An apparatus for machining a body of a foaming gun
Patent Information
- Application Number
- CN202521886437.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-09-03
AI Technical Summary
然而,传统的加工方式为人工钻孔,需要经过打孔和攻螺纹两道工序
[0029]本实用新型由于采用了以上技术方案,具有显著的技术效果:本加工设备能够替代人工完成发泡枪枪身上连接座的螺纹孔加工,既能降低人工成本,又能提升加工效率及精度。
Smart Images

Figure CN224713415U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of foam gun processing technology, and in particular to a device for processing foam gun bodies. Background Technology
[0002] A foam gun is a tool used for sealing and filling gaps in doors and windows, working in conjunction with polyurethane foam to achieve a filling effect. For example, utility model patent CN219483072U discloses a similar foam gun. Figure 1 , Figure 2 and Figure 3 The diagram shows a schematic of a foam gun in the prior art, mainly including a tubular gun body 5, a nozzle 56 located at the front end of the gun body 5, an adapter 19 located at the upper end of the gun body 5 for connecting to a foam tank 57, and a handle 58 located on the lower side of the gun body 5 away from the nozzle 56. A trigger 59 is pivotally connected to the gun body 5 between the handle 58 and the nozzle 56. Pivot seats 15 are fixed on both sides of the gun body 5 near the upper end, respectively, for two pivot points 60 at the upper end of the trigger 59 to pivot onto. The pivot points 60 are connected to the pivot seats 15 by rivets 61, thereby achieving stable rotation of the trigger 59. A connecting seat 6 is fixed at the bottom of the gun body 5 away from the nozzle 56 for the handle 58 to fit onto. A connecting plate 63 is integrally formed in the inner cavity 62 of the handle 58, abutting against the lower end of the connecting seat 6. The connecting plate 63 is fixed to the lower end of the connecting seat 6 by screws 64, thereby fixing the handle 58 to the gun body 5. The upper end of the handle 58 is also integrally provided with limiting plates 65 that abut against both sides of the gun body 5 to prevent the handle 58 from deflecting at the gun body 5, thereby improving the stability of the handle 58 connection.
[0003] In the aforementioned handle 58 connection method, a threaded hole 66 needs to be drilled at the end of the connecting seat 6 to complete the screw 64 connection. However, the traditional processing method involves manual drilling, which requires two steps: drilling and tapping. This is not only inefficient but also results in low drilling accuracy, and therefore needs improvement. Utility Model Content
[0004] This invention addresses the shortcomings of existing technologies by providing a device for processing the body of a foam gun, which can replace manual labor in processing the threaded holes of the connecting seats on the body of the foam gun, thereby improving drilling efficiency and drilling accuracy.
[0005] To solve the above-mentioned technical problems, the present invention provides a solution through the following technical method: An apparatus for processing the body of a foam gun includes a loading station, a first processing station, a second processing station, and a unloading station. The loading station is equipped with a clamping mechanism for holding the body of the foam gun and aligning the connecting seat on the body upwards. The first processing station is equipped with a drilling mechanism for drilling a hole in the upward-facing end of the connecting seat to form a connecting hole. The second processing station is equipped with a tapping mechanism for tapping the thread of the connecting hole. The unloading station is equipped with an unloading mechanism for driving the body away from the clamping mechanism. The apparatus also includes a conveying mechanism that sequentially conveys the clamping mechanism to the loading station, the first processing station, the second processing station, the unloading station, and the loading station.
[0006] By adopting the above solution, this processing equipment can replace manual labor to complete the threaded hole processing of the connecting seat on the foam gun body, which can reduce labor costs and improve processing efficiency and accuracy.
[0007] Preferably, the clamping mechanism includes a clamping seat, a slot formed in the clamping seat for the gun body to slide and engage laterally, and a clearance groove formed on the upper surface of the clamping seat and connected to the slot so that the connecting seat is exposed above the clamping seat.
[0008] Using the above solution, the slot for the sliding engagement of the foam gun body enables both quick assembly and disassembly of the gun body and ensures longitudinal stability after installation, thereby effectively improving the accuracy and efficiency of machining the threaded holes of the connecting seat. The clearance groove allows the connecting seat on the gun body to be exposed longitudinally, facilitating the machining of the drilling and tapping mechanisms and further improving work efficiency.
[0009] Preferably, the side of the clamping seat where the gun body slides into the slot has a positioning groove for the pivot seat on the gun body to engage.
[0010] By adopting the above solution, the locking fit between the pivot seat and the positioning groove on the foam gun body can not only provide longitudinal positioning for the gun body in the groove, but also restrict the circumferential rotation of the gun body, thereby further improving the efficiency and accuracy of hole machining of the connecting seat.
[0011] Preferably, the slot has an opening for the gun body to enter, and the opening is located on the outside of the clamping seat.
[0012] By adopting the above solution, the opening of the slot is located on the outside of the clamping base, which makes it convenient for workers to insert the gun body horizontally into the slot from the inside to the outside, thereby improving the installation efficiency and convenience of the gun body.
[0013] Preferably, a positioning seat is provided on the side of the clamping base where the gun body enters the slot, and the positioning seat has a positioning slope for the adapter of the gun body to abut against.
[0014] By adopting the above solution, the abutment between the adapter built into the gun body and the positioning slope can achieve further positioning of the gun body along the length of the slot, thereby making the positioning accuracy of the gun body higher.
[0015] Preferably, the drilling mechanism is a drilling machine.
[0016] Using the above solution, the drilling machine technology is mature and can perform efficient and precise drilling operations on the connecting seat on the gun body.
[0017] Preferably, a locking block is provided on one side of the punching mechanism. When the clamping seat is conveyed to the first processing station, the locking block is located on the side of the clamping seat where the gun body slides into the slot. The locking block is provided with a drive source that drives the locking block to laterally abut against the tail end of the gun body to lock the gun body or drives the locking block to laterally disengage from the gun body to unlock the gun body.
[0018] By adopting the above solution, the locking block is driven by the drive source to laterally abut against the tail end of the gun body, which can realize the secondary positioning of the gun body in the slot. Combined with the limiting function of the pivot seat on the gun body, it can effectively prevent the gun body from shifting laterally during the drilling process, and further improve the processing accuracy of the equipment.
[0019] Preferably, the tapping mechanism is a tapping drill.
[0020] Using the above solution, the tapping drill technology is mature and can perform efficient and precise tapping operations on the connecting seat on the gun body.
[0021] Preferably, a second locking block is provided on one side of the tapping mechanism. When the clamping seat is conveyed to the second processing station, the second locking block is located on the side of the clamping seat where the gun body slides into the slot. The second locking block is provided with a second driving source that drives the second locking block to laterally abut against the tail end of the gun body to lock the gun body or drives the second locking block to laterally disengage from the gun body to unlock the gun body.
[0022] By adopting the above scheme, the locking block two is driven by the second drive source to laterally abut against the tail end of the gun body, which can realize the secondary positioning of the gun body in the slot. Combined with the limiting function of the pivot seat on the gun body, it can effectively prevent the gun body from shifting laterally during the tapping process, and further improve the processing accuracy of the equipment.
[0023] Preferably, the feeding mechanism includes a through slot located on the side of the clamping seat away from the gun body that slides into the slot and is connected to the slot, a push rod located on one side of the clamping seat, and a drive source three that drives the push rod to slide laterally into the through slot to push the gun body out of the slot.
[0024] By using the above solution, the gun body is pushed out of the slot by the push rod, which facilitates the unloading of the processed gun body and further improves the working efficiency of the processing equipment.
[0025] Preferably, the conveying mechanism is a rotating platform, which includes a turntable, and a clamping mechanism is disposed on the upper surface of the turntable.
[0026] By adopting the above solution, the rotary platform can accurately and efficiently complete the workstation switching between the clamping seat and the gun body, and reduce the footprint of the conveying mechanism, thereby improving the processing efficiency and size advantage of the equipment.
[0027] Preferably, the loading station, the first processing station, the second processing station and the unloading station are arranged circumferentially at equal intervals on the outside of the rotating platform, and four clamping mechanisms are provided, which are arranged in a ring at equal intervals on the upper surface of the turntable.
[0028] With the above scheme, the four clamping mechanisms correspond one-to-one with the four workstations, which enables the gun body on the previous workstation to automatically switch to the current workstation when the gun body on the current workstation is transferred to the next workstation, thereby improving the working cycle of the equipment and thus improving the processing efficiency.
[0029] This utility model has significant technical effects due to the adoption of the above technical solutions: this processing equipment can replace manual labor to complete the thread hole processing of the connecting seat on the foam gun body, which can reduce labor costs and improve processing efficiency and accuracy. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the structure of a foam gun in the prior art; Figure 2 An exploded view of a foam gun in the prior art; Figure 3 This is a schematic diagram of the structure of a foam gun body in the prior art; Figure 4 This is a schematic diagram of the structure of this embodiment. Figure 1 ; Figure 5 This is a schematic diagram of the clamping mechanism in this embodiment; Figure 6 This is a schematic diagram of the punching mechanism in this embodiment; Figure 7 for Figure 6 An enlarged schematic diagram of part A shown; Figure 8 This is a schematic diagram of the tapping mechanism in this embodiment; Figure 9 for Figure 8 An enlarged schematic diagram of part B is shown below; Figure 10 This is a schematic diagram of the feeding mechanism in this embodiment; Figure 11 for Figure 10 An enlarged schematic diagram of section C shown.
[0031] The parts referred to by the numbers in the above attached diagrams are as follows: 1. Loading station; 2. First processing station; 3. Second processing station; 4. Unloading station; 5. Gun body; 6. Connecting seat; 7. Clamping mechanism; 8. Connecting hole; 9. Drilling mechanism; 10. Tapping mechanism; 11. Unloading mechanism; 12. Clamping seat; 13. Slot; 14. Clearance slot; 15. Pivot seat; 16. Positioning slot; 17. Opening; 18. Positioning seat; 19. Adapter; 20. Positioning inclined surface; 21. Drill bit one; 22. Power source one; 23. Lifting device one; 24. Locking block one; 25. Drive source one; 26. Drill bit two; 27. Power source two; 28. Lifting device two; 29. Locking block two; 30. Drive source two; 31. Through slot; 32. Push rod; 33. Drive source three; 34. Rotating platform; 35. Turntable; 36. Output shaft one; 37. Chuck one; 38. Push rod one; 39. Support frame; 41. Bracket one; 42. Connecting block one; 44. Output shaft two; 45. Chuck two; 47. Push rod two; 50. Bracket two; 51. Connecting block two; 53. Connecting block three; 54. Bracket three; 55. Central stationary platform; 56. Gun head; 57. Foam tank; 58. Handle; 59. Trigger; 60. Pivot point; 61. Rivet; 62. Inner cavity; 63. Connecting plate; 64. Screw; 65. Limiting plate; 66. Threaded hole. Detailed Implementation
[0032] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0033] like Figures 4 to 11 As shown, this embodiment discloses an apparatus for processing the body of a foam gun, including a loading station 1, a first processing station 2, a second processing station 3, and a unloading station 4. The loading station 1 is provided with a clamping mechanism 7 for clamping the body 5 of the foam gun and setting the connecting seat 6 on the body 5 facing upward. The first processing station 2 is provided with a drilling mechanism 9 for drilling holes in the upward end of the connecting seat 6 to form a connecting hole 8. The second processing station 3 is provided with a tapping mechanism 10 for tapping threads in the connecting hole 8. The unloading station 4 is provided with an unloading mechanism 11 for driving the body 5 away from the clamping mechanism 7. The apparatus also includes a conveying mechanism that sequentially conveys the clamping mechanism 7 to the loading station 1, the first processing station 2, the second processing station 3, the unloading station 4, and the loading station 1.
[0034] To enable the clamping mechanism 7 to clamp the foam gun body 5, the clamping mechanism 7 includes a clamping seat 12, a slot 13 laterally formed in the clamping seat 12 for the gun body 5 to slide and engage along its length, and a clearance groove 14 formed on the upper surface of the clamping seat 12 and connected to the slot 13, so that the connecting seat 6 is exposed above the clamping seat 12. The gun body 5 and the slot 13 are in an interference fit to improve the tightness of their connection. The clearance groove 14 is elongated and arranged along the length of the slot 13, with its upper end located upstream of the gun body 5 and smaller than the outer diameter of the gun body 5, to achieve longitudinal positioning of the gun body 5. An opening 17 is formed in the slot 13 for the gun body 5 to enter; this opening 17 is located on the outside of the clamping seat 12 to facilitate the installation of the foam gun body 5 by the operator.
[0035] In order to improve the installation accuracy of the gun body 5 and prevent rotation, a positioning groove 16 is provided on the side of the clamping base 12 where the gun body 5 slides into the slot 13, for the pivot seat 15 on the gun body 5 to engage. There are two positioning grooves 16 and they are symmetrically arranged to fit the pivot seats 15 located on both sides of the gun body 5, thereby effectively preventing the gun body 5 inserted into the slot 13 from rotating circumferentially.
[0036] In order to further improve the positioning accuracy of the gun body 5, a positioning seat 18 is also provided on the side of the clamping seat 12 where the gun body 5 enters the slot 13. The positioning seat 18 has a positioning slope 20 for the adapter 19 of the gun body 5 to abut.
[0037] To realize the drilling function of the drilling mechanism 9, the drilling mechanism 9 is a drilling machine, which includes a drill bit 21 located above the clamping mechanism 7 to drill a hole in the upper end face of the connecting seat 6 to form a connecting hole 8, a power source 22 that drives the drill bit 21 to rotate, and a lifting device 23 that drives the power source 22 to rise and fall. The drill bit 21 is preferably a vertically downward-facing twist drill, and the power source 22 is preferably a motor, whose output shaft 36 is coaxially fixed to a chuck 37, which is coaxially fixed to the long shank end of the twist drill, thereby achieving stable driving of the drill bit 21. The lifting device 23 is preferably a hydraulic cylinder with a downward-facing push rod 38 fixed to one side of the transmission mechanism via a support frame 39. The push rod 38 is fixed to the upper surface of the power source 22, thereby realizing the raising and lowering of the power source 22 and the drill bit 21.
[0038] To prevent the gun body 5 of the foam gun from shifting position during the punching process, a locking block 24 is provided on one side of the punching mechanism 9. When the clamping seat 12 is conveyed to the first processing station 2, the locking block 24 is located on the side of the clamping seat 12 where the gun body 5 slides into the slot 13. The locking block 24 is provided with a drive source 25 that drives the locking block 24 to laterally abut against the tail end of the gun body 5 to lock the gun body 5 or drives the locking block 24 to laterally disengage from the gun body 5 to unlock the gun body 5. The drive source 25 is preferably a cylinder with a horizontally arranged telescopic rod, which is fixed to one side of the conveying mechanism by a bracket 41. The telescopic rod is fixed to the locking block 24 by a connecting block 42, thereby realizing the stable translation of the locking block 24.
[0039] To achieve the thread-tapping function of the tapping mechanism 10, the tapping mechanism 10 is a tapping drill, which includes a second drill bit 26 located above the clamping mechanism 7 for tapping the connecting hole 8 formed by the drilling mechanism 9, a second power source 27 for driving the second drill bit 26 to rotate, and a second lifting device 28 for driving the second power source 27 to rise and fall. The second drill bit 26 is preferably a vertically downward-facing tap, and the second power source 27 is preferably a motor, with its output shaft 244 coaxially fixed to a second chuck 45, which is coaxially fixed to the long shank end of the tap, thereby achieving stable driving of the second drill bit 26. The second lifting device 28 is preferably a hydraulic cylinder with a push rod 247 facing downwards and fixed to one side of the transmission mechanism via a support frame 39. The push rod 247 is fixed to the upper surface of the second power source 27, thereby achieving the raising and lowering of the second power source 27 and the second drill bit 26.
[0040] To prevent the connecting seat 6 on the gun body 5 from shifting position during the tapping process, a locking block 29 is provided on one side of the tapping mechanism 10. When the clamping seat 12 is conveyed to the second processing station 3, the locking block 29 is located on the side of the clamping seat 12 where the gun body 5 slides into the slot 13. The locking block 29 is provided with a drive source 30 that drives the locking block 29 to laterally abut against the tail end of the gun body 5 to lock the gun body 5 or drives the locking block 29 to laterally disengage from the gun body 5 to unlock the gun body 5. The drive source 30 is preferably a cylinder with a horizontally arranged telescopic rod, which is fixed to one side of the conveying mechanism by a bracket 50. The telescopic rod is fixed to the locking block 29 by a connecting block 51, thereby realizing the stable translation of the locking block 29.
[0041] To achieve the unloading function of the unloading mechanism 11, the unloading mechanism 11 includes a through groove 31 located on the side of the clamping seat 12 away from the gun body 5 that slides into the slot 13 and is connected to the slot 13; a push rod 32 located on one side of the clamping seat 12; and a drive source 33 that drives the push rod 32 laterally into the through groove 31 to push the gun body 5 out of the slot 13. The drive source 33 is preferably a cylinder with a horizontally arranged telescopic rod, which is fixed to the push rod 32 by a connecting block 3 53 to achieve stable translation of the push rod 32.
[0042] To achieve the conveying function of the conveying mechanism and reduce its footprint, the conveying mechanism is a hollow rotary platform 34. The rotary platform 34 includes a hollow turntable 35, and a clamping mechanism 7 is fixed to the upper surface of the turntable 35. The drive source 33 is fixed to the central stationary platform 55 of the hollow rotary platform 34 via a bracket 354, and it does not rotate with the hollow turntable 35, thus achieving precise unloading. The specific structure and working principle of the hollow rotary platform 34 are common knowledge in the field and will not be described in detail here.
[0043] To improve the working cycle of the equipment, the loading station 1, the first processing station 2, the second processing station 3, and the unloading station 4 are arranged circumferentially at equal intervals on the outside of the rotating platform 34. Four clamping mechanisms 7 are provided, and the four clamping mechanisms 7 are arranged in a ring at equal intervals on the upper surface of the turntable 35 and fixed thereon. The fixing method can be welding, snap-fitting, or screw connection 64, which is not limited here.
[0044] The specific work process is as follows: When machining the threaded hole 66 on the connecting seat 6 on the foam gun body 5, at the loading station 1, the gun body 5 with the connecting seat 6 facing upward is first inserted into the slot 13 through the opening 17 on the outside of the clamping seat 12 until the two pivot seats 15 on the gun body 5 are respectively engaged in the positioning slots 16 on both sides of the slot 13, and at the same time the adapter 19 abuts against the positioning inclined surface 20 of the positioning seat 18. At this time, the connecting seat 6 located above the gun body 5 can be exposed through the clearance slot 14 to facilitate subsequent processing. After installation, the turntable 35 on the rotating platform 34 drives the clamping seat 12 on the loading station 1 to transfer to the first processing station 2, and then the drive source 25 drives the locking block 24 to abut against the tail end of the gun body 5 on the clamping seat 12 to lock the gun body 5. At this time, the power source 22 drives the drill bit 21 to run at high speed, and the lifting device 23 drives the power source 22 and the drill bit 21 to descend to drill the connecting hole 8 on the connecting seat 6 of the gun body 5. After processing, lifting device 23 drives power source 22 and drill bit 21 to reset, while drive source 25 drives locking block 24 to disengage from gun body 5, and the turntable 35 on rotating platform 34 drives clamping seat 12 on first processing station 2 to transfer to second processing station 3. At second processing station 3, drive source 30 drives locking block 29 to extend and abut against the tail end of gun body 5 to lock it, while power source 27 drives drill bit 26 to run at high speed. Lifting device 28 drives power source 27 and drill bit 26 to descend, so that drill bit 26 can machine threads in the connecting hole 8 of connecting seat 6. After tapping, lifting device 28 drives power source 27 and drill bit 26 to reset, while drive source 30 drives locking block 29 to disengage from gun body 5, so the turntable 35 drives clamping seat 12 to transfer from second processing station 3 to unloading station 4. After entering the unloading station 4, the drive source 33 on the central stationary table 55 drives the push rod 32 into the through slot 31 inside the clamping seat 12 to push out the gun body 5 in the slot 13, thus completing the unloading. Finally, the turntable 35 transports the empty clamping seat 12 back to the loading station 1 and reloads it. By repeating the above steps, the equipment can operate continuously. Throughout the process, after the clamping seat 12 of the current station is transferred to the next station, the clamping seat 12 of the previous station can simultaneously enter the current station, so that the process at each station can continue, thereby improving the processing efficiency of the equipment.
[0045] The above-described operation process can be implemented using the PLC's built-in program or an equivalent analog circuit, which is common knowledge in this field and will not be elaborated further here.
Claims
1. A device for processing the body of a foam gun, characterized in that: The equipment includes a loading station (1), a first processing station (2), a second processing station (3), and a unloading station (4). The loading station (1) is equipped with a clamping mechanism (7) for clamping the gun body (5) of the foam gun and setting the connecting seat (6) on the gun body (5) facing upward. The first processing station (2) is equipped with a drilling mechanism (9) for drilling holes in the upward end of the connecting seat (6) to form a connecting hole (8). The second processing station (3) is equipped with a tapping mechanism (10) for tapping the connecting hole (8). The unloading station (4) is equipped with an unloading mechanism (11) for driving the gun body (5) to disengage from the clamping mechanism (7). The equipment also includes a conveying mechanism that sequentially conveys the clamping mechanism (7) to the loading station (1), the first processing station (2), the second processing station (3), the unloading station (4), and the loading station (1).
2. The equipment for processing the body of a foam gun according to claim 1, characterized in that: The clamping mechanism (7) includes a clamping seat (12), a slot (13) formed in the clamping seat (12) for the gun body (5) to slide and engage laterally, and a clearance slot (14) formed on the upper surface of the clamping seat (12) and connected to the slot (13) so that the connecting seat (6) is exposed above the clamping seat (12).
3. The equipment for processing the body of a foam gun according to claim 2, characterized in that: A positioning groove (16) is provided on one side of the clamping seat (12) for the gun body (5) to slide into the slot (13) for the pivot seat (15) on the gun body (5) to engage.
4. The equipment for processing the body of a foam gun according to claim 2, characterized in that: An opening (17) is formed on the slot (13) for the gun body (5) to enter, and the opening (17) is located on the outside of the clamping seat (12).
5. The equipment for processing the body of a foam gun according to claim 2, characterized in that: A positioning seat (18) is provided on the side of the clamping seat (12) where the gun body (5) enters the slot (13). The positioning seat (18) has a positioning slope (20) for the adapter (19) of the gun body (5) to abut.
6. The apparatus for processing the body of a foam gun according to any one of claims 1 to 5, characterized in that: The drilling mechanism (9) is a drilling machine.
7. The apparatus for processing the body of a foam gun according to any one of claims 2 to 5, characterized in that: A locking block (24) is provided on one side of the punching mechanism (9). When the clamping seat (12) is conveyed to the first processing station (2), the locking block (24) is located on the side of the clamping seat (12) where the gun body (5) slides into the slot (13). The locking block (24) is provided with a drive source (25) that drives the locking block (24) to laterally abut against the tail end of the gun body (5) to lock the gun body (5) or drives the locking block (24) to laterally disengage from the gun body (5) to unlock the gun body (5).
8. The apparatus for processing the body of a foam gun according to any one of claims 1 to 5, characterized in that: The tapping mechanism (10) is a tapping drill.
9. An apparatus for processing the body of a foam gun according to any one of claims 2 to 5, characterized in that: A locking block 2 (29) is provided on one side of the tapping mechanism (10). When the clamping seat (12) is transferred to the second processing station (3), the locking block 2 (29) is located on the side of the clamping seat (12) where the gun body (5) slides into the slot (13). The locking block 2 (29) is provided with a driving source 2 (30) that drives the locking block 2 (29) to abut against the tail end of the gun body (5) to lock the gun body (5) or drives the locking block 2 (29) to disengage from the gun body (5) to unlock the gun body (5).
10. An apparatus for processing the body of a foam gun according to any one of claims 2 to 5, characterized in that: The feeding mechanism (11) includes a through groove (31) opened on the side of the clamping seat (12) away from the gun body (5) and sliding into the slot (13) and connected to the slot (13), a push rod (32) set on the side of the clamping seat (12), and a drive source three (33) that drives the push rod (32) to enter the through groove (31) laterally to push the gun body (5) out of the slot (13).
11. An apparatus for processing the body of a foam gun according to any one of claims 1 to 5, characterized in that: The conveying mechanism is a rotating platform (34), which includes a turntable (35) and a clamping mechanism (7) is disposed on the upper surface of the turntable (35).
12. The equipment for processing the body of a foam gun according to claim 11, characterized in that: The loading station (1), the first processing station (2), the second processing station (3) and the unloading station (4) are arranged circumferentially at equal intervals on the outside of the rotating platform (34). There are four clamping mechanisms (7), which are arranged in a ring around the upper surface of the turntable (35) at equal intervals.
Citation Information
Patent Citations
Handheld foaming gun
CN219483072U