supporting cylindrical tube. A sinking placement groove is provided on the supporting base plate. The size of the sinking placement groove can be set in various ways. The bottom of the sinking placement groove can be a through hole. The sinking placement groove is used to place the supporting cylindrical tube. The side wall of the supporting cylindrical tube is provided with limiting component one and limiting component two. Both limiting component one and limiting component two are folded top rods, and one end of the folded top rod is fixed to the supporting base plate. The side wall of the supporting cylindrical tube is provided with transverse limiting plate one and transverse limiting plate two. Both transverse limiting plate one and transverse limiting plate two are provided with through hole thread one. The through hole thread one is provided with positioning bolt. The side wall of the supporting cylindrical tube is provided with an annular cavity. The side wall of the annular cavity is provided with a heat-conducting plate. The interior of the annular cavity is provided with a heating resistance wire to enable preheating. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 for Figure 1 A magnified view of a portion of point A in the middle;

[0017] Figure 3 for Figure 1 A magnified view of a portion of point B in the middle;

[0018] Figure 4 for Figure 1 A magnified view of a portion of point C.

[0019] In the diagram, the components are: 1. Reactor body; 2. Support frame body; 3. Reactor; 4. Support base plate; 5. Support cylindrical tube; 6. Sinking placement trough; 7. Limiting component one; 8. Limiting component two; 9. Folded top rod; 10. Horizontal limiting plate one; 11. Horizontal limiting plate two; 12. Through hole thread one; 13. Positioning bolt; 14. Annular cavity; 15. Heat-conducting plate; 16. Limiting arc plate; 17. First part; 18. Second part; 19. Folded pipe; 20. Annular support component; 21. Feed branch pipe; 22. Partition one; 23. Stirring motor; 24. Arc partition; 25. Filter hole one; 26. Horizontal stirring rod one; 27. Horizontal stirring rod two; 28. Horizontal stirring rod three; 29. ​​Vertical crushing rod; 30. Inclined crushing rod; 31. Blade; 32. Annular inclined plate. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings. The scope of protection of the present invention is not limited to the following description:

[0021] like Figures 1-4 As shown, a reactor for producing an alkali-free quick-setting agent includes a reactor body 1, a support frame body 2 and a reactor 3 disposed on the support frame body 2, the support frame body 2 includes a support base plate 4, and a support cylindrical tube 5 is provided on the support base plate 4, so that the reactor can be conveniently placed and can also be placed stably.

[0022] In this embodiment, a reaction vessel 3 is provided on the supporting cylindrical tube 5, and a sinking placement groove 6 is provided on the supporting base plate 4. The sinking placement groove 6 is for placing the supporting cylindrical tube 5. The side wall of the supporting cylindrical tube 5 is provided with a limiting component 7 and a limiting component 8. Both the limiting component 7 and the limiting component 8 are folded top rods 9, and one end of the folded top rod 9 is fixed to the supporting base plate 4. The side wall of the supporting cylindrical tube 5 is provided with a transverse limiting plate 10 and a transverse limiting plate 11. Both the transverse limiting plate 10 and the transverse limiting plate 11 are provided with a through hole thread 12. The through hole thread 12 is provided with a positioning bolt 13. The side wall of the supporting cylindrical tube 5 is provided with an annular cavity 14, and the side wall of the annular cavity 14 is provided with a heat-conducting plate 15. The interior of the annular cavity 14 is provided with a heating resistance wire, which enables preheating.

[0023] In this embodiment, the top of the supporting cylindrical tube 5 is provided with an outlet, the bottom of the sinking placement groove 6 can be provided with a through hole, and the ends of the folded top rod 9 are provided with limiting arc plates 16, and the ends of the limiting arc plates 16 are provided with flexible components.

[0024] In this embodiment, the reactor 3 includes a first part 17 and a second part 18, and the first part 17 and the second part 18 are integrally formed. The bottom of the second part 18 is provided with a folded pipe 19, and the folded pipe 19 passes through the supporting cylindrical tube 5. The diameter of the second part 18 is smaller than the diameter of the first part 17, so that the upper cavity is stirred while the lower cavity remains still, preventing the raw materials from sticking to the stirring device.

[0025] In this embodiment, an annular support member 20 is provided on the bottom of the annular cavity 14, and the bottom of the second part 18 is placed on the annular support member 20. The reactor 3 is placed on the supporting cylindrical tube 5. The top of the reactor 3 is provided with a feed branch pipe 21. The first part 17 is provided with a partition 22, and a stirring motor 23 is provided on the partition 22. The output shaft of the stirring motor 23 passes through the partition 22, and a stirring and crushing shaft is provided at the end of the output shaft of the stirring motor 23.

[0026] In this embodiment, an arc-shaped partition 24 is provided between the first part 17 and the second part 18, and a filter hole 25 is provided on the arc-shaped partition 24. The stirring and crushing shaft includes a horizontal stirring rod 26, a horizontal stirring rod 27 and a horizontal stirring rod 28, and a vertical crushing rod 29 is provided between the horizontal stirring rod 26 and the horizontal stirring rod 27, and an inclined crushing rod 30 is provided between the horizontal stirring rod 2 and the horizontal stirring rod 3.

[0027] In this embodiment, both the vertical crushing rod 29 and the inclined crushing rod 30 are provided with blades 31, which enable the input raw materials to be crushed. An annular inclined plate 32 is provided between the vertical crushing rods 29, and the annular inclined plate 32 is located between the first horizontal stirring rod 26 and the second horizontal stirring rod 27. The distance between the annular inclined plate 32 and the first horizontal stirring rod 26, the second horizontal stirring rod 27 and the vertical crushing rod 29 is 5-10cm.

[0028] In this embodiment, the horizontal stirring plate 328 is provided with a plurality of filter holes, and the vertical direction of the filter holes forms an acute angle with the inclined crushing rod 30, so that the raw materials are crushed under the action of the inclined crushing rod 30.

[0029] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. 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 described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A reactor for producing alkali-free quick-setting agents, characterized in that: The reactor body includes a support frame body and a reactor mounted on the support frame body. The support frame body includes a support base plate and a support cylindrical tube is provided on the support base plate. The supporting cylindrical tube is equipped with a reaction vessel. The supporting base plate is equipped with a sinking placement groove for placing the supporting cylindrical tube. The side wall of the supporting cylindrical tube is equipped with a limiting component one and a limiting component two. Both limiting components one and two are folded top rods, and one end of the folded top rod is fixed to the supporting base plate. The side wall of the supporting cylindrical tube is equipped with a transverse limiting plate one and a transverse limiting plate two. Both transverse limiting plates one and two are equipped with a through hole thread one. The through hole thread one is equipped with a positioning bolt. The side wall of the supporting cylindrical tube is equipped with an annular cavity, and the side wall of the annular cavity is equipped with a heat-conducting plate. The interior of the annular cavity is equipped with a heating resistance wire.

2. The alkali-free quick-setting agent production reactor according to claim 1, characterized in that: The top of the supporting cylindrical tube is provided with an outlet, the bottom of the sinking placement groove can be provided with a through hole, and the ends of the folded top rods are provided with limiting arc plates, and the ends of the limiting arc plates are provided with flexible components.

3. The alkali-free quick-setting agent production reactor according to claim 1, characterized in that: The reactor includes a first part and a second part, which are integrally formed. The bottom of the second part is provided with a folded pipe, which passes through a supporting cylindrical tube. The diameter of the second part is smaller than that of the first part.

4. The alkali-free quick-setting agent production reactor according to claim 3, characterized in that: The bottom of the annular cavity is provided with an annular support component, and the bottom of the second part is placed on the annular support component. The reactor is placed on the supporting cylindrical tube. The top of the reactor is provided with a feed branch pipe. The first part is provided with a partition plate, and a stirring motor is provided on the partition plate. The output shaft of the stirring motor passes through the partition plate, and a stirring and crushing shaft is provided at the end of the output shaft of the stirring motor.

5. The alkali-free quick-setting agent production reactor according to claim 4, characterized in that: An arc-shaped partition is provided between the first part and the second part, and a filter hole is provided on the arc-shaped partition. The stirring and crushing shaft includes a horizontal stirring rod, a horizontal stirring rod, and a horizontal stirring rod. A vertical crushing rod is provided between the horizontal stirring rod and the horizontal stirring plate, and an inclined crushing rod is provided between the horizontal stirring plate and the horizontal stirring rod.

6. The alkali-free quick-setting agent production reactor according to claim 5, characterized in that: Both the vertical crushing rod and the inclined crushing rod are equipped with blades. An annular inclined plate is provided between the vertical crushing rods, and the annular inclined plate is located between the first horizontal stirring rod and the second horizontal stirring rod. The distance between the annular inclined plate and the first horizontal stirring rod, the second horizontal stirring rod and the vertical crushing rod is 5-10cm.

7. The alkali-free quick-setting agent production reactor according to claim 6, characterized in that: The horizontal stirring plate is provided with a number of filter holes, and the vertical direction of the filter holes forms an acute angle with the inclined crushing rod.