The present invention is directed toward a mobile processing system and a method of processing. More specifically, the present invention is directed to a mobile spooled dereeler system and a method for dereeling material from a mobile system.
During various processing operations, a processing material is provided in coils, spools, or reels, which are wound for distribution. The material is generally mounted on a dispenser, such as a dereeler, which supplies the material during processing. For example, a spool or reel of material is frequently mounted on a pallet, and rotated about an axle to feed the material to a processing machine. In order to provide a continuous or substantially continuous feed of material, large spools or reels of material are typically used.
Currently, dereelers are stationary, with individual spools of material being removably mounted thereto for processing. Often, a forklift or other machinery is required to transport the spools and/or change materials between stationary dereelers. The changing of the materials using forklifts or other machinery includes individual transportation of the material spools, which requires multiple trips from a loading area to each processing area. The multiple trips required to remove one spool of material and replace it with another increase processing risk, increase processing time, and decrease processing efficiency. Additionally, each of the stationary dereelers requires separate control mechanisms, which increases the cost of the processing system.
One method of decreasing down time includes the use of multiple forklifts or other machinery to transport the individual spools. However, using multiple pieces of machinery further increases processing costs as well as the risks associated with transporting the spools of material.
A system and method with improvements in the process and/or the properties of the components formed would be desirable in the art.
In one exemplary embodiment, a mobile processing system includes a frame, a control device, and a transport device configured to move the frame. The frame includes a base portion, a turntable rotatably coupled to the base portion, a motor secured to the base portion and operably connected to the turntable, and a mobile support secured to the base portion, opposite the turntable.
In another exemplary embodiment, a method of processing includes positioning a processing material on a frame, moving the frame to a processing area, coupling a control device to the frame, and feeding the processing material from the frame to a processing device. The control device controls a feed rate of the processing material.
In another exemplary embodiment, a mobile processing frame includes a base portion having an electrical receptacle and a pneumatic receptacle positioned thereon, a turntable rotatably coupled to the base portion, a motor secured to the base portion and operably connected to the turntable, a mobile support secured to the base portion, opposite the turntable, and a locking member configured to selectively restrict movement of the mobile support. The turntable is configured to receive a processing material thereon, and feed the processing material therefrom.
Other features and advantages of the present invention will be apparent from the following more detailed description of the preferred embodiment, taken in conjunction with the accompanying drawings which illustrate, by way of example, the principles of the invention.
Wherever possible, the same reference numbers will be used throughout the drawings to represent the same parts.
Provided are a mobile processing frame, a mobile processing system, and a method of processing. Embodiments of the present disclosure, in comparison to components and methods not using one or more of the features disclosed herein, permit transportation of processing material on a processing frame, provide interchangeable control elements, increase processing efficiency, permit transportation of multiple spools of processing material at one time, decrease processing time, or a combination thereof.
Referring to
In one embodiment, a processing material 113 is removably positioned on one or more of the processing frames 110. In another embodiment, the processing material 113 positioned on each of the at least one processing frames 110 is the same or substantially the same. Alternatively, the processing material 113 differs between one or more of the processing frames 110. Suitable processing materials 113 include any material configured to facilitate feeding from the processing frame 110 to a processing device 201 (see
The transport device 120 is configured to push, tow, or otherwise move the at least one processing frame 110 detachably secured thereto. The moving of the at least one processing frame 110 provides transportation of the processing material 113 positioned on one or more of the processing frames 110. By transporting the processing material 113 on the at least one processing frame 110, the processing system 100 provides movement of the processing material 113 between processing areas without removing the processing material 113 from the processing frame 110. The simultaneous movement of multiple processing materials 113 with a single transport device 120 and/or the movement of the processing material 113 without removal from the processing frame 110 reduces or eliminates the use of a forklift or other device to transport the processing material 113, decreases processing down time, increases processing efficiency, or a combination thereof.
As illustrated in
In one embodiment, the locking member 130 includes an article configured to extend from and retract towards the base portion 115. In a refracted position, as illustrated in
Once the processing frame 110 is positioned in the processing area, an electrical connector is coupled to the processing frame 110. The electrical connector provides power to the processing frame 110 and/or the at least one control device 210. In one embodiment, the electrical connector also provides communication between the base portion 115, the at least one control device 210, the motor 220, and/or an electrical control system. When in communication with the base portion 115, the at least one control device 210 monitors and/or controls rotation of the turntable 117, a feed rate of the processing material 113, and/or any other processing parameter. Suitable control devices include, but are not limited to, a dancer arm 211, a stock straightener 213, a sonar control device, a proximity device, other processing equipment, or a combination thereof.
The at least one control device 210 is integral with, detachably secured to, or separate from the base portion 115. For example, as illustrated in
Referring to
Using the processing system 100 according to one or more of the embodiments disclosed herein, in one embodiment, a method of processing includes positioning the processing material 113 on one or more of the processing frames 110, moving the one or more processing frames 110 to a processing area, coupling the electrical and/or pneumatic connector to the processing frame 110, and feeding the processing material 113 to the processing device 201. Each of the processing frames 110 is coupled directly or indirectly to the transport device 120 either before or after positioning the processing material 113 thereon. Once the processing frame 110 is in the processing area, coupling the pneumatic connector to the processing frame 110 activates the locking member 130, restricting or eliminating movement of the processing frame 110. Additionally, coupling the electrical connector to the processing frame 110 provides power to the processing frame 110 and/or control over the one or more control devices 210. During the processing, one or more of the processing frames 110 are optionally coupled and/or decoupled to the electrical and/or pneumatic connectors to provide additional and/or differing processing material 113. After processing, detaching the pneumatic connector releases the locking member 130 permitting retraction of the locking member 130 and movement of the processing frame 110. The processing frame 110 may then be moved to another processing area, and/or a loading area for positioning of new processing material 113 thereon.
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all embodiments falling within the scope of the appended claims.
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Number | Date | Country | |
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20160257523 A1 | Sep 2016 | US |