Patent classifications
B65H23/08
Slit Sheet Tensioning Device
An expansion device includes an unexpanded slit sheet roll that is wound on a paper core that is longer than the width of the slit sheet paper roll. The paper core is placed onto a rod member. An adjustable downward pressure is exerted on the paper core and the paper core exerts pressure on the rod member. As the paper is pulled, the downward pressure creates the friction required to enable the unexpanded slit, sheet to be unwind and fed while simultaneously expanding.
Slit Sheet Tensioning Device
An expansion device includes an unexpanded slit sheet roll that is wound on a paper core that is longer than the width of the slit sheet paper roll. The paper core is placed onto a rod member. An adjustable downward pressure is exerted on the paper core and the paper core exerts pressure on the rod member. As the paper is pulled, the downward pressure creates the friction required to enable the unexpanded slit, sheet to be unwind and fed while simultaneously expanding.
TAPE DISPENSER
A tape dispenser having a handle, a base plate disposed at an end of the handle, a rotatable tape mount engaged on the base plate, a nose member disposed on the base plate, a cylinder rotatably engaged on the nose member near a cutter and a guide element is provided. The guide member is slidingly engaged on the base plate. The guide element is adjustable between a loading position which is slid rearward ly to provide space between a tape engaging end of the guide element and the nose member and a loaded position where the end of the guide element is located adjacent the nose member. A tape core support assembly can include a shaft secured to the frame and an axle assembly disposed about at least a portion of the shaft. The axle assembly includes a hub having an outer surface and at least three arcuate arms extending outwardly from the hub outer surface. An outer periphery of the arms forms a theoretical or actual cylinder configured to receive the tape core. The rotatable tape core support can include a stationary axle, a spring inclusive bushing mounted to said axle, and a rotatable tape mount. The rotatable tape mount can include a housing that receives the bushing such that the spring engages a surface of the housing to control rotation of the tape mount.
Slit sheet tensioning device
An expansion device includes an unexpanded slit sheet roll that is wound on a paper core that is longer than the width of the slit sheet paper roll. The paper core is placed onto a rod member. An adjustable downward pressure is exerted on the paper core and the paper core exerts pressure on the rod member. As the paper is pulled, the downward pressure creates the friction required to enable the unexpanded slit sheet to be unwind and fed while simultaneously expanding.
Slit sheet tensioning device
An expansion device includes an unexpanded slit sheet roll that is wound on a paper core that is longer than the width of the slit sheet paper roll. The paper core is placed onto a rod member. An adjustable downward pressure is exerted on the paper core and the paper core exerts pressure on the rod member. As the paper is pulled, the downward pressure creates the friction required to enable the unexpanded slit sheet to be unwind and fed while simultaneously expanding.
MOTOR DRIVEN ADJUSTABLE ANTI-JAM DEVICE FOR EXPANDING SLIT CUSHIONING MATERIAL
A device for dispensing a roll of sheet stock material includes a first pair of rollers. The first pair of rollers is driven by an electric motor. The first pair of rollers is configured to receive expandable slit paper between the first pair of rollers. The first pair of rollers is configured to modify a force of friction applied to an outer surface of the expandable slit paper.
WEB WINDING WITH FRICTION-BASED TENSIONING
A printing system includes a transport path for transporting a web medium. The transport path includes a slack region wherein the web medium is slack or substantially tension-free. A take-up roller is positioned at a downstream end of the transport path for receiving and winding the web medium. A tensioning device is positioned along the transport path between the slack region and the take-up roller. The tensioning device includes a first surface arranged for exerting a friction force on the web medium moving over the first surface in a direction opposite to a transport direction of the transport path, such that the web medium is tensioned between the tensioning device and the take-up roller. Since the friction force tensions the web being wound onto the take-up roller, the wound media rolls are tightly wound when applying “loose winding.”
WEB WINDING WITH FRICTION-BASED TENSIONING
A printing system includes a transport path for transporting a web medium. The transport path includes a slack region wherein the web medium is slack or substantially tension-free. A take-up roller is positioned at a downstream end of the transport path for receiving and winding the web medium. A tensioning device is positioned along the transport path between the slack region and the take-up roller. The tensioning device includes a first surface arranged for exerting a friction force on the web medium moving over the first surface in a direction opposite to a transport direction of the transport path, such that the web medium is tensioned between the tensioning device and the take-up roller. Since the friction force tensions the web being wound onto the take-up roller, the wound media rolls are tightly wound when applying “loose winding.”
AUTOMATIC WATERCRAFT COVER
A watercraft lift with hydraulically actuated arms which self-installs a fitted three-dimensional watercraft cover on a powerboat. A mechanism enables a linear actuator to drive a swing arm up to 180 degrees. The upper end of a two part arm articulates mechanically as the arm moves to reduce vertical elevation while operating. A spring-tensioned elongated roller keeps the cover tight and self-rolls the cover on the elongated roller when the actuated arms are pivoted forward. The mechanism can be attached to the guides of most watercraft lifts.
SPLICE ARRANGEMENT
A splice arrangement includes an unwinding arrangement for unwinding a finite first material web from a first material roll or a finite second material web from a second material roll, a braking arrangement for applying a braking force to the unwinding arrangement and/or the finite material web being unwound, a connection arrangement for connecting the finite material webs to form an endless material web, a storage trolley for the uninterrupted conveying of the endless material web, at least one material web tension-influencing device arranged before the storage trolley, and an actuation device, which is in signal connection with the at least one material web tension-influencing device for actuating the same.