This invention relates generally to the field of machines, assemblies and methods that are used in the packaging industry. More specifically, it relates to an assembly and method for wrapping a box or other item with a roped plastic film.
In the field of packaging, the use of plastic film to wrap palletized loads is well known in the art. Various assemblies and methods have been previously devised to dispense a plastic film from a film roll and place the film around the load. Doing so adds to the overall strength to the binding of the load and allows the load to be impervious to outside environmental conditions, including moisture, dirt, and the like.
By way of one particular application, which application is not a limitation of the present invention, it is also well known in the cheese making arts that a cheese box can be assembled manually by an operator for use in the cheese-making process. This type of cheese box is typically comprised of four like-sized and wax-coated, wooden panels that connect with one another at the corners by way of interlocking and/or dove tail tabs. Angle iron pieces, disposed vertically at the box corners, are used for added support of the box. In this process, the operator affixes four such freshly-painted and wax-coated angle iron pieces to each corner of the box. The operator then wraps the four wooden panels of the box, together with the angle iron pieces, with metal banding in several locations to hold the box together. After this portion of the box is assembled and is filled with a semi-liquid cheese, a bottom and spring-loaded top are similarly banded to the box and the contents are compressed under pressure to extract moisture from the semi-liquid cheese. The box is then put into storage for the cheese aging process, which varies depending upon the type of cheese that is being made. After the cheese aging process is completed, the box is disassembled to remove the aged cheese and the four wooden panels and four angle iron corners are returned to a facility where the wooden panels and angle irons are recycled. Specifically, the wooden panels are stripped and recoated with fresh wax and the angle irons are similarly stripped, repainted and re-waxed.
In the art of box wrapping, it would be desirable to provide a new and useful box wrapping assembly and method whereby the use of metal banding can be eliminated and the use of angle iron corners can be eliminated as well. In the specific application mentioned above, an additional concern is that paint can chip away from the angle iron corners and contaminate the bulk cheese product. Elimination of the angle iron corners eliminates this type of product contamination. Additionally, it would desirable that the metal banding be replaced by roped plastic film wrap that can be positioned about the box such that a sufficient amount of moisture is allowed to flow out of the box, another particular concern in the cheese making industry for reasons mentioned above. It would also be desirable to provide such an assembly and method whereby the leading edge of the roped plastic film wrap can be quickly and easily anchored to a member at which point the box wrapping method would be initiated by an operator. It would also be desirable to provide a mechanism for allowing the trailing edge of the roped plastic film wrap to be cut and easily inserted under another portion of the roped plastic film wrap such that the trailing edge is adequately captured and held in place to complete the wrapping process.
The box wrapping assembly and method of the present invention has obtained these objects. It provides for an assembly and method whereby the assembly incorporates a framework having a special top hold-down platen that functions with a cooperating fixture that is affixed to a turntable. This arrangement allows the operator to place the four wooden panels in a self-positioning fixture and panel-capturing platen. Once the panels are in place, the stretch film is connected to the fixture by means of a hook device that is incorporated into the bottom fixture and the stretch film is automatically pre-stretched at a very high rate and formed (by way of custom roping rollers) to a rope of stretch film. Pre-stretching of the film into a rope is particularly useful where the intent is to maintain the contents of the box under pressure. The rope of stretch film is then applied by way of a custom machine program at the same locations as are presently occupied by the steel bands. This effectively eliminates the need for the angle iron corners which reduces assembly time, materials and transportation costs. The roped and stretched plastic film is extremely strong and it is applied in the same locations, but which are fully adjustable depending upon the specific application, as the metal bands would be. Additionally, the roped film is controlled with regard to how many turntable revolutions of each of the several “banded” sections are required. The assembly of the present invention uses a high speed turntable to achieve a cycle rate of under one minute. The cost of the plastic film is roughly one-third the price of metal bands which is also a significant material cost reduction, and is recyclable. The transportation costs associated with shipping the angle iron pieces, stripping, painting and re-waxing them effectively goes away with the assembly and method of the present invention.
The foregoing and other features of the present invention will be apparent from the detailed description that follows.
Referring now to the drawings in detail wherein like numbers represent like elements throughout,
As shown, the assembly 10 comprises a frame 20 having an upright column 21 that is supported by a substantially horizontal base portion 26. The base portion 26 also includes a rotating table 40. A fixture 50 is located atop the rotating table 40. The upright support column 21 of the frame 20 also includes a cantilevered arm 28, the position of the cantilevered arm 28 being actuated by means of a pneumatic air cylinder 27. At the distal end of the cantilevered arm 28 is a downwardly extending rotational support 29 to which is attached a platen 30.
The assembly 10 also includes a film wrap dispensing mechanism 22, the film wrap dispensing mechanism 22 being capable of feeding roped plastic film 6 from a continuous plastic sheet 4 that is unwound from a plastic film roll 2. The film dispensing mechanism 22 is used to automatically pre-stretch at a very high rate and form the film sheet 4 into a film rope 6. The rope 6 of stretched film 4 is extremely strong because the film 4 is pre-stretched to its close to maximum level of tension thereby reducing and holding to a minimum its ability to stretch any further. Operation of the film dispensing mechanism 22 and movement of the cantilevered arm and rotating table are all controlled by means of a programmable logic controller 24, or “PLC.”
Referring now to
As shown, each wooden sidewall 1 includes an upper edge 7 and a plurality of tabs 3 and recesses 5, the tabs 3 and recesses 5 being configured to interlock with like tabs 3 and recesses 5 of adjoining sidewalls 1. As shown in
As is also shown in
It should also be understood that, as the fixture 50 is allowed to rotate, the platen 30 will also rotate with it when the first sidewall 1 is properly positioned between the fixture 50 and the platen 30. This allows the fixture 50 and platen 30 to be indexed by 90° and at a timed interval such that the operator has adequate time to place each sidewall 1 without the need for the operator to manually rotate the fixture 50, although such could be done if desired or required by the particular application. In other words, this may be a controlled function initiated by the PLC 24 or a manually-initiated action.
Referring now to
In accordance with the assembly 10 and method of the present invention, the table 40 rotates at a given speed dictated by the PLC 24 as programmed, or pre-programmed, for the specific application. As the table 40 rotates, the PLC 24 is also used to control the vertical indexing of the plastic film wrap dispensing mechanism 22 along the upright support column 21. The PLC 24 may be programmed to index vertically following several rotations of the table 40 at one set vertical position. See
As the PLC 24 nears the end of the cycle for wrapping the sidewalls 1, the uppermost bands of roped film 6 are also urged outwardly and away from one of the sidewalls 1 by means of a spacer 36. See
In the specific application referred to earlier, which application is not a limitation of the present invention, a cheese box, generally identified 100, can be assembled by an operator for use in the cheese-making process. See
Based upon the foregoing, it will be seen that there has been provided a new and useful box wrapping assembly and method whereby the assembly incorporates a framework having a special top hold-down platen that functions with a cooperating fixture that is affixed to a turntable. Using this assembly and method, the operator can place four sidewall panels in a self-positioning fixture and panel-capturing platen prior to wrapping. The stretch film is connected to the fixture by means of hook device and the stretch film is automatically pre-stretched to a rope of stretched film for particular application where the box contents are intended to be contained within the box under pressure.
This application claims the benefit and priority of U.S. Provisional Patent Application No. 61/023,299 filed Jan. 24, 2008.
Number | Date | Country | |
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61023299 | Jan 2008 | US |