Gland structure of automatic cooling ointment filling machine
By designing the cap structure of the cooling oil automatic filling machine, including a brush structure, oscillator and a cap system that adapts to the characteristics of thin shells, the problem of uncleaning and scratching of the light and thin iron cover of the cooling oil during the transmission and capping process is solved, and the cleaning and integrity of the cover, as well as the accuracy and stability of the capping process are achieved.
Patent Information
- Application Number
- CN202421656759.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-07-12
AI Technical Summary
The prior art is difficult to effectively solve the problem of the light and scratches of the cool oil thin iron cover during the transmission and capping process, and is incompatible with the traditional capping structure.
A cap structure of a cooling oil automatic filling machine is designed, including a cap hopper, brush structure, oscillator, cap system, box round slot, turntable and power transmission system. The cap cover is ensured to be clean through the brush structure, the oscillator ensures accurate positioning, and the cap system adapts to the characteristics of the thin shell to avoid damage.
The cleaning and integrity of the cooling oil box cover is achieved, ensuring the accuracy and stability of the glanding process, and avoiding damage to the box cover during transportation and glanding.
Smart Images

Figure CN222961112U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of medicine canning, and particularly relates to a capping structure of an essential balm automatic filling machine. Background Art
[0002] The packaging shell of essential balm is a special packaging. This packaging structure is very thin and light, and it is an iron packaging formed by buckling and combining two equally thin and light shells. It is impossible to use the capping structure of a general filling machine to cap this kind of box cover. This is mainly because its material is thin and light while being made of iron. Therefore, during the process of transmission and capping, it is very easy to cause problems such as uncleanliness and scratching of the box cover; at the same time, the overall idea is also completely different from the traditional capping structure.
[0003] In order to solve the above problems, a series of improvements have been made. Content of the Utility Model
[0004] The purpose of the utility model is to provide a capping structure of an essential balm automatic filling machine to overcome the above-mentioned disadvantages and deficiencies existing in the prior art.
[0005] A capping structure of an essential balm automatic filling machine includes: a box cover hopper, a brush structure, a box cover groove, an oscillator, a capping system, an inlet box circular groove, a turntable and a power transmission system. The discharge port of the box cover hopper is connected to the brush structure. The bottom end of the brush structure is connected to the oscillator. The oscillator is connected to the box cover groove. The box cover groove is connected to the capping system. The turntable is connected to the capping system through the inlet box circular groove. The power transmission system is connected to the capping system and the turntable.
[0006] Among them, the capping system includes: a capping chassis, a capping top plate, a magnet bar and a discharge baffle. The capping top plate is connected to the box cover groove. The capping chassis is connected to the inlet box circular groove. The magnet bar is arranged in the groove of the capping chassis. The discharge baffle is arranged at the discharge port of the capping system.
[0007] Further, the brush structure includes: a brush wheel and a brush motor. The brush wheel is arranged inside the discharge port of the box cover hopper. The brush wheel is connected to the drive shaft of the brush motor. The drive shaft of the brush motor is connected to the discharge port of the box cover hopper.
[0008] Further, the power transmission system includes: a reduction motor, a turntable transmission wheel, a capping transmission wheel, an electromagnetic clutch and a brake. The reduction motor is respectively connected to the turntable transmission wheel and the capping transmission wheel through a transmission belt. The turntable transmission wheel is connected to the turntable. The capping transmission wheel is connected to the capping system. One end of the connecting shaft of the capping transmission wheel is connected to the electromagnetic clutch. The other end of the connecting shaft of the capping transmission wheel is connected to the brake.
[0009] Further, a transistor switch is provided in the lid slot and the circular lid inlet slot.
[0010] Advantages of the present utility model:
[0011] Compared with the traditional technology, for the thin iron lid of essential balm, the cleaning degree and integrity of the lid are ensured by adding a brush structure; the oscillator can effectively ensure the accurate positioning of the lid without damaging the lid; at the same time, the overall capping system is improved for the lid. Description of the drawings
[0012] Figure 1 It is a schematic structural diagram of the present utility model.
[0013] Figure 2 It is a schematic structural diagram of the power transmission system.
[0014] Reference numerals:
[0015] Lid hopper 100, brush structure 200, brush wheel 210 and brush motor 220.
[0016] Lid slot 300, oscillator 400, capping system 500, capping chassis 510, capping top plate 520, magnet bar 530 and discharge baffle 540.
[0017] Circular lid inlet slot 600 and turntable 700.
[0018] Power transmission system 800, reduction motor 810, turntable transmission wheel 820, capping transmission wheel 830, electromagnetic clutch 840, brake 850 and transistor switch 900. Specific embodiments
[0019] The following will further illustrate the present utility model in conjunction with specific embodiments. It should be understood that the following embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model.
[0020] Embodiment 1
[0021] Figure 1 It is a schematic structural diagram of the present utility model. Figure 2 It is a schematic structural diagram of the power transmission system.
[0022] As Figure 1-2As shown in the figure, a capping structure of an essential balm automatic filling machine includes: a box cover hopper 100, a brush structure 200, a box cover groove 300, an oscillator 400, a capping system 500, an inlet box circular groove 600, a turntable 700, and a power transmission system 800. The discharge port of the box cover hopper 100 is connected to the brush structure 200. The bottom end of the brush structure 200 is connected to the oscillator 400. The oscillator 400 is connected to the box cover groove 300. The box cover groove 300 is connected to the capping system 500. The turntable 700 is connected to the capping system 500 through the inlet box circular groove 600. The power transmission system 800 is connected to the capping system 500 and the turntable 700.
[0023] Among them, the capping system 500 includes: a capping bottom plate 510, a capping top plate 520, a magnet bar 530, and a discharge block 540. The capping top plate 520 is connected to the box cover groove 300. The capping bottom plate 510 is connected to the inlet box circular groove 600. The magnet bar 530 is arranged in the groove of the capping bottom plate 510. The discharge block 540 is arranged at the discharge port of the capping system 500.
[0024] The brush structure 200 includes: a brush wheel 210 and a brush motor 220. The brush wheel 210 is arranged inside the discharge port of the box cover hopper 100. The brush wheel 210 is connected to the drive shaft of the brush motor 220. The drive shaft of the brush motor 220 is connected to the discharge port of the box cover hopper 100.
[0025] The power transmission system 800 includes: a reduction motor 810, a turntable transmission wheel 820, a capping transmission wheel 830, an electromagnetic clutch 840, and a brake 850. The reduction motor 810 is connected to the turntable transmission wheel 820 and the capping transmission wheel 830 respectively through a transmission belt. The turntable transmission wheel 820 is connected to the turntable 700. The capping transmission wheel 830 is connected to the capping system 500. One end of the connecting shaft of the capping transmission wheel 830 is connected to the electromagnetic clutch 840. The other end of the connecting shaft of the capping transmission wheel 830 is connected to the brake 850.
[0026] Transistor switches are provided in the box cover groove 300 and the inlet box circular groove 600.
[0027] As a capping structure, it is divided into the process of transporting the box bottom and the box cover to together and then capping. Therefore, first, it is necessary to push the box bottom filled with essential balm and cooled from the conveyor belt to the turntable 700 through the oil pushing mechanism. The turntable rotates and successively moves from the inlet box circular groove 600 to the capping bottom plate 510. The rotation of the turntable 700 is driven by the reduction motor 810 through a conveyor belt and bevel gears to drive the turntable transmission wheel 820, and then the turntable transmission wheel 820 drives it.
[0028] On the other hand, the lid falls from the lid hopper 100 into the oscillator 400. The lid exits the oscillator along the spiral groove. At this time, the lid is facing upward, and then it is made to face downward through the reverse mechanism of the oscillator itself. It flows into the lid groove 300 and is neatly arranged, and then enters the groove of the capping top plate 520 of the capping system 500 from top to bottom, and then is attracted by the magnet bar 530 in the groove and stays at the required position.
[0029] After the lid and the bottom are in place, as the capping top plate 520 rotates, the lid is brought above the capping bottom plate 510, and their centers are aligned. The cam mechanism driven by the capping top plate 520 and the capping bottom plate 510 operates to press the lid and the bottom tightly. Then it continues to rotate and is pushed out by the discharge stop block 540, and the capping is completed.
[0030] The transistor switch 900 detects whether there is a bottom in the inlet box circular groove 600. If not, it sends a signal to require troubleshooting. Another transistor switch 900 detects whether there is a sufficient remaining amount of lids in the lid groove 300. If not, it sends a signal, the electromagnetic clutch 840 disengages, and the brake 850 ensures that the turntable 700 stops at the required position. After troubleshooting or when the lids are full, it starts again and the electromagnetic clutch 840 works. If there is a shortage of materials in the oscillator 400, the transistor switch 900 also sends a signal. At this time, the brush motor 220 starts, drives the brush wheel 210 to rotate, and drops the lids into the oscillator 400. After the materials are sufficient, the brush motor 220 automatically shuts down.
[0031] The present utility model is provided with a brush structure 200 in the lid hopper 100. Since the thin shell packaging of the lid of cooling oil is easily damaged by external forces. The lid hopper and the brush structure ensure that the lids are clean and neat when entering the filling machine, and prevent the thin shell from being damaged during transportation. The brush structure can gently handle the packaging to prevent scratching or deformation.
[0032] The capping system of the present utility model is also adjusted for the thin and light characteristics of the lid and the bottom. Since the thin shell packaging is easily deformed during the capping process. Therefore, the capping system should ensure the accuracy and stability of the capping process, adapt to the characteristics of the thin shell, and avoid deformation or damage caused by excessive pressure. The magnet bar can provide appropriate adsorption force, and at the same time, the capping is carried out by the way of mutual rotation of two different platforms, ensuring that the lid remains stable during the capping process and does not damage the lid body and the box body.
[0033] The specific embodiments of the present utility model are described above, but the present utility model is not limited thereto. As long as it does not depart from the purpose of the present utility model, the present utility model can have various changes.
Claims
1. A capping structure for an automatic filling machine for cooling oil, characterized in that: include: A hopper (100) on the box cover, a brush structure (200), a box cover groove (300), an oscillator (400), a capping system (500), a box inlet circular groove (600), a turntable (700) and a power transmission system (800), wherein the discharge port of the hopper (100) on the box cover is connected to the brush structure (200), the bottom end of the brush structure (200) is connected to the oscillator (400), the oscillator (400) is connected to the box cover groove (300), the box cover groove (300) is connected to the capping system (500), the turntable (700) is connected to the capping system (500) via the box inlet circular groove (600), and the power transmission system (800) connects the capping system (500) and the turntable (700); The capping system (500) comprises: a capping bottom plate (510), a capping top plate (520), a magnet bar (530) and a discharge stopper (540); the capping top plate (520) is connected to the box cover groove (300); the capping bottom plate (510) is connected to the box inlet circular groove (600); the magnet bar (530) is arranged in the groove of the capping bottom plate (510); and the discharge stopper (540) is arranged at the discharge port of the capping system (500).
2. The capping structure of the automatic filling machine for cooling oil according to claim 1 is characterized in that: The brush structure (200) comprises: a brush wheel (210) and a brush motor (220); the brush wheel (210) is arranged in the discharge port of the hopper (100) on the box cover; the brush wheel (210) is connected to the drive shaft of the brush motor (220); and the drive shaft of the brush motor (220) is connected to the discharge port of the hopper (100) on the box cover.
3. The capping structure of the automatic filling machine for cooling oil according to claim 1, characterized in that: The power transmission system (800) comprises: a reduction motor (810), a turntable transmission wheel (820), a cover transmission wheel (830), an electromagnetic clutch (840) and a brake (850); the reduction motor (810) is connected to the turntable transmission wheel (820) and the cover transmission wheel (830) respectively through a transmission belt; the turntable transmission wheel (820) is connected to the turntable (700); the cover transmission wheel (830) is connected to the cover system (500); one end of the connecting shaft of the cover transmission wheel (830) is connected to the electromagnetic clutch (840); and the other end of the connecting shaft of the cover transmission wheel (830) is connected to the brake (850).
4. The capping structure of the automatic filling machine for cooling oil according to claim 1, characterized in that: The box cover groove (300) and the box inlet circular groove (600) are provided with a transistor switch (900).