Enamel reaction kettle with anti-blocking structure

By installing a motor-driven moving shaft and blade structure in the enamel-lined reactor, the problem of material blockage at the discharge port was solved, enabling smooth material flow and the restoration of the production process.

CN223556023UActive Publication Date: 2025-11-18MIDAS MEDICAL TECHNOLOGY (SHANDONG) CO LTD
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Patent Information

Application Number
CN202423084770.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-11-18
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing reactors may contain large pieces of material or incompletely broken particles after material mixing, which can cause blockage at the discharge port, preventing the fluid from flowing out normally and thus blocking the discharge pipe.

Method used

An enamel-lined reactor with an anti-clogging structure was designed, including an outer shell, a vessel body, an adjusting plate, a displacement block, and a stopping structure. The moving shaft and blades driven by a motor disperse the clogging material, ensuring smooth material flow.

Benefits of technology

It effectively prevents blockage at the discharge port, ensures smooth flow of liquid materials, and restores normal production processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The enamel reaction kettle with the anti-blocking structure comprises a shell, a kettle body, an adjusting plate, a displacement block and a stopping structure, the outer surface of the shell is fixedly connected with a support, the surface of the left side of the support is fixedly connected with the adjusting plate, the left side of the adjusting plate is provided with an adjusting groove, and the bottom of the shell is fixedly connected with a discharging pipe. The reaction kettle comprises a shell, a kettle body, an adjusting plate, a displacement block and a stopping structure, a discharging pipe is arranged in the shell, the bottom of the discharging pipe is fixedly connected with a discharging pipe, the bottom of the discharging pipe is fixedly connected with a moving pipe, a moving shaft is arranged on the inner wall of the moving pipe, and the bottom of the moving shaft is fixedly connected with a motor. The problem that the discharge pipeline is possibly completely blocked due to the fact that a fluid cannot normally flow out and the materials in the pipeline are accumulated due to the fact that the materials possibly contain large substances or particles which are not completely crushed and are prone to blocking the discharge port in the discharge process is solved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of reaction kettle, especially, relate to a enamel reaction kettle with prevent blocking structure. BACKGROUND

[0002] The enamel reaction kettle is a kind of reaction equipment that glass lining containing high silicon dioxide is lined in the inner surface of steel container, and firmly adheres to the metal surface by high temperature burning to become composite material product, the enamel reaction kettle combines the stability of glass and the double advantages of metal strength, the steel kettle body has higher mechanical strength, can withstand certain pressure and impact;And the enamel lining has excellent corrosion resistance, can adapt to various chemical reaction processes, effectively prevents corrosion and leakage, is suitable for various chemical reaction processes, so it can handle a variety of corrosive media, such as acid, alkali, salt etc., and the material after reaction is discharged through the discharge port located at the bottom of the reaction kettle.

[0003] The existing problems are that: after the reaction kettle mixes and processes materials, the materials may contain large pieces of material or not completely broken particles, which are easy to block the discharge port in the discharging process, cause the fluid to not flow normally, cause the material in the pipeline to accumulate, and then may completely block the discharge pipeline. UTILITY MODEL CONTENTS

[0004] In view of the problems in the prior art, the utility model provides an enamel reaction kettle with prevent blocking structure, which has the advantages of scattering the materials in the discharge pipe and preventing too much material from blocking the discharge port, solves the problems that the existing reaction kettle mixes and processes materials, the materials may contain large pieces of material or not completely broken particles, which are easy to block the discharge port in the discharging process, cause the fluid to not flow normally, cause the material in the pipeline to accumulate, and then may completely block the discharge pipeline.

[0005] The utility model discloses a kind of enameled reaction kettle with anti-blocking structure, including shell, cauldron body, adjusting plate, displacement block and fixed stop structure, the inner wall of shell is fixedly connected with cauldron body, the outer surface of shell is fixedly connected with support, the surface of support left side is fixedly connected with adjusting plate, the left side of adjusting plate is equipped with adjusting groove, the front and back of adjusting groove inner wall respectively is equidistantly equipped with limit slot, the top of shell is fixedly connected with top cover, the top of top cover is fixedly connected with stirrer, the bottom of shell is fixedly connected with discharge pipe, the discharge pipe is connected with cauldron body, the bottom of discharge pipe is fixedly connected with discharge pipe, the bottom of discharge pipe is fixedly connected with moving pipe, the inner wall of moving pipe is provided with moving shaft, the top of moving shaft is fixedly connected with stop block, the stop block is arranged at the bottom of discharge pipe, the outer surface of moving shaft is fixedly connected with blade, the outer surface of moving shaft bottom is sleeved with sealing sleeve, the sealing sleeve is fixedly connected to the inner wall of moving pipe, the bottom of moving shaft extends and penetrates the inner wall of moving pipe, the bottom of moving shaft is fixedly connected with motor, the outer surface of motor is fixedly connected with moving arm, the right side of moving arm is fixedly connected with displacement block, the inner wall of adjusting groove is slidably connected with displacement block, the inner wall of displacement block is equipped with displacement slot, the right side of displacement block is equipped with opening, the left side of displacement block is equipped with sliding slot, the front and back of displacement slot inner wall is fixedly connected with dynamic sliding bar, the inner wall of displacement slot is provided with fixed stop structure.

[0006] As preferred in the utility model, the fixed stop structure includes a sliding block, the sliding block is arranged on the left side of the displacement block, the outer surface of the sliding block is slidably connected to the inner wall of the sliding slot, the left side of the sliding block is fixedly connected with a moving piece, the right side of the sliding block is fixedly connected with a sliding arm, by arranging the sliding block, when the moving piece is pushed downward, it can drive the sliding block to slide downward along the sliding slot, and the moving sliding block synchronously drives the sliding arm to move downward.

[0007] As preferred in the utility model, the sliding arm is arranged on the inner wall of the displacement slot, the left end of the sliding arm is fixedly connected with the sliding block, the front and back of the right side of the sliding block are respectively fixedly connected with sliding rods, the bottoms of the two sliding rods are respectively provided with rotating arms, by arranging the sliding arm, the sliding arm can be driven by the sliding block, and moves in the displacement slot, to simultaneously drive the downward movement of the two sliding rods, and the movement of the two sliding rods simultaneously drives the rotation of the two rotating arms.

[0008] As the utility model is preferred, two rotating arms are arranged on the inner wall of the displacement groove, one end of the two rotating arms is rotatably connected to the inner wall of the displacement groove through a rotating shaft, the top of the other end of the two rotating arms is attached to the two sliding rods, and the bottom of the two rotating arms is fixedly connected to the two pushing arms.

[0009] As the utility model is preferred, the top of the two pushing arms is fixedly connected to the bottom of the two rotating arms, one side of the lower end of the two pushing arms is provided with a linkage groove, the inner wall of the two linkage grooves is provided with a linkage rod, the right side of the two linkage rods is fixedly connected to a linkage arm, and the pushing arm is arranged.

[0010] As the utility model is preferred, the middle of the two linkage arms is slidably connected to the outer surface of the movable sliding rod, one end of the two linkage arms is fixedly connected to a locking spring, one end of the two locking springs is fixedly connected to the inner wall of the displacement groove, and the right side of the two linkage arms is fixedly connected to a locking block.

[0011] As the utility model is preferred, the two locking blocks extend to the inner wall of the adjusting groove through an opening, and one end of the two locking blocks is inserted into the inner wall of the limiting groove, so that the locking block can be separated from the limiting groove when moving close, thereby releasing the fixed limiting of the displacement block, allowing it to slide down in the adjusting groove and synchronously drive the movement of the moving arm.

[0012] Compared with the prior art, the utility model has the beneficial effects as follows:

[0013] 1、The utility model discloses a shell, a cauldron body, an adjusting plate, a displacement block and a fixed structure are arranged, which solves the problem that the existing reaction kettle is blocked during discharging after mixing and processing materials, and the fluid cannot normally flow out, causing the material in the pipeline to accumulate and even completely block the discharge pipeline.

[0014] 2, the utility model discloses a adjusting plate and displacement block are set up, can make displacement block and fixed stop structure cooperation work, the upper movement of motor and moving shaft is driven through moving arm, and is fixed through locating structure, to discharge the material liquid in cauldron body in this, and when the blockage occurs, through the motor drive moving shaft rotation, through the blade to the material block of blockage is stirred and is scattered, ensure that the unblock discharge port can ensure that material liquid can flow out smoothly, thereby restore normal production process. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the three-dimensional structure schematic diagram of shell that the utility model embodiment provides;

[0016] Figure 2 It is the sectional view of shell, cauldron body and discharge pipe that the utility model embodiment provides;

[0017] Figure 3 It is the sectional view of discharge pipe, discharge pipe and displacement block and the structure schematic diagram of adjusting plate that the utility model embodiment provides;

[0018] Figure 4 It is the explosion structure schematic diagram of fixed stop structure and dynamic slide that the utility model embodiment provides.

[0019] In the drawing: 1, shell;101, support;102, top cover;103, stirrer;104, discharge pipe;2, cauldron body;3, adjusting plate;301, adjusting groove;302, limit slot;4, displacement block;401, moving arm;402, opening;5, fixed stop structure;6, discharge pipe;601, moving pipe;602, moving shaft;603, stop block;604, blade;605, sealing sleeve;606, motor;7, displacement groove;701, dynamic slide;8, sliding groove;9, sliding block;10, moving piece;11, sliding arm;12, sliding rod;13, rotating arm;14, push arm;15, linkage groove;16, linkage rod;17, linkage arm;18, locking spring;19, locking block. DETAILED DESCRIPTION

[0020] In order to further understand the invention content, characteristics and efficacy of the utility model, the following examples are cited, and the following is described in detail with the help of drawings.

[0021] The structure of the utility model is described in detail below in combination with the drawings.

[0022] As Figures 1 to 4As shown, the utility model discloses an enamel reaction kettle with anti -blocking structure, including shell 1, kettle body 2, adjusting plate 3, displacement block 4 and fixed stop structure 5, the inner wall fixed connection of shell 1 has kettle body 2, the outer surface fixed connection of shell 1 has support 101, the surface fixed connection of support 101 left side has adjusting plate 3, the left side of adjusting plate 3 is equipped with adjusting groove 301, the front and rear sides of adjusting groove 301 inner wall are respectively equidistant and are equipped with limit groove 302, the top fixed connection of shell 1 has top cover 102, the top fixed connection of top cover 102 has stirrer 103, the bottom fixed connection of shell 1 has discharge pipe 104, and discharge pipe 104 is linked with kettle body 2, and the bottom fixed connection of discharge pipe 104 has discharge pipe 6, and the bottom fixed connection of discharge pipe 6 has moving tube 601, and the inner wall of moving tube 601 is provided with moving shaft 602, and the top fixed connection of moving shaft 602 has stop block 603, and stop block 603 sets up at the bottom of discharge pipe 104, and the outer surface fixed connection of moving shaft 602 has blade 604, and the outer surface of moving shaft 602 bottom is sleeved with sealing sleeve 605, and sealing sleeve 605 is fixedly connected to the inner wall of moving tube 601, and the bottom of moving shaft 602 extends and penetrates the inner wall of moving tube 601, and the bottom fixed connection of moving shaft 602 has motor 606, and the outer surface fixed connection of motor 606 has moving arm 401, and the right side fixed connection of moving arm 401 has displacement block 4, and displacement block 4 is slidably connected to the inner wall of adjusting groove 301, and the inner wall of displacement block 4 is equipped with displacement groove 7, and the right side of displacement block 4 is equipped with opening 402, and the left side of displacement block 4 is equipped with sliding slot 8, and the front and rear sides of displacement groove 7 inner wall are fixedly connected with dynamic sliding rod 701, and the inner wall of displacement groove 7 is provided with fixed stop structure 5.

[0023] Reference Figure 2 And Figure 4 Fixed stop structure 5 includes sliding block 9, sliding block 9 is arranged at the left side of displacement block 4, the outer surface of sliding block 9 is slidably connected to the inner wall of sliding slot 8, the left side of sliding block 9 is fixedly connected with moving piece 10, and the right side of sliding block 9 is fixedly connected with sliding arm 11.

[0024] The above scheme is adopted: by setting sliding block 9, when moving piece 10 is pushed down, sliding block 9 can be driven to slide down along sliding slot 8, and the moving sliding block 9 synchronously drives the downward movement of sliding arm 11.

[0025] Reference Figure 4 Sliding arm 11 is arranged on the inner wall of displacement groove 7, the left end of sliding arm 11 is fixedly connected with sliding block 9, the front and rear ends of the right side of sliding block 9 are respectively fixedly connected with sliding rod 12, and the bottoms of the two sliding rods 12 are respectively provided with rotating arm 13.

[0026] Adopting the above scheme: by setting the sliding arm 11, the sliding arm 11 can be driven by the sliding block 9, moving in the displacement groove 7, to simultaneously drive the downward movement of the two sliding rods 12, so that the two sliding rods 12 move simultaneously to drive the rotation of the two rotating arms 13.

[0027] Reference Figure 4 , two rotating arms 13 are arranged in front of and behind the inner wall of the displacement groove 7 respectively, the ends of the two rotating arms 13 close to each other are rotatably connected to the inner wall of the displacement groove 7 respectively, the top parts of the ends of the two rotating arms 13 away from each other are respectively in contact with the two sliding rods 12, and the bottom parts of the two rotating arms 13 are fixedly connected with the two push arms 14 respectively.

[0028] Adopting the above scheme: by setting the rotating arm 13, the two sliding rods 12 move downward and simultaneously press the surfaces of the two rotating arms 13, so that the two rotating arms 13 rotate relatively, and then the two rotating arms 13 rotate to drive the two push arms 14 to rotate respectively.

[0029] Referring to FIG. 4, the top parts of the two push arms 14 are fixedly connected to the bottom parts of the ends of the two rotating arms 13 close to each other, the sides close to each other of the lower ends of the two push arms 14 are respectively provided with a linkage groove 15, the inner walls of the two linkage grooves 15 are respectively provided with a linkage rod 16, and the right sides of the two linkage rods 16 are respectively fixedly connected with a linkage arm 17.

[0030] Adopting the above scheme: by setting the push arm 14, the two push arms 14 move in the linkage groove 15 and approach by pressing the two linkage rods 16 during the rotation process, so that the two linkage rods 16 can drive the two linkage arms 17 to move and approach respectively.

[0031] Referring to FIG. 4, the top parts of the two push arms 14 are fixedly connected to the bottom parts of the ends of the two rotating arms 13 close to each other, the sides close to each other of the lower ends of the two push arms 14 are respectively provided with a linkage groove 15, the inner walls of the two linkage grooves 15 are respectively provided with a linkage rod 16, and the right sides of the two linkage rods 16 are respectively fixedly connected with a linkage arm 17. Figure 4

[0032] Adopting the above scheme: by setting the linkage arm 17, the two linkage arms 17 can be driven by the linkage rod 16 to slide on the dynamic sliding rod 701 and approach, and stretch the two locking springs 18 respectively, and the two linkage arms 17 slide to drive the two locking blocks 19 to move and approach respectively.

[0033] Referring to FIG. 4, the top parts of the two push arms 14 are fixedly connected to the bottom parts of the ends of the two rotating arms 13 close to each other, the sides close to each other of the lower ends of the two push arms 14 are respectively provided with a linkage groove 15, the inner walls of the two linkage grooves 15 are respectively provided with a linkage rod 16, and the right sides of the two linkage rods 16 are respectively fixedly connected with a linkage arm 17. Figure 3 and Figure 4 The two locking blocks 19 extend to the inner walls of the adjustment grooves 301 through the openings 402 respectively, and the ends of the two locking blocks 19 away from each other are respectively inserted into the inner walls of the limiting grooves 302. ​

[0034] By adopting the above scheme: by arranging the locking blocks 19, when the locking blocks 19 are moved close, the locking blocks 19 can be respectively separated from the limiting grooves 302, the fixing and limiting of the displacement block 4 is released, the displacement block 4 can slide downwards in the adjusting groove 301, and the movement of the moving arm 401 is driven synchronously, so as to drive the movement of the moving shaft 602 in the moving pipe 601.

[0035] The working principle of the utility model is as follows:

[0036] In use, the material in the kettle body 2 is mixed and processed by cooperating with the stirrer 103, after completion, the moving arm 401 is pushed upwards, the displacement block 4 is driven to slide upwards in the adjusting groove 301, the displacement block 4 slides upwards at the same time, the two locking blocks 19 are forced by the limiting grooves 302, the two locking blocks 19 are forced and moved close, the two linkage arms 17 are driven to slide close on the movable slide rod 701, and the two locking springs 18 are stretched, when the two locking blocks 19 are completely retracted in the adjusting groove 301, the displacement block 4 can drive the moving arm 401 to slide one step upwards along the adjusting groove 301, then the two locking springs 18 push the two linkage arms 17, the two locking blocks 19 are inserted in the limiting grooves 302, the displacement block 4 is fixed, the moving arm 401 is moved upwards, the motor 606 and the moving shaft 602 are moved upwards, the moving shaft 602 is moved upwards in the sealing sleeve 605, the blocking block 603 is moved upwards, the material liquid in the reaction kettle can flow out through the discharge pipe 104 and be discharged through the discharge pipe 6, when the discharge pipe 104 is blocked, the motor 606 drives the moving shaft 602 to rotate, the sediment is stirred and dispersed through the blade 604, and the sediment also flows out through the discharge pipe 6, after the material is discharged, the moving piece 10 is pushed downwards, the sliding block 9 is driven to slide downwards along the sliding groove 8, the sliding arm 11 is driven to move downwards in the displacement groove 7, the two sliding rods 12 are driven to move downwards synchronously, the two sliding rods 12 move downwards at the same time, the surfaces of the two rotating arms 13 are pressed, the two rotating arms 13 rotate, the two pushing arms 14 are driven to rotate, the two linkage rods 16 are moved through the linkage groove 15, the two linkage arms 17 are driven to slide close on the movable slide rod 701, the two locking blocks 19 are moved close, the displacement block 4 is released from the fixing through the separation of the limiting grooves 302, the displacement block 4 can drive the moving arm 401 to move downwards, the motor 606 and the moving shaft 602 are moved downwards, the blocking block 603 blocks the discharge pipe 6, then the moving piece 10 is loosened, the two locking blocks 19 are inserted in the limiting grooves 302 again, the fixing of the displacement block 4 and the moving arm 401 is completed.

[0037] In conclusion: the enamel reaction kettle with the anti-blocking structure, through the cooperation of the shell 1, the kettle body 2, the adjusting plate 3, the displacement block 4 and the fixed structure 5, solves the problem that after the reaction kettle mixes and processes the materials, the materials may contain large pieces of material or not completely broken particles, which are easy to block the discharge port during the discharging process, cause the fluid to be unable to normally flow out, cause the materials in the pipeline to accumulate, and then possibly completely block the discharge pipeline.

[0038] It should be noted that, in this document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0039] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An agitator with anti-blocking structure, comprising a shell (1), a kettle body (2), an adjusting plate (3), a displacement block (4) and a fixed structure (5), characterized in that: The inner wall of the shell (1) is fixedly connected with a kettle body (2), the outer surface of the shell (1) is fixedly connected with a support (101), the surface of the left side of the support (101) is fixedly connected with an adjusting plate (3), the left side of the adjusting plate (3) is provided with an adjusting groove (301), the front and rear sides of the inner wall of the adjusting groove (301) are respectively provided with limiting grooves (302), the top of the shell (1) is fixedly connected with a top cover (102), the top of the top cover (102) is fixedly connected with a stirrer (103), the bottom of the shell (1) is fixedly connected with a discharge pipe (104), the discharge pipe (104) is communicated with the kettle body (2), the bottom of the discharge pipe (104) is fixedly connected with a discharge pipe (6), the bottom of the discharge pipe (6) is fixedly connected with a moving pipe (601), the inner wall of the moving pipe (601) is provided with a moving shaft (602), the top of the moving shaft (602) is fixedly connected with a blocking block (603), the blocking block (603) is arranged at the bottom of the discharge pipe (104), the outer surface of the moving shaft (602) is fixedly connected with a blade (604), the outer surface of the bottom of the moving shaft (602) is sleeved with a sealing sleeve (605), the sealing sleeve (605) is fixedly connected to the inner wall of the moving pipe (601), the bottom of the moving shaft (602) extends and penetrates through the inner wall of the moving pipe (601), the bottom of the moving shaft (602) is fixedly connected with a motor (606), the outer surface of the motor (606) is fixedly connected with a moving arm (401), the right side of the moving arm (401) is fixedly connected with a displacement block (4), the displacement block (4) is slidingly connected to the inner wall of the adjusting groove (301), the inner wall of the displacement block (4) is provided with a displacement groove (7), the right side of the displacement block (4) is provided with an opening (402), the left side of the displacement block (4) is provided with a sliding groove (8), the front and rear sides of the inner wall of the displacement groove (7) are fixedly connected with movable sliding rods (701), and the inner wall of the displacement groove (7) is provided with a fixed stop structure (5).

2. The agitator according to claim 1, wherein the agitator is provided with a structure for preventing the material from being blocked. The fixed stop structure (5) comprises a sliding block (9), the sliding block (9) is arranged on the left side of the displacement block (4), the outer surface of the sliding block (9) is slidingly connected to the inner wall of the sliding groove (8), the left side of the sliding block (9) is fixedly connected with a moving piece (10), and the right side of the sliding block (9) is fixedly connected with a sliding arm (11).

3. The enamel-lined reactor with an anti-clogging structure as described in claim 2, characterized in that: The sliding arm (11) is arranged on the inner wall of the displacement groove (7), the left end of the sliding arm (11) is fixedly connected with the sliding block (9), the front and rear ends of the right side of the sliding block (9) are respectively fixedly connected with sliding rods (12), and the bottoms of the two sliding rods (12) are respectively provided with rotating arms (13).

4. The agitator according to claim 3, wherein the agitator is provided with a structure for preventing the material from being blocked. Two rotating arms (13) are arranged on the inner wall of the displacement groove (7) in front and back respectively, one end of the two rotating arms (13) is rotatably connected to the inner wall of the displacement groove (7) by rotating shaft, the top of the other end of the two rotating arms (13) is respectively attached to the two sliding rods (12), and the bottom of the two rotating arms (13) is respectively fixedly connected with the push arm (14).

5. The enamel-lined reactor with an anti-clogging structure as described in claim 4, characterized in that: The top of the two push arms (14) is respectively fixedly connected to the bottom of the two rotating arms (13) which are close to each other, one side of the lower end of the two push arms (14) which are close to each other is respectively provided with a linkage groove (15), the inner wall of the two linkage grooves (15) is respectively provided with a linkage rod (16), and the right side of the two linkage rods (16) is respectively fixedly connected with a linkage arm (17).

6. The agitator as claimed in claim 5, wherein the agitator comprises: a plurality of agitator arms; and a plurality of agitator blades, each of the plurality of agitator blades being coupled to a corresponding one of the plurality of agitator arms. The middle of the two linkage arms (17) is respectively slidably connected to the outer surface of the dynamic sliding rod (701), one end of the two linkage arms (17) which are away from each other is respectively fixedly connected with a locking spring (18), one end of the two locking springs (18) which are away from each other is respectively fixedly connected to the inner wall of the displacement groove (7), and the right side of the two linkage arms (17) is respectively fixedly connected with a locking block (19).

7. The agitator as claimed in claim 6, wherein the agitator comprises: a plurality of agitator arms; and a plurality of agitator blades, each of the plurality of agitator blades being coupled to a corresponding one of the plurality of agitator arms. The two locking blocks (19) respectively extend to the inner wall of the adjusting groove (301) through the opening (402), and the two locking blocks (19) are respectively inserted into the inner wall of the limiting groove (302) at the end away from each other.