1. Field of the Invention
The present invention relates to a method and a machine for forming a bottle sealing film, and more particularly to a method and a machine for forming a bottle sealing film having a tearing tab.
2. Description of Related Art
A conventional bottle has a cap to close an opening of the bottle. An annular bottle sealing film is usually mounted on the cap to seal the opening of the bottle. The bottle sealing film is heated and shrunk to closely mount around the cap. A conventional bottle sealing film is provided by cutting an annular film into pieces by a cutting machine, and the bottle sealing film is mounted round a bottle cap and is heated. The cutting machine substantially comprises a base, multiple blade units and multiple transmission units. The base has a hole defined through the base. The blade units and the transmission units are alternately mounted around the base. Each blade unit has a gear engaging with a gear of a corresponding transmission unit. When a tubular film is led to extend through the hole in the base, the blade units are driven to rotate to cut the tubular film by a driving device with the transmission of the transmission units.
The conventional bottle sealing film is annular and has two flat ends. When the bottle sealing film is mounted around a bottle cap, a round opening is formed in an end of the bottle sealing film and on the bottle cap. To open the bottle cap, the bottle sealing film has to be torn and removed from the cap first. However, the bottle sealing film is not easily torn from the cap due to the toughness of the film. To allow the bottle sealing film to be torn easily, a tearing line is formed longitudinally on the bottle sealing film. The tearing line on the bottle sealing film comprises two columns of bores arranged longitudinally along the bottle sealing film to form a tearing slice on the bottle sealing film. Accordingly, the bottle sealing film can be easily torn and removed from the bottle cap via the tearing slice.
However, because the conventional bottle sealing film has two flat ends, the position of the tearing slice longitudinally formed on the bottle sealing film is not easily found and torn. Therefore, the conventional bottle sealing film is inconvenient in use.
To overcome the shortcomings, the present invention tends to provide a method for manufacturing a bottle sealing film having a tearing tab and a device for forming the same to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a method and device for manufacturing a bottle sealing film having a tearing tab to allow the bottle sealing film to be torn off easily.
A device for forming a bottle sealing film having a tearing tab has a supporting stand, a guiding assembly, a tab-shaping assembly, and a cutting assembly. The supporting stand has a platform with a hole defined through the platform. The guiding assembly is mounted on the supporting stand and has a central post. The central post has an annular groove and an end. The annular groove is defined around an outer surface of the central post. The end extends through the hole in the platform. The tab-shaping assembly is mounted on the supporting stand and has a shaping base, a cutter base, a power driver, a first cutter mount, a second cutter mount, a first cutter, and a second cutter. The shaping base is mounted on the supporting stand. The cutter base is mounted on the shaping base and has a first end and a second end. The power driver is mounted on the first end of the cutter base. The first cutter mount is mounted on the second end of the cutter base. The second cutter mount is slidably mounted on the cutter base between the first cutter mount and the power driver and is connected to and driven by the power driver along the cutter base. The first cutter is mounted on the first cutter mount. The second cutter is mounted on the second cutter mount to provide a shearing cut effect in corporation with the first cutter. The cutting assembly is mounted on the platform and has a cutting base, multiple blade assemblies, multiple transmission units, and a transmission belt. The cutting base is mounted on the platform. The central post extends through the cutting base. The blade assemblies are mounted in the cutting base and are arranged around the central post. Each blade assembly has a blade corresponding to the annular groove in position to allow the blade to extend into the annular groove. The transmission units are mounted in the cutting base and are connected respectively with the blade assemblies. The transmission belt is mounted around the transmission units to rotate the blades of the blade assemblies synchronously with the transmission of the transmission units.
A method for manufacturing a bottle sealing film comprises steps of:
feeding a film, comprising feeding a flat film reeled around a film reel and moving the film through multiple guiding rods;
forming a tearing tab, comprising leading one side of the fed flat film having a tearing line to a position between a first cutter and a second cutter and forming a tab cutting line on the film by the first cutter and the second cutter;
shaping the film, comprising leading the flat film to a central post from a flat-sided conical head of the central post to form the flat film into a tubular film; and
cutting the film, comprising forming a cutting line on the film that is mounted around the central post by multiple blades rotated synchronously, wherein the cutting line is connected with the tab cutting line;
cutting off the film to form a tubular bottle sealing film having a tearing tab.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
A machine for forming a bottle sealing film in accordance with the present invention comprises a supporting stand 10 and a tab forming device. The supporting stand 10 is mounted on a working station that is applied for manufacturing a bottle sealing film. The supporting stand 10 comprises a platform 11 being adjustable in position, a film reel 12, and a film leading assembly 20. The platform 11 has a hole 110 defined through the platform 11. The film reel 12 is mounted on the supporting stand 10 at a position adjacent to a side of the platform 11, and a film 60 is reeled around the film reel 12. The film 60 is an elongated thin tubular film and is made of a shrink film material. Two folding lines are defined longitudinally in the film 60, such that the film 60 can be compressed to a flat form to be reeled around the film reel 12. With reference to
The film leading assembly 20 is mounted on the supporting stand 10 and comprises multiple guiding rods mounted on the supporting stand 10 in pairs. With the guiding rods, the film 60 reeled around the film reel 12 can be led to move downward.
The tab forming device is mounted on the supporting stand 10 to form a tearing tab on the film 60 as shown in
With reference to
With reference to
The cutter base 42 may be an elongated board, is mounted on the shaping base 41, and is preferably mounted on the rail assembly 411 on the shaping base 41, such that the cutter base 42 can be moved laterally or longitudinally relative to the shaping base 41. The cutter base 42 comprises a first end, a second end, a stopping block 421, a securing block 423, a guiding block 422, and an escaping notch 420. The stopping block 421 is mounted on the cutter base 42, and the securing block 423 is mounted on the first end of the cutter base 42. The guiding block 422 is mounted on the cutter base 42 between the stopping block 421 and the securing block 423. The escaping notch 420 is defined in the cutter base 42.
The power driver 47 is mounted on the first end of the cutter base 42, is mounted on the securing block 423 on the cutter base 42, and may be a pneumatic cylinder. The power driver 47 comprises a housing and a driving rod 471 connected reciprocally with the housing.
The first cutter mount 44 is mounted on the second end of the cutter base 42. The first cutter 46 is mounted on the first cutter mount 44.
The second cutter mount 43 is slidably mounted on the cutter base 42 between the first cutter mount 44 and the power driver 47, is connected to the driving rod 471 of the power driver 47, and is driven by the power driver 47 to move along the cutter base 42. The second cutter mount 43 has a sliding base 431 mounted on a bottom of the second cutter mount 43. The sliding base 431 has a guiding channel 432 defined in a bottom of the sliding base 431 and mounted around the guiding block 422 on the cutter base 42, such that the second cutter mount 43 is moveably mounted on the cutter base 42. In addition, the stopping block 421 on the cutter base 42 can limit the moving range of the second cutter mount 43. The second cutter 45 is mounted on and moved with the second cutter mount 43, and a shearing cut effect is provided by the second cutter 45 in corporation with the first cutter 46 when the second cutter 45 is moved relative to the first cutter 46.
In addition, the escaping notch 420 is defined in the cutter base 42 at a position corresponding to a position located between the first cutter mount 44 and the second cutter mount 43 and being adjacent to the first cutter mount 44.
With reference to
With reference to
With reference to
With the blades extending into the annular groove 33 in the central post 31, the film 60 mounted around the central post 33 will be cut to form a cutting line 63 on the film 60.
With reference to
With reference to
With reference to
With reference to
In the step of shaping the film, the flat film 60 is led to the central post 31 from the flat-sided conical head 32 of the central post 31 to form the flat film 60 in a tubular film, and the tubular film 60 is moved downward along the central post 31.
With reference to
Finally, the film 60 is cut off to form a tubular bottle sealing film having a tearing tab 64 as shown in
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.