Fire extinguisher bottle processing device

By designing an automated fire extinguisher bottle body processing device, and using a lead mechanism and servo motor to realize automatic cutting and assembly of the bottle top and bottom, the problems of high labor intensity and low efficiency caused by frequent replacement of molds by workers in the prior art are solved, and a more efficient processing process is achieved.

CN119188248BActive Publication Date: 2025-05-13SHAOXING HAOYU FIRE PROTECTION EQUIP CO LTD
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Patent Information

Application Number
CN202411486987.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-05-13
Estimated Expiration
2044-10-23

AI Technical Summary

Technical Problem

In the existing fire extinguisher bottle processing technology, workers need to frequently replace the processing molds of the bottle body, bottle bottom and bottle top, resulting in high labor intensity and low work efficiency.

Method used

A fire extinguisher bottle body processing device is designed, and the top and bottom of the bottle are stacked and unloaded, and the servo motor and dual-axis screw are used to achieve automatic unloading and assembly, reducing manual intervention.

Benefits of technology

Through automated cutting and assembly, the manual work intensity is significantly reduced, the work efficiency is improved, and it can be adapted to different types of fire extinguishers processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a fire extinguisher bottle body processing device, comprising a processing table, wherein the surface of the processing table is provided with two symmetrical tank body positioning seats, the processing table is slidably provided with two movable guide seats, the movable guide seats are each provided with a material guiding assembly, the material guiding assembly comprises two symmetrical guide slides, the guide slides are respectively connected to the movable guide seats, and the guide slides are respectively provided with flap notches on the sides away from each other, the flap notches are respectively rotatably connected with material discharge flaps, and the material discharge flaps are respectively provided with two stop blocks; the present invention can stack and discharge the bottle top and the bottle bottom respectively by arranging a material guiding mechanism, and utilizes the continuous single material discharge of the material guiding mechanism, without the need for manual placement and assembly of the bottle top and the bottle bottom at a single time, and the bottle top and the bottle bottom can respectively be continuously discharged back and forth at a single time, thereby reducing the manual work intensity.
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Description

Technical Field

[0001] The invention belongs to the technical field of fire extinguisher processing, in particular to a fire extinguisher bottle processing device. Background Art

[0002] When the fire extinguisher bottle is manufactured, in the production workshop, workers first use the steel plate raw materials in the automated processing machinery to make the shell of the fire extinguisher, use the rolling machine to bend the steel plate into a cylindrical structure, and then weld the cylindrical structure. The bottle body, bottle bottom and bottle top of the fire extinguisher are processed separately, and then suspended pressure processing is performed. The assembly parts of the bottle body, bottle bottom and bottle top are subjected to inward and outward suspension pressure treatment respectively. The bottle body, bottle bottom and bottle top are placed separately by the assembly machine. The bottle bottom and bottle top are respectively set at the two ends of the bottle body. The assembly equipment is started. The hydraulic mechanism in the equipment pushes the bottle bottom and bottle top on both sides, and presses them tightly on the two ends of the bottle body. The three parts are tightly combined to form a complete fire extinguisher cylinder, and then welding and painting are performed to complete the processing of the fire extinguisher bottle;

[0003] During assembly, the bottle body, bottle bottom and bottle top need to be placed in the assembly positions respectively, and because the bottle bodies of fire extinguishers are of different models and sizes, the assembly molds of the bottle body, bottle bottom and bottle top need to be replaced according to the size of the fire extinguisher during assembly. Workers need to reciprocate to replace different bottle bodies, bottle bottoms and bottle tops to be assembled on the processing molds of the bottle body, bottle bottom and bottle top. Not only is the labor intensity of the workers high, but the work efficiency is also very low.

[0004] In summary, the present invention provides a fire extinguisher bottle processing device to solve the above problems. Summary of the invention

[0005] In order to solve the above technical problems, the present invention provides a fire extinguisher bottle body processing device to solve the problems in the prior art that workers need to reciprocate on the processing molds of the bottle body, bottle bottom and bottle top to replace different bottle bodies, bottle bottoms and bottle tops to be assembled, which not only has high labor intensity for the workers but also has very low work efficiency.

[0006] The top of the moving guide rail is equipped with two guide rails, each of which is equipped with a toothed plate, and the guide rails are connected with a toothed plate at two ends thereof of which the toothed plate is connected with a toothed plate, and the toothed plate is connected with a toothed plate at two ends thereof.

[0007] A guide seat slot is provided on the processing table, one end of the assembly push plate passes through the guide seat slot, the assembly push plates are threadedly connected by a double-axis screw, one end of the double-axis screw is connected to a servo motor, a base is provided parallel to the bottom of the processing table, and the servo motor is installed on the base.

[0008] Furthermore, the movable guide seat includes a movable slide and a mounting ear plate, an outer slide groove is provided at the bottom of the movable slide, the outer slide groove is in sliding contact with the guide seat slide groove, an inner slide groove is provided in the middle of the movable slide, the assembly push plate is slidably connected in the inner slide groove, and two adjustment grooves are provided on the mounting ear plate, and the bottom of the guide plate mounting frame is fixed to the surface of the mounting ear plate by bolts penetrating the adjustment grooves.

[0009] Furthermore, the stop blocks are respectively arranged at both ends of the unloading flap, and one end of the unloading flap is provided with a flip slot along its length direction, one of the stop blocks is fixedly connected to the other end of the unloading flap, and the other stop block is fixedly connected with a bolt, the bolt passes through the flip slot, and a nut is threaded on the surface.

[0010] Furthermore, the two ends of the rotating shaft are connected to the side walls of the material guide plate through mounting blocks, the rotating shaft is rotatably connected to the mounting blocks, the surface of the unloading flap is fixedly connected to the surface of the rotating shaft through a through block, a torsion spring is movably wrapped around the surface of the rotating shaft, and the two ends of the torsion spring are respectively fixedly connected to one side of the through block and the flip gear.

[0011] Furthermore, a tooth groove is provided on a side of the linkage slide close to the flip gear, and the tooth groove is engaged with the flip gear. Two guide slides are respectively installed on the side of the linkage slide and the material guide plate close to each other, and the linkage slide is slidably arranged in the guide slide.

[0012] Furthermore, the convex blocks are respectively arranged on both sides of the assembly push plate, and the assembly push plate is provided with a convex inner groove, the convex inner groove is matched with the convex block, and the surface of the convex block is an arc structure.

[0013] Furthermore, the material introduction assembly is arranged on both sides of the tank body positioning seat, and two silicone soft plates are installed on the side of the material introduction guide plate close to the tank body positioning seat. The silicone soft plates are horizontally aligned with the assembly push plate, and the fire extinguisher bottom cover and the fire extinguisher top cover are respectively arranged in the material introduction assembly, and the bottle body is arranged between the tank body positioning seats.

[0014] Furthermore, one end of the biaxial screw is rotatably connected to the bottom of the processing table by means of an adapter block, and the biaxial screw is arranged along the guide seat slide groove.

[0015] Furthermore, the processing table is provided with a plurality of transverse adjustment holes, the movable slide is provided with a plurality of hexagonal locking bolts 2, the threads of the hexagonal locking bolts 1 pass through both sides of the movable slide, and the hexagonal locking bolts 1 are movably inserted into the transverse adjustment holes.

[0016] Furthermore, a plurality of longitudinal adjustment holes are opened in the middle of the processing table, and two hexagonal locking bolts are installed on the tank body positioning seat. The two hexagonal locking bolts penetrate the tank body positioning seat and are inserted into the longitudinal adjustment holes.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. The present invention can stack and discharge the bottle tops and bottle bottoms separately by arranging a material guiding mechanism. By utilizing the continuous single discharge of the material guiding mechanism, there is no need for manual placement and assembly of the bottle tops and bottle bottoms one by one. The bottle tops and bottle bottoms can be discharged back and forth one by one respectively, thereby reducing the manual work intensity.

[0019] 2. The present invention provides a material guiding plate with adjustable spacing. The material guiding plate can be adjusted according to the size of the bottle top and the bottle bottom to match the processing and assembly of bottle tops and bottle bottoms of different sizes. The flipping function of the material unloading flap is utilized in conjunction with the stop blocks provided at both ends to unload the bottle top and the bottle bottom individually. The material unloading is automatic by controlling the single back and forth flipping of the material unloading flap through the assembly push plate without manual intervention.

[0020] 3. The present invention can adjust the position of the movable guide seat on the processing table and the distance between the tank positioning seats by setting the transverse adjustment hole and the longitudinal adjustment hole, so as to be more suitable for the processing of different types of fire extinguishers. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a stereogram of the present invention;

[0022] Figure 2 It is a disassembled diagram of the material introduction mechanism of the present invention;

[0023] Figure 3 It is a stereogram of the blanking state of the present invention;

[0024] Figure 4 It is a second stereoscopic diagram of the blanking state of the present invention;

[0025] Figure 5 It is a three-dimensional diagram of the linkage slide plate of the present invention;

[0026] Figure 6 It is a three-dimensional diagram of the blanking flap of the present invention;

[0027] Figure 7 It is a three-dimensional diagram of the processing table of the present invention.

[0028] In the figure:

[0029] 1. Processing table; 2. Servo motor; 3. Moving guide seat; 301. Moving slide seat; 302. Inner slide groove; 303. Outer slide groove; 304. Mounting ear plate; 305. Adjustment groove; 4. Material guide plate; 5. Guide plate mounting frame; 6. Tank body positioning seat; 7. Horizontal adjustment hole; 8. Longitudinal adjustment hole; 9. Guide slide bar; 10. Fire extinguisher bottom cover; 11. Unloading flap; 12. Linkage slide plate; 13. Silicone soft board; 14. Flip gear; 15. Assemble push plate; 16. Hexagonal locking bolt one; 17. Boss block; 18. Boss inner groove; 19. Flip slide groove; 20. Stop block; 21. Torsion spring; 22. Base; 23. Guide seat slide groove; 24. Double-axis screw; 25. Hexagonal locking bolt two; 26. Bottle body. DETAILED DESCRIPTION

[0030] The following embodiments of the present invention are described in further detail in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0031] like Figure 1-7As shown, the present invention provides a fire extinguisher bottle body processing device, including a processing table 1, the surface of the processing table 1 is provided with two mutually symmetrical tank body positioning seats 6, the processing table 1 is slidably provided with two movable guide seats 3, the movable guide seats 3 are provided with a material introduction component, the material introduction component includes two mutually symmetrical guide slides 9, the guide slides 9 are respectively connected to the movable guide seats 3, and the guide slides 9 are respectively provided with flap notches on the sides away from each other, and the flap notches are respectively rotatably connected with unloading flaps 11, and the unloading flaps 11 are respectively provided with two stop blocks 20, and the unloading Flipping gears 14 are respectively provided on both sides of the flap 11, and the flipping gears 14 are rotatably connected to the material guide plate 4 through a rotating shaft, and the rotating shaft passes through the middle of the unloading flap 11, and the side surfaces of the two material guide plates 4 close to each other are respectively provided with linkage slide plates 12, and the linkage slide plates 12 are respectively arranged on one side of the flipping gear 14, and the bottom of the linkage slide plates 12 is fixedly connected with a convex block 17, and the material guide plate 4 is connected to the movable guide seat 3 through the guide plate mounting frame 5, and the bottom of the linkage slide plates 12 is fixedly connected with a convex block 17, and an assembly push plate 15 is slidably arranged on the movable guide seat 3;

[0032] A guide seat slot 23 is provided on the processing table 1, one end of the assembly push plate 15 passes through the guide seat slot 23, the assembly push plates 15 are threadedly connected by a double-axis screw 24, one end of the double-axis screw 24 is connected to a servo motor 2, and a base 22 is provided parallel to the bottom of the processing table 1, and the servo motor 2 is installed on the base 22.

[0033] As an embodiment of the present invention, the movable guide seat 3 includes a movable slide 301 and a mounting ear plate 304. An outer slide groove 303 is provided at the bottom of the movable slide 301. The outer slide groove 303 is in sliding contact with the guide seat slide groove 23. An inner slide groove 302 is provided in the middle of the movable slide 301. The assembly push plate 15 is slidably connected in the inner slide groove 302. Two adjustment grooves 305 are provided on the mounting ear plate 304. The bottom of the guide plate mounting frame 5 is penetrated by bolts through the adjustment groove 305 and fixed to the surface of the mounting ear plate 304.

[0034] Among them, the adjustment groove 305 on the mounting ear plate 304 provides a mounting groove for the guide plate mounting frame 5, which can adjust the distance between the two material guide plates 4. According to the size of the fire extinguisher bottom cover 10 and the fire extinguisher top cover, the guide plate mounting frame 5 moves back and forth on the mounting ear plate 304, and then the bolt is passed through the adjustment groove 305, and the bottom is fixed by a nut.

[0035] As an embodiment of the present invention, the stop blocks 20 are respectively arranged at both ends of the unloading flap 11, and one end of the unloading flap 11 is provided with a flip groove 19 along its length direction, one of the stop blocks 20 is fixedly connected to the other end of the unloading flap 11, and the other stop block 20 is fixedly connected with a bolt, which passes through the flip groove 19 and has a nut threaded on the surface.

[0036] Among them, bolts and nuts are used to adjust the position of one of the stop blocks 20 on the unloading flap 11, and the position is adjusted according to the size of the bottom cover 10 and the top cover of the fire extinguisher. The stop block 20 is respectively blocked at the bottom of the size of a single fire extinguisher bottom cover 10 and the top cover of the fire extinguisher, thereby limiting the amount of unloading at a single time.

[0037] As an embodiment of the present invention, both ends of the rotating shaft are connected to the side walls of the material guide plate 4 through mounting blocks, the rotating shaft is rotatably connected to the mounting blocks, the surface of the unloading flap 11 is fixedly connected to the surface of the rotating shaft through a through block, a torsion spring 21 is movably wound around the surface of the rotating shaft, and both ends of the torsion spring 21 are respectively fixedly connected to one side of the through block and the flip gear 14.

[0038] The torsion spring 21 limits the rotation angle of the flip gear 14. When the flip gear 14 is driven to move by the linkage slide 12, the torsion spring 21 rotates. When the linkage slide 12 is no longer subjected to force, the torsion spring 21 drives the flip gear 14 to rotate under the action of elastic force and returns to its original position. The linkage slide 12 moves upward at the same time.

[0039] As an embodiment of the present invention, a tooth groove is opened on the side of the linkage slide 12 close to the flip gear 14, and the tooth groove is engaged with the flip gear 14. The linkage slide 12 and the material guide plate 4 are respectively installed with two guide slides 9 on the side close to each other, and the linkage slide 12 is slidably set in the guide slide 9.

[0040] Among them, the linkage slide 12 is used to drive the flip gear 14 to rotate. When the linkage slide 12 moves downward, the flip gear 14 flips inward, and the unloading flap 11 rotates accordingly. Conversely, when the linkage slide 12 moves upward, the flip gear 14 rotates in the opposite direction. The guide slide bar 9 limits the sliding direction of the linkage slide 12, so that the linkage slide 12 can only move up and down along the length direction of the material guide plate 4. Moreover, the linkage slides 12 are respectively arranged on one side of the flip gear 14, and do not affect the flip angle of the unloading flap 11.

[0041] As an embodiment of the present invention, the convex blocks 17 are respectively arranged on both sides of the assembly push plate 15. The assembly push plate 15 is provided with a convex block inner groove 18, which is matched with the convex block 17. The surface of the convex block 17 is an arc structure.

[0042] Among them, the convex block 17 is fixed on the linkage slide plate 12. When the assembly push plate 15 moves, the inner groove 18 of the convex block first contacts with one end of the convex block 17. Since the surface of the convex block 17 is an arc-shaped structure, when the assembly push plate 15 continues to move, the surface of the convex block 17 continues to contact with the inner groove 18 of the convex block, pulling the linkage slide plate 12 downward, thereby driving the flip gear 14 to rotate.

[0043] As an embodiment of the present invention, the feed introduction assembly is arranged on both sides of the tank body positioning seat 6, and two silicone soft plates 13 are installed on the side of the feed introduction guide plate 4 close to the tank body positioning seat 6. The silicone soft plates 13 are horizontally aligned with the assembly push plate 15. The fire extinguisher bottom cover 10 and the fire extinguisher top cover are respectively arranged in the feed introduction assembly, and a bottle body 26 is arranged between the tank body positioning seats 6.

[0044] Among them, the fire extinguisher bottom cover 10 and the fire extinguisher top cover are respectively arranged between the material guide plates 4. The fire extinguisher bottom cover 10 and the fire extinguisher top cover are stacked up and down by utilizing the spacing between the material guide plates 4, so that the fire extinguisher bottom cover 10 and the fire extinguisher top cover can be unloaded in sequence. The setting of the silicone soft plate 13 can firstly block the position of the outlet of the material guide plate 4, and limit the fire extinguisher bottom cover 10 and the fire extinguisher top cover. When the assembly push plate 15 is pushed and moved, the silicone soft plate 13 does not limit the removal of the fire extinguisher bottom cover 10 and the fire extinguisher top cover.

[0045] As an embodiment of the present invention, one end of the biaxial screw 24 is rotatably connected to the bottom of the processing table 1 by means of an adapter block, and the biaxial screw 24 is arranged along the guide seat slot 23 .

[0046] When the double-axis screw 24 rotates, it can drive the upper assembly push plate 15 to slide back and forth, so that the head and tail ends of the fire extinguisher can be spliced ​​and assembled onto the bottle body 26.

[0047] As an embodiment of the present invention, a plurality of transverse adjustment holes 7 are opened on the processing table 1, a plurality of hexagonal locking bolts 25 are installed on the movable slide 301, a hexagonal locking bolt 16 threadedly passes through both sides of the movable slide 301, and the hexagonal locking bolt 16 is movably inserted into the transverse adjustment hole 7.

[0048] As an embodiment of the present invention, a plurality of longitudinal adjustment holes 8 are opened in the middle of the processing table 1, and a hexagonal locking bolt 25 is installed on the tank body positioning seat 6. The hexagonal locking bolt 25 passes through the tank body positioning seat 6 and is inserted into the longitudinal adjustment hole 8.

[0049] Among them, the position of the movable guide seat 3 can be adjusted by using the hexagonal locking bolt 16, and the distance between the two tank positioning seats 6 can be adjusted by using the hexagonal locking bolt 25, so as to match the processing of fire extinguishers of different sizes.

[0050] The bottle body 26 is placed between the two tank body positioning seats 6. The positions of the feed guide mechanisms on both sides are adjusted according to the length of the bottle body 26. The feed guide mechanisms slide on the surface of the processing table 1 and are then fixed with hexagonal locking bolts 16. Figure 7 ;

[0051] The bottom cover 10 and the top cover of the fire extinguisher are respectively stacked in the two feeder mechanisms. When the servo motor 2 moves, the two assembly push plates 15 are driven to slide in the movable guide seat 3, and the bottom cover 10 and the top cover of the fire extinguisher are respectively pushed close to the bottle body 26 for assembly.

[0052] When the assembly push plate 15 slides, after the assembly push plate 15 moves to the end of the movable slide 301, the inner groove 18 of the convex block presses the convex block 17, driving the linkage slide plate 12 to move downward, so that the unloading flap 11 flips over, and the top stopper 20 merges, and one of the fire extinguisher bottom covers 10 and the fire extinguisher top cover falls onto the surface of the movable slide 301, as shown in FIG. Figure 3 , blocked by the silicone soft plate 13. When the assembly push plate 15 is pushed, the inner groove 18 of the convex block moves on the surface of the convex block 17. When it moves to the other end of the convex block 17, the linkage slide plate 12 pops up. Under the action of the torsion spring 21, the two stop blocks 20 at the other end merge to complete the falling of the single fire extinguisher bottom cover 10 and the fire extinguisher top cover. Figure 4 , and then utilize the back and forth movement of the assembly push plate 15 to carry out material unloading.

[0053] The embodiments of the present invention are provided for the purpose of illustration and description. Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limitations of the present invention. Ordinary technicians in this field can change, modify, replace and modify the above embodiments within the scope of the present invention.

Claims

1. A fire extinguisher bottle processing device, comprising a processing table (1), the surface of the processing table (1) is provided with two mutually symmetrical tank body positioning seats (6), two movable guide seats (3) are slidably provided on the processing table (1), and the movable guide seats (3) are each provided with a material introduction component, characterized in that: The material guiding assembly comprises two mutually symmetrical guide slides (9), the guide slides (9) are respectively connected to the movable guide seat (3), and the guide slides (9) are respectively provided with flap notches on the sides away from each other, and the flap notches are respectively rotatably connected with a material unloading flap (11), and the material unloading flap (11) is respectively provided with two stop blocks (20), and the two sides of the material unloading flap (11) are respectively provided with a flip gear (14), and the flip gear (14) is rotatably connected to the material guiding guide plate (4) through a rotating shaft, and the rotating shaft A linkage slide plate (12) is provided on the side of the two material guide plates (4) close to each other through the middle of the material unloading flap (11). The linkage slide plates (12) are respectively provided on one side of the flip gear (14). The bottom of the linkage slide plate (12) is fixedly connected with a convex block (17). The material unloading guide plate (4) is connected to the movable guide seat (3) through a guide plate mounting frame (5). The bottom of the linkage slide plate (12) is fixedly connected with a convex block (17). An assembly push plate (15) is slidably provided on the movable guide seat (3). A guide seat slot (23) is provided on the processing table (1), one end of the assembly push plate (15) passes through the guide seat slot (23), the assembly push plates (15) are threadedly connected via a double-axis screw (24), one end of the double-axis screw (24) is connected to a servo motor (2), a base (22) is provided parallel to the bottom of the processing table (1), and the servo motor (2) is installed on the base (22).

2. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: The movable guide seat (3) comprises a movable slide seat (301) and a mounting ear plate (304); an outer slide groove (303) is provided at the bottom of the movable slide seat (301); the outer slide groove (303) is in sliding contact with the guide seat slide groove (23); an inner slide groove (302) is provided in the middle of the movable slide seat (301); the assembly push plate (15) is slidably connected in the inner slide groove (302); two adjustment grooves (305) are provided on the mounting ear plate (304); the bottom of the guide plate mounting frame (5) is fixed to the surface of the mounting ear plate (304) by bolts penetrating the adjustment grooves (305).

3. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: The stop blocks (20) are respectively arranged at the two ends of the unloading flap (11), and one end of the unloading flap (11) is provided with a flip groove (19) along its length direction, one of the stop blocks (20) is fixedly connected to the other end of the unloading flap (11), and the other stop block (20) is fixedly connected with a bolt, and the bolt passes through the flip groove (19) and is threadedly connected with a nut on the surface.

4. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: The two ends of the rotating shaft are connected to the side wall of the material guide plate (4) through a mounting block, the rotating shaft is rotatably connected to the mounting block, the surface of the unloading flap (11) is fixedly connected to the surface of the rotating shaft through a penetration block, a torsion spring (21) is movably wound around the surface of the rotating shaft, and the two ends of the torsion spring (21) are respectively fixedly connected to one side of the penetration block and the flip gear (14).

5. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: A tooth groove is provided on a side of the linkage slide plate (12) close to the flip gear (14), and the tooth groove is meshed with the flip gear (14). Two guide slide bars (9) are respectively installed on the side of the linkage slide plate (12) and the material guide plate (4) close to each other, and the linkage slide plate (12) is slidably arranged in the guide slide bars (9).

6. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: The convex blocks (17) are respectively arranged on both sides of the assembly push plate (15); a convex block inner groove (18) is opened on the assembly push plate (15); the convex block inner groove (18) is matched with the convex block (17); and the surface of the convex block (17) is an arc-shaped structure.

7. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: The feed introduction assembly is arranged on both sides of the tank body positioning seat (6); two silicone soft plates (13) are installed on one side of the feed introduction guide plate (4) close to the tank body positioning seat (6); the silicone soft plates (13) are arranged horizontally aligned with the assembly push plate (15); a fire extinguisher bottom cover (10) and a fire extinguisher top cover are respectively arranged in the feed introduction assembly; and a bottle body (26) is arranged between the tank body positioning seats (6).

8. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: One end of the biaxial screw (24) is rotatably connected to the bottom of the processing table (1) by means of an adapter block, and the biaxial screw (24) is arranged along the guide seat slide groove (23).

9. The fire extinguisher bottle processing device as claimed in claim 2, characterized in that: The processing table (1) is provided with a plurality of transverse adjustment holes (7), and the movable slide seat (301) is provided with a plurality of hexagonal locking bolts (16), wherein the threads of the hexagonal locking bolts (16) penetrate through both sides of the movable slide seat (301), and the hexagonal locking bolts (16) are movably inserted into the transverse adjustment holes (7).

10. The fire extinguisher bottle processing device as claimed in claim 1, characterized in that: A plurality of longitudinal adjustment holes (8) are provided in the middle of the processing table (1), and two hexagonal locking bolts (25) are installed on the tank body positioning seat (6). The two hexagonal locking bolts (25) penetrate the tank body positioning seat (6) and are inserted into the longitudinal adjustment holes (8).

Citation Information

Patent Citations

  • Automatic press-fit production line for spindle blades and spindle whorls

    CN102717255A

  • Automatic assembling line for head of wheeled fire extinguisher

    CN110449892A