1. Field of the Invention
The present invention relates to a tangential airstream heat shrinking device of plastic film, and in particular to a device that is applicable to heat shrinking package and comprises a high-temperature airstream ejector that has a plurality of circumference tangential heat-shrinking routes of different angles for uniformly heating an external plastic film of the package.
2. The Related Arts
In a heat shrinking packaging process using a heat shrinking film, except a heat shrinking film wrapping operation, a primary packaging mechanism is the heating device for heat shrinking. The conventional heating device for heat shrinking is generally set up at one side, or both sides, or a top side of a packaged article. Thus, in heating the heat shrinking film wrapped externally around the packaged article, the routes along which high-temperature airstreams are ejected are only set at one side, both sides, or the top side of the packaged article. The manner of heating that is conventionally adopted is generally heating through high temperature airstream moving along linear routes. This generally results in inhomogeneous shrinking of the heat shrinking film wrapped externally around a packaged article. The outside appearance of the heat shrinking film package around the packaged article may be deformed or even broken. This deteriorates the quality of heat shrinking packaging and is thus a major issue to be addressed by the heat shrinking packaging device.
Related prior art references are known, such as Taiwan Utility Model M348070, which discloses a high-temperature airstream heating device, Chinese Patent Application No. 201010543690.7 (Publication No. CN102050243), which discloses a shrinking tunnel, Chinese Patent Application No. 200780052373 vehicle safeguard device 1 (Publication No. CN101641260), which discloses a shrinking oven that shrinks a shrinkable film over a packaged article or a packaged unit, and Chinese Patent Application No. 01818418 mold frame 9 (Publication No. CN1473125), which discloses a heat shrinking tunnel of packaging machine featuring high adaptability. All these references disclose conventional heating devices for heat shrinking, wherein high-temperature airstream heating devices are set up at two sides of a packaged article. Although heating can be conducted for packaged articles of different sizes, yet the manner of heating the heat shrinking film wrapped externally around the packaged article is still conducted in high-temperature airstream direct heating through linear routes and thus may still cause inhomogeneous heat shrinking of plastic film, eventually leading to problems and shortcomings, such as deformation of outside appearance formed after heat shrinking of the heat shrinking film, breaking, and being not able to improve quality of the packaged article.
For the conventional heat shrinking packaging device, since the heating airstreams are limited to one side or two sides or top side of a packaged article and heating is conducted through direct heating with high-temperature airstreams along linear routes, so that the heat shrinking package formed with heat shrinking film wrapped externally around the packaged article shows certain drawbacks of poor packaging quality that affects the outside appearance of the packaged article.
Thus, an object of the present invention is to provide a tangential airstream heat shrinking device of plastic film, which comprises:
a chassis;
at least a heating chamber, which is mounted on the chassis, a heating channel being arranged under the heating chamber to allow a film-packaged article to pass, the heating chamber having a top wall in which a plurality of mounting holes and a high-temperature air collection section are formed;
a plurality of air blowers, which is mounted to a bottom of the chassis, the air blowers each comprising an air inlet opening and an air outlet opening and functioning to pressurize air drawn in through the air inlet opening for discharging through the air outlet opening, the air inlet opening of each of the air blowers being connected through a collection pipe to the high-temperature air collection section of the heating chamber; and
a plurality of high-temperature airstream ejectors, which is respectively fit into the mounting holes of the heating chamber and is rotatable, either clockwise or counterclockwise, along a circumferential track of the mounting hole, each of the high-temperature airstream ejectors having an upper end forming an intake opening, the intake opening being connected through a connection tube to the air outlet opening of the respective air blower in order to supply the air pressurized by the air blower to the airstream ejector for heating, the high-temperature airstream ejector having a lower end forming a high-temperature airstream discharging opening, the high-temperature airstream discharging openings being located at two sides of the heating channel of the heating chamber, the high-temperature airstream discharging opening of each of the high-temperature airstream ejectors having a high-temperature airstreams discharging route located on a different tangential route of a circumference of a film-packaged article at different angle.
In the tangential airstream heat shrinking device of plastic film described above, the chassis comprises an enclosure mounted thereon and the enclosure encloses the heating chamber.
In the tangential airstream heat shrinking device of plastic film described above, the mounting holes of the heating chamber are each provided with at least an indicator at a circumference thereof.
In the tangential airstream heat shrinking device of plastic film described above, the indicator is triangular.
In the tangential airstream heat shrinking device of plastic film described above, the high-temperature air collection section of the heating chamber forms a plurality of connection holes and the connection holes are respectively connected to the collection pipe of the air inlet opening of the air blower.
In the tangential airstream heat shrinking device of plastic film described above, the high-temperature airstream ejectors comprise:
a casing, which forms, in an outside wall thereof, at least an opening, the casing having a lower end being inserted into the respective mounting hole of the heating chamber;
an air intake tube, which is arranged inside the casing, the air intake tube having an upper end forming an intake opening, the intake opening being connected through the connection tube of the air outlet opening of the air blower, in order to supply air that is pressurized by the air blower into the air intake tube;
a heater, which is mounted outside the air intake tube to heat the air contained in the air intake tube, the heater having two power wires extending out through the opening of the casing for connection with an external power supply; and
an air blade section, which is coupled under the casing, whereby the air blade section, after inserted into the mounting hole of the heating chamber to be located at two sides of the heating channel, the air blade section each forming a high-temperature airstream discharging opening, the air blade section being connected to the lower end of the air intake tube to allow the heated air contained in the air intake tube to be discharged through the airstream discharging opening.
In the tangential airstream heat shrinking device of plastic film described above, the casing has a lower end circumferential flange forming an angular indexing disk and the angular indexing disk has a surface forming a plurality of angle markings, each of which indicates a corresponding reference for identifying clockwise or counterclockwise rotational angle and position of the casing.
In the tangential airstream heat shrinking device of plastic film described above, the heater comprises an electrical heating filament.
In the tangential airstream heat shrinking device of plastic film described above, the air blade section forms therein an air discharge tube and the air discharge tube has an end connected to a lower end of the air intake tube.
In the tangential airstream heat shrinking device of plastic film described above, the air discharge tube comprises a stop bar arranged therein, whereby heated air that is fed into the air discharge tube is stopped by the stop bar to achieve an effect of pressurization and is then discharged through the air passage holes to be then ejected out through the high-temperature airstream discharging opening.
The efficacy of the tangential airstream heat shrinking device of plastic film according to the present invention is that rotary high-temperature airstream ejectors are provided and indexing achieved through an indicator of a heating chamber and angle marks formed on an angular indexing disk of each of the high-temperature ejectors allows high-temperature airstream discharging openings of the high-temperature airstream ejectors to set up high-temperature airstream discharge routes along tangents of an outer circumferences of a film-packaged article at different angles so that a heat shrinking film wrapped externally around the film-packaged article may show improved quality of packaging and ensure aesthetics of the outside appearance of the packaged article. Further, the heating chamber has a high-temperature air collection section that is connected to an air inlet opening of an air blower to allow the high-temperature air supplied from the high-temperature airstream ejectors to the heating chamber to be collected and re-used after heating the film-packaged article. This enables a significant saving of energy and improvement of performance of supplying of heated air from the high-temperature airstream ejectors.
The present invention will be apparent to those skilled in the art by reading the following description of preferred embodiments thereof, with reference to the attached drawings, wherein:
With reference to the drawings and in particular to
A plurality of air blowers 30 is mounted to a bottom of the chassis 10. The air blowers 30 each forms an air inlet opening 31 and an air outlet opening 32 and functions to pressurize air drawn in through the air inlet opening 31 for discharging through the air outlet opening 32. Further, the air inlet opening 31 of each of the air blowers 30 is connected through a collection pipe 311 to each of the connection holes 231 of the high-temperature air collection section 23 of the heating chamber 20.
Also referring to
The air intake tube 42 is arranged inside the casing 41. The air intake tube 42 has an upper end forming an intake opening 421. The intake opening 421 is connected through a connection tube 421A (see
The air blade section 44 is coupled under the casing 41. The air blade sections 44 of the high-temperature airstream ejectors 40, after inserted into the mounting holes of the heating chamber 20, are located at two sides of the heating channel 21. The air blade section 44 each form a high-temperature airstream discharging opening 441 in a circumference thereof. The high-temperature airstream discharging opening 441 is not limited to any specific form and an elongate hole is taken as an example in the present invention. The air blade section 44 forms therein an air discharge tube 442. The air discharge tube 442 has an end connected to a lower end of the air intake tube 41 to allow the heated air contained in the air intake tube 41 to be fed into the air discharge tube 442. The air discharge tube 442 has a surface forming a plurality of air passage holes 442A. The air discharge tube 442 comprises a stop bar 442B (see
Referring to
For applications of heat shrinking packaging of film-packaged articles 200 of different diameters/sizes, it may be further possible to have the high-temperature airstream ejectors 40 each clockwise or counterclockwise orbiting along a circumferential track about the respective mounting hole 22 of the heating chamber 20. With the indication effected by the angle markings 412A of the angular indexing disk 412 of the casing 41 and the indicator 221 of the mounting hole 22 of the heating chamber 20, a user is allowed to accurately identify and correct the route and angle of the high-temperature airstream ejected through the high-temperature airstream discharging opening 441 of the air blade section 44 of each of the high-temperature airstream ejectors 40 to be precisely on the tangential routes of the circumference of the film-packaged article 200 at various angles.
The high-temperature airstreams supplied from the high-temperature airstream discharging openings 441 of the air blade sections 44 of the high-temperature airstream ejectors 40 travels through the surface of the film-packaged article 200 to make the plastic film heated and shrinking. Residual heat ascends and gathers in the high-temperature air collection section 23 above the heating chamber 20 (see
Although the present invention has been described with reference to the preferred embodiments thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.
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