Orbital wrapping machine
11136151 · 2021-10-05
Inventors
Cpc classification
International classification
Abstract
An orbital wrapping machine includes a rotatable wrapping wheel and a drive system, with one or more roll mounts arranged circumferentially around the wrapping wheel and each configured to rotatably support a roll of stretch film. Rotation of the wrapping wheel about an object causes the stretch film to be wrapped around the object. A tensioning system applies a frictional resistance to rotation of each roll of stretch film as the firm is drawn off each roll during rotation of the wrapping wheel. The tensioning system includes a friction material and an adjuster that is capable of urging the friction material against an outer surface of the roll of stretch film at different levels of pressure to adjust the frictional resistance of each roll of stretch film.
Claims
1. An orbital wrapping machine comprising: a wrapping wheel defining an interior wrapping chamber; a support base configured to rotatably support said wrapping wheel; a roll mount disposed along said wrapping wheel and configured to rotatably support a roll of stretch film, said roll mount defining a roll rotation axis; and a film tensioning system comprising: a friction material spaced from said roll rotation axis and configured to engage an outer surface of the roll of stretch film; and a manual adjuster coupled to said friction material and operable to urge said friction material against the outer surface of the roll of stretch film at different levels of pressure when the roll of stretch film is rotatably supported at said roll mount; wherein rotation of said wrapping wheel causes the stretch film to be payed out from the roll under tension that is imparted by frictional engagement of the friction material with the roll of stretch film; wherein said friction material comprises an elongate strip having opposite ends positioned at opposite sides of said roll mount and said roll rotation axis, and a middle portion for engaging the outer surface of the roll of stretch film; wherein said manual adjuster comprises a tensioner having a first end portion coupled to said wrapping wheel and a second end portion coupled to one of said ends of said friction material, and wherein said tensioner is operable to increase and decrease a tension in said elongate strip; and wherein said tensioner comprises an elastic member and a length-adjustable member, wherein said elastic member stretches in response to shortening of said length-adjustable member.
2. The orbital wrapping machine of claim 1, further comprising the roll of stretch film, wherein said elongate strip has a width of approximately one-third of the length of said roll of stretch film.
3. The orbital wrapping machine of claim 1, wherein said elastic member comprises a coil spring.
4. The orbital wrapping machine of claim 1, wherein said friction material frictionally engages the roll of stretch film with increasing force in response to shortening of said length-adjustable member.
5. The orbital wrapping machine of claim 1, wherein said elongate strip comprises a substantially flat sheet of flexible material.
6. The orbital wrapping machine of claim 5, wherein said substantially flat sheet of flexible material comprises leather.
7. The orbital wrapping machine of claim 1, comprising a plurality of said roll mounts and a corresponding plurality of said film tensioning systems spaced circumferentially along said wrapping wheel.
8. The orbital wrapping machine of claim 1, further comprising a drive system configured to rotatably drive said wrapping wheel and a plurality of idler wheels at said support base for supporting said wrapping wheel.
9. The orbital wrapping machine of claim 8, wherein said drive system comprises a drive motor and a drive wheel at said support base, wherein said drive motor is operable to rotatably drive said drive wheel.
10. An orbital wrapping machine comprising: a wrapping wheel defining an interior wrapping chamber and a wheel axis through said wrapping chamber; a drive system operable to rotate said wrapping wheel about said wheel axis; a roll mount disposed along said wrapping wheel and configured to rotatably support a roll of stretch film along a roll axis; and a film tensioning system at said roll mount, said film tensioning system comprising: an elongate strip of friction material having opposite ends coupled to said wrapping wheel at opposite sides of said roll axis and a middle portion configured to engage an outer surface of the roll of stretch film; and a manual tension adjuster coupled to said elongate strip of friction material and operable to selectively increase tension in said elongate strip of friction material and urge said middle portion friction material against the outer surface of the roll of stretch film at different levels of pressure when the roll of stretch film is rotatably supported at said roll mount; wherein said manual tension adjuster comprises a first end portion coupled to said wrapping wheel and a second end portion coupled to one of said ends of said friction material, and wherein said manual tension adjuster is operable to increase and decrease a tension in said elongate strip of friction material; and wherein said manual tension adjuster comprises an elastic member and a length-adjustable member, wherein said elastic member stretches in response to shortening of said length-adjustable member.
11. The orbital wrapping machine of claim 10, wherein said roll mount comprises a plurality of roll mounts disposed circumferentially along said wrapping wheel.
12. The orbital wrapping machine of claim 11, wherein said film tensioning system comprises one of said elongate strip of friction material and a corresponding one of said manual tension adjusters disposed circumferentially along said wrapping wheel at respect and each of said roll mounts.
13. The orbital wrapping machine of claim 10, wherein said elongate strip of friction material frictionally engages the roll of stretch film with increasing force in response to shortening of said length-adjustable member.
14. The orbital wrapping machine of claim 10, further comprising support base configured to rotatably support said wrapping wheel in an upright orientation with said wheel axis in a generally horizontal orientation, said support base comprising a plurality of idler wheels for supporting said wrapping wheel, and said drive system comprising at least one powered drive wheel for rotatably driving said wrapping wheel.
15. The orbital wrapping machine of claim 14, wherein said drive system comprises a drive motor at said support base, wherein said drive motor is operable to rotatably drive said drive wheel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENT
(15) Referring now to the drawings and the illustrative embodiment depicted therein, an orbital wrapping machine 10 includes a support base 12 mounted in a wheel housing 14, such as shown in
(16) A manually-adjustable film tensioning system 30 is provided along the wrapping wheel 16, near each roll mount 24 (
(17) In the illustrated embodiment, the adjustable tensioner 34 includes an elastic portion in the form of a pair of stretchable coil springs 36, and a length-adjustable portion in the form of nylon cable ties (also known as “zip ties”) 38. Coil springs 36 stretch in response to shortening of the respective cable ties 38, which also causes the tension to increase in the adjustable tensioner 34 and the friction material 32. It will be appreciated that many different devices or products may be substituted for coil springs 36 and cable ties 38. For example, rubber bungee cords having exposed elastic rubber or elastic elements wrapped in a cloth or fiber outer casing may be substituted for coil springs. It is further envisioned that a compressed gas spring may be substituted for coil springs, albeit at potentially higher cost. Suitable substitutes for cable ties 38 may include, for example, straps of woven webbing material combined with length-adjustment buckles, a turnbuckle system, threaded components, a ratchet-cable system, or substantially any other length-adjustable coupling device. Optionally, it is envisioned that an adjustable tensioner may combine resilient qualities with adjustable length, in order to reduce the part count of the adjustable tensioner. For example, a stretchable woven webbing material wound on a retractor spool may provide sufficient tension and adjustability for the friction material 32.
(18) With a stretch film roll 26 mounted at a roll mount 24, the adjustable tensioner 34 is tightened or loosened by adjusting the length of the cable ties 38 that form the length-adjustable portion of the adjustable tensioner 34. As the cable ties 38 are shortened to increase tension in the friction material 32, the friction material 32 is pressed with increasing force against an outermost layer of the stretch film 28, in the direction that is radially inward toward the stretch film roll's rotational axis. It will be appreciated that when no stretch film roll 26 is present, such as shown in
(19) Because the springs 36 are stretched when the stretch film roll 26 is installed at the roll mount 24 and the desired lengths of cable ties 38 are set, the springs 36 can generally maintain a suitable amount of tension in the friction material 32 for both a full stretch film roll (relatively large diameter) and a nearly empty stretch film roll (relatively small diameter). Because some variation in the tension applied to the stretch film 28 is usually tolerable during wrapping operations, the lengths of cable ties 38 (or other length-adjustable component) may be selected and set so that the tension in friction material 32 (and therefore, in the stretch film 28 being applied to the product being wrapped) is optimal when the stretch film roll 26 is approximately half empty. This will generally result in the tension being greater than optimal when the stretch film roll 26 is full (i.e., at its maximum diameter), and the tension being lower than optimal when the stretch film roll 26 is nearly empty (i.e., at its minimum diameter). However, the greater-than-optimal tension for a full roll and the lower-than-optimal tension for an empty roll may still provide acceptable levels of stretch in the stretch film 28 being applied to the product for the full roll of stretch material. If needed or desired, it would be possible to manually shorten the lengths of the cable ties 38 when the rolls 26 have been partially used and the wrapping wheel 16 is stopped, to more closely maintain optimal tension as the stretch film contents of the rolls are used up. Although it is envisioned and contemplated that more sophisticated tensioners, such as servo actuators or fluid-actuated piston actuators, may be used to maintain a constant or nearly-constant tension in the friction material 32 as the diameter of the stretch film roll 26 decreases during wrapping operations, these would typically be higher cost tensioners and may provide only marginally different performance compared to the film tensioning system 30 described herein.
(20) In the illustrated embodiment, the friction material 32 is a generally rectangular and flat strip of natural leather having a width that is approximately one-third the length of stretch film roll 26, such as shown in
(21) In the illustrated embodiment, and as best shown in
(22) A powered drive system 50 including an electric motor 52 is provided along the support base 12 to rotatably drive the wrapping wheel 16 relative to the support base, such as shown in
(23) Support base 12 includes a rectangular base plate 58 that rests upon a floor surface (and may be bolted to the floor surface), or that may be elevated above the floor surface by a pair of uprights 60 associated with the wheel housing 14, such as shown in
(24) Wheel housing 14 includes an upper housing portion 14a that is generally shaped as a semi-circle in an inverted-U (concave-down) orientation, and a lower housing portion 14b that is generally U-shaped with a concave-up semi-circular surface and squared lower region (
(25) Accordingly, the orbital wrapping machine 10 provides a relatively simple and low cost system for wrapping individual products or articles, groups of products or articles, and/or shipping/storage pallets and their contents, with plastic film (preferably stretch film) that is properly tensioned during the wrapping operation. The wrapper 10 is operated by installing a desired number of stretch film rolls 26 at respective roll mounts 24, setting each film tensioning system 30 to achieve a desired frictional resistance against rotation of each roll 26, inserting one or more products or articles to be wrapped (including palletized products) into the wrapping chamber 22, attaching a free end of stretch film 28 from each roll 26 to the pallet or the product(s) or article(s) to be wrapped, and energizing the powered drive system 50 to spin wrapping wheel 16 around the article(s) or the pallet and product(s). The article(s) or pallet and product(s) can be moved along the rotational axis of the wrapping wheel 16 as it spins, to ensure adequate coverage of the product(s) with the stretch film 28. As the wrapping wheel 16 spins, the frictional force imparted to each roll 26 causes the stretch film 28 to stretch as it is drawn off its respective roll and results in compressive loads being applied to the article(s) or palletized product(s) to secure them, while also helping to ensure a weather-resistant layer of applied stretch film 28 when the wrapping operation is complete.
(26) Changes and modifications in the specifically-described embodiments may be carried out without departing from the principles of the present invention, which is intended to be limited only by the scope of the appended claims as interpreted according to the principles of patent law including the doctrine of equivalents.