Quick mounting structure for gas-liquid mixer

The design of the support and locking components solves the problems of inconvenient installation and leakage of the gas-liquid mixer, enabling rapid installation, positioning and sealing, and improving practicality.

CN223931262UActive Publication Date: 2026-02-24SHANGHAI DONGRUI CHEM
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Patent Information

Application Number
CN202520543034.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-02-24
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

The existing gas-liquid mixers lack an installation structure, making them inconvenient to maintain after prolonged use, and prone to leakage at the connections, thus affecting their practicality.

Method used

The design incorporates support components, locking components, and connecting components, including guide blocks, limit rods, rotating plates, slots, reinforcing rods, and sealing rings, enabling rapid installation, positioning, and sealing.

Benefits of technology

It enables rapid installation and positioning of the gas-liquid mixer, facilitates maintenance, improves stability and sealing, and reduces the risk of leakage.

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Abstract

The utility model relates to the technical field of gas-liquid mixers, and discloses a quick mounting structure for a gas-liquid mixer, which comprises a support component, a pre-emulsification kettle, a control component, a gas tank and a mounting rack are fixedly mounted at the top end of the support component, and a reinforcing rod is fixedly mounted at one end, far away from the support component, of the mounting rack. A guide groove and a first through hole are formed in the end, away from the supporting assembly, of the mounting frame, and a locking assembly is arranged at the end, away from the supporting assembly, of the mounting frame. According to the quick mounting structure for the gas-liquid mixer, through the design of the connecting assembly, quick connection between the gas-liquid mixer body and the first connector and the second connector can be achieved, the gas-liquid mixer body can be conveniently overhauled after being used for a long time, and due to the fact that a rubber ring has good sealing performance, the sealing performance is good through the design of a sealing ring; according to the gas-liquid mixer, leakage at the joint of the gas-liquid mixer body and the first connector and the joint of the gas-liquid mixer body and the second connector is avoided, the sealing performance is high, and the sealing performance is further improved through the design of the three sealing rings.
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Description

Technical Field

[0001] This utility model relates to the field of gas-liquid mixer technology, specifically a quick-installation structure for a gas-liquid mixer. Background Technology

[0002] A gas-liquid mixer is a device used to mix gases and compatible liquids. Its main structure includes a housing, a gas-liquid inlet pipe, a motor, and rotating blades. The gas-liquid inlet pipe includes a water inlet and a gas inlet. One end of the water inlet is connected to a water inlet, and the gas inlet is connected to a gas inlet. The housing contains a water chamber and a gas-liquid mixing chamber. The water chamber has a water inlet on its side wall, and the gas-liquid mixing chamber has a water outlet on its side wall.

[0003] Chinese Invention Patent Publication No. CN 209173918 U discloses a gas-liquid reactor device. This device has a small footprint and utilizes the automatic intake of liquid to directly mix low-pressure gas and liquid outside the reactor body, effectively preventing gas aggregation and improving production efficiency. The temperature and pressure sensors in the device are connected to the automatic control system, making it easy to control and safe and reliable. However, this gas-liquid reactor device lacks an installation structure for the gas-liquid mixer body, making it inconvenient to maintain after long-term use. Furthermore, the lack of a sealing structure makes the connection between the gas-liquid mixer body and the joint prone to leakage, affecting the normal use of the whole device. Its practicality is poor, making it unsuitable for widespread use. Summary of the Invention

[0004] The technical problem to be solved by this utility model is to provide a quick installation structure for a gas-liquid mixer. It can effectively solve the problems of existing technologies that do not have an installation structure for the gas-liquid mixer body, making it inconvenient to inspect and maintain after long-term use, and lack a sealing structure, making it easy for leakage to occur at the connection between the gas-liquid mixer body and the connector, affecting the normal use of the whole, resulting in poor practicality and difficulty in promotion and use.

[0005] The technical solution adopted by this utility model is: a quick-installation structure for a gas-liquid mixer, including a support assembly. A pre-emulsification vessel, a control assembly, a gas tank, and a mounting bracket are fixedly installed on the top of the support assembly. A reinforcing rod is fixedly installed on the end of the mounting bracket away from the support assembly. A guide groove and a through hole are provided on the end of the mounting bracket away from the support assembly. A locking assembly is provided on the end of the mounting bracket away from the support assembly. A fixing block is fixedly installed on the end of the locking assembly near the mounting bracket. A rotating plate is rotatably installed on the outer side of the fixing block. The rotating plate is located away from the fixing block. One end of the block has a slot 1. A guide block is fixedly installed at the end of the fixed block away from the locking component. A through hole 2 is opened on the outer side of the guide block. A limit rod is inserted and installed on the outer side of the guide block. A slot 2 is opened on the outer side of the limit rod. A gas-liquid mixer body is provided on the inner side of the locking component. A connector 1 is fixedly installed at the end of the pre-emulsification kettle away from the support component. A connector 2 is fixedly installed at the end of the gas tank away from the support component. Connecting components are provided between connector 1 and the gas-liquid mixer body and between connector 2 and the gas-liquid mixer body.

[0006] Preferably, the reinforcing rod is inclined at an angle of 45°, and the cross-section of the reinforcing rod and the mounting bracket is triangular.

[0007] The above technical solution utilizes the stability of triangles, and the design of reinforcing rods makes them less prone to tipping over, thus improving the stability and robustness of the mounting frame and making it highly practical.

[0008] Preferably, the guide block and the guide groove are plugged in, and the cross-section of the guide block has an "L" shape.

[0009] Through the above technical solution, by cooperating with the guide block and the guide groove, the staff can insert the guide block into the inside of the guide groove, which can realize the quick positioning of the locking component and facilitate subsequent limiting.

[0010] Preferably, the limiting rod passes through through hole two and through hole one, the two through holes have the same diameter, and the rotating plate is adapted to the limiting rod.

[0011] With the above technical solution, after the locking component is quickly positioned, the rotating plate is rotated first, and then the limiting rod passes through the second through hole and the first through hole. Then the rotating plate is stopped, so that the first slot is engaged with the second slot, which can realize the quick positioning of the locking component. After long-term use, it is convenient to carry out maintenance.

[0012] Preferably, the locking assembly includes clamp one, clamp two, groove one, threaded sleeve, screw, and groove two. Clamp two is rotatably mounted on the outer side of clamp one. Groove one is formed on the outer side of clamp one. Threaded sleeve is rotatably mounted inside groove one. Screw is threadedly connected to the inner side of threaded sleeve. Groove two is formed on the outer side of clamp two. Groove one and groove two communicate with each other. Screw is adapted to groove two.

[0013] With the above technical solution, after the locking component is quickly positioned, the operator places the gas-liquid mixer body inside clamp one. After the gas-liquid mixer body is connected to connector one and connector two, the operator rotates clamp two so that clamp two abuts against the gas-liquid mixer body. Then, the screw is rotated so that the screw is inside groove two. Then, the screw is turned so that the screw abuts against clamp two, which can quickly lock the gas-liquid mixer body. Through the design of the locking component, it not only limits the position of the gas-liquid mixer body but also provides support, making it highly practical.

[0014] Preferably, the connecting assembly includes a plug, a mounting groove, a sealing ring, a positioning block, a positioning groove, a third through hole, a fourth through hole, a bolt, and a nut. A plug is fixedly installed at the end of the connector one near the gas-liquid mixer body. A mounting groove is formed on the outer side of the plug, and a sealing ring is provided inside the mounting groove. A positioning block is fixedly installed on the outer side of the plug near the gas-liquid mixer body. A positioning groove is formed on the inner side of the gas-liquid mixer body near the end of the connector one. A third through hole is formed on the outer side of the connector one. A fourth through hole is formed on the outer side of the gas-liquid mixer body. A bolt is inserted into the outer side of the connector one, and a nut is threaded onto the outer side of the bolt. The outer diameter of the plug is the same as the inner diameter of the gas-liquid mixer body. The positioning block and the positioning groove are inserted into each other. The bolt passes through the third and fourth through holes, and the diameters of the third and fourth through holes are the same.

[0015] Using the above technical solution, the staff inserts the insert block into the interior of the gas-liquid mixer body, inserts the positioning block into the interior of the positioning groove, then inserts the bolt through the through hole three and through hole four, and finally connects the nut to the bolt thread, which can realize the quick connection between the gas-liquid mixer body and connector one and connector two, and facilitates maintenance after long-term use.

[0016] Preferably, the sealing ring is a rubber ring, and three identical sealing rings are provided, with the three sealing rings distributed at equal intervals.

[0017] Through the above technical solution, because the rubber ring has good sealing performance, the design of the sealing ring avoids leakage at the connection between the gas-liquid mixer body and connector one and connector two, and the sealing performance is high. The design of three sealing rings further improves the sealing performance.

[0018] Compared with the prior art, this utility model provides a quick installation structure for a gas-liquid mixer, which has the following advantages:

[0019] 1. This gas-liquid mixer uses a quick-installation structure. Through the cooperation of the guide block and the guide groove, the locking component can be quickly positioned. Through the cooperation of the limit rod, through hole two, through hole one, rotating plate, and slot one and slot two, the locking component can be quickly limited. After long-term use, it is convenient to perform maintenance. The design of the locking component not only limits the gas-liquid mixer body but also provides support, making it highly practical. Through the design of the connecting component, the gas-liquid mixer body can be quickly connected to connector one and connector two, which is convenient for maintenance after long-term use.

[0020] 2. This gas-liquid mixer uses a quick-installation structure. Due to the stability of the triangle shape, the design of the reinforcing rod makes it less prone to tipping over, improving the stability and firmness of the mounting frame and making it highly practical. Because the rubber ring has good sealing performance, the design of the sealing ring prevents leakage at the connection between the gas-liquid mixer body and connector one and connector two, resulting in high sealing performance. The design of three sealing rings further improves the sealing performance. Attached Figure Description

[0021] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0022] Figure 2 This is a schematic diagram of the installation structure of the gas-liquid mixer body of this utility model;

[0023] Figure 3 This is a schematic diagram of the installation structure of the locking assembly of this utility model. Figure 1 ;

[0024] Figure 4 This utility model Figure 3 Enlarged structural diagram at point A in the middle;

[0025] Figure 5 This is a schematic diagram of the installation structure of the locking assembly of this utility model. Figure 2 ;

[0026] Figure 6 This is a schematic diagram of the installation structure of the connecting component of this utility model;

[0027] Figure 7 This utility model Figure 7 Enlarged structural diagram at point B.

[0028] The components include: 1. Support assembly; 2. Pre-emulsification kettle; 3. Control assembly; 4. Gas tank; 5. Mounting bracket; 7. Reinforcing rod; 8. Guide groove; 9. Through hole one; 10. Locking assembly; 1001. Clamp one; 1002. Clamp two; 1003. Groove one; 1004. Threaded sleeve; 1005. Screw; 1006. Groove two; 11. Fixing block; 12. Rotating plate; 13. Slot one; 14. 16. Guide block; 17. Through hole two; 18. Limiting rod; 19. Slot two; 20. Gas-liquid mixer body; 21. Connector one; 22. Connector two; 23. Connecting assembly; 2201. Insert block; 2202. Mounting slot; 2203. Sealing ring; 2204. Positioning block; 2205. Positioning slot; 2206. Through hole three; 2207. Through hole four; 2208. Bolt; 2209. Nut. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] Example 1: As Figure 1-7 As shown, the present invention provides a quick-installation structure for a gas-liquid mixer, including a support assembly 1. A pre-emulsification vessel 2, a control assembly 3, a gas tank 4, and a mounting bracket 5 are fixedly installed on the top of the support assembly 1. A reinforcing rod 7 is fixedly installed on the end of the mounting bracket 5 away from the support assembly 1. A guide groove 8 and a through hole 9 are provided on the end of the mounting bracket 5 away from the support assembly 1. A locking assembly 10 is provided on the end of the mounting bracket 5 away from the support assembly 1. A fixing block 11 is fixedly installed on the end of the locking assembly 10 near the mounting bracket 5. A rotating plate 12 is rotatably installed on the outer side of the fixing block 11. A section is provided on the end of the rotating plate 12 away from the fixing block 11. A guide block 14 is fixedly installed at the end of the fixing block 11 away from the locking component 10. A through hole 16 is opened on the outer side of the guide block 14. A limit rod 17 is inserted and installed on the outer side of the guide block 14. A slot 18 is opened on the outer side of the limit rod 17. A gas-liquid mixer body 19 is provided on the inner side of the locking component 10. A connector 20 is fixedly installed at the end of the pre-emulsification kettle 2 away from the support component 1. A connector 21 is fixedly installed at the end of the gas tank 4 away from the support component 1. A connecting component 22 is provided between the connector 20 and the gas-liquid mixer body 19 and between the connector 21 and the gas-liquid mixer body 19.

[0031] Specifically, the reinforcing rod 7 is inclined at an angle of 45°, and the cross-section of the reinforcing rod 7 combined with the mounting bracket 5 forms a triangular structure. The advantage is that the triangle provides stability, and the design of the reinforcing rod 7 makes it less prone to tipping over, thus improving the stability and robustness of the mounting bracket 5 and enhancing its practicality.

[0032] Specifically, the guide block 14 and the guide groove 8 are installed by insertion, and the cross-section of the guide block 14 is L-shaped. The advantage is that, through the cooperation of the guide block 14 and the guide groove 8, the operator can insert the guide block 14 into the interior of the guide groove 8, which can achieve quick positioning of the locking component 10 and facilitate subsequent limiting.

[0033] Specifically, the limiting rod 17 passes through through hole 16 and through hole 9, with the same diameter. The rotating plate 12 is adapted to the limiting rod 17. The advantage is that after quickly positioning the locking assembly 10, the rotating plate 12 is rotated first, then the limiting rod 17 passes through through hole 16 and through hole 9. Afterward, the rotation of the rotating plate 12 is stopped, allowing slot 13 to engage with slot 18, thus achieving rapid positioning of the locking assembly 10. This also facilitates maintenance after prolonged use.

[0034] Example 2: Figure 2-7 As shown, this is an improvement on the previous embodiment.

[0035] Specifically, the locking assembly 10 includes a first clamp 1001, a second clamp 1002, a first groove 1003, a threaded sleeve 1004, a screw 1005, and a second groove 1006. The second clamp 1002 is rotatably mounted on the outer side of the first clamp 1001. The first groove 1003 is opened on the outer side of the first clamp 1001. The threaded sleeve 1004 is rotatably mounted inside the first groove 1003. The screw 1005 is threadedly connected to the inner side of the threaded sleeve 1004. The second groove 1006 is opened on the outer side of the second clamp 1002. The first groove 1003 and the second groove 1006 communicate with each other. The screw 1005 is adapted to the second groove 1006. The advantage is that after the locking component 10 is quickly positioned, the operator places the gas-liquid mixer body 19 inside the clamp 1001. After the gas-liquid mixer body 19 is connected to the connector 20 and connector 21, the operator rotates the clamp 2 1002 so that the clamp 2 1002 abuts against the gas-liquid mixer body 19. Then, the operator rotates the screw 1005 so that the screw 1005 is located inside the groove 2 1006. Then, the operator screws the screw 1005 so that the screw 1005 abuts against the clamp 2 1002, which can quickly lock the gas-liquid mixer body 19. Through the design of the locking component 10, it not only limits the position of the gas-liquid mixer body 19, but also provides support, making it highly practical.

[0036] Specifically, the connecting component 22 includes a plug 2201, a mounting groove 2202, a sealing ring 2203, a positioning block 2204, a positioning groove 2205, a third through hole 2206, a fourth through hole 2207, a bolt 2208, and a nut 2209. A plug 2201 is fixedly installed at one end of the connector 20 near the gas-liquid mixer body 19. A mounting groove 2202 is provided on the outer side of the plug 2201, and a sealing ring 2203 is provided inside the mounting groove 2202. A positioning block 2204 is fixedly installed on the outer side of the plug 2201 near the gas-liquid mixer body 19. A positioning groove 2205 is provided on the inner side of the end near the connector 20. A through hole 2206 is provided on the outer side of the connector 20. A through hole 2207 is provided on the outer side of the gas-liquid mixer body 19. A bolt 2208 is inserted and installed on the outer side of the connector 20. A nut 2209 is threaded on the outer side of the bolt 2208. The outer diameter of the insert block 2201 is the same as the inner diameter of the gas-liquid mixer body 19. The positioning block 2204 is inserted and installed in the positioning groove 2205. The bolt 2208 passes through the through hole 2206 and the through hole 2207. The diameters of the through holes 2206 and 2207 are the same. The advantage is that the operator inserts the insert block 2201 into the interior of the gas-liquid mixer body 19, inserts the positioning block 2204 into the interior of the positioning groove 2205, then inserts the bolt 2208 through the through hole 3 2206 and the through hole 4 2207, and finally connects the nut 2209 to the bolt 2208 by thread. This allows for quick connection between the gas-liquid mixer body 19 and the connector 1 20 and connector 2 21, and facilitates maintenance after long-term use.

[0037] Specifically, the sealing ring 2203 is a rubber ring, and three identical sealing rings 2203 are provided, with the three sealing rings 2203 distributed at equal intervals. The advantage is that, due to the good sealing performance of the rubber ring, the design of the sealing ring 2203 avoids leakage at the connection between the gas-liquid mixer body 19 and the first connector 20 and the second connector 21, resulting in high sealing performance. The design of three sealing rings 2203 further improves the sealing performance.

[0038] Working principle: During installation, the guide block 14 is inserted into the guide groove 8 by the guide block 14, which allows for quick positioning of the locking assembly 10 and facilitates subsequent limiting. After quickly positioning the locking assembly 10, the rotating plate 12 is rotated first, and then the limiting rod 17 passes through the second through hole 16 and the first through hole 9. The rotating plate 12 is then stopped, causing the first slot 13 to engage with the second slot 18, thus achieving quick limiting of the locking assembly 10. This facilitates maintenance after prolonged use. After the quick limit is engaged, the operator places the gas-liquid mixer body 19 inside the clamp 1001. Then, the operator inserts the insert block 2201 into the gas-liquid mixer body 19 and simultaneously inserts the positioning block 2204 into the positioning groove 2205. Next, the bolt 2208 passes through the through hole 2206 and the through hole 2207. Finally, the nut 2209 is threaded onto the bolt 2208, enabling a quick connection between the gas-liquid mixer body 19 and connectors 20 and 21. After prolonged use, For maintenance, after the gas-liquid mixer body 19 is connected to connector 20 and connector 21, the operator rotates clamp 1002 until it contacts the gas-liquid mixer body 19. Then, the screw 1005 is rotated until it is positioned inside groove 1006. Finally, the screw 1005 is tightened until it contacts clamp 1002, thus quickly locking the gas-liquid mixer body 19. The locking assembly 10 not only secures the gas-liquid mixer body 19 but also... The mixer body 19 serves as a limit and support, making it highly practical. During use, the triangle shape provides stability, and the design of the reinforcing rod 7 prevents it from tipping over, thus improving the stability and firmness of the mounting bracket 5. The rubber rings provide excellent sealing, and the design of the sealing rings 2203 prevents leakage at the connection points between the gas-liquid mixer body 19 and connectors 20 and 21, resulting in high sealing performance. The design of three sealing rings 2203 further enhances the sealing performance.

[0039] 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 quick-installation structure for a gas-liquid mixer, comprising a support assembly (1), characterized in that: The top of the support assembly (1) is fixedly mounted with a pre-emulsification tank (2), a control assembly (3), a gas tank (4), and a mounting bracket (5). A reinforcing rod (7) is fixedly mounted on the end of the mounting bracket (5) away from the support assembly (1). A guide groove (8) and a through hole (9) are provided on the end of the mounting bracket (5) away from the support assembly (1). A locking assembly (10) is provided on the end of the mounting bracket (5) away from the support assembly (1). A fixing block (11) is fixedly mounted on the end of the locking assembly (10) near the mounting bracket (5). A rotating plate (12) is rotatably mounted on the outer side of the fixing block (11). A slot (13) is provided on the end of the rotating plate (12) away from the fixing block (11). The fixing block (11) is located away from... A guide block (14) is fixedly installed at one end of the locking assembly (10). A through hole (16) is provided on the outer side of the guide block (14). A limit rod (17) is inserted and installed on the outer side of the guide block (14). A slot (18) is provided on the outer side of the limit rod (17). A gas-liquid mixer body (19) is provided on the inner side of the locking assembly (10). A connector (20) is fixedly installed at the end of the pre-emulsification kettle (2) away from the support assembly (1). A connector (21) is fixedly installed at the end of the gas tank (4) away from the support assembly (1). A connecting assembly (22) is provided between the connector (20) and the gas-liquid mixer body (19) and between the connector (21) and the gas-liquid mixer body (19).

2. The quick-installation structure for a gas-liquid mixer according to claim 1, characterized in that: The reinforcing rod (7) is inclined at an angle of 45°, and the cross section of the reinforcing rod (7) combined with the mounting bracket (5) is triangular.

3. The quick-installation structure for a gas-liquid mixer according to claim 1, characterized in that: The guide block (14) and the guide groove (8) are installed by plugging in, and the cross section of the guide block (14) is in the shape of an "L".

4. The quick-installation structure for a gas-liquid mixer according to claim 1, characterized in that: The limiting rod (17) passes through the second through hole (16) and the first through hole (9). The second through hole (16) and the first through hole (9) have the same diameter. The rotating plate (12) is adapted to the limiting rod (17).

5. The quick-installation structure for a gas-liquid mixer according to claim 1, characterized in that: The locking assembly (10) includes clamp one (1001), clamp two (1002), groove one (1003), threaded sleeve (1004), screw (1005) and groove two (1006). Clamp two (1002) is rotatably mounted on the outside of clamp one (1001). Groove one (1003) is provided on the outside of clamp one (1001). Threaded sleeve (1004) is rotatably mounted inside groove one (1003). Screw (1005) is threadedly connected inside threaded sleeve (1004). Groove two (1006) is provided on the outside of clamp two (1002). Groove one (1003) and groove two (1006) are in communication. Screw (1005) is adapted to groove two (1006).

6. The quick-installation structure for a gas-liquid mixer according to claim 1, characterized in that: The connecting assembly (22) includes a plug (2201), a mounting groove (2202), a sealing ring (2203), a positioning block (2204), a positioning groove (2205), a third through hole (2206), a fourth through hole (2207), a bolt (2208), and a nut (2209). A plug (2201) is fixedly installed at one end of the connector (20) near the gas-liquid mixer body (19). A mounting groove (2202) is provided on the outer side of the plug (2201), and a sealing ring (2203) is provided inside the mounting groove (2202). A positioning block (2204) is fixedly installed on the outer side of the plug (2201) near the gas-liquid mixer body (19). The gas-liquid mixer body (19) is located near... A positioning groove (2205) is provided on the inner side of one end of the connector (20). A through hole (2206) is provided on the outer side of the connector (20). A through hole (2207) is provided on the outer side of the gas-liquid mixer body (19). A bolt (2208) is inserted and installed on the outer side of the connector (20). A nut (2209) is threaded on the outer side of the bolt (2208). The outer diameter of the insert (2201) is the same as the inner diameter of the gas-liquid mixer body (19). The positioning block (2204) and the positioning groove (2205) are inserted and installed. The bolt (2208) passes through the through hole (2206) and the through hole (2207). The diameters of the through holes (2206) and the through holes (2207) are the same.

7. The quick-installation structure for a gas-liquid mixer according to claim 6, characterized in that: The sealing ring (2203) is a rubber ring, and three identical sealing rings (2203) are provided, which are distributed at equal intervals.

Citation Information

Patent Citations

  • Gas-liquid reaction kettle device

    CN209173918U