B65H23/06

Dispenser
10472115 · 2019-11-12 · ·

A system for dispensing film wrap is disclosed, the system comprises a dispenser having a first connector portion and second connector portion spaced apart from the first connector portion. A roll of film wrap comprising a core having film wrap wound thereon is configured to extend between the first connector portion and the second connector portion. At least one end of the wall of the core and/or the edge of the film wrap is profiled and interlockable with a complimentary interlocking member located at the remote end of the first or second connector portion so as to prevent lateral movement of the film wrap with respect to the first and second connector portions of the dispenser. This beneficially reduces slippage of the film wrap when it is being used to wrap a load.

Self-contained tension control system

Apparatus and methods are provided for a self-contained tension control system. An example self-contained tension control system can include a brake system configured to provide tension friction to a web, a tension transducer to provide tension information indicative of tension of the web, a controller configured to receive the tension information, to compare the tension information to set point information, and to provide a command signal to the brake system, and an enclosure configured to enclose the brake system, the tension transducer, and the controller, the enclosure including a first web opening and a second web opening configured to allow the web to enter the enclosure and to pass through the enclosure to equipment downstream of the self-contained tension control system.

Self-contained tension control system

Apparatus and methods are provided for a self-contained tension control system. An example self-contained tension control system can include a brake system configured to provide tension friction to a web, a tension transducer to provide tension information indicative of tension of the web, a controller configured to receive the tension information, to compare the tension information to set point information, and to provide a command signal to the brake system, and an enclosure configured to enclose the brake system, the tension transducer, and the controller, the enclosure including a first web opening and a second web opening configured to allow the web to enter the enclosure and to pass through the enclosure to equipment downstream of the self-contained tension control system.

Method and Apparatus for Dispensing and Expanding Expandable Slit Sheet Material
20190248092 · 2019-08-15 ·

A device for expanding and dispensing expandable slit sheet paper includes a pair of support members for a roll of expandable slit sheet paper. The roll of expandable slit sheet paper has an interior core member and a roll of expandable slit sheet paper wound on said interior core member. The interior core member has an axial length that is greater than the width of said slit sheet paper that is wound on said interior core member and has end regions that extend beyond the roll of expandable slit sheet paper. Pressure means is provided for pressing a first end region against its core support member and applying a frictional rotation resistance to the core member end region. The roll of expandable slit sheet paper is mounted on the device by positioning one end region under the pressure means and in a support relationship with its core support member while the roll of expandable slit sheet paper is inclined with respect to the device. The other end region is then moved into its supported position with its core support member. An adjustable downward pressure is exerted on the paper core end region and causing the paper core end region to be pressed against its support 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.

Dynamic performance and active damping methods in web winder tension control systems

A control system for controlling operation of main and secondary drive units in a web winder system to provide tension control of a continuous material web is disclosed. The control system causes the main drive unit to operate in a velocity mode to set a linear velocity of the continuous material web. The control system receives inputs from tension and speed detectors in the web winder system that detect a tension and speed of the continuous material web and causes the secondary drive unit to operate in a modified torque regulated closed-loop tension control mode so as to control a tension in the web material, with the control system causing the secondary drive unit to operate according to a torque regulated closed-loop tension control mode and integrate a speed feedback loop into the torque regulated closed-loop tension control mode so as to introduce active damping into the tension control.

ADHESIVE TAPE DISPENSER WITH TAPE ALIGNMENT MECHANISM
20190241387 · 2019-08-08 ·

An adhesive tape dispensing device with a tape alignment mechanism, comprising a body formed from a rigid material or materials, configured to hold and dispense adhesive tape, and a tape alignment mechanism comprising at least one spring that presses laterally against the edge of the tape, the side of the tape form, or against a hub onto which the tape is mounted, wherein one edge of the portion of tape being dispensed is kept in a fixed alignment relative to the dispensing device while it is being dispensed.

Slit Sheet Tensioning Device
20190193366 · 2019-06-27 ·

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
20190193366 · 2019-06-27 ·

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.

TOOLING APPARATUS AND METHOD FOR APPLYING MATERIAL TO A PRE-FORMED INSERT

A tooling apparatus for applying a tape material to a pre-formed insert is provided. The tooling apparatus comprises at least one guiding element coupled to an apparatus frame. An attachment shaft defines a rotational axis and extends through the guiding element. The attachment shaft includes an attachment element for securing the pre-formed insert thereto. An activation element is operatively engaged with the attachment shaft to rotate the pre-formed insert about the rotational axis at a predetermined rotation rate. A tape control assembly is spaced from the attachment shaft for axial translation along a tape control axis at a predetermined translation rate. Rotation of the pre-formed insert about the rotational axis and translation of the tape control element at the predetermined translation rate causes the material to be drawn under tension from the tape control assembly and applied to the pre-formed insert in a plurality of layers.

SUBSTRATE CONVEYING DEVICE AND DEPOSITION APPARATUS

A substrate conveying device and a deposition apparatus are provided. The substrate conveying device includes a transmission shaft, a plurality of conveying rollers, and a plurality of bearings. The conveying rollers are configured to convey a substrate respectively. Each conveying roller is assembled to the transmission shaft via the corresponding bearing. Each bearing includes a stator and a rotator. Each conveying roller is fixed to the corresponding rotator. The stators are fixed to the transmission shaft. A magnetic repulsion force parallel to an axial direction of the transmission shaft exists between the stator and the rotator. The stator drives the rotator to rotate via a friction force generated by the magnetic repulsion force between the stator and the rotator.