B65H16/06

Mechanism, assembly and sheet material dispenser for manually actuating rotation of a roller

A mechanism is provided for manually actuating rotation of a roller of a sheet material dispenser for dispensing a predetermined length of sheet material. The mechanism includes a frame member; a driven member configured for coupling with the roller; an actuating member configured to rotate about a rotation axis in a first direction through manual actuation by a user; and a driver member coupled with the actuating member. The rotation axis is movably mounted on the frame member to be movable between a first position allowing rotation of the roller caused by rotation of the actuating member in the first direction, and a second position preventing rotation of the roller caused by rotation of the actuating member in the first direction. The mechanism includes a first urging member configured to urge the rotation axis in the first position. A related assembly and dispenser including the mechanism are also provided.

Mechanism, assembly and sheet material dispenser for manually actuating rotation of a roller

A mechanism is provided for manually actuating rotation of a roller of a sheet material dispenser for dispensing a predetermined length of sheet material. The mechanism includes a frame member; a driven member configured for coupling with the roller; an actuating member configured to rotate about a rotation axis in a first direction through manual actuation by a user; and a driver member coupled with the actuating member. The rotation axis is movably mounted on the frame member to be movable between a first position allowing rotation of the roller caused by rotation of the actuating member in the first direction, and a second position preventing rotation of the roller caused by rotation of the actuating member in the first direction. The mechanism includes a first urging member configured to urge the rotation axis in the first position. A related assembly and dispenser including the mechanism are also provided.

WASTE DISPOSAL DEVICE AND FILM DISPENSING CASSETTE
20210354912 · 2021-11-18 ·

A waste disposal device comprises a container having an opening at a top end, the container defining an inner cavity accessible through the opening. A bag interface at the opening is adapted to hold a bag opened at the opening of the container with a closed end of the bag extending in the inner cavity. A pair of doors is pivotally connected to the container to open and close access through the opening and adapted to close off a portion of the bag passing therebetween, the doors being pivotable from a closed position in which the doors meet to close the access through the opening, to a first pivoted position in which the doors are pivoted away from the inner cavity, and wherein One of both doors is or are pivotable to a second pivoted position toward the inner cavity. An actuation mechanism operatively connected to at least one of the doors to bias the at least one of the doors to the closed position.

WASTE DISPOSAL DEVICE AND FILM DISPENSING CASSETTE
20210354912 · 2021-11-18 ·

A waste disposal device comprises a container having an opening at a top end, the container defining an inner cavity accessible through the opening. A bag interface at the opening is adapted to hold a bag opened at the opening of the container with a closed end of the bag extending in the inner cavity. A pair of doors is pivotally connected to the container to open and close access through the opening and adapted to close off a portion of the bag passing therebetween, the doors being pivotable from a closed position in which the doors meet to close the access through the opening, to a first pivoted position in which the doors are pivoted away from the inner cavity, and wherein One of both doors is or are pivotable to a second pivoted position toward the inner cavity. An actuation mechanism operatively connected to at least one of the doors to bias the at least one of the doors to the closed position.

ROLL ACCOMMODATION UNIT, PROCESSING APPARATUS, AND ROLL SETTING METHOD

A roll accommodation unit includes: a roll support shaft; a pair of side walls; and a pair of roll bearings that are attached to the pair of side walls, recessed portions are formed at upper ends of the pair of side walls, the pair of rolling bearings are attached to the side walls at positions corresponding to bottoms of the recessed portions such that the rolling bearings project upward beyond inclined surfaces of the recessed portions, the roll support shaft includes a support shaft main body, and a pair of small-diameter portions that are provided at both ends of the support shaft main body, and the roll support shaft is supported with the small-diameter portions abutting on outer circumferential surfaces of the pairs of rolling bearings in a state in which the support shaft main body is located at an interval from the recessed portions.

ROLL SUPPORT STRUCTURE AND PRINTER
20210354485 · 2021-11-18 ·

A roll support structure is used in a printer which pulls out a sheet material from a roll on which the strip-shaped sheet material is wound and performs printing on the sheet material, where a holding portion which is inserted inside a tubular core of the roll to hold the roll rotatably includes a first portion which is in contact with an upper portion of an inner surface of the core and supports the roll from below and a second portion which is located further on a downstream side in a conveyance direction of the sheet material than a contact point between the first portion and the core and prevents movement of the oscillating roll supported by the first portion to the upstream side in a conveyance direction within a predetermined range.

ROLL SUPPORT STRUCTURE AND PRINTER
20210354485 · 2021-11-18 ·

A roll support structure is used in a printer which pulls out a sheet material from a roll on which the strip-shaped sheet material is wound and performs printing on the sheet material, where a holding portion which is inserted inside a tubular core of the roll to hold the roll rotatably includes a first portion which is in contact with an upper portion of an inner surface of the core and supports the roll from below and a second portion which is located further on a downstream side in a conveyance direction of the sheet material than a contact point between the first portion and the core and prevents movement of the oscillating roll supported by the first portion to the upstream side in a conveyance direction within a predetermined range.

Roll medium feeding shaft
11167573 · 2021-11-09 · ·

According to an aspect of the invention, a roll medium feeding shaft to be inserted into a through hole of a roll medium formed by winding a long recording medium is provided. The roll medium feeding shaft includes a holding member configured to be inserted into the through hole and to be rotated about a rotary axis together with the roll medium, a support part provided to one end of the roll medium feeding shaft and configured to support the holding member in a vertical direction when placed on a horizontal surface, and a shaft provided inside the holding member.

Extendable spool

An extendable spool is disclosed. The length of the extendable spool is able to continuously varied. The extendable spool accounts for length variances in flow lines by extending the flow line rather than redirecting the flow. Because the flow direction does not make any turns, erosion is minimized on both the extendable spool and downstream parts. The extendable spool is readily scalable from small diameters to large diameters. Because of this, it requires fewer lines and therefore less setup time to account for length differences between large diameter lines.

Extendable spool

An extendable spool is disclosed. The length of the extendable spool is able to continuously varied. The extendable spool accounts for length variances in flow lines by extending the flow line rather than redirecting the flow. Because the flow direction does not make any turns, erosion is minimized on both the extendable spool and downstream parts. The extendable spool is readily scalable from small diameters to large diameters. Because of this, it requires fewer lines and therefore less setup time to account for length differences between large diameter lines.